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Raised access floors - Butech

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<strong>Raised</strong> <strong>access</strong> <strong>floors</strong><strong>Raised</strong> <strong>access</strong> <strong>floors</strong>technical solutions1


The contents of this catalog are protected by Intellectual Property Law, Royal Decree 1 / 1996. Any reproduction of it, in whole or inpart, without the consent of Porelanosa Grupo is liable under the Penal Code.23


Index<strong>Raised</strong> <strong>access</strong> flooringSystem application areasPanels with chipboard corePanels with calcium sulfate coreStructureSound proofing properites of RAFInstallation of RAF<strong>Raised</strong> <strong>access</strong> flooring for exteriorsOutdoor tiles to RAF for exteriorsStructure to RAF for exteriorsPlots propertiesInstallations of RAF for exteriorsCli-ker nAdvantagesComponentsInstallationCli-ker n exteriorAdvantagesFeaturesComponentsInstallationHow to get a budget of a butech system?6681216283439404040424546474850505052535545


<strong>Raised</strong> <strong>access</strong> flooring<strong>Raised</strong> <strong>access</strong> flooring (RAF) was created in response to the need to hide large volumes of cables, pipework, tubing, etc. that are typically found in offices,technical rooms, and other locations. The installation of a raised floor creates a space under the floor where all these services, including equipment and roomcooling systems, can be neatly housed and hidden away.System application areasFacilities with a high volume of services or in rooms that house technical equipment that requires special ventilation.Commercial applications: offices, libraries, museums, schools, shopping centres, etc.Technical applications: telecommunications/electricity plants, control rooms, laboratories, data centres, etc.Advantages• Ability to hide away all types of ugly and dangerous cables, pipes etc under the floor.• Improved installation efficiency in comparison to conventional <strong>floors</strong> (installation rate of about 40 m2/day).• Easy to take with you when relocating offices.• Option of rerouting services following installation of floor.Advantages over other raised <strong>access</strong> floor systems• Able to withstand a high mechanical load.• The potential for combining different structures, as required in each particular case.• A high resistance to fire under laboratory tests.• Very low dimensional tolerances, between +0,1 and -0,2 mm. This means that the panels can easily be interchanged.• Cores made of high-performance materials with very high densities.• Compliance with UNE EN ISO 9001, guaranteeing quality controls during each stage of the manufacturing process.• On the top surface, any 60 x 60 ceramic tile by Porcelanosa or other non-ceramic coverings (plastic laminate, linoleum, vinyl, granite, aluminium, steel, carpet, parquet etc)can be used.• Tiles protected by a plastic surround to prevent the edges from breaking.• A wide range of complementary products to ensure a good finish.67


Panels with chipboard coreThey are made of chipboard with a high-performance resin binder. Available in a thickness of 38mm, they feature an aluminum, galvanized steel or plasticlower covering, thus offering slightly different properties to suit each individual case.The panels have a plastic surround to prevent the edges from breaking.Mechanical featuresTable – Technical Properties 38M1A 38M1FTest standard – EN 12825 Type of stringers Type of stringersEdgingPanel 38M1Covering pieceWood panelLower coveringPanel consisting of a chipboard core with a thickness 38 mm with a high-performance resin binder.Lower coating 38M1A:With aluminum sheet of thickness of 0.15 or 0.05 mm to create an excellent barrier against fire and moisture, while forming an equipotential frame to maintain electrical continuityfeatures of the floor.Inside coating 38M1F:To increase the flexural stiffness and the total mechanical resistance, the panel comes with a galvanized steel sheet of thickness of 0.05 mm on the inside. This allows, in addition obtainingan excellent barrier against fire and moisture, while forming an equipotential frame to maintain electrical continuity features of the floor.The perimeter is beaded with anti-crunching plastic material with a thickness of 1 mm of ABS to upper ceramic coating with a thickness of 0.45 mm of ABS to the rest of upper coatings.EdgingU.M. SIN L M P SIN L M PCoverage: A V D G CConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.7 1.7 2.4 2.8 2.3 2.3 2.8 3.1Maximum allowed load centre of side of the panel kN 4.6 4.6 4.8 4.9 6.4 6.4 6.5 6.6Concentrated load at the center of the panel (2.5 mm deflection) kN 2.7 2.7 3.4 3.8 4.0 4.0 4.6 5.1Maximum load allowed in the center of the panel kN 6.7 6.7 6.9 7.0 7.6 7.6 7.7 7.8Uniformly distributed load kN/m 2 14.0 14.0 18.0 22.0 21.0 21.0 25.0 30.0Class according to EN 12825 4 4 4 4 6 6 6 6Coverage: F LConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.9 1.9 2.6 3.0 2.6 2.6 3.2 3.5Maximum allowed load centre of side of the panel kN 4.8 4.8 5.0 5.1 6.5 6.5 6.6 6.7Concentrated load at the center of the panel (2.5 mm deflection) kN 3.0 3.0 3.7 4.1 4.2 4.2 4.9 5.3Maximum load allowed in the center of the panel kN 7.1 7.1 7.3 7.4 7.7 7.7 7.8 7.9Uniformly distributed load kN/m 2 15.0 15.0 19.0 23.0 22.0 22.0 26.0 31.0Class according to EN 12825 4 4 5 5 6 6 6 6Coverage: T R SConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.1 1.1 1.2 1.4 1.8 1.8 1.9 2.0Maximum allowed load centre of side of the panel kN 2.0 2.0 2.0 2.1 4.1 4.1 4.2 4.3Concentrated load at the center of the panel (2.5 mm deflection) kN 2.0 2.0 2.2 2.3 3.0 3.0 3.4 3.5Maximum load allowed in the center of the panel kN 2.4 2.4 2.4 2.5 6.3 6.3 6.4 6.4Uniformly distributed load kN/m 2 8.0 8.0 9.0 11.0 12.0 12.0 13.0 14.0Class according to EN 12825 1 1 1 1 3 3 3 3Note: the breaking load is obtained by multiplying by 2 the maximum load allowed.Physical features (not including coating material):Standard Test U.M. ToleranceNominal size mm -0.1 +0.2 598 x 598600 x 600Thickness mm -0.1 +0.2 38Diagonal difference mm Máx. ≤0.4Slope ºC ±15` 3ºDensity Kg/m 3 ±5% 720Weight Kg ±5% 9.8Transverse electrical resistance EN 1081 Ω Máx. ≤10 1038M1A38M1FFire Resistance EN 13501-2 Clase B flClase B flFire Reaction EN 13501-1 30 30Upper coatingA = Aluminum SheetF = Galvanized steel sheetL = Plastic LaminateV =VinylD = LinoleumG = RubberC = CarpetP = ParquetT = CeramicR = Stone recomposedS = Natural Granite89


Panel 38M2Panel consisting of a chipboard core with a thickness 38 mm with a high-performance resin binder.Lower coating 38M2a:With aluminum sheet of thickness of 0.15 or 0.05 mm to create an excellent barrier against fire and moisture, while forming an equipotential frame to maintain electrical continuityfeatures of the floor.Lower coating 38M2F:To increase the flexural stiffness and the mechanical resistance, it is applied in the panel a sheet of galvanized steel of thickness 0.5 mm on the lower side.This allows, in addition obtaining an excellent barrier against fire and moisture, to form an equipotential frame to maintain electrical continuity features of the floor.The perimeter is beaded with anti-crunching plastic material with a thickness of 1 mm of ABS to upper ceramic coating with a thickness of 0.45 mm of ABS to the rest of upper coatings.Physical features (not including coating material):Standard Test U.M. ToleranceNominal size mm -0.1 +0.2 598 x 598600 x 600Thickness mm -0.1 +0.2 38Diagonal difference mm Máx. ≤0.4Slope ºC ±15` 3ºDensity Kg/m3 ±5% 650Weight Kg ±5% 8.9Transverse electrical resistance EN 1081 Ω Max. ≤10 1038M2A38M2FFire Resistance EN 13501-2 Clase B flClase B flFire Reaction EN 13501-1 30 30Upper coatiA = Aluminum SheetF = Galvanized steel sheetL = Plastic LaminateV =VinylD = LinoleumG = RubberC = CarpetP = ParquetT = CeramicR = Stone recomposedS = Natural GraniteMechanical features:Table – Technical Properties 38M2A 38M2FTest standard – EN 12825 Type of stringers Type of stringersU.M. SIN L M P SIN L M PCoverage: A V D G CConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.5 1.5 2.0 2.4 2.0 2.0 2.4 2.6Maximum allowed load centre of side of the panel kN 3.9 3.9 4.1 4.2 5.4 5.4 5.5 5.6Concentrated load at the center of the panel (2.5 mm deflection) kN 2.4 2.4 3.0 3.4 3.6 3.6 4.1 4.6Maximum load allowed in the center of the panel kN 6.0 6.0 6.2 6.3 6.9 6.9 7.0 7.1Uniformly distributed load kN/m 2 13.0 13.0 16.0 19.0 19.0 19.0 22.0 27.0Class according to EN 12825 2 2 3 3 5 5 5 5Coverage: F LConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.6 1.6 2.2 2.6 2.2 2.2 2.7 3.0Maximum allowed load centre of side of the panel kN 4.1 4.1 4.2 4.3 5.6 5.6 5.7 5.8Concentrated load at the center of the panel (2.5 mm deflection) kN 2.7 2.7 3.3 3.7 3.8 3.8 4.4 4.8Maximum load allowed in the center of the panel kN 6.4 6.4 6.6 6.7 7.0 7.0 7.1 7.2Uniformly distributed load kN/m 2 14.0 14.0 17.0 20.0 20.0 20.0 23.0 28.0Class according to EN 12825 3 3 3 3 5 5 5 5Coverage: T R SConcentrated load centre of side of the panel (2.5 mm deflection) kN 0.8 0.8 0.9 1.1 1.3 1.3 1.4 1.5Maximum allowed load centre of side of the panel kN 1.7 1.7 1.7 1.8 3.3 3.3 3.4 3.5Concentrated load at the center of the panel (2.5 mm deflection) kN 1.8 1.8 1.9 3.1 2.4 2.4 2.5 2.6Maximum load allowed in the center of the panel kN 2.1 2.1 2.1 2.2 5.0 5.0 5.1 5.2Uniformly distributed load kN/m 2 7.0 7.0 8.0 10.0 10.0 10.0 12.0 13.0Class according to EN 12825 - - - - 2 2 2 2Note: the breaking load is obtained by multiplying by 2 the maximum load allowed.1011


Panels with calcium sulfate coreIt consists of a mineral soul of a single layer based on calcium sulfate of high density. It can be found in thicknesses of 15, 29 and 34 mm and with lowercoating of aluminum or galvanized steel. As in the wood panels, the perimeter of all the panels has a plastic surround to prevent the edges from breaking.Mechanical features:Table – Technical Properties 30SA 30SFTest standard – EN 12825 Type of stringers Type of stringersPanel 30SPerimeter protectionUpper coatingCalcium sulphate coreLower coatingIt is formed by a core of mineral of a single layer based of calcium sulfate, high-density 30 mm thickness, with a high-performance resin binder and completely free of wood particles.Lower coating 30SA:With aluminum sheet of thickness of 0.15 or 0.05 mm to create an excellent barrier against fire and moisture, while forming an equipotential frame to maintain electrical continuityfeatures of the floor.Lower coating 30SF:To increase the flexural stiffness and the total mechanical resistance, the panel comes with a galvanized steel sheet of thickness of 0.5 mm on the inside. This allows, in addition obtainingan excellent barrier against fire and moisture, while forming an equipotential frame to maintain electrical continuity features of the floor.The perimeter is beaded with anti-crunching plastic material with a thickness of 1 mm of ABS to upper ceramic coating with a thickness of 0.45 mm of ABS to the rest of upper coatings.Perimeter protectionU.M. SIN L M P SIN L M PCoverage: A V D G CConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.8 1.8 2.6 3.0 3.0 3.0 3.9 4.5Maximum allowed load centre of side of the panel kN 2.6 2.6 2.7 2.8 4.9 4.9 5.0 5.1Concentrated load at the center of the panel (2.5 mm deflection) kN 2.8 2.8 3.6 4.0 4.4 4.4 4.9 5.2Maximum load allowed in the center of the panel kN 4.1 4.1 4.3 4.5 8.2 8.2 8.3 8.4Uniformly distributed load kN/m 2 15.0 15.0 19.0 23.0 21.0 21.0 24.0 29.0Class according to EN 12825 1 1 1 1 4 4 5 5Coverage: F LConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.9 1.9 2.7 3.1 3.1 3.1 4.0 4.6Maximum allowed load centre of side of the panel kN 2.7 2.7 2.8 2.9 5.0 5.0 5.1 5.2Concentrated load at the center of the panel (2.5 mm deflection) kN 3.1 3.1 3.9 4.2 4.6 4.6 5.2 5.5Maximum load allowed in the center of the panel kN 4.2 4.2 4.4 4.6 8.4 8.4 8.5 8.6Uniformly distributed load kN/m 2 16.0 16.0 20.0 25.0 23.0 23.0 26.0 31.0Class according to EN 12825 1 1 1 1 5 5 5 5Coverage: T R SConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.4 1.5 1.6 1.7 1.6 1.6 1.8 1.9Maximum allowed load centre of side of the panel kN 2.1 2.1 2.1 2.2 2.2 2.2 2.2 2.3Concentrated load at the center of the panel (2.5 mm deflection) kN 2.4 2.5 2.6 2.7 2.6 2.6 2.7 2.9Maximum load allowed in the center of the panel kN 3.0 3.0 3.1 3.1 3.1 3.1 3.2 3.3Uniformly distributed load kN/m 2 10.0 10.0 11.0 13.0 11.0 11.0 12.0 14.0Class according to EN 12825 1 1 1 1 1 1 1 1Note: the breaking load is obtained by multiplying by 2 the maximum load allowed.Physical features (not including coating material):Standard Test U.M. ToleranceNominal size mm -0.1 +0.2 598 x 598600 x 600Thickness mm -0.1 +0.2 30Diagonal difference mm Máx. ≤0.4Slope ºC ±15` 3ºDensity Kg/m 3 ±5% ≥1.500Weight Kg ±5% 16.2Transverse electrical resistance EN 1081 Ω Max. ≥10 730SAFire Resistance EN 13501-2 Clase B flClase B flFire Reaction EN 13501-1 30 3030SFUpper coatiA = Aluminum SheetF = Galvanized steel sheetL = Plastic LaminateV =VinylD = LinoleumG = RubberC = CarpetP = ParquetT = CeramicR = Stone recomposedS = Natural Granite1213


Panel 15KConsisting of mineral support material with a layer of inert nominal thickness 12.5 mm.Upper coating consisting of whole stone of natural stone materials (marble or granite), nominal thickness of 20 mm, rectifying, polishing and chamfering.The elaboration of the panel includes the rectification of precision to ensure the dimensional tolerances in both the perimeter and the thickness of the panel, to ensure a perfect modularity.Lower coating 15kf:To increase the flexural stiffness and the total mechanical resistance, the panel comes with a galvanized steel sheet of thickness of 0.5 mm on the inside. This allows, in addition obtainingan excellent barrier against fire and moisture, while forming an equipotential frame to maintain electrical continuity features of the floor.The perimeter is beaded with anti-crunching plastic material with a thickness of 1 mm of ABS to upper ceramic coating with a thickness of 0.45 mm of PVC to the rest of upper coatings.Physical features (not including coating material):Standard Test U.M. ToleranceNominal size mm -0.1 +0.2 594 x 594Thickness mm -0.1 +0.2 12.5Diagonal difference mm Máx. ≤0.4Slope ºC ±15` 4ºDensity Kg/m 3 ±5% ≥1.100Weight Kg ±5% 4.8Upper coatiS = Natural GraniteTransverse electrical resistance EN 1081 Ω Máx. ≥10 715KFFire Resistance EN 13501-2 Clase B flFire Reaction EN 13501-1 30Mechanical features:Table – Technical Properties15KFTest standard – EN 12825Type of stringersU.M. SIN L M PCoverage: SConcentrated load centre of side of the panel (2.5 mm deflection) kN 1.4 1.4 1.6 1.8Maximum allowed load centre of side of the panel kN 4.1 4.1 4.2 4.3Concentrated load at the center of the panel (2.5 mm deflection) kN 2.4 2.4 2.6 2.9Maximum load allowed in the center of the panel kN 4.9 4.9 5.0 5.1Uniformly distributed load kN/m 2 12.0 12.0 14.0 17.0Class according to EN 12825 3 3 3 3Note: the breaking load is obtained by multiplying by 2 the maximum load allowed.1415


StructureThe structure is made up of pedestals and stringers, which support the floor covering and ensure the necessary height and rigidness.PedestalsThe pedestal is available in two versions:Pedestals100% galvanised steel structure. This pedestals dictate the floor height according to theproject requirements. Each pedestal incorporates a series of plastic noise-reduction headsfitted with four positioning lugs.One of the main advantages of the pedestal system is that it is fitted with a 14 mm threadedbolt that can be adjusted to accommodate different floor height requirements.StringersLike the pedestals, the stringers are made entirely of galvanised steel. Their main functionis to increase the strength of the floor. They are covered with special noise-reduction strips.• Version with screw-in fitting for reduced height (nominal values of 55.70 and 85• Version with tube for higher heights (from 100 mm nominal).In both versions, the pedestal is made entirely of galvanized steel (minimum thickness of3μ, white color) on all surfaces (both visible as not) and including the cut parts by galvanizingbath based of ions Cr3 + electro deposited.Model (nominal height) 055 070 085 100 130 150 190 220 ÷ 620Versions with screw-in fitting with tubeNominal height mm 55 70 85 100 130 150 190Nominal range of height adjustment mm ± 10 ± 15Permissible axial load with safety factor 2(ref. UNE EN 12825)(*)-15+20± 20 ± 30-30+35from 220 to 620 mmwith 40 mm step± 40 ± 50kN 40 30 25 22 21 20.5 20 20(*): The allowable axial load is given to the first deformation. The breaking load or collapse load is obtained by multiplying the permissible axial safety factor equal to 2.The nominal heights and the way of the pedestals have been selected for greater overlap between two successive pedestals using a long screwed bolt.Because of this, it has obtained a greater range of height adjustment for each type of pedestal (nominal - / +50 mm) with the ability to better adapt to the unevenness of the floor, withoutresorting constantly to systematic measurements.From the point of view of performance, it presents a high resistance to bending vertical load and / or eccentric, thanks to a screwed bolt M16 section, a tube of diameter 20 mm of thicknessof 2 mm, internally calibrated to obtain a coupling with smaller tolerances and therefore less spaces and a direct connection between the screwed bolt of the disc base and tube, withoutneed of interposing deformable plastic elements.To ensure electrical continuity of the pedestal, the base disc has been drilled to accommodate the screw and nut for electrical connection.In the disc of base have been added 4 holes of 8,5 mm and 3 holes of 6,5 mm, at the height of the radial nerves, to enable and facilitate the injection of fluid adhesive on the back of thebase when the pedestal is already installed.When necessary, and with a simple intervention without special tools, the structure offers the possibility to adjust the height of the pedestal shortening the tube if necessary.>100 mm


psa pedestalsIt is supplied in a unique version with adjustment under the head to cover a range of nominal heights of finished pavement of a minimum of 110 mm up to 500 mm.The nominal height of the finished pavement is achieved by adding the thickness of the panel to the nominal height of the pedestal. The pedestal is made completely of steel with galvanizedsuperficial treatment of minimum thickness of 3μ by galvanizing bath based on chromium ions electro deposited, applied to all surfaces.The pedestal consists of two main elements: the head riveted to the screwed bolt and base disc riveted to the tube.The pedestals are supplied with joints to the head, semi-rigid plastic printing, black, conductor, carrying an anti vibration function of air sealing and centering of the panel.Model (nominal height) 75 95 130 170 200 260 310 360 410VersionsWith adjustment under the headNominal height mm 75 95 130 170 200 260 310 360 410Nominal range of height adjustment mm ±15 ±15 ±30 ±30 ±30 ±40 ±40 ±40 ±40Permissible axial load with safety factor 2(ref. UNE EN 12825)(*)kN 70 70 70 68 65 60 48 35 26(*): The allowable axial load is given to the first deformation. The breaking load or collapse load is obtained by multiplying the permissible axial safety factor equal to 2.It recognizes that the raised technical floor has obtained the certification PSA Medium Grade with the following settings:• 35SF panel• Structure with pedestal of nominal height of 410 mm, set at a maximum height of 450 mm, and stringers of type “P”.Therefore, for heights higher to 450 mm and with panels or other structures, the obtained certification is not applicable.Overview of the pedestalThe following is an overview of the pedestal above mentioned.1819


ReferencesKEA Description SAP KEA Description SAPB80305602 PEDESTAL H = 55 MM (-10/+10) 100091646B80305598 PEDESTAL H = 500 MM (-50/+50) 100091644Joints to head of pedestalJunta para la cabeza del pedestal, de plástico semirrígido estampado, no conductora (resistencia eléctrica R>1010 Ohm) de color negro opaco, espesor nominal 2,5mm, y de forma cuadradacon ángulos redondeados. Cada ángulo está provisto de un diente de agarre para centrar y enganchar al cabezal de la base de sujeción. En la parte superior, está provista de cuatrodientes para el posicionamiento y el centrado de los paneles. La junta actúa también atenuando los ruidos. Su peso nominal es 5 gr.B80305609 PEDESTAL H = 70 MM (-15/+15) 100091649B80305605 PEDESTAL H = 85 MM (-15/+20) 100091650B80305614 PEDESTAL H = 100 MM (-20/+20) 100091624B80305606 PEDESTAL H = 130 MM (-30/+30) 100091625B80305589 PEDESTAL H = 150 MM (-30/+35) 100091079B80305612 PEDESTAL H = 190 MM (-40/+40) 100091626B80305599 PEDESTAL H = 220 MM (-50/+50) 100091627B80305608 PEDESTAL H = 260 MM (-50/+50) 100091628B80305601 PEDESTAL H = 300 MM (-50/+50) 100091629B80305600 PEDESTAL H = 340 MM (-50/+50) 100091640B80305615 PEDESTAL H = 380 MM (-50/+50) 100091641B80305604 PEDESTAL H = 420 MM (-50/+50) 100091642B80305607 PEDESTAL H = 460 MM (-50/+50) 100091643B80305603 PEDESTAL H = 540 MM (-50/+50) 100091645B80305613 PEDESTAL H = 580 MM (-50/+50) 100091647B80305616 PEDESTAL H = 620 MM (-50/+50) 100091648B80305584 PEDESTAL H = 75 MM (-15/+15) PSA 100090839B80305374 PEDESTAL H = 95 MM (-15/+15) PSA 100084397B80305266 PEDESTAL H = 120MM (-30/+30) PSA 100072166B80305272 PEDESTAL H = 130MM (-30/+30) PSA 100072716B80305265 PEDESTAL H = 150MM (-30/+30) PSA 100072167B80305273 PEDESTAL H = 170MM (-30/+30) PSA 100072717B80305375 PEDESTAL H = 310MM (-40/+40) PSA 100084396B80305351 PEDESTAL H = 420MM (+50/-50) PSA 100082735B80305352 PEDESTAL H = 460MM (+50/-50) PSA 100082736Joints to head of PSA pedestalSemi-rigid plastic stamped in black, conductive electrical resistance R


Stringersbutech can supply two different types of stringers:• Basic stringer of orthogonal direction connection (versions “L”, “M” or “P”);• Additional stringers of diagonal direction connection (versions “D” or “X”).All stringers are produced by cold stamping galvanized steel sheet (minimum thickness of 3μ),with special profile and are designed to improve mechanical endurance and ensure reduced tolerancesof modules and the ease of exchange them.Its blockage in the radios by auto-tapping metric screws ensures the electric continuity of thesystem and gives a great stability to the structure.Stringers version “P”. Heavy.Heavy Stringer (“P”) has obtained a special profiling of galvanised steel which increases its performance with respect to the “L” and “M” models (material: Dx51D + Z150 according to EN10142 with minimum thickness 15μ hot dip galvanizing). They are closed section (30 mm wide, 30 mm high and 1 mm thick) and 600 gr. weight. The ends are fitted with a system ofspecial hook that allows optimum and fast placement on the radii of the head of the pedestals. The stringer is equipped with a hole for the ground connection.Stringers version “L” (light)Lightweight Stringer (“L”) has been obtained by means of stamping cold from galvanized steelsheet (material Dx51D + Z 150 according to EN 10142 with minimum thickness 15 μ hot dipgalvanizing). They are opened section (30 mm width, 21mm height, 0.8 mm thick) and 220 gr.weight. The stringer is equipped at both ends with the “snap-on” system, a system of special hook that allows optimum and fast placement on the radii of the head of the pedestals, thatensures electrical continuity of the system.Stringers version “M” (medium)Nominal amount 5,7 pz/m 2The screws, made of galvanized steel, are used to connect the STRINGER at the head of theKEA Description SAPNominal amount screws 11,4 pz/m pedestal to give greater security and stiffness to the system stiffness.Stringer section P 30x30x1 mmLengthVARIABLEUnit Weight580 grNominal amount 5,7 pz/m 2Nominal amount screws 11,4 pz/m 2Stringer section L30x21x0,8 mmStringers of diagonal connection (version “D” or “X”)All the stringers are supplied with special joints of black extruded plastic with anti vibration function and air tightness. They do not have sharp edges, especially dangerousduring handling and assembly, which may damage the plastic covering to pass underneath.LengthVARIABLEUnit Weight220 gr.Nominal amount 5,7 pz/m 2Nominal amount screws 11,4 pz/m 2Stringer section D20x40x1 mmLength792 mmUnit Weight0,73 KgNominal amount 2,8 pz/m 2Nominal amount screws 5,6 pz/m 2Stringer section X20x40x1 mmLength368 mmUnit Weight0,34 KgNominal amount 11,1 pz/m 2Nominal amount screws 22,2 pz/m 2Stringer section M30x38x0,8 mmReferencesScrews for stringers L/M/P types of structureLengthVARIABLEUnit Weight390 grMedium Stringer (“M”) has been obtained by means of stamping cold from galvanized steel sheet (material: Dx51D + Z 150 according to EN 10142 with minimum thickness 15 μ hot dipgalvanizing). They are opened section (30 mm wide and 38 mm height, 0.8 mm thick), and 390 gr. weight. It has longitudinal nerves, present also in the vertical sides and the laps of thebottom side, to increase benefits with respect to bending, in comparison with the previous type “L”, and improve the way to control the deformations. In addition to the hole for the groundconnection, the ends are equipped with the system of special hook “snap-on” that allows optimum and fast placement on the radii of the head of the pedestals for the lock with screw,ensuring in that way, electrical continuity of the system.B80305592 tornillos para travesaños l/m/p 100091083B80305617 travesaño ligero 598x598 100091655B80305618 travesaño medio 598x598 100091659B80305232 travesaño pesado 598X598 1000718992223


Joint for stringersExtruded black plastic, thickness of 1 mm, non-conductive, anti vibration function and air tightness. The joint is applied in the stringer with a simple hand pressure.Types of structureThe structure offers several configuration options that can be performed using both orthogonal and diagonal stringers, increasing the mechanical stability and capacity of thepavement. Such stringers are used light, medium and heavy which are placed in the radii of the head of the pedestals. The diagonal stringer D or X (stringers shape) can be usedwith any orthogonal stringer (L, M or P).Joint for stringers type L, M and PSection dimensionsNominal length30x8 mm546 mmNominal amount 5,7 pz/m 2ConfigurationConfiguration perimeter zonesJoint for stringers type X and DType SWithout stringersRange 55 ÷ 620 mm.Type DSection dimensions20x8 mmNominal length783 mmNominal amount 2,8 pz/m 2Type XType LLight stringers.Range 55 ÷ 620 mm.Section dimensionsNominal length20x8 mm358 mmNominal amount 11,2 pz/m 2Type MMedium stringers.Range 55 ÷ 620 mm.ReferencesKEA Description SAPB80305234 junta de travesaños PSA 100071897B80305591 junta de travesaños l/m/p 100091082Type PHeavy stringers.Range 55 ÷ 620 mm.2425


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Sound proofing properites of RAFA room’s soundproofing capacity depends on the soundproofing properties of each of its components, including the floor.The factors that influence a RAF’s soundproofing capacity are the material that the top covering is made of, the material of the core and its density, and the height of the plenum.butech’s RAFs are made of ideal soundproofing materials with the right densities to guarantee the best soundproof protection, with cores with a density of up to 1.500 kg/m 3 .To ensure maximum comfort and good soundproof protection, butech conducts rigorous soundproofing tests of its <strong>floors</strong>, in accordance with DIN 52210. This standard analyses fourdifferent cases: protection against airborne noise, impact noise, horizontal airborne noise and vertical airborne noise.Horizontal transmission of noiseIn the data presented are the steps taken in a real building in accordance with current regulations (EN ISO 140-12), to assess the effect of reduction of the floor of modular <strong>access</strong> in relation to the horizontal transmission ofaerial noise ( or how a person on a floor of a building perceives the ambient noise present in an adjacent floor).In this case, measures are taken with a modular <strong>access</strong> floor already installed. The noise pressure levels are takenin the two adjacent <strong>floors</strong> and the horizontal aerial noise attenuation expressed by the norm of the parameterDnfw, measured in dB (decibels).The higher the value the greater the reduction in relation to the object to be tested and therefore the greater thereduction in aerial noise transmission from one floor to the adjacent.The following data were collected from the panels:The first diagram shows the values of Dnfw obtained in different structural configurations panels 38M1A and35SA. The observed conditions differed depending on whether there were stringers or not, if there was a noiseinsulation sheet placed between the substrate and the tile, and if it was adhered or not (it is required to paste the pieces that have been installed without stringers). On the other hand, itwas also considered installing an acoustic partition under the floor.NOTE: The height of the supports was 300 mm for all configurations.Attenuation of horizontal aerial noise (D nfw) depending on <strong>access</strong> floor configuration42403836343230282634 36 34 36 29 29 3436373824Structure without stringersStructure with stringersStructure P with acoustic insulationsheet without stickStructure P with acoustic insulationsheet stuckThe same as previous situation+ acoustic partition underthe floorThe table below allows obtaining the dB correction factors, which need to be added or removed for panels with multiple covers, starting with those without coating (those listed in thefirst table).Type of coatingCorrection factor [dB]Vinyl (V), rubber (G), linoleum (D) 1Laminate (L), Steel (F) -1Natural stone (S) and reconstructed (R), Gres (T) -1Parquet (P) 02829


The correction factors in dB, which are necessary to obtain the corresponding data for 38M2A panels (of 38M1A) and 30SA (of 35SA) are shown in the table below.Type of coatingCorrection factor [dB]Calcium sulfate 30S -1Chipboard 38M2 0Natural stone (S) and reconstructed (R), Ceramic tile (T) -1Finally, the correction factors in dB are shown below for obtaining panel data with a lower cover in steel instead of aluminum.Type of coatingCorrection factor [dB]Steel (F) 0Vertical transmission of noiseIn the presented data are the steps taken in a real building in accordance with current regulations (EN ISO 140-8),to evaluate the effect of reducing the modular <strong>access</strong> floor in relation to the transmission of noise surface of thepanel (or how a person in a . floor of a building perceives the noise present in an upper floor). In this case, measuresare taken first without the modular <strong>access</strong> floor in order to determine the features of the building itself. Thesame measures are taken then with the modular <strong>access</strong> floor already installed. The measurements are recordedfor the description of the differences of the effect of the added element (modular <strong>access</strong> floor). We present thetest results of impact noise reduction panel expressed by the parameter ALW measured in dB. The higher thevalue the greater the reduction in relation to the object to be tested and therefore the greater the reduction inthe transmission of noise when walking on the floor that is transmitted to the lower floor.The following data were collected from the panels:The first diagram shows ALw values obtained in different structural configurations, and panels 38M1A and 35SA.The observed conditions differed depending on whether there were stringers or not, if there was a noise insulationsheet placed between the support and the tile and if it was stuck or not (required to stick the pieces havebeen installed without stringers).NOTE: The height of the supports was 300 mm for all configurations.Vertical impact noise attenuation (ΔLw) depending on the configuration of the <strong>access</strong> floor36343230282624363422201821 21 23 23 2525 28 2834 3416Structure without stringersStructure with stringersStructure P with acoustic insulationsheet without stickStructure P with acoustic insulationsheet stuckThe same as previous situation+ acoustic partition underthe floorThe table below allows obtaining the dB correction factors, which need to be added or removed for panels with multiple covers, starting with those without coating (those listed in thefirst table).Type of coatingCorrection factor [dB]Vinyl (V), rubber (G), linoleum (D) 2Laminate (L), Steel (F) 1Natural stone (S) and reconstructed (R), Gres (T) -2Parquet (P) 13031


The correction factors in dB, which are necessary to obtain the corresponding data for 38M1A panels and 30SA are shown in the table below.Installation of RAFType of coatingFactor [dB]General informationCalcium sulfate 30S -2Chipboarda 38M1 -1Finally, the correction factors in dB are shown below for obtaining panel data with a lower cover in steel instead of aluminum.Type of coatingFactor [dB]Steel (F) -1The first stage of the installation begins with the definition of the two initial orthogonal axes, previously agreed with the Director of Operations and / or verifiable tracings or drawings.Theoperation is carried out by attaching to the walls, a pair of orthogonally twisted nylon threads, at a height slightly higher than the system where it will be installed. To determine the angle(90 °) of the two threads use the Pythagoras Theorem or simply 3-4-5 formula: starting at the crossing of the two threads, that delimits 3 m. in one and 4 m. in the other. The diagonalbetween the 2 points should be 5m. (The larger the diagonal, the smaller the margin of error).Installing a structure without stringersThe four pedestals must be completed with joints and already be leveled according to the altitude.Place the first panel so that one corner is perfectly placed at the point where the threads cross (the position in terms of height can be obtained using a bubble level or laser level.Note: before placing the pedestals, apply glue to the base to ensure that the pedestals are fixed firmly to the floor.Continue installing the other pedestals; fill them with joints, and its related panels, aligning with one of the two threads of reference. Always check that the panels are installed at thecorrect height and that the glue covers the base to ensure that the entire base is firmly fixed.Continue placing the parallel rows of panels, using the same method described above, until all the inside panels have been installed. Be particularly careful about making sure the panelsare at right angles, lined and flat.To ensure that all panels form a smooth surface, it is important not to disturb the floor during installation and for a minimum of 24 hours after the glue has been applied, the minimumtime required for fixing the glue properly.NOTE: All supports must have joints.Installing the stringers structureStarting at the points where the two octagonal threads cross and aligning with them, install and screw in the different components of the structure, pedestals, stringers and screws.Place the first wood panel so that one corner is perfectly placed at the point where the threads are crossed, then set the second panel being careful to align with the reference panel.Continue placing panels in parallel with nylon threads until all panels have been placed, ensuring that all panels are at right angles, lined and flat.All pedestals and stringers must have joints.When Installing floor over 500 mm. of high it is advisable to fix pedestals to concrete slab with glue (taking care not to disturb the floor at least 24 hours after being applied).Installation in perimeter zoneWith structures of stringers, cut the stringers of perimeter to the required measure, fixing them with the proper screws and adjusting to the required height pedestals (the hole at the endof the stringers-cutting can be done directly with fixing screws). Cover the stringers and pedestals with joints which have been cut to size.Finish the floor cutting all the panels to the correct perimeter at correct measure, making sure that follow the shape of the wall perfectly. One of the simplest ways to do this is by placingthe panel that needs to be cut next to the row adjacent to the perimeter, using a separator ribbon panel, pass through the wall, supporting a pencil in the separator so that the exact partto be cut can be marked.When so requested, it is possible to apply a layer of varnish to act as anti-dust protection on the sides of the molded panels.3233


Installation designSuggested procedureBolting the design dimensions is possible to draw a grid floor installation.• The grid is drawn according to strict procedures with regard to customer requirements that are stipulated in the contract for the installation (for example with a 45o installation, oraccording to a principal axis, or a project reference, etc. .).• If no such indications, the grid should be positioned by calculating the minimum possible waste and avoiding small perimeter panel sections, setting initial two orthogonal axes.• To place them correctly, you should cut all perimeter panels. D• Avoid adjust complete panels to the perimeter walls if the walls are not perfectly linear, and therefore do not offer enough support or assurances that the panels are aligned properly.When possible, avoid close perimeters with panels less than 150 mm size, because they are less stable.• This procedure of graphic design can be carried by placing a sheet of paper with a squared tracing to the same scale on a map of the area or, alternatively, using a computer programdesign. This procedure is extremely important to install the panels properly as it allows the necessary amount of material is determined and shown to planners and installers theposition of the pedestals and, thus, where the systems themselves fit.• To make the system easier to fit, it is also possible to trace the design of the floor in advance and thus mark the position of the pedestals with paint color.• This procedure can be carried out in different ways, but always in multiples of 600 mm.• It is often advisable to trace the surface with a suitable anti-dust varnish, usually vinyl or polyurethane. This serves to fix the concrete surface of the slab and prevent accumulation ofdust. This varnish is essential when the floor is to be used for air conditioning. This varnish is essential when the subfloor is to be used for air conditioning. To ensure that the concreteslab is painted correctly, it must be thoroughly cleaned. After its application is advisable to let the varnish dry for a day at least. The procedure of varnishing will be faster and moreefficient if done before the installation system is installed. It is necessary to ensure that the anti-dust varnish is compatible with the adhesive used to attach the supports. Any dirtor dust appeared of the work in the floor can be removed using a vacuum cleaner.Assembly sequenceWorking procedure1. The correct assembly sequence is:2. Check the status of progress of the construction site.3. Check the installation’s design follows the lines of the tracing.4. Install high technical floor.During the installation procedure is necessary:• Decide the best assembly sequence for any interior wall or false ceiling.• Limit <strong>access</strong> to the area. If adhesives are used for fixing the panels to the structure, the panels should not be stepped on at least 48 hours after the placement has been completed.• Maintaining <strong>access</strong> to the building site and the building where the floor is being installed free of obstacles, so that materials can be unloaded near the place or lifting equipment.• Maintain the horizontal <strong>access</strong> to the area and free obstacle lifting devices to facilitate transportation between pallets.• Ensure clear routes for trucks of pallets to transport materials for the zone can be efficiently carried out.• Stipulate by contract the features and use of lifting devices for vertical transport.• The raised technical floor should be formally approved as soon as it has been installed in each individual environment, before any protection and coating are applied and in any casebefore any other operation by the employees of the installation.3435


General site conditionsGeneral informationThe in-situ inspection allows that the general conditions of the place, the dimensions of the installation area, floor level, and / or correspondence from the planimetryTo gather any additional information and useful details for proper installation, in-situ inspection must be performed by authorized personnel from the workplace, including:• Customer.• Director of operations.• Foreman of the place.Required informationPallet of 60x120 with cardboard protection.Average height 120 mYou need the following information:• The structure and shape of the perimeter walls.• A clear definition of the devices used to transport between building <strong>floors</strong> (e.g. trucks, road trains, etc.)..• The method used to download material (crane, tower crane, forklift ...) and the work involved.• The method of transport to be used to transport material within the installation area (crane, hoist, etc.)..• The dimensions and sizes must be compatible with the methods of transportation.• The height of the floor must be the indicated on the final draft.• Predisposition of an area for collecting material to dispose.• The presence of pipes that alter the hygrothermal parameters.It is recommended to isolate all sources of heat and provide an adequate ventilation system fitted with bars to ensureconstant environmental conditions.• The condition of the construction operations of the wall. All wall construction must be completed at least 60 days prior to installation; the activities of other operators should becompleted at least 30 days prior to installation.• The condition of the installation of windows and doors frames. The sizes and dimensions must be compatible with the transport devices when using a crane.• The condition of the concrete slab.• Compatibility with anti-dust products (if applicable) with the adhesive glue used to attach the pedestals.Pallet of 60x120 with cardboard protection.Average height 120 mGeneral site conditions• The state of the place of work of construction.• The construction zone should be cleared of all materials of <strong>access</strong> and to be clean before starting the installation. No worker or installer that is not one of those who work in installingthe floor should have <strong>access</strong> to the area.• Distribution of service. All service installations must comply with the design of the floor and take into account the overall dimensions of all components.• Specifications related to the installation of the floor level. The floor level of <strong>access</strong> must be clearly indicated by the Director of Operations. The floor level compatibility with anyeventual external constraint must be defined before starting the installation, all restrictions must be clearly communicated in the installation contract.• The presence of transport routes for the relocation of material.NOGeneral storage conditionsGeneral informationThe environments where technical raised floor is to be installed must be checked beforehand to ensure their suitability.Recommended parameters are:• The Environment should be dry and have sealed windows and door frames.• The level of moisture and temperature of storage should comply with the specifications described on the packaging.• The packaging must be handled with appropriate means of transport, such as pallet, etc…• It is not advisable to stack the box.• The packaging should be protected from impacts.• Store away from heat sources.• Store near the area in which to settle the floor.• Do not unpack the materials unless strictly necessary. When unpacking, be careful when handling components to avoid damage and to ensure traceability.• Follow the manufacturer’s instructions that are on the packing.The pallets can be stacked and transported by truck standarforklifts or pallet trucks.YES3637


Installation of finishes of perimeter.The finish on the perimeter, where no spikes against a wall, made of chipboard covered with tape on both sides of melanin, closes the perimeter area is visible and can be placed with ametal in an “L”. In some cases, for example, when the difference in height between the <strong>floors</strong> is less than 17 cm, can also be used as a step.When you set the position where the steps are to be installed, it is necessary to remove the pedestals 4.5 cm. and align with the axis of the panels. At this point, place the board that actsas a lift against the axis of the panels and adjust it to the slab using screw caps and supports.Perimeter boards are installed at the same height as the floor have an aluminum corner that can be easily fixed with wood screws and cover the thickness of the board itself and completeit from an aesthetic standpoint.<strong>Raised</strong> <strong>access</strong> flooring for exteriorsThe raised <strong>access</strong> floor (RAF) system for terraces has been specially created to provide an aesthetic solution for terraces containing unsightly drainage slopes.By building a completely flat floor over the existing terrace floor, these slopes are conveniently hidden underneath.Height deviations are offset with height-adjustable plots and any accumulated water is drained through open joints on the newly paved surface and thenchannelled down the terrace’s waterproofed slopes to the drain.Advantages• The system can be used to create a flat paved surface over sloping masonry <strong>floors</strong> with height deviations of up to 2%. Any height deviations over 2% will need to be corrected withmortar or with wedges.• The creation of an air void under the newly paved surface generates a continuous flow of air through the pavement joints, which prevents the build-up of condensation and alsoproduces an insulation layer.• The under floor void, can also be used to house cables, pipes, etc.• Easy to <strong>access</strong> this space under the floor (do not use P-404 to bond tiles and plots in areas where you need to <strong>access</strong> the services underneath and be able to have space to work on it).• The cavity between the raised floor and the living area below also helps to reduce the penetration of noise into the home.• The system is quick to install as the tiles and supports are installed at the same time.• Advantages of PORCELANOSA Grupo pavement: Easy to clean, low dimensional tolerances, wide variety of finishes, hardness, etc.3839


The external RAF is an over-raised type of pavement developed by PORCELANOSA Grupo used for terrace covering and external areas. This type of over-raised pavement allowsflat surfaces on exterior supports that have slope, improving the aesthetic vision, the waterproofing and the drainage.It is a type of over-raised pavement with special ceramic tiles that are arranged on plastic PVC plots of adjustable height, so that a hollow space is determined between the support andthe floor tiles.The elements that make up this system are as follow:Outdoor tiles to RAF for exteriorPORCELANOSA Grupo ceramic pieces.The external RAF ceramic tiles consist of two porcelain stoneware slabs or technical porcelain stoneware by PORCELANOSA Grupo astuck with hot melt reactive to moisture.They are made with a sufficient thickness to withstand the breaking load demanded on these over-raised pavements.Thus, its main technical features are as follow:• Format: variable.• Thickness: between 20 mm and 30 mm approx.• Water absorption up to 9.8 kN.• Resistance to chemical attack: UAThese porcelain stoneware slabs or technical porcelain stoneware by PORCELANOSA Grupo are manufactured with needed thickness to withstand the breaking load indicatedabove, which does not mean that on heavy shock or falls of heavy objects cannot produce the breaking of the same.Structure of RAF for exteriorPlots with adjustable height.These plots, made of weatherproof plastic, are the support on which the ceramic tile of external RAF rests. They determine the height of the system and width of the joint between slabs.This element consists of the following parts:• Plot base: Large diameter base that distributes the weight on the support system.• Adjustable height rod that allows adapting height of the plot to the needs of the pavement over-raised.• Head: It is where the extrernal RAF rests. It has 4 dividers that determine joints of placement of a width of 4 mm.The total height of the plot can be adjusted for different adjustable heights.Plots properties• Manufactured by thermo-injection.• Colour: black.• Base of the material: polypropylene with mineral calcium carbonate side.• Technical stability (-25ºC + 120ºC).• Dimensional stability.• Mechanical average capacity to compression (up to 1,200 kg / unit).• Resistant to aqueous solutions of inorganic salts, acids and alkalies.• Resistant to most organic solvents as alcohol, esters and ketones.• Resistant to commercial detergents and bleach solutions.• Resistant to microorganisms for not being cultivation ground for these.• It does not punch the waterproofing sheets or thermal insulations.• Plots come marked with the slope to compensate (1% or 2%) and the installer willpoint the distinctive flange towards the drain. This flange determines the maximumheight, which has to point towards the drain.• In angle or wall areas, top support flanges can be cut off to make the finishes fixingeasier.• Not resistant to oxidizing substances as nitric or sulfuric acid and halogenated hydrocarbonsolvents such as gasoline.• Finishes of surfaces which allow the installation of plots:--Mortar compression layers.--Chlorine Rubber primers.--Butyl fabrics.--Auto protected asphalt fabrics.--Directly on the thermal insulation (extruded polystyrene with density ≥ 25kg/m3).--Sheets of PCV and TPO.--Folding of common brick.• Prohibited its installation:--in its entirety in facilities of animals such as pigs farms, etc.--in facilities where there is road traffic (cars, trucks, etc.).--on chippings, cellular concrete, directly on the ground and on not protectedasphalt sheets.4041


Installation of RAF for exteriorThe weft of ceramic tiles is determined by the position of the plots. The external RAF slabs rest on these placed on the four corners of the tile, at least, although other positions may beplaced depending on the format size. Plot consumption per m2 depends on the chosen format.The plots are fixed to the support using polyurethane adhesive (P-404). Similarly, and to avoid the tiles shaking, they are adhered to the plot.This system is adapted to the needs of each customer, so in that way and from the project data, butech adapts the external RAF to the particularities of each project.This position ensures good stability to the system and allows greater flexibility in the design of the ceramic weft, and it can design placements with catch joint.The plots are to be placed on a solid support and a maximum gradient of 2%. For indoors, the support must be covered by a waterproof sheet, while outdoors, where no waterproofingsystem is required, the plots may rest directly on the support, if it is solid and stable, with the flap fitted directed toward the drain.This type of pavement in terraces avoids the need of cement mortar screeds for subsequent placement of cement-based tile adhesive. This system avoids the disadvantages of terraces thatmay arise from the traditional placement of direct adhesion. The problems arising from variations in temperature, structural settlements or poor performance of the flooring are eliminated.It also allows obtaining additional benefits as a convenient <strong>access</strong>ibility at any time, allowing correct possible defects in the existing waterproofing and easy start work without theneed for highly specialized, reduced noise transmission and thermal protection of the room beneath the system due to the creation of an air chamber that is in constant ventilation andthe joints between tile and tile 4 mm left open for drainage of water.ReferencesKEA SAP Description HeightB80305010 100005802 basic plot 10 10 mmB80305011 100005803 basic plot 15 15 mmB80305020 100005804 normal plot 50/70 50 - 70 mmB80305021 100005805 normal plot 70/100 70 - 100 mmB80305001 100005794 ultra plot 65/100 65 - 100 mmB80305004 100005797 ultr aplot 100/130 100 - 130 mmB80305003 100005796 ultra plot 130/220 130 - 220 mmB80305005 100005798 ultra plot 220/310 220 - 310 mmB80305006 100005799 ultra plot 310/400 310 - 400 mmB80305007 100005800 ultra plot 400/490 400 - 490 mmB80305008 100005801 ultra plot 490/580 490 - 580 mmAsk for higher heights4243


Dry installation floorNew ceramic pavement system placed dry, without use of adhesives or joints, for indoor use. Quick and easy installation, <strong>access</strong>ible, recoverable, wide range of finishes andminimal maintenance. Quick come into service, once placed it is ready to transit on it.Coating for pavements of dry inside areas in premises of individual or collective use:• Office buildings.• Buildings of public use (administration, culture, museums, cinemas, etc ...)• Shopping centers.• Hotels.• Showrooms.• Shops.Norm Testing method SystemLength598+-0,2 mmWidth598+-0,2 mmUNE 10545-3Thickness16+-0,2mmWater absorption 0,10%Breaking module3,87 MpaUNE 10545-4Breaking strenght3,47 kNDeflection2,5 mmUNE 10545-8 Linear thermal expansion 2,5837E-05Heradness shore (Polyurethane) Method A 92UNE 53130Density (Polyurethane) 1210 kg/m 3Dry installation floorBecause cli-Ker is a lift-up tile system, the tiles can be swiftly and easily changed if needed.The tiles click into place thanks to a simpletongue and grooved backing system.Close-up of how the tiles fit together.In this way, you can gain <strong>access</strong> to the under-floorarea just by lifting up a tile.4445


Advantages• Quick and easy installation.• Clean.• Accessible.• Reusable.• Wide range of finishes.• Minimum maintenance.• Quick come into service, once placed it is ready to transit on itComponentsThe piece made in factory consists of the following:• Ceramic tile or porcelain of groups Blb and Bla as ISO 13006 and NF-EN 14411 of Porcelanosa Grupo.• Joint of polyurethane of 1 mm wide available in gray.• Base of polyurethane two-component rigid with cracks in the 4 corners shaped blade.Additional elements for placement are:• Pieces of union, locks in the form of blade of 5 mm height in polyurethane.• Pieces of regulation or compensation; rises and plugs of polyurethane, for leveling of the system. Thicknesses of 0.5 - 1 mm for the rises and 5 mm for the plugs.• Leveling sheet viscoelastic and acoustic attenuation.Cli-ker n piece. 598x598 mm.Levelling sheetCintex.Catches. 5 mm highPlug. 5 mm highCompensation piece. 0,5 - 1 mm high.ReferencesSAP KEA Description100096030 B81200209 Compensation piece 0,5mm100096031 B81200207 Compensation piece 1mm100096038 B81200208 Plug 5mm100102785 B81200228 Catches 5mm100103280 B15901003 Levelling sheet (9mt 2 )4647


InstallationForegoing considerations• The support must be dry, free of dirt, construction debris or irregularities.• Check that the irregularity does not exceed 1.5 mm every rule of 2 m. The accumulated irregularity shall not exceed the deflection of the piece. There will be a previous rethink takingas origin the intersection of 2 offset axis. It will be previously installed all the pavement with locks of 5 mm high.• There will be a taking of levels later and a visual inspection verifying that the pavement is firm, smooth and without lipping of tiles. It is possible the devasting of the base ofpolyurethane for surface leveling.• It must be left a perimeter joint of 0,5 cm, which will be hidden once placed the skirting board.• In addition to the components supplied for placement, we must have pliers, cutter, machine of ceramic cutting and rubber mallet.Step 5:Use a level to place all the pieces appropriately. Plots are put on thecatches to help levelling the floor.Installation stepsFirst of all, you must check that the bracket fulfills the minimum requirements to put the cli-ker n described above.From that moment on you’ll have to follow next steps:Step 6:Close to walls or columns, catches should be cut with a cutter or pliers,to join pieces and level them with that wall or column.Step 1:We cover the area to be paved with leveling sheet.Step 2:Use Cintex to seal the joints between sheets.Step 7:In case that it is required cutting the pieces, we will use a ceramiccutting machine.Once the piece is marked with ceramic cutting machine, in case of beingthe buttons of ceramics on the optimistic side, we will review thetrimmings with a radial provided that necessary, then through a dryknock we split the piece.Step 3:Fix the catch on the piece that is going to be laid. Then we put thepiece on the levelling sheet placed on the floor.Step 8:When cutting the piece, we will lose the mechanized of the corner inwhich to place the lock.For these purposes we will use some plugs of polyurethane, placingas many as necessary, fitting and sticking them on the basis of polyurethane.* For the installation of screens on the system, it will be used a plug of polyurethane for proper fixation, protecting the ceramics with the same.Step 4:Repeat the process with the help of a rubber mallet to fit the piecesuntil covering all the area.4849


exteriorCli-ker n exterior is a new ceramic flooring system created by PORCELANOSA butech, for quick andeasy, dry installation of exterior <strong>floors</strong>. No use of mortar or joints needed.Quick and easy installation, <strong>access</strong>ible, recoverable, wide range of finishes and minimal maintenance.. Usableright after its installation.Advantages• Easy installation• Clean and quick• No maintenance• No adhesives or grout needed.• Anti-slip tile• Adapted to all slopes• Wide range of finishes from PORCELANOSA• Reusable• Frost-resistants tileFeaturesThe use of cli-ker n exterior system is recommended when the surface to tile meets the following requirements:Terraces with 1 slope, 2 slopes or 4 slopes, when the angles form 90 degrees.• Tile format: 44.8 x 44.8 cm• 5 mm hollow joint between tiles• Machined base and pieces to allow water evacuationStandard Testing method SystemeLength448 +/- 0,2 mmUNE 10545-3Width448 +/- 0,2 mmThickness21 +/- 0,2mmWater absorption 0,10%UNE 10545-4 Breaking strength 3,53 kNDeflection4,2 mmUNE 10545-8 Linear thermal expansion 2,5837E-05UNE 53130Shore hardness polyurethane Méthode A 92Density (Polyurethane) 1210 kg/m 35051


ComponentsSteps for a successful installationStep 1:Cli-ker n exterior is a system that adapts to the existing slopes. We recommendthat the slope lines be marked to make installation easier,and to redefine the surface. Start installation from the lowest point.Cli-ker n exterior baseFinishing profileStep 2:The tiles must be cut using a tile cutter or a radial saw. To install thecut pieces, use the bases instead of the joining pieces.Glue the bases to the back of the cli-ker piece with P-404 mastic.Step 3:When the cli-ker n exterior system finishes against a wall, column oother obstacles that do not allow to install the joining piece, cut itwith a hand saw or radial saw.P-404 masticJoining pieceStep 4:To reduce the small level defects that might be found on the supporton which we are going to install the system, lower the base of thecli-ker n exterior. In case you need to slightly raise the tile, place acompensation piece on the joining piece.Compensation piecePlugPass 5:The finishing pieces are stainless steel “L” profiles that will be installedover the perimeter of the surface formed by cli-ker n exterior. Forinstallation, cut the profile to size and fit it on the edge of the cli-kern exterior.Step 6:The finishing profile must be glued to the cli-ker n exterior piece withP-404 mastic.Step 7:To allow for water evacuation, the profile must not cover the full lengthof the piece.5253


How to get a budget of abutech system?• Come to one of our stores/ distributors, where you will be attended by ourprofessionals, who will show you the products that best suit your needs.• To provide you with the best service, you should provide us the plans of theproject and fill a study sheet customized to your product.• Once delivered the plans and the sheet correctly completed, from the TechnicalDeptartment of butech, a first budget will be done.• In less than 15 days, the same professional who attended you will deliver thebudget.• In case of acceptance, and if you wish, you will receive the visit of one of ourtechnicians for the preparation of the final budget.5455


ShowroomsEspañaShowroomsEspañaA CORUÑAA CORUÑA - SUMINISTROS VIA-MARAvda. Finisterre, 11. T: 981 279 431BETANZOS - SUMINISTROS VIA-MARAvenida Fraga Iribarne, s/n. T: 981 772 190FERROL - NEIRA & ORTEGAL S.L.Carretera Catabois, 258. T: 981 326 532 - F: 981 324 951ORTIGUEIRA - NEIRA & ORTEGAL S.L.Carretera C-642 s/n, Cuiña. T: 981 400 880 - F: 981 400 883SANTIAGO DE COMPOSTELA -PORCELANOSAGeneral Pardiñas, 13-Bajo. T: 981 569 230SANTIAGO DE COMPOSTELA - JOSÉ OTERORua Clara Campoamor, 13-15 (Montouto)- TeoT: 981 509 270 - F: 981 819 334SANTIAGO DE COMPOSTELA - PORCELANOSAPol. Comercial Costa Vella s/n. T: 981 897 595 F:981 530 901ÁLAVAVITORIA-GASTEIZ - JORGE FERNÁNDEZLos Herrán, 30. T: 945 254 755 - F: 945 259 668VITORIA-GASTEIZ - JORGE FERNÁNDEZPolígono Jundiz. Paduleta, 53. T: 945 244 250 - F: 945 229 321ALBACETEALBACETE - PORCELANOSAAvda. Gregorio Arcos, 32 (Polígono Campollano)T: 967 243 658 - F: 967 193 465VILLAROBLEDO - OLIVARES MATERIALES DE CONSTRUCCIONAvda. Reyes Católicos, 168. T: 967 138 105 - F: 967 138 023ALICANTEALICANTE - PORCELANOSAPol. Las Atalayas, Parcela VI. Calle del Franco.T: 965 109 561 - F: 965 106 965BENISSA - HIJOS DE JUAN RIBESAvda. de la Estación, 2. T: 965 730 419CALPE - HIJOS JUAN RIBESAvenida Ejércitos Españoles, Edificio Apolo VII, Local 10.T: 965 839 105DENIA - LLACER INSTALACIONES Y SERVICIOSPedreguer 10-12. T: 965 781 635 - F: 965 789 821ELCHE - PORCELANOSAAvda. Alicante, 105 T: 966 610 676 - F: 966 610 700JAVEA - AZULEJOS JAVEAC/Liverpool, 4. T: 965 791 036SAN JUAN - PORCELANOSACarretera Valencia, km 88. T: 965 656 200 - F: 965 655 644TORREVIEJA - PORCELANOSAAvda. Cortes Valencianas, 58 Esq. Crucero Baleares.T: 966 708 445 - F: 965 718 722ALMERÍAALMERÍA - PORCELANOSAAvenida Mediterráneo, 2º tramo. T: 950 143 567 - F: 950 142 067EL EJIDO - PORCELANOSACtra. N-340, km. 411. T: 950 483 285 - F: 950 486 500VICAR - PORCELANOSACentro Comercial Viapark, Parcela 1. T: 950 325 575 - F: 950 338 651ASTURIASOVIEDO- PORCELANOSAPol.Espíritu Santo C/ Dinamarca s/n. T: 985 791 526- F: 985 985 963ÁVILAÁVILA - PAVIMARSAPol. industrial Vicolozano - Parcela 2. T: 920 259 820 - F: 920 259 821BADAJOZMÉRIDA - PORCELANOSAAvenida Reina Sofía, 8. T: 924 330 218 - F: 924 330 315BADAJOZ - GALLERY CERAMICCarretera N-V Madrid-Lisboa, km 399. T: 924 229 144 - F: 924 229 143AZUAGA - CORVILLO VERAPol. Industrial Parcela 5. T: 924 892 579- F: 924 890 688LLERENA - CERAMICC/ Convento Santa Isabel, 2 Local Comercial. T: 924 108 318BARCELONAL’HOSPITALET DE LLOBREGAT - PORCELANOSACiències, 65. Gran Vía l´Hospitalet. T: 932 642 500 - F: 932 007 036 CALAF - PLANELLCtra. Manresa Km.31 . T: 938 698 750 - F: 938 600 181CANOVELLES - COMERCIAL MAESTRO CANETPol. Can Castells, nau 7-8. T: 938 466 568 - F: 938 409 216CASSERES - MATERIALS CASSERRESSant Rafael. T: 938 213 770MANRESA - PRAT MATERIALS I MAQUINARIAC/ Mossen Jacint Verdaguer, 26. T: 938 741 903 - F: 938 741 903NAVAS - PRAT MATERIALS I MAQUINARIAC/ De Mujar, 52. T: 938 204 033 - F: 938 204 098SABADELL - CASANOVAAvda. Rafael Casanova 24 T: 937 481 015 - F: 937 274 834ST. BOI DE LLOBREGAT - GARROCtra. Sta. Creu de Calafell, km. 10,7. T: 936 545 952 - F: 938 400 620ST. FRUITOS DE BAGÉS - CASANOVACtra. De Manresa a Berga Km. 1. Naus 2-7.T: 938 770 625- F: 938 776 530TARADELL - JODULCtra. de Vic, Km 5,8. T: 938 800 800 - F: 938 126 054TORELLÓ - JOAN DOTC/ Ter, 50. T: 938 504 646 - F: 938 504 286VILANOVA DEL CAMI - PLANELLCtra. Vilafranca 108-111. T: 938 060 240 - F: 938 060 239BURGOSMEDINA DE POMAR - CERÁMICA DE LAS MERINDADESAvda. Bilbao, 11. T: 947 192 081 - F: 947 192 082MIRANDA DE EBRO - JORGE FERNÁNDEZCamino Fuente Basilio, s/n. T: 947 323 351 - F: 947 314 589BURGOS -BIGMAT FONTECHAAlcalde Martín Cobos, 15. Nave 5 y 6. T: 947 483 902 - F: 947 483 941CÁCERESCÁCERES - PORCELANOSAAvda. Juan Pablo II, 130. T: 927 236 337 - F: 927 236 205MORALEJA - BIGMAT CAYUELAAvda. Extremadura, 26. T: 927 515 198 - F: 927 147 266PLASENCIA - ALICATADORES ROMU S.A.Avda. del Valle, 59. T: 927 426 493 - F: 927 426 495CÁDIZEL PUERTO DE SANTA MARíA - PORCELANOSAPol. El Palmar. Carretera Madrid-Cádiz, km 653,2 .T: 956 540 084 - F: 956 872 464ALGECIRAS - PORCELANOSACtra. de Málaga, km 109. T: 956 635 282 - F: 956 635 285JEREZ DE LA FRONTERA - PORCELANOSACarretera N-IV. Parque Empresarial, parcela D1.T: 956 187 160 - F: 956 302 904OLVERA - ALMECORAvda Julián Besteiro, 29. T: 956 120 776 - F: 956 120 776SAN FERNANDO - PORCELANOSAPolígono Tres Caminos, s/n. T: 956 592 360 - F: 956 884 677UBRIQUE - DOCURRIPaseo del Prado 38-40. T: 956 461 838 - F: 956 460 384VILLAMARTIN - AZULGRIFC/ Rosario, 9. T: 956 730 687 - F: 956 730 911CANTABRIASANTANDER - PORCELANOSAAvenida Parayas, s/n. T: 942 352 510 - F: 942 352 638TORRELAVEGA - PORCELANOSABoulevard Demetrio Herrero, 1. T: 942 835 026 - F: 942 881 787CASTELLÓNCASTELLÓN DE LA PLANA - PORCELANOSAAsensi, 9. T: 964 239 162 - F: 964 238 930VILLARREAL - PORCELANOSACtra.Vila-real - Puebla de Arenoso (CV- 20) Km. 0,7T: 964 506 800 - F: 964 525 418VINAROZ - PORCELANOSACarretera N-340, km 1.050,1. T: 964 400 944 - F: 964 400 650CEUTACEUTA - BAEZA.Ampliación muelle de Poniente, 96. T: 956 511 312 - F: 956 511 309CIUDAD REALCIUDAD REAL - PORCELANOSACarretera de Carrión, Km.1. T: 926 251 730 - F: 926 255 741ALCAZAR DE SAN JUAN - PORCELANOSACorredera, 56. T: 926 546 727 - F: 926 546 727TOMELLOSO - PORCELANOSAAvda. de los industriales, parcela 9. (P.I. El Bombo)T: 926 529 206 - F: 926 529 207CÓRDOBACÓRDOBA - PORCELANOSACtra. Nacional IV Km.404. Pol. de Torrecilla.T: 957 760 024 - F: 957 760 123LUCENA - FRAPECO DECO S.L.Ejido Plaza de Toros. T: 957 509 334POZOBLANCO - ACAIÑAS CABRERACtra. pozoblanco-Alcaracejos Km 3,3T: 957 772 999- F: 957 131 170VILLA DEL RIO - JUAN PRIETO E HIJOS S.L.Ctra. Bujalance, s/n T: 957 177 693 - F: 957 177 335HINOJOSA DEL DUQUE - HORMIGONES SAN FRANCISCOC/ Velázquez, 13 T: 957 140 181SANEAMIENTO Y REVESTIMIENTOS JULIOC/ Camino Fontanal s/n T: 957 540 943CUENCACUENCA - PORCELANOSAHermanos Becerril, 6 bajo. T: 969 233 200 - F: 969 234 475CASAS DE HARO - MAT. CONST. MARTINEZ ORTEGAC/ Dos de Mayo, 28. T: 969 380 708 - F: 969 380 708TARANCÓN - VICENTE DE LOS RIOS S.A.Avda del Progreso, 19. T: 969 321 323 - F: 969 321 334VILLANUEVA DE LA JARA - ALMACENES PAÑOS S.L.Camino de Rubielos, 8. T: 967 498 000 - F: 967 498 000GIRONABLANES - BRECOR SLCtra.Tordera,79. Blanes. T: 972 336 062 - F: 972 358 482CORNELLA DEL TERRI - OLIVERASCtra. De Girona a Banyoles Km. 12,8.T: 972 594 131 - F: 972 594 552ESCLANYÀ-BEGUR - MATERIALES CREIXELLC/Palafrugel Regencos P.I. Riera Esclanya, 1.T: 972 300 628 - F: 972 610 772FIGUERES - OLIVERASCtra. N-II Km. 759. T: 972 672 259 - F: 972 672 255LES PRESSES - OLIVERASPol. Ind. Les Presses. Parcel.la 20.T: 972 694 704 - F: 972 693 003PALOL D’ONYAR-QUART - OLIVERASCtra. Comarcal C-250 Km. 4,3. T: 972 468 119 - F: 972 468 123GRANADAARMILLA - TECMACERAvenida San Rafael. (Junto Sprinter).T: 958 253 081 - F: 958 183 367GUIPÚZCOASAN SEBASTIÁN - JORGE FERNÁNDEZPolígono Belartza. Fernando Múgika, 15.T: 943 376 966 - F: 943 376 841HUELVAHUELVA - PORCELANOSACtra. Tráfico Pesado, s/n Pol. La Paz.T: 959 543 600 - F: 959 234 652HUESCAHUESCA - PORCELANOSAPol. Sepes. C/ Ronda la Industria 1-3 nave C.T: 974 242 738 - F: 974 242 676FRAGA - BERGES CENTRO COMERCIALAvda. Aragón, 70. T: 974 471 439 - F: 974 471 439AINSA - COMERCIAL CAMPODARVEPol. Ind. Sobrarbe, naves 11 y 12T: 974 500 267 - F: 974 500 865ILLES BALEARSPALMA DE MALLORCA - PORCELANOSAGran Via Asima, 21 Pol. Son Castelló.T: 971 430 667 - F: 971 297 094INCA (MALLORCA)- PORCELANOSAC/Pagesos s/n. Pol. Inca. T: 971 507 650 - F: 971 507 656LLUCMAJOR (MALLORCA) - MAGATZEM SES FORQUESC/ Doctor Fleming, 10. T: 971 662 114 - F: 971 662 816SOLLER- C´AN SOLERc/ del Mar,193. T: 971 630 219MANACOR- GALMESc/ Via Palma. T: 971 554 502CALA D´ OR- MACODORCtra. Calonge-Cala D´or. T: 971 658 210ANDRAITX - TUCASAC/ Habana. T: 971 136 476SANT ANTONI DE PORTMANY (IBIZA)- PORCELANOSAPol. Monte Cristo, s/n. Ctra. Ibiza. T: 971 317 292 - F: 971 317 293JAÉNJAÉN - PORCELANOSAPolígono Olivares. Carretera Bailén-Motril, km 323.T: 953 280 757 - F: 953 284 035ALCALA LA REAL - PAVIMENTOS AZUGRISAPolígono Ind. Fte. Granada.Vial II. T: 953 582 963BEAS DE SEGURA - GRUPO PEREA MORANTE S.L.Polígono El Cornicabral, parcela 517 T: 953 424 565HUELMA - VIFERSAN S.L.C/ Virgen de la Fuensanta, 61. T: 953 391 413LINARES - HERNÁNDEZ GÁMEZ S.L.Ctra. Torreblascopedro, s/n. T: 953 693 423 - F: 953 693 444ÚBEDA - HERNANDEZ GAMEZAvenida de la libertad, 88. T: 953 795 168 - F: 953 795 168VILLACARRILLO - MAT. CONST. Y SAN. HIJOS MARTIN SANCHEZC/ José Rodero Mataran, 53. T: 953 454 167LA RIOJALOGROÑO - RIOJACERAvenida de Burgos, 43-45. T: 941 286 021 - F: 941 202 271LAS PALMASLAS PALMAS DE GRAN CANARIA - PORC. Y PAV. CANARIOSAvenida Mesa y López, 63. T: 928 472 949 - F: 928 472 944LEÓNSAN ANDRÉS DE RABANEDO - PORCELANOSACtra León-Astorga, km 3,5. - San Andrés de Rabanedo -T: 987 801 570 - F: 987 801 475LLEIDAEL PONT DE SUERT - PRETENSADOS RIBERACtra. N-230 Km. 124,5. T: 973 690 063 - F: 973 690 400LA SEU D´URGEL - MATERIALS PIRINEUCtra. de Lleida, 28. T: 973 351 850 - F: 973 353 410LLEIDA - PUJOL ELEMENTSCtra. Tarragona Km 40. T: 973 202 350 - F: 973 203 113GOLMES - ARCIARAvda Mediterranea, 40-44 Pol. GolparcT: 973 601 589 - F: 973 711 448VIELHA - COMERCIAL RIBERACtra. França, 40 (Mig Aran). T: 973 641 460 - F: 973 642 271TARREGA- NOUMAGC/Júpiter,7 (Pol. Ind. La Canaleta). T:607 497 330 - F:LUGOFOZ - ALMACENES BAHíAMaestro Lugilde, 6. T: 982 140 957LUGO - ARIAS NADELATolda de Castilla, s/n. T: 982 245 725XOVE - ESTABLECIMIENTOS REY,S.L.Avda. Diputación, 88 T: 982 592 006 - F:982 592 071MADRIDLEGANÉS - PORCELANOSAAvda. Recomba, 13. Pol. la Laguna Salida 53 - M50.T: 914 819 200 - F: 916 930 292ALCOBENDAS - PORCELANOSAParque Río Norte. T: 916 623 232 - F: 916 624 607ALCORCÓN - PORCELANOSACtra. N-V, km 15,5. Parque Oeste de Alcorcón.T: 916 890 172 - F: 916 890 170MADRID - PORCELANOSAOrtega y Gasset, 62. Esquina Conde Peñalver.T: 914 448 460 - F: 914 025 111MADRID - PORCELANOSAAlcalá, 514. T: 917 545 161 - F: 917 545 555MÁLAGAMÁLAGA - PORCELANOSAAvda. Velázquez, 77. T: 952 241 375 - F: 952 240 092ANTEQUERA - PORCELANOSARío de la Villa, 3. Pol. Industrial. T: 952 701 819 - F: 952 843 751MARBELLA - PORCELANOSAAvda. Ricardo Soriano, 65. T: 952 826 868 - F: 952 822 880MURCIAMURCIA - PORCELANOSAAvda. Juan de Borbón, s/n. Parque Comercial Thader.T: 968 879 527 - F:968 831 725CARAVACA DE LA CRUZ - PORCELANOSAAvenida Ctra. Granada, 20. T: 968 705 647 - F: 968 705 648CARTAGENA - PORCELANOSAC/ Belgrado. Parcela 81. Pol. Ind. Cabezo Beaza.T: 968 529 302 - F: 968 528 362LORCA - PORCELANOSACtra. de Granada, 127. Polígono Los Peñones.T: 968 478 130 - F: 968 470 820YECLA - PORCELANOSAAvenida de la Paz, 195. T: 968 718 048 - F: 968 718 048NAVARRAMULTIVA BAJA - MONTEJO CERÁMICASPol. Ctra. Tajonar, Calle 2, Naves 2-4.T: 948 239 065 - F: 948 230 503CINTRUÉNIGO - CERÁMICAS CECILIO CHIVITEPol. Ind. s/n. Variante N-113. T: 948 811 973 - F: 948 815 249PAMPLONA - MONTEJO CERÁMICASNavas de Tolosa, s/n. T: 948 224 000 - F: 948 226 424TUDELA - MONTEJO CERÁMICASCtra. Tudela -Tarazona, Pol. Centro de Servicios de Tudela.T: 948 848 365- F: 948 848 573OURENSEOURENSE - BLANCO QUINTASC/ Nosa Señora da Sainza, 48. T: 988 391 114 - F: 988 250 413CARBALLIÑO - JOSE R. PITEIRA,S.L.Avda. Julio Rodriguez Soto,63. T: 988 271 071 - F: 988 274 780PALENCIAPALENCIA - CANTALAPIEDRAC/ La Puebla,2. T: 979 706 421 - F: 979 702 652PONTEVEDRADENA - PREFABRICADOS DENA S.L.Rua Galicia, 24 T: 986 743 121SEIXO, MARÍN - SANEAMIENTOS ROSALESAvenida Doctor Otero Ulloa, 1. T: 986 702 041 - F: 986 702 080O GROVE - PREFABRICADOS DENA S.L.C/Alexandre Boveda,82 T: 986 733 230 - F: 986 733 415LALÍN - ALMACENES CANDA, S.L.Calle Monserrat, 36-39 - B. T: 986 780 184 - F: 986 782 301MOS- BLANCO QUINTAS, S.L.Monte Faquiña s/n - B. T: 986 288 041 - F: 986 486 316VIGO - SANEAMIENTOS ROSALESGarcía Barbón, 139 - B. T: 986 228 806SALAMANCASALAMANCA - PORCELANOSAPol. Villares. Ctra. Salamanca - Valladolid, km 2,5.T: 923 243 811 - F: 923 123 414SANTA CRUZ DE TENERIFESANTA CRUZ DE TENERIFE - PORC. Y PAV. CANARIOSAvda. 3 de Mayo, 18. T: 922 209 595 - F: 922 209 596LOS LLANOS DE ARIDANE - AFELSALas Rosas, s/n. T: 922 461 112 - F: 922 461 166SANTA CRUZ DE LA PALMA - AFELSAAbenguareme, 3. T: 922 412 143 - F: 922 420 012SEGOVIAEL ESPINAR - SEGOCERCarretera Madrid - La Coruña, km 64.T: 921 172 426 - F: 921 171 828SEGOVIA - SEGOCERJosé Zorrilla, 134. T: 921 444 122SEVILLASEVILLA - PORCELANOSAPol. Ind.La Negrilla. C/ Tipografía,2.(Autovía A-92 Málaga-Granada) T: 954260540 - F: 954 261 391DOS HERMANAS - PORCELANOSAParque Cial., Zona 2. Doctor Fleming, Sector 13, Parcela 3.T: 955 661 368 - F: 955 661 368LORA DEL RÍO - HERNÁNDEZ CARBALLO S.L.C/ Betis s/n. T: 955 800 473 - F: 955 801 439TOMARES - PORCELANOSASan Roque, s/n. Polígono El Manchón.T: 954 152 792 - F: 954 153 188SORIASORIA - MAT. CONSTRUCCIÓN ODORICIO S.L.Polígono las Casas-II. Calles A y J, Parcela 201.T: 975 233 228 - F: 975 232 188TARRAGONACAMBRILS - MONSERRATE ESTIL CERAMIC SLPol. Ind. Belianes nau 5 Ctra. Cambrils-Montbrió.T: 977 364 900 - F: 977 364 953ALCOVER - EXPOMATC/ Tramuntana, s/n (pol. Roques Roges)T: 977 760 476 - F:EL VENDRELL - VIUDA DE ANTONIO FONTC/ Valls, 12. T: 977 660 794 - F: 977 662 217REUS - COMERCIAL STCC/Pz de les Oques, 8. T: 977 31 25 02 - F: 977 317 211RODA DE BARA - CONSTRUCCIONS CIUROAcceso a Roda de Bara Km. 1. T:977 802 951 - F:977 802 012VALLS - RAMÓN MAGRIÑA BATALLAC/ Montblanc 14. T:977 600 210 - F:977 603 302TORTOSA - MATERIALS GISBERTCtra. Gandesa Km 3,5. T:977 500 306 - F:977 501 550TERUELTERUEL - GARGÓNPolígono La Paz, Parcela 143-149. T: 978 609 661TOLEDOTOLEDO - PORCELANOSAPol.Ind.Sta. María de Benquerencia, C/del Río Marchés,123T: 925 232 402 F:925 232 406ILLESCAS - PORCELANOSACtra. A-42 Km. 32 T: 925 532 011 F:925 513 055VALENCIAALBUIXECH - PORCELANOSAAvda. Mediterráneo, Parcela 6. Pol. Ind. del Mediterráneo.T: 96 141 7227-F: 961 401 078GANDÍA - PORCELANOSAZona Cial. La Vital, Avda de la Vital, 43-AT: 962 954 105 - F: 962 965 980PATERNA - PORCELANOSAZona Cial. Heron City, Pista Ademuz, S. 6-7 - Calle V-1. Parc.1 Sec.14.T: 963 160 348 - F: 963 160 599SEDAVÍ - PORCELANOSAAvenida Mediterráneo. Zona Cial. de Sedaví.T: 963 185 021 - F: 963 180 094VALENCIA - PORCELANOSAColón, 56. T: 963 530 230 - F: 963 531 688VALLADOLIDVALLADOLID - CANTALAPIEDRACarretera de Soria A-24, km 5,5. T: 983 217 010 - F: 983 200 921VIZCAYAAMOREBIETA - BILBUBarrio Boroa, s/n. T: 946 731 158 - F: 946 733 265BILBAO - BILBUIturriaga, 78. T: 944 113 018 - F: 944 128 637BILBAO - BILBUAlameda Recalde, 39 - 41. T: 944 218 625 - F:944 218 879ZAMORAZAMORA - PORCELANOSAAvenida Cardenal Cisneros, s/n. T: 980 519 283 - F: 980 529 404ZARAGOZAZARAGOZA - PORCELANOSAAutovía de Logroño, km 2. T: 976 403 131 - F: 976 300 094ZARAGOZA - PORCELANOSAPlataforma Logística PLA-ZA. C/ Taormina, 2.T: 876 269 500 - F: 876 269 389ZARAGOZA - PORCELANOSAParque Cial. Puerto Venecia. T: 976 930 800 - F: 976 930 6035657


ShowroomsinternationalShowroomsinternationalALBANIATIRANA - ALBA CERAMICA PORCELANOSA GRUPOT: +355 42233817 - F: +355 42233817TIRANA - ALBA CERAMICAT: +355 48300084 - F: +355 48300084ALEMANIAASCHAFFENBURG - KALKWERKET: +49 (0) 60 213 601 62 - F: +49 (0) 60 213 602 93BAD SALZUFLEN - W. LINNENBECKER GmbHT: +49 (0) 5222 / 5301 221 - F: +49 (0) 5222 / 5301 209BAUTZEN - FLIESEN LEHMANN GmbHT: +49 (0) 3591 / 3726 32 - F: +49 (0) 351 / 8931420BEESKOW - BADER BAUSTOFFE & WERKZEUGE, HANDELSGESELLSCHAFT T: GmbH +49 (0) 3366 /417 0 - F: +49 (0) 3366 / 417 90BERGISCH GLADBACH - SCHMIDT RUDERSDORF GmbH & CoT: +49 (0) 2204 / 4007 0 771 - F: +49 (0) 3320 / 854715BERLIN - W. LINNENBECKER GMBH & CO. 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utech building technology, s.a.Ctra. Vila-real - Puebla de Arenoso (CV-20), Km. 2.5 · Apartado de Correos 372 · 12540 Villarreal, Castellón - ESPAÑA.Teléfono (+34) 964 53 62 00 · Fax: (+34) 964 53 00 34 · E-mail: butech@butech.es · www.butech.es 1220126263

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