Consumeables Catalog - Lincoln Electric
Consumeables Catalog - Lincoln Electric Consumeables Catalog - Lincoln Electric
HARDFACING SUBMERGED ARC (SAW) FLUX Lincolnweld ® Neutral Flux • EN 760 – S A CS 1; EN 760 – S A CS 2 Key Features Excellent hot slag removal with wire containing niobium, vanadium or very high chrome levels 278 ı THE LINCOLN ELECTRIC COMPANY 802® Typical Applications Hardfacing Use with Lincore ® 102W, 423L, 423Cr and 102HC Packaging 50 lb (22.7 kg) Paper Bag 450 lb (204 kg) Drum 2700 lb (1225 kg) Bulk Bag NOTE: Deposit carbon, alloy content and hardness depend upon the ratio of flux melted to wire melted. High voltage promotes high carbon and alloy contents, while low voltage promotes lower carbon and alloy content. Lincolnweld ® Neutral Flux Key Features Specially designed for high speed welding applications, such as the resurfacing of coal crusher rolls or blast furnace bells and hoppers 803 Typical Applications Hardfacing with Lincore ® 60-S ED032800 ED023365 EDS30787 Packaging 50 lb (22.7 kg) Plastic Bag ED032796 NOTE: Deposit carbon, alloy content and hardness depend upon the ratio of flux melted to wire melted. High voltage promotes high carbon and alloy contents, while low voltage promotes lower carbon and alloy content.
CONSUMABLES ALUMINUM & CAST IRON Aluminum MIG Wire SuperGlaze ® 4043 ........................................280 SuperGlaze ® 4047 ........................................281 SuperGlaze ® 5183 ........................................282 SuperGlaze ® 5356 ........................................283 SuperGlaze ® 5356 TM ................................284 SuperGlaze ® 5554 ........................................285 SuperGlaze ® 5556 ........................................286 TIG Cut Length SuperGlaze ® 4043 ........................................287 SuperGlaze ® 5356 ........................................288 Cast Iron Stick Electrode Ferroweld ..................................................289 WELDING CONSUMABLES CATALOG ı 279
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- Page 236 and 237: METAL-CORED (GMAW-C) WIRE Outershie
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- Page 248 and 249: HARDFACING METAL-CORED GAS-SHIELDED
- Page 250 and 251: HARDFACING METAL-CORED (GMAW-C) WIR
- Page 252 and 253: HARDFACING FLUX-CORED SELF-SHIELDED
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- Page 282 and 283: MIG (GMAW) WIRE SuperGlaze Aluminum
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- Page 288 and 289: SuperGlaze ® MIG (GMAW) WIRE Alumi
- Page 290 and 291: TIG (GTAW) CUT LENGTHS SuperGlaze A
- Page 292 and 293: ALUMINUM & CAST IRON CONSUMABLES No
- Page 294 and 295: PIPELINER ® STICK (SMAW) ELECTRODE
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- Page 304 and 305: Pipeliner® Welding Positions All P
- Page 306 and 307: PIPELINER ® FLUX-CORED SELF-SHIELD
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- Page 320 and 321: PIPELINER ® CONSUMABLES Notes 318
- Page 322 and 323: Power Generation & Nuclear Lincoln
- Page 324 and 325: BATCH | STICK (SMAW) ELECTRODE Exca
- Page 326 and 327: STICK (SMAW) ELECTRODE Excalibur®
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HARDFACING SUBMERGED ARC (SAW) FLUX<br />
<strong>Lincoln</strong>weld ®<br />
Neutral Flux • EN 760 – S A CS 1; EN 760 – S A CS 2<br />
Key Features<br />
Excellent hot slag removal with wire containing<br />
niobium, vanadium or very high chrome levels<br />
278 ı THE LINCOLN ELECTRIC COMPANY<br />
802®<br />
Typical Applications<br />
Hardfacing<br />
Use with Lincore ® 102W, 423L, 423Cr and 102HC<br />
Packaging<br />
50 lb (22.7 kg) Paper Bag<br />
450 lb (204 kg) Drum<br />
2700 lb (1225 kg) Bulk Bag<br />
NOTE: Deposit carbon, alloy content and hardness depend upon the ratio of flux melted to wire melted. High voltage promotes high carbon and alloy<br />
contents, while low voltage promotes lower carbon and alloy content.<br />
<strong>Lincoln</strong>weld ®<br />
Neutral Flux<br />
Key Features<br />
Specially designed for high speed welding<br />
applications, such as the resurfacing of coal<br />
crusher rolls or blast furnace bells and hoppers<br />
803<br />
Typical Applications<br />
Hardfacing with Lincore ® 60-S<br />
ED032800<br />
ED023365<br />
EDS30787<br />
Packaging<br />
50 lb (22.7 kg) Plastic Bag ED032796<br />
NOTE: Deposit carbon, alloy content and hardness depend upon the ratio of flux melted to wire melted. High voltage promotes high carbon and alloy<br />
contents, while low voltage promotes lower carbon and alloy content.