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Technical Design Report Super Fragment Separator

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DRAFT<br />

Figure 2.4.31: Cross section of the conductor of the SC coil for the <strong>Super</strong>-FRS dipole magnet.<br />

B) Coil winding<br />

The upper and lower coils are connected as a pair. The cross section of the coil winding is shown in<br />

Figure 2.4.32. Its dimension is (52.14 × 48.8) mm 2 , and it has in total 560 turns in 28 layers and 20<br />

pancakes. The thickness of the turn-insulation is 0.26 ~ 0.31 mm, the layer insulation is 0.3 mm and<br />

the grounding insulation is 2 mm. The coil is designed using vacuum pressure impregnate (VPI)<br />

epoxy-resin to fix the insulation of the winding. The insulation voltage to ground has be larger than<br />

3000 Volts. The filling factor of the metal after VPI is about 50 %.<br />

Figure 2.4.32: Cross section of the coil (left panel) and coil top view after vacuum impregnation (right panel)<br />

C) Coil casing, thermal shield and cryostat<br />

The coil casing is designed considering two main functions: one is to protect the windings against<br />

magnetic forces during operation, and the other is the use of the casing as a container for liquid<br />

helium (LHe) to cool the winding. The volume of the LHe in the casing is about 20 litres, including<br />

the LHe stored in the current leads box. In total 14 supports are fixed on the casing.<br />

The casing is made of stainless steel 316LN. Table 2.4.11 shows its mechanical properties. Its<br />

magnetic permeability is about 1.01 ~ 1.02. The thickness of the casing is 10 mm.<br />

35

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