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Development of non-magnetic high manganese cryogenic steel for the construction of LHC project's superconducting magnet

机译:LHC项目超导磁体施工用非磁性高锰低温钢的研制

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High manganese steel (KHMN30L) as a cryogenic nonmagnetic material has been developed by Kawasaki Steel Corporation, which is designed for structural material for superconducting magnet in particle accelerator system. This steel satisfies the following requirements for the present use. 1) Low magnetic permeability: its relative magnetic permeability is lower than 1.002 throughout the range between 1.9 K and room temperature, and shows little temperature dependency which is the result of the highly elevated Neel temperature controlled by alloying composition design. 2) Low thermal expansion: its integrated contraction from room temperature to 4.2 K is as small as 0.18%. 3) Appropriate mechanical properties: yield strength and tensile strength can be adjusted to the desirable value by the manufacturing process condition without deteriorating physical properties. With these excellent properties, this steel is being supplied for nonmagnetic lamination of the cold mass of the LHC (Large Hadron Collider) superconducting dipole magnet, which is under construction by CERN.
机译:川崎制铁公司已开发出作为低温非磁性材料的高锰钢(KHMN30L),该材料设计用于粒子加速器系统中超导磁体的结构材料。该钢满足当前用途的以下要求。 1)低磁导率:在1.9 K和室温之间的范围内,其相对磁导率低于1.002,并且几乎没有温度依赖性,这是通过合金化成分设计控制的Neel温度升高的结果。 2)低热膨胀:从室温到4.2 K的整体收缩率只有0.18%。 3)适当的机械性能:在不降低物理性能的情况下,可以通过制造工艺条件将屈服强度和拉伸强度调节至理想值。凭借这些优异的性能,该钢可用于CERN正在建造的LHC(大强子对撞机)超导偶极磁体的冷块的非磁性层合。

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