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Experimental Set-Up for Evaluation of Electro-Magnetic Characteristics of High-Tc Superconductors Cooled by Liquid Hydrogen

机译:液态氢冷却的超高温超导体电磁特性评估的实验装置

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摘要

Liquid hydrogen (LH2) has excellent properties as a coolant, such as large latent heat, low viscosity coefficient, etc. Not only MgB2 but also other high-Tc superconductors are expected to have excellent properties when cooled by LH2. It is necessary for a stability design of a high-Tc superconductor cooled by LH2 to make an electro-magnetic characteristic clear. However, due to the handling difficulties of LH2, there are only few papers on the properties of LH2-cooled superconductors, especially under the external magnetic field. In this paper, an experimental set-up is described, which was designed and fabricated for the evaluation of the electro-magnetic characteristics of high-Tc superconductors cooled by LH2. The LH2 cryostat of 309 mm inner diameter was set co-axially with vacuum layer in the LHe cryostat in which the LHe-cooled superconducting magnet for external magnetic field (up to 7 T) was set. The LH2 cryostat has three power leads for feeding up to 500 A to the test high-Tc superconductors.
机译:液态氢(LH2)作为冷却剂具有出色的性能,例如潜热大,粘度系数低等。当通过LH2冷却时,不仅MgB2,而且其他高Tc超导体也有望具有出色的性能。对于通过LH2冷却的高Tc超导体的稳定性设计,必须使电磁特性清晰可见。然而,由于LH2的处理困难,关于LH2冷却的超导体的性能的论文很少,特别是在外部磁场下。在本文中,描述了一个实验装置,其设计和制造用于评估由LH2冷却的高Tc超导体的电磁特性。将内径为309 mm的LH2低温恒温器与LHe低温恒温器中的真空层同轴设置,在LHe低温恒温器中设置用于外部磁场(最高7 T)的LHe冷却超导磁体。 LH2低温恒温器具有三根电源线,可将高达500 A的电流馈送到测试的高Tc超导体。

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