首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Systematic Study of the Contact Resistance Between REBCO Tapes: Pressure Dependence in the Case of No-Insulation, Metal Co-Winding and Metal-Insulation
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Systematic Study of the Contact Resistance Between REBCO Tapes: Pressure Dependence in the Case of No-Insulation, Metal Co-Winding and Metal-Insulation

机译:REBCO胶带之间的接触电阻的系统研究:无绝缘,金属共缠绕和金属绝缘情况下的压力依赖性

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No-insulation and partial-insulation are novel approaches for compact, high field rare-earth-Ba2Cu3O7-x coated conductor magnets. They maximize the current density and overcome some of the coated conductors' intrinsic challenges such as the low normal zone propagation velocity and the resulting difficulties to quench REBCO magnets safely. However, this comes at a reduction of the field quality and an increase of the charging time. The performance of this type of coils is mainly determined by the contact resistance between the different layers of the winding. In the case of partially-insulated coils, the contact resistance can be adjusted by a tailored choice of the material used for the metal co-winding or for the metallic coating of the REBCO tape. We present here a systematic study of the impact of pressure on the contact resistance in the cases of direct contact (no-insulation) as well as metal co-winding and metal coating (partial-insulation). Different "insulation" metals as well as various "insulation" to REBCO tape ratios are tested at 77 K in self-field varying the contact pressure in the range of 10-200 MPa. The goal is to provide coil manufacturers with the means of achieving a controlled contact resistance to optimize the coil performance.
机译:无绝缘和部分绝缘是用于紧凑,高磁场稀土Ba2Cu3O7-x涂层导体磁体的新颖方法。它们最大程度地提高了电流密度,克服了某些涂覆导体固有的挑战,例如正常区域传播速度低以及由此产生的难以安全淬火REBCO磁体的困难。但是,这会降低场质量并增加充电时间。这种类型的线圈的性能主要取决于绕组不同层之间的接触电阻。对于部分绝缘的线圈,可以通过对REBCO带的金属共绕或金属涂层使用的材料进行适当选择来调整接触电阻。在这里,我们对直接接触(无绝缘)以及金属共绕组和金属涂层(局部绝缘)情况下压力对接触电阻的影响进行系统研究。不同的“绝缘”金属以及各种“绝缘”与REBCO胶带的比率在自电场下以77 K进行测试,其接触压力在10-200 MPa的范围内变化。目的是为线圈制造商提供实现受控接触电阻以优化线圈性能的方法。

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