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Electro-mechanical characterization of MgB2 wires for the Superconducting Link Project at CERN

机译:欧洲核子研究组织超导链接项目的MgB2线的机电特性

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摘要

In previous years, the R & D program between CERN and Columbus Superconductors SpA led to the development of several configurations of MgB2 wires. The aim was to achieve excellent superconducting properties in high-current MgB2 cables for the HL-LHC upgrade. In addition to good electrical performance, the superconductor shall have good mechanical strength in view of the stresses during operation (Lorenz forces and thermal contraction) and handling (tension and bending) during cabling and installation at room temperature. Thus, the study of the mechanical properties of MgB2 wires is crucial for the cable design and its functional use. In the present work we report on the electro-mechanical characterization of ex situ processed composite MgB2 wires. Tensile tests (critical current versus strain) were carried out at 4.2 K and in a 3 T external field by means of a purpose-built bespoke device to determine the irreversible strain limit of the wire. The minimum bending radius of the wire was calculated taking into account the dependence of the critical current with the strain and it was then used to obtain the minimum twist pitch of MgB2 wires in the cable. Strands extracted from cables having different configurations were tested to quantify the critical current degradation. The Young's modulus of the composite wire was measured at room temperature. Finally, all measured mechanical parameters will be used to optimize an 18-strand MgB2 cable configuration.
机译:在过去的几年中,欧洲核子研究组织(CERN)和哥伦布超导体公司(Columbus Superconductors SpA)之间的研发计划导致了MgB2线几种配置的开发。目的是在用于HL-LHC升级的大电流MgB2电缆中实现出色的超导性能。除了良好的电气性能外,鉴于在室温下布线和安装过程中的操作应力(洛伦兹力和热收缩)以及处理过程中的应力(拉力和弯曲),超导体还应具有良好的机械强度。因此,对MgB2导线的机械性能的研究对于电缆设计及其功能用途至关重要。在当前的工作中,我们报告了异位处理的复合MgB2线的机电特性。借助于专用的定制设备,在4.2 K和3 T的外部磁场中进行了拉力测试(临界电流与应变),以确定导线的不可逆应变极限。考虑到临界电流与应变的关系,计算出导线的最小弯曲半径,然后将其用于获得电缆中MgB2导线的最小扭曲间距。测试了从具有不同配置的电缆中抽出的绞线,以量化临界电流衰减。在室温下测量复合线材的杨氏模量。最后,所有测得的机械参数将用于优化18股MgB2电缆配置。

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