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首页> 外文期刊>Cryogenics >On the mechanical behavior of a Nb3Sn superconducting coil during a quench: Two-dimensional finite element analysis of a quench heater protected magnet
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On the mechanical behavior of a Nb3Sn superconducting coil during a quench: Two-dimensional finite element analysis of a quench heater protected magnet

机译:在淬火期间Nb3Sn超导线圈的力学行为:淬火加热器保护磁体的二维有限元分析

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New high-field accelerator magnets based on Nb3Sn superconductors are pushing the boundaries of magnet design and quench protection towards new limits. While their large stored energies and current densities result in a very challenging scenario for magnet protection, their great electromagnetic forces create also new requirements in terms of magnet design and stress management techniques. Furthermore, the strain sensitivity of Nb3Sn cables turns the electro-mechanical limits of the conductor into a parameter of the highest importance, where conductor degradation becomes a critical aspect in magnet operation. The coupling of all the above-mentioned considerations during a quench is a case of special interest that adds further complexity to the design of Nb3Sn magnets. The objective of this paper is to provide a complete two-dimensional investigation of the coil and magnet structure mechanics during a quench event. The analysis is performed using a combination of finite element codes that provide the necessary input for the mechanical study. The core of the modelling strategy relies on a thermal-electric model, whose results are directly used as loads in the mechanical simulation. In doing so, the stress evolution during and after a quench is obtained. We focus for this time in the analysis of a quench heater protected magnet, where electro-magnetic dynamic effects are of less importance in contrast to other protection systems like CLIQ.
机译:基于NB3SN超导体的新型高场加速器磁体正在推动磁体设计的边界并淬火保护朝向新限制。虽然他们的大量存储能量和电流密度导致磁体保护的非常具有挑战性的场景,但它们的巨大电磁力在磁体设计和应力管理技术方面也产生了新的要求。此外,NB3SN电缆的应变灵敏度将导体的电力限制变为最高重要性的参数,其中导体劣化成为磁体操作中的关键方面。在淬火期间的所有上述考虑的耦合是一种特殊兴趣的情况,对NB3SN磁体的设计增加了进一步的复杂性。本文的目的是在淬火事件期间提供线圈和磁体结构力学的完整二维研究。使用提供机械研究的必要输入的有限元代码的组合来执行分析。建模策略的核心依赖于热电模型,其结果直接用作机械模拟中的负载。在这样做时,获得淬火期间和之后的应力进化。我们在此时专注于分析淬火加热器受保护的磁铁中,其中电磁动态效应与CLIQ等其他保护系统相比,电磁动态效应不太重要。

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