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Axial Tensile Stress–Strain Characterization of Bi-2212 Round Wire With Different Heat Treatments

机译:不同热处理Bi-2212圆线的轴向拉伸应力-应变特性

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摘要

The China Fusion Engineering Test Reactor is a new tokamak device whose magnet system includes toroidal field (TF), central solenoid (CS), and poloidal field (PF) coils which are made up of cable-in-conduit conductor (CICC). The maximum field of CS and TF will reach around 15 T, which is much higher than that of present reactors. In this case, the high-temperature superconducting material Bi-2212 is considered as one potential magnet material for CICC because it has an outstanding conductor-carrying capacity at 4.2 K in magnetic field, especially for that with high-pressure heat treatment. However, Bi-2212 phase is a ceramic structure, which is sensitive to strain. The mechanical property is important for its application. In this paper, the axial tensile measurements on Bi-2212 round wires with different heat treatments were performed at room temperature, 77 K and 4.2 K, respectively. It was found that the wires with high pressure heat treatment had higher mechanical strength than that with normal pressure. The compared results were given, and SEM of cross sections for tested samples was also made and analyzed.
机译:中国聚变工程反应堆是一种新型托卡马克装置,其磁系统包括由场内电缆导体(CICC)组成的环形场(TF),中央螺线管(CS)和极向场(PF)线圈。 CS和TF的最大磁场将达到15 T左右,这比目前的反应堆要高得多。在这种情况下,高温超导材料Bi-2212被认为是CICC的一种潜在磁体材料,因为它在4.2 K的磁场中具有出色的导体承载能力,特别是对于高压热处理。但是,Bi-2212相是一种陶瓷结构,对应变敏感。机械性能对其应用很重要。在本文中,在不同的热处理条件下,分别在室温,77 K和4.2 K下对Bi-2212圆线进行了轴向拉伸测量。发现高压热处理的电线具有比常压的电线更高的机械强度。给出了比较结果,并且还制作和分析了测试样品的横截面SEM。

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