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Pulsed Eddy Current Testing of Thermally Aged and Cold-Rolled Fe–Cu Alloys

机译:热老化和冷轧Fe-Cu合金的脉冲涡流测试

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In this work, Fe-1wt%Cu alloy samples exposed to thermal aging and cold rolling (CR) were studied as an attempt to emulate material degradation in neutron irradiated nuclear reactor pressure vessels. CR was tested by pulsed eddy currents (PECs) using a directional probe which was rotated in the sample plane. Normalized PEC signals, represented by typical “figure of eight” on the polar plot, showed very strong anisotropy, which has a monotonic dependence on the amount of cold work. Since the normalized PEC signals represent the response due to electrical conductivity and reduce the ferromagnetic effect, it is concluded that the change is due to anisotropic magnetoresistivity of the rolled steel. The normalized difference PEC responses have been found to be described by the quadratic dependence of the cosine of in-plane angle shifted by an angle, which is believed to correspond to slip planes of dislocations induced by rolling. The technique advantageously combines effects of rolling on electrical conductivity and magnetic permeability and does not require referencing to an untreated standard, which is important for future material and device health management.
机译:在这项工作中,研究了暴露于热时效和冷轧(CR)的Fe-1wt%Cu合金样品,以模拟中子辐照核反应堆压力容器中的材料降解。使用在样品平面中旋转的定向探针,通过脉冲涡流(PEC)测试CR。极坐标图中典型的“八位数”表示的归一化PEC信号显示出非常强的各向异性,这与冷加工量具有单调相关性。由于归一化的PEC信号表示由于电导率引起的响应并减小了铁磁效应,因此可以得出结论,变化是由于轧制钢的各向异性磁阻引起的。已经发现归一化的差异PEC响应由平面内角度的余弦以角度偏移的二次依赖性来描述,该角度被认为对应于由滚动引起的位错的滑动面。该技术有利地结合了滚动对电导率和磁导率的影响,并且不需要参考未处理的标准,这对于将来的材料和设备健康管理非常重要。

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