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Training of Magnetic Shape Memory Alloys

机译:磁性形状记忆合金的训练

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摘要

Magnetic shape memory (MSM) alloys give recoverable strain when subjected to an applied magnetic field. The strains obtained from MSM materials (up to 10%) are much larger than those currently possible in magnetostrictive materials (≤ 0.2%), and are comparable to those obtainable from conventional shape memory materials. In addition to alloy design and manufacture, a key metallurgical challenge with such alloys is training, which refers to the thermomechanical and magnetic treatments necessary to achieve optimum performance. In this paper, we briefly describe martensitic transformations and how they are related to the conventional and magnetic shape memory effects, as well as training approaches for conventional and magnetic shape memory alloys. We then describe an experimental apparatus and an experimental program to optimize training schedules.
机译:磁性形状记忆(MSM)合金在施加磁场时会产生可恢复的应变。从MSM材料获得的应变(最高10%)比目前在磁致伸缩材料中可能产生的应变(≤0.2%)大得多,并且与从常规形状记忆材料获得的应变相当。除了合金的设计和制造,这种合金的主要冶金挑战是训练,这是指获得最佳性能所必需的热机械和磁处理。在本文中,我们简要描述了马氏体相变及其与常规和磁性形状记忆合金的关系,以及常规和磁性形状记忆合金的训练方法。然后,我们描述了一种用于优化训练计划的实验仪器和实验程序。

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