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Issues concerning the measurement of transformation temperatures of NiTi alloys

机译:有关NiTi合金相变温度测量的问题

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The transformation between martensite and austenite in shape memory alloy is characterized by four transformation temperatures: martensite start temperature (M-s) martensite finish temperature (M-f), austenite start temperature (A(s)) and austenite finish temperature (A(f)). In actuator designs that rely on the shape memory effect, it is important to obtain an accurate measure of these transformation temperatures, especially A(s) and A(f), because they determine the functional temperature range of the actuator. Several methods of determining these temperatures have been reported, but their accuracy and coherence are not clear. The transformation temperatures of NiTi wire under different heat treatment conditions were measured by the three commonly used methods: differential scanning calorimetry (DSC); an electrical resistance method, which uses a sudden change in resistance as an indication of transformation; and an applied loading method, where a macroscopic displacement indicates the transformation. The results show that the transformation temperatures measured by DSC do not correspond to those measured by the other two methods, which are similar. The applied loading method is most effective for providing practical information about the stress-dependent transformation temperatures. The electrical resistance method gives clearly determined points for M-s and M-f in the cooling resistance-temperature curve, but A(s) and A(f) are not clearly identifiable in the heating process.
机译:形状记忆合金中马氏体与奥氏体之间的相变具有四个相变温度:马氏体起始温度(M-s),马氏体终止温度(M-f),奥氏体起始温度(A(s))和奥氏体终止温度(A(f))。在依赖形状记忆效应的执行器设计中,重要的是要准确地测量这些转变温度,尤其是A(s)和A(f),因为它们决定了执行器的功能温度范围。已经报道了几种确定这些温度的方法,但是它们的准确性和连贯性尚不清楚。通过三种常用的方法测量了不同热处理条件下的镍钛丝的转变温度:差示扫描量热法(DSC);差示扫描量热法(DSC)。一种电阻法,它使用电阻的突然变化来指示转变;以及应用的加载方法,其中宏观位移指示变形。结果表明,用DSC测得的转变温度与用其他两种方法测得的转变温度不同,这是相似的。所施加的加载方法对于提供有关应力相关转变温度的实用信息最为有效。电阻法在冷却电阻-温度曲线中给出了M-s和M-f的明确确定的点,但是在加热过程中A(s)和A(f)不能明确识别。

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