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Use of Electrical Resistance Testing to Redefine the Transformation Kinetics and Phase Diagram for Shape-Memory Alloys

机译:使用电阻测试重新定义形状记忆合金的转变动力学和相图

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The phase-transformation temperatures of a nickel-titanium-based shape-memory alloy (SMA) were initially evaluated under stress-free conditions by the differential scanning calorimetric (DSC) technique. Results show that the phase-transformation temperature is significantly higher for the transition from detwinned martensite to austenite than for that from twinned martensite (or R phase) to austenite. To further examine transformation temperatures as a function of initial state, a tensile-test apparatus with in-situ electrical resistance (ER) measurements was used to evaluate the transformation properties of SMAs at a variety of stress levels and initial compositions. The results show that stress has a significant influence on the transformation of detwinned martensite, but a small influence on the .R-phase and twinned martensite transformations. The ER changes linearly with strain during the transformations from both kinds of martensite to austenite. The linearity between the ER and strain during the transformation from detwinned martensite to austenite is not affected by the stress, facilitating application to control algorithms. A revised phase diagram is drawn to express these results.
机译:首先通过差示扫描量热法(DSC)在无应力条件下评估了镍钛基形状记忆合金(SMA)的相变温度。结果表明,从孪晶马氏体到奥氏体的相变温度明显高于从孪晶马氏体(或R相)到奥氏体的相变温度。为了进一步检查转变温度与初始状态的关系,使用具有原位电阻(ER)测量的拉伸测试设备评估了SMA在各种应力​​水平和初始成分下的转变性能。结果表明,应力对孪晶马氏体相变具有显着影响,而对.R相和孪晶马氏体相变的影响较小。从两种马氏体到奥氏体的转变过程中,ER随应变线性变化。从解缠的马氏体到奥氏体的转变过程中,ER和应变之间的线性不受应力的影响,有利于控制算法的应用。绘制了修改后的相图以表达这些结果。

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