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Thermomechanical Characterization of High Temperature SMA Actuators

机译:高温SMA执行器的热力学表征。

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The focus of this paper is the study and thermomechanical characterization of High Temperature Shape Memory Alloys (HTSMAs) at different stress levels and temperatures ranging from 300 to 500℃. The stability of the material response under cyclic actuation is also investigated. The observations deduced from the tests are presented in detail. In order to investigate the above issues a Ti_(50)Pd_(40)Ni_(10) HTSMA was used. The alloy was fabricated by a vacuum arc melting technique, followed by casting and hot rolling. A high temperature experimental setup was developed on a load frame to test the material at high temperatures under constrained actuation conditions. Certain key observations on the material response, in terms of recoverable strains under various applied total strains and actuation stress levels, and cyclic thermomechanical behavior are presented.
机译:本文的重点是研究高温形状记忆合金(HTSMAs)在不同应力水平和300至500℃的温度下的性能和热力学特性。还研究了循环驱动下材料响应的稳定性。从测试中得出的观察结果将详细介绍。为了研究上述问题,使用了Ti_(50)Pd_(40)Ni_(10)HTSMA。该合金是通过真空电弧熔化技术制造的,然后进行铸造和热轧。在负载框架上开发了高温实验装置,以在受限的驱动条件下于高温下测试材料。提出了关于材料响应的某些关键观察结果,包括在各种施加的总应变和驱动应力水平下的可恢复应变以及循环热机械行为。

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