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On the thermo-mechanical behavior of NiTi shape memory elements for potential smart micro-actuation applications

机译:用于潜在的智能微驱动应用的NiTi形状记忆元件的热机械行为

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Among smart and functional materials, the shape memory alloys are enabling the development of a new class of devices for the automotive, aerospace, biomedical, and mechanical applications based on the shape memory and superelastic effects. In this work, a study on the mechanical response of NiTi shape memory micro-elements, in the so-called snake-like configuration, is reported. These elements were patterned by means of laser micro-processing from thin NiTi sheets and then chemically etched. Different micro-elements, as function of the number of the curvatures replicated, were fabricated and tested. The functional performances of the micro-elements were characterized through calorimetric analysis for the definition of the operating temperatures and through thermo-mechanical testing for the evaluation of their actuating response. Mechanical tests were carried out to assess the tensile behavior of martensite and austenite phases separately, and for evaluating the thermal hysteresis under different constant loads during cooling/heating loops. Moreover, finite element modeling was also accomplished to analyze the stress distribution in both the martensitic and austenitic phases as loading.
机译:在智能和功能材料中,形状记忆合金正在基于形状记忆和超弹性效应,为汽车,航空航天,生物医学和机械应用开发新型设备。在这项工作中,报道了对所谓的蛇状构型的NiTi形状记忆微元件的机械响应的研究。通过从镍钛薄板上进行激光微加工,对这些元素进行构图,然后进行化学蚀刻。制作并测试了不同的微元件,这些微元件是重复曲率数量的函数。微量元素的功能性能通过量热分析来定义工作温度,并通过热机械测试来评估其致动响应。进行了机械测试,分别评估了马氏体和奥氏体相的拉伸性能,并评估了冷却/加热回路中不同恒定负载下的热滞。此外,还完成了有限元建模以分析马氏体和奥氏体相随载荷的应力分布。

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