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Graphical design for thin-film SMA microactuators

机译:薄膜SMA微执行器的图形设计

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摘要

Simple graphical designs for bridge- and diaphragm-type actuators using shape-memory alloy (SMA) thin films are proposed. The performance ( force and displacement) of these actuators is predicted on the basis of the stress-strain curves of an SMA film by introducing the material parameter K that represents the mechanical properties of both the austenite and martensite films. The methods of designing actuators are presented along with numerical examples and their validity is discussed, referring to some actual devices such as a microvalve and a micropump. A comparison of theory and actual device performance shows that the proposed design gives a useful approximation for practical applications. The advantage of the proposed design method is that, once the value of K is obtained for a given SMA film, one can design various actuators with various dimensions without detailed information about its mechanical properties.
机译:提出了使用形状记忆合金(SMA)薄膜的桥式和隔膜式执行器的简单图形设计。通过引入代表奥氏体和马氏体薄膜机械性能的材料参数K,根据SMA薄膜的应力-应变曲线预测这些执行器的性能(力和位移)。结合一些实例,介绍了执行器的设计方法,并结合一些实际设备(如微型阀和微型泵)讨论了它们的有效性。理论和实际设备性能的比较表明,提出的设计为实际应用提供了有用的近似值。所提出的设计方法的优点在于,一旦获得了给定SMA膜的K值,就可以设计出具有各种尺寸的各种执行器,而无需有关其机械性能的详细信息。

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