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Multistable wireless micro-actuator based on antagonistic pre-shaped double beams

机译:基于对抗性预成形双光束的多稳态无线微执行器

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This paper presents a monolithic multistable micro-actuator based on antagonistic pre-shaped double beams. The designed micro-actuator is formed by two rows of bistable micro-actuators providing four stable positions. The bistable mechanism for each row is a pair of antagonistic pre-shaped beams. This bistable mechanism has an easier pre-load operation compared to the pre-compressed bistable beams method. Furthermore, it solves the asymmetrical force output problem of parallel pre-shaped bistable double beams. At the same time, the geometrical limit is lower than parallel pre-shaped bistable double beams, which ensures a smaller stroke of the micro-actuator with the same dimensions. The designed micro-actuator is fabricated using laser cutting machine on medium density fiberboard (MDF). The bistability and merits of antagonistic pre-shaped double beams are experimentally validated. Finally, a contactless actuation test is performed using 660 nm wavelength laser heating shape memory alloy (SMA) active elements.
机译:本文提出了一种基于对立预成形双梁的整体式多稳态微执行器。设计的微执行器由两排双稳态微执行器组成,可提供四个稳定位置。每行的双稳态机构是一对拮抗的预成形梁。与预压缩的双稳态梁方法相比,这种双稳态机构具有更容易的预加载操作。此外,它解决了平行预成型双稳态双梁的不对称力输出问题。同时,几何极限低于平行的预成形双稳态双梁,这确保了具有相同尺寸的微执行器的行程更小。设计的微执行器是使用激光切割机在中密度纤维板(MDF)上制造的。对抗性预成型双梁的双稳性和优点已通过实验验证。最后,使用660 nm波长的激光加热形状记忆合金(SMA)有源元件执行非接触式致动测试。

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