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A BISTABLE SHAPE MEMORY MICROSWITCH

机译:双稳态形状记忆微动开关

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摘要

A novel concept of a bistable microswitch is presented, which combines an antagonistic shape memory alloy (SMA) actuation mechanism with two end positions and magnetic components to maintain these positions in power-off state. The layout of the antagonistic SMA actuation mechanism consists of two mechanically coupled freely suspended TiNi microbridges of 20 μm thickness, which are prestrained with respect to each other. The electro-thermo-mechanical response of the coupled microbridges is investigated for various degrees of prestrain to determine the maximum actuation stroke, minimum required magnetic retention force and maximum switching force. For magnetic retention, the ferromagnetic attraction of different hard and soft magnetic microstructures is studied. By varying the diameter of a hard magnetic cylinder for a given diameter of a soft-magnetic disc and fixed thicknesses, the ferromagnetic attraction force displays a pronounced optimum. First demonstrator microswitches with outer dimensions of about 7×7×4 mm~3 are presented, which show large work outputs, featuring strokes and contact forces up to 84 μm and 60 mN, respectively.
机译:提出了一种双稳态微动开关的新颖概念,该概念将对抗性形状记忆合金(SMA)致动机制与两个终端位置和磁性组件结合在一起,以将这些位置保持在断电状态。拮抗SMA致动机构的布局由两个相互机械连接的,厚度为20μm的机械连接的,自由悬挂的TiNi微桥组成。针对不同程度的预应力,研究了耦合微桥的电热机械响应,以确定最大驱动行程,最小所需磁保持力和最大切换力。为了保持磁性,研究了不同的硬磁和软磁微结构的铁磁吸引力。对于给定的软磁盘直径和固定厚度,通过改变硬磁圆柱体的直径,铁磁吸引力显示出明显的最佳状态。展示了第一款演示器微动开关,其外部尺寸约为7×7×4 mm〜3,显示出较大的功输出,其冲程和接触力分别高达84μm和60 mN。

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