Bistable Actuation Based on Antagonistic Buckling SMA Beams

IF 2.2 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Actuators Pub Date : 2023-11-11 DOI:10.3390/act12110422
Xi Chen, Lars Bumke, Eckhard Quandt, Manfred Kohl
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Abstract

Novel miniature-scale bistable actuators are developed, which consist of two antagonistically coupled buckling shape memory alloy (SMA) beams. Two SMA films are designed as buckling SMA beams, whose memory shapes are adjusted to have opposing buckling states. Coupling the SMA beams in their center leads to a compact bistable actuator, which exhibits a bi-directional snap-through motion by selectively heating the SMA beams. Fabrication involves magnetron sputtering of SMA films, subsequent micromachining by lithography, and systems integration. The stationary force–displacement characteristics of monostable actuators consisting of single buckling SMA beams and bistable actuators are characterized with respect to their geometrical parameters. The dynamic performance of bistable actuation is investigated by selectively heating the SMA beams via direct mechanical contact to a low-temperature heat source in the range of 130–190 °C. The bistable actuation is characterized by a large stroke up to 3.65 mm corresponding to more than 30% of the SMA beam length. Operation frequencies are in the order of 1 Hz depending on geometrical parameters and heat source temperature. The bistable actuation at low-temperature differences provides a route for waste heat recovery.
基于抗屈曲SMA梁的双稳态驱动
研制了一种新型微型双稳致动器,该致动器由两根拮抗耦合屈曲形状记忆合金(SMA)梁组成。将两种SMA薄膜设计为屈曲SMA梁,调整其记忆形状使其具有相反的屈曲状态。在其中心耦合SMA光束导致紧凑的双稳致动器,通过选择性加热SMA光束,该致动器表现出双向啪啪穿过运动。制造包括磁控溅射的SMA薄膜,随后的微加工通过光刻,和系统集成。从几何参数的角度分析了单屈曲SMA梁和双稳致动器的静力-位移特性。通过直接机械接触低温热源,在130-190℃范围内选择性加热SMA梁,研究了双稳态驱动的动态性能。双稳驱动的特点是可达3.65 mm的大行程,相当于SMA梁长度的30%以上。根据几何参数和热源温度,工作频率为1hz。低温差双稳态驱动为余热回收提供了一条途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Actuators
Actuators Mathematics-Control and Optimization
CiteScore
3.90
自引率
15.40%
发文量
315
审稿时长
11 weeks
期刊介绍: Actuators (ISSN 2076-0825; CODEN: ACTUC3) is an international open access journal on the science and technology of actuators and control systems published quarterly online by MDPI.
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