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A novel shape memory alloy microactuator for large in-plane strokes and forces

机译:一种新型的形状记忆合金微致动器,可实现较大的平面行程和作用力

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摘要

This paper describes a novel concept for in-plane actuators based on a thin free-standing shape memory alloy (SMA) film. The presented guidelines can be used to design a variety of actuators that can provide a combination of large strokes and forces for linear and rotary motions. A prototype actuator demonstrated a displacement of 45 mu m related to 4.5% of the SMA film length, and a force of up to 115 mN related to a stress of 230 MPa in the SMA film without plastic deformations. These capabilities allow the actuator to work against the stiff springs that are essential for the devices' ability to sustain vibrations, impacts, and accelerations.
机译:本文介绍了一种基于薄型自立式形状记忆合金(SMA)膜的平面致动器的新颖概念。提出的指南可用于设计各种执行器,这些执行器可为线性和旋转运动提供大行程和力的组合。原型致动器显示出45微米的位移(与SMA膜长度的4.5%相关),以及高达115 mN的力(与SMA膜中的230 MPa应力相关),而没有塑性变形。这些功能使执行器可以抵抗刚性弹簧,而刚性弹簧对于设备承受振动,冲击和加速度的能力至关重要。

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