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35 Hz shape memory alloy actuator with bending-twisting mode

机译:35 Hz形状记忆合金执行器带有弯曲扭曲模式

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摘要

Shape Memory Alloy (SMA) materials are widely used as an actuating source for bending actuators due to their high power density. However, due to the slow actuation speed of SMAs, there are limitations in their range of possible applications. This paper proposes a smart soft composite (SSC) actuator capable of fast bending actuation with large deformations. To increase the actuation speed of SMA actuator, multiple thin SMA wires are used to increase the heat dissipation for faster cooling. The actuation characteristics of the actuator at different frequencies are measured with different actuator lengths and results show that resonance can be used to realize large deformations up to 35 Hz. The actuation characteristics of the actuator can be modified by changing the design of the layered reinforcement structure embedded in the actuator, thus the natural frequency and length of an actuator can be optimized for a specific actuation speed. A model is used to compare with the experimental results of actuators with different layered reinforcement structure designs. Also, a bend-twist coupled motion using an anisotropic layered reinforcement structure at a speed of 10 Hz is also realized. By increasing their range of actuation characteristics, the proposed actuator extends the range of application of SMA bending actuators.
机译:形状记忆合金(SMA)材料因其高功率密度而被广泛用作弯曲致动器的致动源。但是,由于SMA的启动速度较慢,因此其可能的应用范围受到限制。本文提出了一种智能软复合材料(SSC)执行器,该执行器能够快速进行大变形的弯曲驱动。为了提高SMA致动器的致动速度,多根SMA细线用于增加散热量,从而加快冷却速度。用不同的执行器长度测量了执行器在不同频率下的执行特性,结果表明,共振可用于实现高达35 Hz的大变形。致动器的致动特性可以通过改变嵌入在致动器中的分层加强结构的设计来修改,因此致动器的固有频率和长度可以针对特定的致动速度进行优化。使用模型与具有不同分层加强结构设计的执行器的实验结果进行比较。此外,还实现了使用各向异性分层增强结构以10 Hz的速度进行的弯扭耦合运动。通过增加其致动特性的范围,提出的致动器扩展了SMA弯曲致动器的应用范围。

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