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Design of Shape Memory Alloy Coil Spring Actuator for Improving Performance in Cyclic Actuation

机译:用于提高循环驱动性能的形状记忆合金线圈弹簧执行器的设计

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摘要

Performance of the shape memory alloy (SMA) coil spring actuator in cyclic actuation as an artificial muscle is strongly related to the mechanical design of the coil geometry. This paper proposes a practical design method for improving the frequency and efficiency of the SMA coil spring actuator; by designing the SMA coil spring to have large index (coil diameter/wire diameter) and pitch angle (LIP), cooling characteristics can be improved (increasing the actuation frequency) and large deformation can be obtained. The LIP design process is based on the two-state static model that describes the displacement-force relationship of the SMA coil spring in two states—a fully austenite phase and a fully martensite phase. The design process gives accurate design parameters of the SMA coil spring actuator that satisfy the required stroke and force. The model of the fully martensite phase of the SMA coil that includes the stress-induced detwinning enables the use of maximum shear strain of the SMA. The design method reduces the mass of an SMA without changing the stroke and increase the power density and efficiency. The cyclic actuation experiments demonstrate that the LIP design doubles the maximum frequency of SMA coil actuator with one-sixth the mass of the non-LIP design.
机译:形状记忆合金(SMA)螺旋弹簧致动器在循环驱动中作为人造肌肉的性能与线圈几何形状的机械设计密切相关。本文提出了一种实用的设计方法来提高SMA螺旋弹簧执行器的频率和效率。通过将SMA螺旋弹簧设计为具有较大的指数(线圈直径/线径)和螺距角(LIP),可以改善冷却特性(增加驱动频率)并获得较大的变形。 LIP设计过程基于两种状态的静态模型,该模型描述了SMA螺旋弹簧在两种状态(全奥氏体相和全马氏体相)下的位移力关系。设计过程给出了SMA螺旋弹簧执行器的精确设计参数,可以满足所需的行程和力。 SMA线圈的全马氏体相模型(包括应力引起的脱孪)可以使用SMA的最大剪切应变。该设计方法可在不改变行程的情况下减轻SMA的重量,并提高功率密度和效率。循环驱动实验表明,LIP设计使SMA线圈驱动器的最大频率翻了一番,是非LIP设计质量的六分之一。

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