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Dynamic Thermomechanical Modeling of a Wet Shape Memory Alloy Actuator

机译:湿形状记忆合金驱动器的动态热力学建模

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This paper presents combined thermal and mechanical models of a wet shape memory alloy (SMA) wire actuator. The actuator consists of a SMA wire suspended concentrically in a compliant tube. Actuation occurs as hot and cold water that are alternately pumped through the tube to contract and extend the wire, respectively. The thermomechanical model presented in this paper accounts for the nonuniform temperature change of the SMA wire due to alternating the temperature of the flow along the wire. The thermal portion of the model consists of analysis of the heat transfer between the fluid and the SMA wire. Heat loss to the environment and the temperature change of the fluid through the actuator are taken into account. Based on this analysis, the temperature of the wire at segments along its length can be determined as a function of time. The mechanical portion of the model approximates the strain-martensite fraction and martensite fraction-temperature relationships. By combining the thermal and mechanical models, the displacement of the wire can be determined as a function of time. The combined thermomechanical model will be useful for predicting the performance of wet SMA actuators in a variety of applications.
机译:本文介绍了湿形状记忆合金(SMA)导线执行器的热力学模型和机械模型的组合。致动器由同心悬挂在柔性管中的SMA线组成。当热水和冷水交替泵送通过管道以使电线收缩和伸展时,就会发生驱动。本文介绍的热力学模型解释了由于沿金属丝流动温度交替变化而导致的SMA金属丝温度变化不均匀。模型的热部分包括对流体与SMA线之间的热传递的分析。考虑到环境的热损失和通过执行机构的流体温度变化。基于此分析,可以将导线沿其长度的分段温度确定为时间的函数。模型的机械部分近似于应变-马氏体分数和马氏体分数-温度关系。通过组合热模型和机械模型,可以将导线的位移确定为时间的函数。组合的热力学模型将有助于预测湿式SMA执行器在各种应用中的性能。

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