磁控形状记忆合金作动器模型研究

Jun Lu, Peng Ba
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引用次数: 1

摘要

磁控形状记忆合金(MSMA)在磁场中产生应力,从而改变MSMA材料的形状。为了指导MSMA作动器的设计、控制和应用,有必要对作动器的输出与输入的依赖关系进行建模。基于热力学模型和磁场感应应力的计算方法,建立了MSMA致动器的输出应变和输出力模型。该模型可以定量描述执行器在磁场、温度和应力作用下的输出应变和力。实验结果与计算结果一致,表明了该模型在MSMA作动器上的有效性和实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Actuator Model of Magnetically Controlled Shape Memory Alloy
Magnetically controlled shape memory alloys (MSMA) generate stress in a magnetic field, which can change the shape of the MSMA material. In order to guide the design, control and application of the MSMA actuators, modeling of the input dependence of the output for the actuators are necessary. Based on the thermodynamic model and the calculation method of magnetic field-induced stress, the model of output strain and force are presented for MSMA actuator in this paper. The model can quantitatively describe the output strain and force of the actuator under magnetic field, temperature and stress. The experimental results and the calculating ones are consistent, which indicates the validity and practicability of the model on MSMA actuator.
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