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首页> 外文期刊>Journal of intelligent material systems and structures >A simplified model for high-rate actuation of shape memory alloy torque tubes using induction heating
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A simplified model for high-rate actuation of shape memory alloy torque tubes using induction heating

机译:感应加热高速驱动形状记忆合金扭矩管的简化模型

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摘要

Shape memory alloy actuators deliver high forces while being compact and reliable, making them ideal for consideration in aerospace applications. Induction heating of shape memory alloy actuators, specifically tubes that twist about the longitudinal axis, has recently been studied experimentally and computationally using finite element analysis. Reduced-order models for the torsional behavior of shape memory alloy tubes and induction heating of general metallic tubes exist, and thus, it is possible for these thermal and mechanical models to be combined and numerically solved. This work develops and implements an engineering model for inductively heated shape memory alloy tubes based on the reduction of the governing partial differential equations in space and time to an ordinary differential equation in time. An example solution is compared to finite element analysis results and agrees well. Finally, the ordinary differential equation is linearized and solved analytically. The linearized model agrees well with the nonlinear ordinary differential equation and finite element model.
机译:形状记忆合金致动器不仅结构紧凑且可靠,而且可提供强大的作用力,是航空航天应用中理想的选择。形状记忆合金致动器的感应加热,特别是绕纵轴扭曲的管,最近已经通过有限元分析进行了实验和计算研究。存在形状记忆合金管的扭转行为和普通金属管的感应加热的降阶模型,因此,可以将这些热模型和力学模型进行组合并进行数值求解。这项工作基于将控制的空间和时间上的偏微分方程简化为时间上的普通微分方程,开发并实现了感应加热形状记忆合金管的工程模型。将示例解决方案与有限元分析结果进行了比较,并很好地达成了共识。最后,将常微分方程线性化并进行解析求解。线性化模型与非线性常微分方程和有限元模型非常吻合。

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