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Instability analysis of an electro-magneto-elastic actuator: A continuum mechanics approach

机译:电磁弹性执行器的稳定性分析:连续力学方法

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The study of advanced artificial electro-magneto-elastic (EME) materials recently connects the material science with the electrodynamics. In particular, EME materials established a new research direction, which provides the fruitful ideas for the advanced engineering and medical field applications. In the present paper, we introduce a continuum mechanics-based method to analyze an electro-magneto-mechanical instability (EMMI) phenomenon of a smart actuator made of an EME material. The proposed method is based on the nonlinear theory of electro-magneto-elasticity followed by the second law of thermodynamics. We develop an analytical EMMI model for a smart actuator through a new amended energy function. This amended energy function accounts the electro-magnetostriction phenomenon for a class of an incompressible isotropic EME material. Additionally, the amended energy function successfully resolves the physical interpretation issue of the Maxwell stress tensor in large deformation. The formulated continuum mechanics-based EMMI model is also compared and validated with an energy-based EMMI model existing in the literature.
机译:先进人工电磁 - 弹性(EME)材料的研究最近将材料科学与电动力学连接。特别是,EME材料建立了新的研究方向,为先进的工程和医疗领域应用提供了富有成效的思路。在本文中,我们介绍了一种基于连续的基于力学的方法来分析由EME材料制成的智能致动器的电磁机械不稳定(EMMI)现象。所提出的方法基于电磁弹性的非线性理论,然后是热力学的第二律。我们通过新的修正能量功能开发了一个智能执行器的分析EMMI模型。这种修正的能量函数核对一类不可压缩各向同性eME材料的电磁传递现象。此外,修改后的能量函数成功地解决了大变形中麦克斯韦压力张量的物理解释问题。还比较了制定的基于连续的基于Continuum Mementics的EMMI模型,并用文献中存在的基于能量的EMMI模型进行了验证。

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