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A finite element based assessment of static behavior of multiphase magneto-electro-elastic beams under different thermal loading

机译:基于有限元的多相磁电弹性梁在不同热载荷下的静态行为评估

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摘要

In this article, static analysis of a magneto-electro-elastic (MEE) beam subjected to various thermal loading and boundary conditions has been investigated. Influence of pyroeffects (pyroelectric and pyromagnetic) on the direct quantities (displacements and the potentials) of the MEE beam under different boundary conditions is studied. The finite element (FE) formulation of the MEE beam is developed using the total potential energy principle and the constitutive equations of the MEE material taking into account the coupling between elastic, electric, magnetic and thermal properties. Using the Maxwell electrostatic and electromagnetic relations, variation of stresses, displacements, electric and magnetic potentials along the length of the MEE beam are investigated. Effect of volume fractions, aspect ratio and boundary conditions on the direct quantities in thermal environment has been determined. The present investigation may be useful in design and analysis of magnetoelectroelastic smart structures and sensor applications.
机译:在本文中,研究了在各种热载荷和边界条件下的磁电弹性(MEE)梁的静态分析。研究了热效应(热电和热磁)对在不同边界条件下MEE束的直接量(位移和电势)的影响。考虑到弹性,电,磁和热特性之间的耦合,使用总势能原理和MEE材料的本构方程来开发MEE梁的有限元(FE)公式。利用麦克斯韦静电和电磁关系,研究了沿MEE束长度方向的应力,位移,电势和磁势的变化。确定了体积分数,纵横比和边界条件对热环境中直接量的影响。本研究可能对磁电弹性智能结构和传感器应用的设计和分析有用。

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