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Axisymmetric snap-through behavior of Piezo-FGM shallow clamped spherical shells under thermo-electro-mechanical loading

机译:压电-FGM浅夹持球形壳在热电-机械载荷下的轴对称突跳特性

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摘要

Snap-through buckling of shallow clamped spherical shells made of functionally graded material (FGM) and surface-bonded piezoelectric actuators under the thermo-electro-mechanical loading is studied in this paper. The governing equations are based on the classical shell theory and the Sanders nonlinear kinematics equations. It is assumed that the property of the functionally graded materials vary continuously through the thickness of the shell according to a power law distribution of the volume fraction of the constituent materials. The constituent materials of the functionally graded shell are assumed to be mixture of ceramic and metal. The results show that the axisymmetric buckling of Piezo-FGM shallow clamped spherical shells under thermo-electro-mechanical loading is of snap-through type. The intensity of buckling is dependent on the geometry of the shell, value of thermo-electro-mechanical loading and type of thermal loading. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文研究了由功能梯度材料(FGM)和表面结合压电致动器组成的浅夹持球形壳在热电机械作用下的快速弯曲。控制方程基于经典壳理论和Sanders非线性运动学方程。假定功能梯度材料的性质根据壳层的厚度根据组成材料的体积分数的幂律分布而连续变化。假定功能梯度外壳的组成材料是陶瓷和金属的混合物。结果表明,压电-FGM浅夹持球形壳在热电机械载荷下的轴对称屈曲为卡扣型。屈曲强度取决于壳体的几何形状,热电机械负载的值以及热负载的类型。 (C)2014 Elsevier Ltd.保留所有权利。

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