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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Nonlinear analysis of microstructure-dependent functionally graded piezoelectric material actuators
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Nonlinear analysis of microstructure-dependent functionally graded piezoelectric material actuators

机译:依赖于微结构的功能梯度压电材料执行器的非线性分析

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摘要

In the present work, a nonlinear thermo-electro-mechanical response of functionally graded piezoelectric material (FGPM) actuators is investigated. The theoretical formulation is based on the Timoshenko beam theory with the von Karman nonlinearity (in the form of midplane stretching), and a microstructural length scale is incorporated by means of the modified couple stress theory. A power-law distribution of thermal, electrical, and mechanical properties through beam thickness (or height) is assumed. The governing equations are derived using the principle of virtual displacements. A displacement finite element model of the theory is developed, and the resulting system of nonlinear algebraic equations is solved with the help of Newton's iteration method. Numerical results are presented for transverse deflection as a function of load parameters and out-of-plane boundary conditions. The parametric effects of microstructural length scale parameter, power-law index of the material distribution across the thickness, boundary conditions, beam geometry, and applied actuator voltage on the beam response are investigated through various numerical examples. The results reveal the existence of bifurcation (or critical states) for certain types of in-plane loads. For other load types, including out-of-plane loads, the beam undergoes a unique and stable deflection path that does not contain any critical point.
机译:在目前的工作中,研究了功能梯度压电材料(FGPM)执行器的非线性热电机械响应。理论公式是基于Timoshenko梁理论和von Karman非线性(以中平面拉伸的形式),并且通过改进的耦合应力理论结合了微结构长度尺度。假定通过梁厚度(或高度)的热,电和机械性能的幂律分布。控制方程是根据虚拟位移原理导出的。建立了该理论的位移有限元模型,并借助牛顿迭代法求解了非线性代数方程组。给出了横向挠度随载荷参数和平面外边界条件变化的数值结果。通过各种数值示例研究了微结构长度尺度参数,材料在厚度上的分布的幂律指数,边界条件,梁的几何形状以及施加的致动器电压对梁响应的参数影响。结果表明,某些类型的面内载荷存在分叉(或临界状态)。对于其他载荷类型,包括平面外载荷,梁会经过一个唯一且稳定的偏转路径,其中不包含任何临界点。

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