首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Response analysis of hybrid functionally graded material plate subjected to thermo-electro-mechanical loading
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Response analysis of hybrid functionally graded material plate subjected to thermo-electro-mechanical loading

机译:抗热机械荷载流动式杂交功能梯度材料板的响应分析

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摘要

Static and free vibration response analysis of a functionally graded piezoelectric material plate under thermal, electric, and mechanical loads is done in this study. The displacement field is acquired using the first-order shear deformation theory, and the Hamilton principle is applied to deduce the motion equations. Temperature-dependent material properties of the functionally graded material plate are used, and these properties follow the power-law distributions along the thickness direction. However, the properties of piezoelectric material layers are assumed to be independent of the electric field and temperature. Finite element formulation for the functionally graded piezoelectric material plate is done using the combined effect of mechanical and electrical loads. The effects of parameters like electrical loading, volume fraction exponent N , and temperature distribution on the static and free vibration characteristics of the functionally graded piezoelectric material square plate are analyzed and presented. Responses are obtained in terms of the centerline deflection, axial stress and the nondimensional natural frequency with various boundary conditions. It is observed that the centerline deflection and nondimensional natural frequency increases as exponent N increases. At the same time, the axial stress decreases with an increase in exponent N . The findings of the static and the free vibration analysis suggest the potential application of the functionally graded piezoelectric material plate in the piezoelectric actuator as well as for sensing deflection in bimorph.
机译:在本研究中,在热,电动和机械载荷下进行功能梯度压电材料板的静态和自由振动响应分析。使用一阶剪切变形理论获取位移场,汉密尔顿原理应用于推导出运动方程。使用功能梯度材料板的温度依赖性材料特性,这些性能沿着厚度方向遵循电力律分布。然而,假设压电材料层的性质与电场和温度无关。用机械和电负载的组合效果来完成用于功能梯度压电材料板的有限元配方。分析和呈现了电荷,体积分数指数N和温度分布等参数的影响,并呈现在功能梯度压电材料方形板的静态和自由振动特性上。根据具有各种边界条件的中心线偏转,轴向应力和非幂天然频率而获得的响应。观察到,随着指数n增加,中心线偏转和非幂的自然频率增加。同时,轴向应力随着指数N的增加而减小。静电和自由振动分析的发现表明,功能梯度压电材料板在压电致动器中的潜在应用以及对双芯片的传感偏转。

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