首页> 外文会议>ASME biennial conference on engineering systems design and analysis;ESDA2010 >EXACT ELECTROELASTIC FIELD OF A FUNCTIONALLY GRADED PIEZOELECTRIC CANTILEVER BEAM SUBJECTED TO PURE BODY FORCE LOADING
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EXACT ELECTROELASTIC FIELD OF A FUNCTIONALLY GRADED PIEZOELECTRIC CANTILEVER BEAM SUBJECTED TO PURE BODY FORCE LOADING

机译:功能梯度压电悬臂梁在纯粹力作用下的精确弹性场。

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The electroelastic response of functionally graded piezoelectric cantilever beams which includes the effect of body force is presented in this paper. The material properties such as elastic compliance, piezoelectric and dielectric impermeability are assumed to be graded with different indices in the thickness direction according to exponential distributions. Systems of fourth order inhomogeneous partial differential equations (PDEs) which are satisfied by the stress and induction functions and involve the body force terms are derived. Spectral forms for electrical and mechanical variables in the x-axis are employed to convert the partial differential governing equations and the associated boundary conditions into sets of ordinary differential equations, and the resulting equations are solved in a closed form manner. Subsequently, in numerical studies, the effects of the material property graded indices are examined upon the electroelastic response of FGP cantilever beams under pure body force loadings.
机译:本文介绍了功能梯度压电悬臂梁的电弹性响应,其中包括体力的影响。假定诸如弹性柔度,压电和介电不渗透性之类的材料特性根据厚度分布在厚度方向上具有不同的指标。推导了由应力和归纳函数满足并涉及体力项的四阶不均匀偏微分方程(PDE)的系统。使用x轴上的机电变量的频谱形式将偏微分控制方程和相关的边界条件转换为一组常微分方程,并以封闭形式求解所得方程。随后,在数值研究中,研究了材料特性分级指数对纯车身力载荷下FGP悬臂梁的电弹性响应的影响。

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