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On the High-Temperature Free Vibration Analysis of Elastically Supported Functionally Graded Material Plates Under Mechanical In-Plane Force Via GDQR

机译:通过GDQR在机械面内力下弹性支撑的功能渐变材料板的高温振动分析

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摘要

In this article, the effect of Pasternak foundation on free axisymmetric vibration of functionally graded circular plates subjected to mechanical in-plane force and a nonlinear temperature distribution (NTD) along the thickness direction has been investigated on the basis of classical plate theory. The plate material is graded in thickness direction according to a power-law distribution and its mechanical properties are assumed to be temperature-dependent (TD). At first, the equation for thermo-elastic equilibrium and then equation of motion for such a plate model have been derived by Hamilton's principle. Employing generalized differential quadrature rule (GDQR), the numerical values of thermal displacements and frequencies for clamped and simply supported plates vibrating in the first three modes have been computed. Values of in-plane force parameter for which the plate ceases to vibrate have been reported as critical buckling loads. The effect of temperature difference, material graded index, in-plane force, and foundation parameters on the frequencies has been analyzed. The benchmark results for uniform and linear temperature distributions (LTDs) have been computed. A study for plates made with the material having temperature-independent (TI) mechanical properties has also been performed as a special case. Comparison of results with the published work has been presented.
机译:本文在经典板理论的基础上研究了沿着厚度方向进行机械面内力的功能渐变圆形板的自由轴对称振动的Pasternak基础的影响。根据动力法分布,板材以厚度方向分配,并且其机械性能被假定为温度依赖(TD)。首先,汉密尔顿原则得到了热弹性平衡的等式,然后是这种板模型的运动方程。采用广义差分正交规则(GDQR),已经计算了夹紧和简单地支撑在前三种模式中振动的夹紧和简单支撑板的频率的数值。平面力参数的值被报告为关键屈曲负载。已经分析了温差,材料梯度指数,面内力和基础参数的效果已经分析。已经计算了均匀和线性温度分布(LTD)的基准结果。还进行了对具有温度无关(Ti)机械性能的材料的板作为特殊情况。已经提出了出版工作的结果比较。

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