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A n-order four variable refined theory for bending and free vibration of functionally graded plates

机译:功能梯度板的弯曲和自由振动的n阶四变量细化理论

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This paper presents a simple n-order four variable refined theory for the bending and vibration analyses of functionally graded plates. By dividing the transverse displacement into bending and shear parts, the number of unknowns and governing equations of the present theory is reduced, and hence, makes it simple to use. The present theory is variationally consistent, uses the n-order polynomial term to represent the displacement field, does not require shear correction factor, and gives rise to transverse shear stress variation such that the transverse shear stresses vary parabolically across the thickness satisfying shear stress free surface conditions. The governing equations are derived by employing the Hamilton's principle and the physical neutral surface concept. The accuracy of the present solutions is verified by comparing the obtained results with available published ones.
机译:本文为功能梯度板的弯曲和振动分析提供了一个简单的n阶四变量细化理论。通过将横向位移分为弯曲部分和剪切部分,减少了本理论的未知数和控制方程式,因此使使用简单。本理论是变分一致的,使用n阶多项式项来表示位移场,不需要剪切校正因子,并引起横向剪应力变化,从而横向剪应力在整个厚度上呈抛物线变化,满足无剪应力的要求。表面条件。通过采用汉密尔顿原理和物理中性表面概念来推导控制方程。通过将获得的结果与可用的公开结果进行比较,可以验证本解决方案的准确性。

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