首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Vibration analysis of a thin functionally graded plate having an out of plane material inhomogeneity resting on Winkler-Pasternak foundation under different combinations of boundary conditions
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Vibration analysis of a thin functionally graded plate having an out of plane material inhomogeneity resting on Winkler-Pasternak foundation under different combinations of boundary conditions

机译:在边界条件不同组合下,在Winkler-Pasternak基金会上具有搁置的薄功能梯度板的振动分析,其靠在Winkler-Pasternak基础上的边界条件

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摘要

In the present research article, classical plate theory has been adopted to analyze functionally graded material plate, having out of plane material inhomogeneity, resting on Winkler-Pasternak foundation under different combinations of boundary conditions. The material properties of the functionally graded material plate vary according to power law in the thickness direction. Rayleigh-Ritz method in conjugation with polynomial displacement functions has been used to develop a computationally efficient mathematical model to study free vibration characteristics of the plate. Convergence of frequency parameters (nondimensional natural frequencies) has been attained by increasing the number of polynomials of displacement function. The frequency parameters of the functionally graded material plate obtained by proposed method are compared with the open literature to validate the present model. Firstly, the present model is used to calculate first six natural frequencies of the functionally graded plate under all possible combinations of boundary conditions for the constant value of stiffness of Winkler and Pasternak foundation moduli. Further, the effects of density, aspect ratio, power law exponent, Young's modulus on frequency parameters of the functionally graded plate resting on Winkler-Pasternak foundation under specific boundary conditions viz. CCCC (all edges clamped), SSSS (all edges simply supported), CFFF (cantilever), SCSF (simply supported-clamped-free) are studied extensively. Furthermore, effect of stiffness of elastic foundation moduli (k(p) and k(w)) on frequency parameters are analyzed. It has been observed that effects of aspect ratios, boundary conditions, Young's modulus and density on frequency parameters are significant at lower value of the power law exponent. It has also been noted from present investigation that Pasternak foundation modulus has greater effect on frequency parameters as compared to the Winkler foundation modulus. Most of the results presented in this paper are novel and may be used for the validation purpose by researchers. Three dimensional mode shapes for the functionally graded plate resting on elastic foundation have also been presented in this article.
机译:在本研究制品中,已采用经典板理论来分析功能渐进的材料板,在不同的边界条件的不同组合下搁置在Winkler-Pasternak基础上。功能梯度材料板的材料特性根据厚度方向的功率法而变化。 Rayleigh-Ritz方法与多项式位移功能共轭用于开发计算有效的数学模型,以研究板的自由振动特性。通过增加位移函数的多项式的数量来实现频率参数(非幂天然频率)的收敛。通过所提出的方法获得的功能渐变材料板的频率参数与开放文献进行了比较以验证本模型。首先,本模型用于计算功能上梯度板的前六个自然频率,这些边界条件的所有可能组合对于普通沃克勒和Pasternak基础模量的恒定值的恒定值。此外,密度,纵横比,电力律指数,杨氏模量在特定边界条件下靠近沃克勒-PASTENNAK基础的功能分级板频率参数。 CCCC(所有边缘夹紧),SSSS(所有边缘都已支持),CFFF(悬臂),SCSF(简单地支持夹紧)都是广泛的。此外,分析了弹性地基模量(K(P)和K(W))对频率参数的刚度的影响。已经观察到纵横比,边界条件,杨氏模量和频率参数的浓度的影响在幂律指数的较低值下显着。与Winkler Foundation模量相比,本研究表明,帕斯康纳克基础模量对频率参数产生了更大的影响。本文提出的大多数结果是新颖的,可用于研究人员的验证目的。本文还提出了在弹性基础上搁在弹性基础上的功能渐变板的三维模式形状。

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