首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Exact solution by dynamic stiffness method for the natural vibration of porous functionally graded plate considering neutral surface
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Exact solution by dynamic stiffness method for the natural vibration of porous functionally graded plate considering neutral surface

机译:考虑中性表面的多孔功能分级板自然振动的动态刚度方法精确解决方案

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This paper presents the formulation of dynamic stiffness matrix for the natural vibration analysis of porous power-law functionally graded Levy-type plate. In the process of formulating the dynamic stiffness matrix, Kirchhoff-Love plate theory in tandem with the notion of neutral surface has been taken on board. The developed dynamic stiffness matrix, a transcendental function of frequency, has been solved through the Wittrick–Williams algorithm. Hamilton’s principle is used to obtain the equation of motion and associated natural boundary conditions of porous power-law functionally graded plate. The variation across the thickness of the functionally graded plate’s material properties follows the power-law function. During the fabrication process, the microvoids and pores develop in functionally graded material plates. Three types of porosity distributions are considered in this article: even, uneven, and logarithmic. The eigenvalues computed by the dynamic stiffness matrix using Wittrick–Williams algorithm for isotropic, power-law functionally graded, and porous power-law functionally graded plate are juxtaposed with previously referred results, and good agreement is found. The significance of various parameters of plate vis-à-vis aspect ratio ( L/b ), boundary conditions, volume fraction index ( p ), porosity parameter ( e ), and porosity distribution on the eigenvalues of the porous power-law functionally graded plate is examined. The effect of material density ratio and Young’s modulus ratio on the natural vibration of porous power-law functionally graded plate is also explained in this article. The results also prove that the method provided in the present work is highly accurate and computationally efficient and could be confidently used as a reference for further study of porous functionally graded material plate.
机译:本文介绍了动态刚度基质的配方,用于多孔电力 - 法的自然振动分析功能梯度征集型板。在制定动态刚度矩阵的过程中,在船上串联串联串联的kirchhoff-love板理论已被占用。通过Wittrick-Williams算法解决了发达的动态刚度矩阵,频率的超越函数。汉密尔顿的原理用于获得多孔动力法功能分级板的运动和相关自然边界条件的方程。功能梯度板材的厚度的变化遵循电力法函数。在制造过程中,微孔和孔在功能梯度的材料板中发育。本文中考虑了三种类型的孔隙度分布:偶数,不均匀和对数。由动态刚度矩阵计算的特征值使用Wittrick-Williams算法用于各向同性,动力法在功能分级和多孔电力 - 律功能分级板上与先前提到的结果并置,并且发现了良好的一致性。板Vis-in-Vis纵横比(L / B),边界条件,体积分数指数(P),孔隙度参数(E)和孔隙度分布在多孔电力法的特征上的重要性板被检查。本文还解释了本文的材料密度比对多孔电力法的自然振动的影响。结果还证明了本作工作中提供的方法高度准确和计算效率,并且可以自信地用作进一步研究多孔功能梯质材料板的参考。

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