Effect of Winkler Foundation on Radially Symmetric Vibrations of Bi-Directional FGM Non-Uniform Mindlin’s Circular Plate Subjected to In-Plane Peripheral Loading

N. Ahlawat, R. Lal
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引用次数: 2

Abstract

An analysis has been presented of the effect of elastic foundation and uniform in-plane peripheral loading on the natural frequencies and mode shapes of circular plates of varying thickness exhibiting bi-directional functionally graded characteristics, on the basis of first order shear deformation theory. The material properties of the plate are varying following a power-law in both the radial and transverse directions. The numerical solutions of the coupled differential equations leading the motion of simply supported and clamped plates acquired by using Hamilton’s principle, is attained by harmonic differential quadrature method. The effect of different plate parameters namely gradient index, heterogeneity parameter, density parameter, taper parameter and thickness parameter is illustrated on the vibration characteristics for the first three modes of vibration for various values of in-plane peripheral loading parameter together with foundation parameter. Critical buckling loads in compression are calculated for both the boundary conditions by putting the frequencies to zero. The reliability of the present technique is confirmed by comparing the results with exact values and results of published work.
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Winkler基础对双向FGM非均匀Mindlin圆板面内周边荷载径向对称振动的影响
基于一阶剪切变形理论,分析了弹性基础和均匀面内周边荷载对具有双向功能梯度特征的变厚圆板固有频率和振型的影响。板材的材料性能在径向和横向上都遵循幂律变化。利用哈密顿原理得到的简支夹紧板运动耦合微分方程的数值解,用调和微分求积分法得到。分析了不同板参数(梯度指数、非均质性参数、密度参数、锥度参数和厚度参数)对面内周边加载参数及基础参数不同取值时前三阶振型振动特性的影响。通过将频率设为零,计算了两种边界条件下的压缩临界屈曲载荷。通过与精确值和已发表的研究结果的比较,证实了该方法的可靠性。
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