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Vibration amplitude and thermal effects on the nonlinear behavior of thin circular functionally graded plates

机译:振动幅度和热效应对圆形功能梯度薄板非线性行为的影响

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摘要

In this paper, the nonlinear free axisymmetric vibration of a thin circular functionally graded plate in thermal environment is formulated in terms of von-Karman's dynamic equations, and a semi-analytical approach is developed. The plate thickness is constant and the material properties of the functionally graded plate are assumed to vary continuously through the thickness, according to a power-law distribution of the volume fraction of the constituents. For harmonic vibrations, by using assumed-time-mode method and Kantorovich time averaging technique, governing equations are solved. The nonlinear frequencies and associated stresses are determined at large amplitudes of vibration. Effects of material compositions and thermal loads on the vibration characteristics and stresses are examined. The numerical results obtained here are compared with available published results, based on various approaches.
机译:本文根据冯·卡尔曼动力学方程,提出了热功能环境下圆形薄功能梯度薄板的非线性自由轴对称振动问题,并提出了一种半解析方法。板的厚度是恒定的,并且根据成分的体积分数的幂律分布,假定功能梯度板的材料性能在整个厚度上连续变化。对于谐波振动,通过使用假定时间模式方法和Kantorovich时间平均技术,可以求解控制方程。非线性频率和相关的应力在较大的振幅下确定。研究了材料成分和热负荷对振动特性和应力的影响。基于各种方法,将此处获得的数值结果与可用的已发布结果进行比较。

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