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Nonlinear resonance behavior of functionally graded cylindrical shells in thermal environments

机译:功能梯度圆柱壳在热环境中的非线性共振行为

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摘要

This paper deals with the nonlinear vibrations of functionally graded cylindrical shells in thermal environments. The equivalent properties of functionally graded materials are described as a power-law distribution in the thickness direction and are considered to be temperature-dependent. A typical case with a primary resonance excitation and a 1:2 internal resonance between two modes is analyzed. The energy approach and the Lagrangian formulation are employed to derive the reduced low-dimensional nonlinear ordinary differential equations of motion based on Donnell's nonlinear shell theory. The dynamic behaviors of system are investigated by means of the so-called multiple scale method. The amplitude-frequency curves and the bifurcation behavior of the system are analyzed using numerical continuation method. The effects of temperature and volume fractions of constituent material on the amplitude response of the system are fully discussed.
机译:本文研究了热环境下功能梯度圆柱壳的非线性振动。功能梯度材料的等效特性被描述为厚度方向上的幂律分布,并被认为与温度有关。分析了两个模式之间具有一次共振和一个1:2内部共振的典型情况。基于Donnell的非线性壳理论,采用能量方法和Lagrangian公式来导出简化的低维非线性常微分运动方程。通过所谓的多尺度方法研究系统的动态行为。利用数值连续法分析了系统的幅频曲线和分叉特性。充分讨论了温度和组成材料的体积分数对系统振幅响应的影响。

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