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The stochastic dynamic snap-through response of thermally buckled composite panels

机译:热屈曲复合板的随机动态快速响应

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摘要

The stochastic nonlinear snap-through response of a clamped composite panel under the combination of a severe acoustic excitation and a steady thermal effect has been investigated through the single-mode Fokker-Planck distribution function. The snap-through is a post-buckling behavior, which results in large amplitude vibration between two equilibrium configurations. A novel parameter, which is deduced from the single-mode Fokker-Planck distribution function and the depth of the potential energy well, is proposed to predict the transition from no snap-through to a persistent stochastic snap-through. The effects of the excitation, damping, the stiffness and the temperature variation on the stochastic dynamic snap-through response boundary have been given by a parametric analysis. Results from the single-mode analysis have been validated extensively by the explicit finite element numerical simulation for a heated clamped composite panel under the overall sound pressure (OASPL) of 120-176 dB. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过单模Fokker-Planck分布函数,研究了在严重的声激励和稳定的热效应的作用下,夹紧的复合板的随机非线性快速响应。咬合是屈曲后的行为,会导致两个平衡配置之间出现大幅度的振动。从单模Fokker-Planck分布函数和势能井的深度推导出一个新的参数,以预测从无快速过渡到持久随机快速过渡的过程。通过参数分析给出了激励,阻尼,刚度和温度变化对随机动态快速响应边界的影响。单模分析的结果已通过在120-176 dB的总声压(OASPL)下对加热的夹紧复合板的有限元数值模拟进行了广泛的验证。 (C)2015 Elsevier Ltd.保留所有权利。

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