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Effect of hygrothermal environment on the nonlinear free vibration responses of laminated composite plates: A nonlinear finite element micromechanical approach

机译:湿热环境对层压复合板非线性自由振动响应的影响:非线性有限元微机械方法

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The present research deals with the nonlinear free vibration responses of laminated composite flat panel under hygrothermal environment, by considering the corrugated material properties of the composite lamina through a micromechanical model. The plate has been modeled in the framework of the higher-order shear deformation theory and Green—Lagrange strain displacement relations have been used to account for the geometric nonlinearity. Moreover, the present formulation incorporates all the nonlinear higher order terms arising in the model to capture the exact flexure of the panel. Hamilton's principle has been adopted to derive the system governing equations and suitable nonlinear finite element steps have been employed for discretization. The responses are computed using direct iterative method and compared with those available published results for validation purpose. Numerical illustrations are presented to investigate the effect of various parameters (thickness ratio, support conditions and lamination scheme) on the nonlinear frequency responses of laminated composite plate under hygrothermal environment using the present model and discussed in details.
机译:本研究通过考虑通过微机械模型的复合材料的波纹材料特性,涉及湿热环境下层叠复合平板的非线性自由振动响应。该板在高阶剪切变形理论的框架中建模,绿色拉格朗日应变位移关系已被用于考虑几何非线性。此外,本制剂包括模型中产生的所有非线性高阶术语,以捕获面板的精确弯曲。汉密尔顿的原则已被采用推导系统管理方程,合适的非线性有限元步骤已被采用离散化。使用直接迭代方法计算响应,并与可用已发布结果的验证目的进行比较。提出了数值例证,以研究使用本模型在湿热环境下层压复合板在湿热环境下的非线性频率响应的影响,详细讨论。

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