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首页> 外文期刊>International journal of mechanics and materials in design >Geometrically nonlinear flexural analysis of hygro-thermo-elastic laminated composite doubly curved shell panel
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Geometrically nonlinear flexural analysis of hygro-thermo-elastic laminated composite doubly curved shell panel

机译:湿热弹复合双曲壳板的几何非线性挠曲分析

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摘要

In this article, nonlinear flexural behaviour of laminated composite doubly curved shell panel is investigated under hygro-thermo-mechanical loading by considering the degraded composite material properties through a micromechanical model. The laminated panel is modelled using higher order shear deformation mid-plane kinematics and Green-Lagrange geometric nonlinear strain displacement relations. In the present case, all the nonlinear higher order terms are included in the mathematical model to obtain the exact flexure of the structural panel. The nonlinear system governing equations are derived using variational method and discretised using the nonlinear finite element steps. Numerical results are computed through direct iterative method and validated by comparing with those published results available in open literature. Finally, wide variety of numerical examples are computed using the proposed model to address the effect of hygrothermal conditions, geometrical and material parameters and support conditions on the flexural behaviour of laminated composite doubly curved shell panel.
机译:在本文中,通过微力学模型考虑复合材料的性能退化,研究了湿热机械载荷作用下层压复合材料双曲壳板的非线性挠曲行为。使用高阶剪切变形中平面运动学和Green-Lagrange几何非线性应变位移关系对层压板进行建模。在当前情况下,所有非线性高阶项都包含在数学模型中,以获得结构面板的精确弯曲。非线性系统控制方程采用变分法推导,并采用非线性有限元步骤离散化。数值结果是通过直接迭代方法计算的,并与公开文献中提供的已公开结果进行了比较,从而对其进行了验证。最后,使用提出的模型计算了各种数值示例,以解决湿热条件,几何和材料参数以及支撑条件对层压复合双曲壳面板挠曲性能的影响。

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