首页> 外文期刊>Journal of Reinforced Plastics and Composites >Nonlinear Finite Element Analysis of Laminated Composite Doubly Curved Shells in Hygrothermal Environment
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Nonlinear Finite Element Analysis of Laminated Composite Doubly Curved Shells in Hygrothermal Environment

机译:湿热环境下叠层复合双曲壳的非线性有限元分析

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摘要

In the present investigation, the geometrically nonlinear analysis of laminated doubly curved shells in a hygrothermal environment is presented using the finite element method. The laminated composite shells may be exposed to moisture and temperature during their service life. Hygrothermal effects induce residual stresses and the laminated shell may undergo large bending deformation. The shell geometry used in the formulation is derived using the orthogonal curvilinear coordinate system. Based on the principle of virtual work the nonlinear finite element equations are derived. A total Lagrangian approach associated to the arc-length method is implemented to solve the equilibrium equations. The present results are found to compare well with those available in the open literature and parametric studies are performed to analyze the nonlinear deflections of [0°/±45°/90°]_s laminated spherical, cylindrical and conoidal shell panels under hygrothermal condition.
机译:在本研究中,使用有限元方法提出了湿热环境下叠层双曲壳的几何非线性分析。层压复合材料外壳在使用寿命期间可能会暴露于湿气和温度下。湿热效应会引起残余应力,并且叠层壳可能会发生较大的弯曲变形。配方中使用的壳体几何形状是使用正交曲线坐标系导出的。基于虚功原理,推导了非线性有限元方程。实施了与弧长方法相关的总拉格朗日方法来求解平衡方程。发现本发明的结果与公开文献中的结果很好地比较,并且进行了参数研究以分析在湿热条件下[0°/±45°/ 90°] s层压球形,圆柱形和圆锥形壳板的非线性挠度。

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