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Hygrothermal analysis of laminated composites using C-0 FE model based on higher order zigzag theory

机译:基于高阶Zigzag理论的C-0 FE模型湿热分析层压复合材料

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摘要

A C-0 FE model developed based on an efficient higher order zigzag theory is used for hygrothermal analysis of laminated composite plates. The C-0 FE model satisfies the inter- laminar shear stress continuity at the interfaces and zero transverse shear stress conditions at plate top and bottom. In this model the first derivatives of transverse displacement have been treated as independent variables to circumvent the problem of C-1 continuity associated with the above plate theory. In the present theory the above mentioned C-0 continuity of the present element is compensated in the stiffness matrix formulation by using penalty parameter approach. In order to avoid stress oscillations observed in the displacement based finite element, the stress field derived from temperature/moisture fields (initial strains) must be consistent with total strain field. Special steps are introduced by field consistent approach (e. g., sampling at gauss points) to compensate this problem. A nine noded C-0 continuous isoparametric element is used in the proposed FE model. Comparison of present numerical results with other existing solutions shows that the proposed FE model is efficient, accurate and free of locking.
机译:基于高效高阶ZigAg理论开发的C-0 Fe模型用于层压复合板的湿热分析。 C-0 Fe模型在板顶部和底部的界面处和零横向剪切应力条件下满足层间剪切应力连续性。在该模型中,横向位移的第一衍生物已被视为独立变量,以避免与上述板理论相关的C-1连续性问题。在本理论中,通过使用惩罚参数方法在刚度基质制剂中补偿本发明的上述C-0连续性。为了避免在基于位移的有限元件中观察到的应力振荡,源自温度/水分田(初始菌株)的应力场必须与总应变场一致。特殊步骤由字段一致的方法(例如,在高斯分开)中引入,以补偿此问题。在提出的Fe模型中使用九个点亮的C-0连续等托卡胺。与其他现有解决方案的现有数值结果的比较表明,所提出的FE模型是有效,准确的,无锁定。

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