An Eight-Node Non-Conforming Generalized Partial Hybrid Element and Its Application in Stress Analysis of Repaired Composite Laminate Structures

Ruishan Xing, Gang Li, Fan Wang, Yang Yang
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Abstract

To ensure the overall continuity of displacement and out-of-plane stress in composite laminate structures and to quantitatively analyze the mechanical properties of composite materials after damage or repair, a finite element solution method is applied based on the modified generalized H–R variational principle. This method utilizes an eight-node non-conforming generalized partial hybrid element (NCGPME8). The partial hybrid model established with this hybrid element can accurately satisfy the out-of-plane stress boundary conditions of the structure, ensuring the continuity of out-of-plane stress. Numerical examples are used to validate that this hybrid model can effectively compute thick and thin laminate structures with high accuracy and rapid convergence of out-of-plane stress. Finally, considering the insensitivity to irregular meshes and the accuracy in calculating in-plane stress, this method is propagated by element coefficient deduction or element material replacement, then employed to analyze the in-plane and out-of-plane stress distributions of laminates with damage from stepwise grinding perforations, and laminates repaired in a stepwise fashion. Stress and displacement at different locations on the laminates are compared and analyzed, leading to a quantitative assessment of the impact of damage and repair on the stress distribution of the laminates.
八节点非正规广义部分混合单元及其在修复复合材料层压板结构应力分析中的应用
为了确保复合材料层压结构中位移和平面外应力的整体连续性,并定量分析复合材料在损伤或修复后的力学性能,我们采用了一种基于改进的广义 H-R 变分原理的有限元求解方法。该方法采用了八节点非顺应性广义局部混合单元(NCGPME8)。利用该混合元素建立的部分混合模型可以精确地满足结构的面外应力边界条件,确保面外应力的连续性。通过数值实例验证了该混合模型能有效计算厚薄层结构,且计算精度高,面外应力收敛速度快。最后,考虑到该方法对不规则网格的不敏感性和平面内应力计算的准确性,将该方法通过元素系数扣除或元素材料替换的方式进行传播,然后采用该方法分析了分步磨削穿孔损坏的层压板和分步修复的层压板的平面内和平面外应力分布。通过比较和分析层压板上不同位置的应力和位移,可以定量评估损伤和修复对层压板应力分布的影响。
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