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Progressive Failure Analysis of Composite Laminates Using 3-D Finite Element Method

机译:使用3D有限元方法的复合材料层板逐步破坏分析

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摘要

Progressive failure analysis was conducted in the present study for the cross-ply and quasi- isotropic laminates subjected to axial extension. Stresses and strains are calculated by the 3-d finite element method based on the generalized layerwise plate theory (GLPT) in order to consider the local effect near the free edges. The types and size of damage in composite laminates are predicted in the failure analysis that consist of a set of failure criteria and property degradation models for each mode of failure. In case of matrix cracking, the macroscopic stiffness reduction model based on the shear-lag method is introduced to the finite element method in order to consider nonlinear reduction of stiffness at each strain level. Mesh refinement is conducted both in-plane and through the thickness direction in order to predict the failure load and the damage accumulation accurately. The failure mechanism and ultimate failure loads of the cross-ply and quasi-isotropic laminates for different stacking sequences with the same thickness are investigated.
机译:在本研究中,对轴向延伸的交叉层和准各向同性层板进行了渐进式失效分析。应力和应变是根据广义层板理论(GLPT)通过3-d有限元方法计算的,目的是考虑自由边缘附近的局部效应。复合材料层压板的损坏类型和大小可在故障分析中预测,该分析由一组故障准则和每种故障模式的性能退化模型组成。在基体开裂的情况下,将基于剪力滞方法的宏观刚度降低模型引入到有限元方法中,以考虑每个应变水平下刚度的非线性降低。在平面内和沿厚度方向都进行网格细化,以准确预测破坏载荷和损伤累积。研究了具有相同厚度的不同堆叠顺序的交叉层和准各向同性层压板的破坏机理和极限破坏载荷。

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