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Failure analysis of laminated structures by FEM based on nonlinear constitutive relationship

机译:基于非线性本构关系的有限元分析

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Nonlinear characteristic of matrix material is considered in the Bridging Model constitutive theory for composite materials. The model is consistent in that the laminate nonlinear constitutive equations automatically deteriorate to those of the isotropic matrix material when the fiber content becomes zero or when the fiber becomes the same as that of the matrix. This model is programmed into UGENS subroutine of the commercial finite element code ABAQUS for analyzing the nonlinear response and ultimate strength of composite laminates readily. In the paper, the influence of different load increments, mesh scales, and stiffness discount schemes on the finite element (FE) analyzed results has been studied. Strength envelopes and stress-strain or load-deflection curves of several laminates subjected to in-plane as well as bending loads are obtained. It is shown that the FE results agree well with analytical and experimental data.
机译:复合材料的桥接模型本构理论考虑了基体材料的非线性特性。该模型是一致的,因为当纤维含量变为零或当纤维变得与基质相同时,层压非线性本构方程会自动退化为各向同性基质材料的方程。该模型被编程到商业有限元代码ABAQUS的UGENS子程序中,可以轻松分析复合材料层压板的非线性响应和极限强度。在本文中,研究了不同载荷增量,网格比例和刚度折扣方案对有限元(FE)分析结果的影响。获得了数种在面内以及弯曲载荷下的层压板的强度包络线和应力-应变或载荷-变形曲线。结果表明,有限元分析结果与分析和实验数据吻合良好。

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