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Failure analysis of laminated composite skew laminates

机译:层压复合偏斜层压板的故障分析

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Failure analysis of laminated composite skew laminates subjected to transverse loads is presented by developing a C_0 finite element (FE) model based on higher order shear deformation theory (HSDT). In this theory the transverse shear stresses are taken as zero at the laminate top and bottom. A realistic parabolic variation of transverse shear strains through the laminate thickness is assumed and the use of shear correction factor is avoided. The C_0 finite element formulation has been done quite efficiently to overcome the problem of C_1 continuity associated with the HSDT. The isoparametric FE used in the present model consists of nine nodes with seven nodal unknowns per node. Five different failure criterions have been used for each problem. Since there is no result available in the literature on the problem of skew laminates subjected to transverse loads based on HSDT, present results are validated with few results available on laminates subjected to transverse loads without skew angle. Many new results are presented on the failure load for skew laminates subjected to transverse loads considering different geometry, boundary conditions, ply orientation and skew angles.
机译:经受横向载荷层压复合层压材料歪斜的故障分析是通过基于高阶剪切变形理论(HSDT)开发一个C_0有限元(FE)模型呈现。在这一理论横向剪切应力取为零,在层叠体的顶部和底部。通过层叠物厚度的横向剪切应变的现实抛物线变化被假定并且避免使用剪切校正因子。所述C_0有限元制剂已经做了相当有效地克服与HSDT相关C_1连续性的问题。在本模型中使用的参FE由与每个节点7个节点未知9个节点。五种不同的失效准则已用于每一个问题。由于没有在上进行基于HSDT横向载荷歪斜叠层的问题文献中获得的结果,本发明的结果进行了验证与经受横向负载而不会歪斜角层板可用少的结果。许多新的结果被呈现在故障负载承受横向载荷歪斜层压考虑不同的几何形状,边界条件,层取向和斜交角。

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