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Stochastic First-ply Failure Analysis of Laminated Composite Plates Under in Plane Tensile Loading

机译:平面拉伸载荷下层叠层复合板的随机第一帘布衰竭分析

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The present work deals with second order statistics of first-ply failure response of geometrically nonlinear laminated composite plate subjected to in-plane tensile loading with random system properties. System properties such as the material properties and lamina plate thickness are modeled as independent random variables. The mathematical formulation is based on higher order shear deformation theory (HSDT) with von-Karman nonlinear kinematics. An efficient C0 nonlinear finite element method based on direct iterative procedure in conjunction with a first order perturbation approach (FOPT) is extended successfully and applied for failure problem in random environment and is employed to evaluate the dimensionless mean failure load and variance of failure index by modeling the system properties as basic random variables using Tsai- Wu and Hoffman failure criteria. Typical numerical results are presented to examine the effect of amplitude ratios, boundary conditions, lamination schemes with random system properties for different failure criterion. The results obtained using present solution approach is validated with the results available in the literatures.
机译:本作工作涉及与随机系统性质进行面内拉伸载荷的几何非线性层压复合板的二阶统计的第一帘布衰竭响应。诸如材料特性和薄层板厚度的系统性质被建模为独立的随机变量。数学制构基于von-Karman非线性运动学的高阶剪切变形理论(HSDT)。基于直接迭代过程的高效C0非线性有限元方法与第一阶扰动方法(FOPT)成功扩展并在随机环境中施加故障问题,用于评估无量纲平均故障负载和失效指数的变化使用TSAI-WU和Hoffman失败标准将系统属性建模为基本随机变量。提出了典型的数值结果来检查幅度比,边界条件,层压方案对不同故障标准的随机系统特性的影响。使用当前解决方案方法获得的结果被文献中可用的结果验证。

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