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Stochastic nonlinear bending response of laminated composite plates with system randomness under lateral pressure and thermal loading

机译:侧压和热载荷作用下具有系统随机性的层合复合板的随机非线性弯曲响应

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摘要

In this paper, the effect of sensitivity of randomness in system parameters on the nonlinear transverse central deflection response of laminated composite plates subjected to transverse uniform lateral pressure and thermal loading is examined. System parameters such as the lamina material properties, expansion of thermal coefficients, lamina plate thickness and lateral load are modelled as basic random variables. A higher order shear deformation theory in the von-Karman sense is used to model the system behavior of the laminated plate. A direct iterative-based C~0 nonlinear finite element method in conjunction with the first-order perturbation technique developed by the authors is extended for thermal problem to obtain the second-order response statistics, i.e., mean and variance of the nonlinear transverse deflection of the plate. Typical numerical results of composite plates with temperature independent and dependent material properties subjected to uniform temperature and combination of uniform and transverse temperature are obtained for various combinations of geometric parameters, uniform lateral pressures, staking sequences and boundary conditions. The results have been compared with those available in the literature and an independent Monte Carlo simulation.
机译:在本文中,研究了系统参数的随机灵敏度对承受横向均匀侧向压力和热负荷的层合复合板的非线性横向中心挠曲响应的影响。系统参数(如薄片材料特性,热系数扩展,薄片板厚度和侧向载荷)被建模为基本随机变量。在冯-卡尔曼意义上的高阶剪切变形理论被用来模拟层压板的系统行为。针对热问题扩展了直接迭代的C〜0非线性有限元方法,结合作者开发的一阶摄动技术,获得了二阶响应统计量,即非线性横向挠度的均值和方差。碟子。对于几何参数,均匀的侧向压力,铆接顺序和边界条件的各种组合,获得了具有温度无关性和材料特性的复合板的典型数值结果,这些复合材料经受了均匀温度以及均匀和横向温度的组合。将结果与文献中的结果和独立的蒙特卡洛模拟进行了比较。

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