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Thermoelastic Stability Analysis Of Laminated Composite Plates: An Analytical Approach

机译:层合复合板的热弹性稳定性分析:一种分析方法

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The paper presents Chebyshev series based analytical solutions for the postbuckling response of the moderately thick laminated composite rectangular plates with and without elastic foundations. The plate is assumed to be subjected to in-plane mechanical, thermal and thermomechanical loadings. In-plane mechanical loading consists of uniaxial, biaxial, shear loadings and their combinations. The temperature induced loading is due to either uniform temperature or a linearly varying temperature across the thickness. The mathematical formulation is based on higher order shear deformation theory (HSDT) and von-Karman nonlinear kinematics. The elastic foundation is modeled as shear deformable with cubic nonlinearity. The thermal arid mechanical properties of the composites are assumed to be temperature dependent. The quadratic extrapolation technique is used for linearization and fast converging finite double Chebyshev series is used for spatial discretization of the governing nonlinear equations of equilibrium. The effects of plate parameters and foundation parameters on buckling and postbuckling response of the plate are presented.
机译:本文介绍了基于Chebyshev系列的解析解决方案,用于具有和不具有弹性基础的中厚层压复合矩形板的屈曲后响应。假定该板承受平面内机械,热和热机械载荷。平面内机械载荷包括单轴,双轴,剪切载荷及其组合。温度引起的负载是由于整个厚度的温度均匀或线性变化。数学公式基于高阶剪切变形理论(HSDT)和von-Karman非线性运动学。弹性地基被建模为具有立方非线性的剪切变形。假定复合材料的热和机械性能与温度有关。二次外推技术用于线性化,快速收敛的有限双Chebyshev级数用于控制平衡的非线性方程的空间离散。给出了板参数和基础参数对板屈曲和屈曲后响应的影响。

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