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Nonlinear statics and dynamics of antisymmetric composite laminated square plates supported on nonlinear elastic subgrade

机译:非线性弹性地基上支承的非对称复合方形板的非线性静力学和动力学

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摘要

Non-linear static and dynamic analysis is presented for composite laminated anti-symmetric square plates supported on non-linear elastic foundation subjected to uniformly distributed transverse and step loading, respectively. The formulation is based on first order shear deformation theory (FSDT) and Von-Karman non-linearity, subgrade interaction is modeled as shear deformable with cubic nonlinearity. The methodology of solution is based on the Chebyshev series technique. The coupled non-linear partial differential equations are linearized using quadratic extrapolation technique. Houbolt time marching scheme is employed for temporal discretisation. An incremental iterative approach is employed for the solution. The effects of foundation stiffness parameters and boundary conditions on the non-linear static and dynamic analysis on the central response are studied.
机译:分别对横向弹性载荷和阶跃载荷分别作用于非线性弹性地基上的复合层状对称非对称方板进行了非线性静动力分析。该公式基于一阶剪切变形理论(FSDT)和Von-Karman非线性,路基相互作用被建模为具有立方非线性的剪切变形。解决方案的方法基于Chebyshev级数技术。使用二次外推技术对耦合的非线性偏微分方程进行线性化。 Houbolt时间行进方案用于时间离散化。解决方案采用增量迭代方法。研究了基础刚度参数和边界条件对中心响应非线性静动力分析的影响。

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