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Higher-order theory based boundary-discontinuous Fourier analysis of simply supported thick cross-ply doubly curved panels

机译:基于高阶理论的简单支撑厚交叉双曲面板边界不连续傅里叶分析

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摘要

A boundary-discontinuous double Fourier series based solution methodology is employed to solve the problem of a HSDT-based thick cross-ply doubly curved panel, characterized by a system of five highly coupled linear partial differential equations, with the SSI-type simply supported boundary condition prescribed at all four edges. For derivation of the complementary solution, the complementary boundary constraints are introduced through boundary discontinuities of some of the particular solution functions and their partial derivatives. Such discontinuities form a set of measure zero. The present solution methodology is based on the fact that the complementary boundary constraints, which are inequalities, play as important a role as the prescribed (admissible) boundary conditions, which are equalities. The effects of curvature, lamination, material property, thickness as well as their interactions are investigated in detail. Numerical results presented herein illustrate the severity of the effects of those parameters.
机译:采用基于边界不连续双傅立叶级数的求解方法来解决基于HSDT的厚交叉双层双曲面板的问题,该面板的特征是由五个高度耦合的线性偏微分方程组组成,并带有SSI型简单支撑边界在所有四个边缘规定的条件。为了导出互补解,通过某些特定解函数及其偏导数的边界不连续性来引入互补边界约束。这种不连续性形成了一组零度量。本解决方案方法基于以下事实:互补的边界约束(不等式)与规定的(允许的)边界条件(等价)起着重要的作用。详细研究了曲率,叠层,材料性能,厚度及其相互作用的影响。本文提供的数值结果说明了这些参数影响的严重性。

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