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Nonlinear bending and snap-through instability analyses of conical shell panels using element free Galerkin method

机译:使用无单元Galerkin方法的圆锥形壳体面板的非线性弯曲和快速不稳定性分析

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摘要

The nonlinear bending and snap-though instability phenomenon of isotropic and composite conical shell panels are investigated here using the element free Galerkin (EFG) method with moving kriging (MK) shape function. Sanders' shell theory along with von Kaman strain-displacement assumptions are employed to derive the nonlinear equations of equilibrium, which are solved by modified Riks technique in conjunction with Newton-. Raphson method. The convergence and accuracy of the EFG method are examined for the linear and nonlinear bending behavior of conical shell panels. Thereafter, the effect of geometrical parameters on the nonlinear stability characteristics of conical panels is investigated under different loading conditions. New results for linear as well as nonlinear bending behavior of isotropic and laminated conical shell panels, hitherto not found in the literature, are presented for future reference.
机译:本文利用具有移动克里格(MK)形状函数的无单元伽勒金(EFG)方法研究了各向同性和复合圆锥壳面板的非线性弯曲和快速穿透不稳定性现象。利用Sanders的壳理论和von Kaman应变位移假设推导出平衡的非线性方程,该方程通过改进的Riks技术结合Newton-求解。拉夫森法。研究了锥壳面板的线性和非线性弯曲行为的EFG方法的收敛性和准确性。此后,研究了在不同载荷条件下几何参数对圆锥板非线性稳定性特征的影响。各向同性和层压圆锥形壳面板的线性和非线性弯曲行为的新结果(迄今为止在文献中未发现)被提出以供将来参考。

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