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Uniaxial and biaxial post-buckling behaviors of longitudinally graded rectangular plates on elastic foundations according to the 3D theory of elasticity

机译:根据3D弹性理论,纵向渐变矩形板在弹性地基上的单轴和双轴屈曲后行为

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Longitudinally varying the material properties may be an adequate optimization solution when there are restrictions in varying cross sections of the load carrying elements but leads to distorted and variable length buckling and post-buckling deformation waves. In the present paper, uniaxial and biaxial post buckling behaviors of the longitudinally graded plates are investigated. Neither post-buckling nor even buckling of the longitudinally graded plates have been studied so far. Moreover, effects of the elastic foundation that significantly alter the post-buckling deformations and strength of the plate, are studied. Due to occurrence of large deformations in the post-buckling region, the exact 3D elasticity theory is employed here instead of the approximate plate theories. Furthermore, the full form of Green's strain tensor is adopted. To establish a stress field that is continuous at the mutual nodes of the adjacent elements, a C-1-continuous 3D Hermitian element is employed to discretize the plate. The nonlinear post-buckling equilibrium equations are solved by Crisfield-Ramm arc-length method in conjunction with the modified Newton-Raphson technique. Results show that heterogeneity of the material properties may lead to abrupt deflection decreases or even reversals and the elastic foundation leads to increases in both the buckling strength and number of the deformation waves. (c) 2016 Elsevier Ltd. All rights reserved.
机译:当承载元件的横截面变化受到限制时,纵向改变材料性能可能是适当的优化解决方案,但会导致变形和可变长度的屈曲和屈曲后变形波。在本文中,研究了纵向梯度板的单轴和双轴屈曲行为。迄今为止,既没有研究纵向梯度板的屈曲,也没有研究屈曲。此外,研究了弹性地基显着改变板的屈曲后变形和强度的影响。由于在后屈曲区域中发生大变形,因此此处采用了精确的3D弹性理论,而不是近似的板理论。此外,采用了格林应变张量的完整形式。为了建立在相邻元素的相互节点处连续的应力场,可使用C-1连续3D Hermitian元素离散化板。通过Crisfield-Ramm弧长方法和改进的Newton-Raphson技术求解非线性屈曲后的平衡方程。结果表明,材料性能的不均匀性可能导致挠曲的急剧减小甚至逆转,而弹性地基则导致屈曲强度和变形波数量均增加。 (c)2016 Elsevier Ltd.保留所有权利。

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