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A simplified method for elastic large deflection analysis of plates and stiffened panels due to local buckling

机译:由于局部屈曲而对板和加劲板进行弹性大挠度分析的简化方法

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摘要

A computational model for analysis of local buckling and postbuckling of stiffened panels is derived. The model provides a tool that is more accurate than existing design codes, and more efficient than nonlinear finite element methods. Any combination of biaxial in-plane compression or tension, shear, and lateral pressure may be analysed. Deflections are assumed in the form of trigonometric function series. The deformations are coupled such that continuity of rotation between the plate and the stiffener web is ensured, as well as longitudinal continuity of displacement. The response history is traced using energy principles and perturbation theory. The procedure is semi-analytical in the sense that all energy formulations are derived analytically, while a numerical method is used for solving the resulting set of equations, and for incrementation of the solution. The stress in certain critical points are checked using the von Mises yield criterion, and the onset of yielding is taken as an estimate of ultimate strength for design purposes.
机译:推导了用于分析加筋板局部屈曲和后屈曲的计算模型。该模型提供的工具比现有的设计代码更准确,并且比非线性有限元方法更有效。可以分析双轴面内压缩或拉伸,剪切和侧向压力的任意组合。变形以三角函数系列的形式假设。变形被耦合,从而确保板和加强腹板之间的旋转连续性以及位移的纵向连续性。使用能量原理和微扰理论追踪响应历史。从所有能量公式都可以通过解析得出的意义上说,该过程是半分析的,而数值方法则用于求解所得的一组方程式并用于求解的增量。使用冯·米塞斯屈服准则检查某些临界点上的应力,并且将屈服的开始时间视为设计目的的极限强度。

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