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Linearized buckling analysis of isotropic and composite beam-columns by Carrera Unified Formulation and Dynamic Stiffness Method

机译:各向同性和组合梁柱的线性屈曲分析,采用Carrera统一公式和动力刚度法

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摘要

This article introduces a one-dimensional (1D) higher-order exact formulation for linearized buckling analysis of beam-columns. The Carrera Unified Formulation (CUF) is utilized and the displacement field is expressed as a generic N-order expansion of the generalized unknown displacement field. The principle of virtual displacements is invoked along with CUF to derive the governing equations and the associated natural boundary conditions in terms of fundamental nuclei, which can be systematically expanded according to N by exploiting an extensive index notation. After the closed form solution of the N-order beamcolumn element is sought, an exact dynamic stiffness (DS) matrix is derived by relating the amplitudes of the loads to those of the responses. The global DS matrix is finally processed through the application of the Wittrick-Williams algorithm to extract the buckling loads of the structure. Isotropic solid and thin-walled cross-section beams as well as laminated composite structures are analyzed in this article. The validity of the formulation and its broad range of applicability are demonstrated through comparisons of results from the literature and by using commercial finite element codes
机译:本文介绍了用于梁柱线性屈曲分析的一维(1D)高阶精确公式。利用Carrera统一公式(CUF),并将位移场表示为广义未知位移场的一般N阶展开。虚拟位移的原理与CUF一起被调用以得出基本核的控制方程和相关的自然边界条件,可以通过使用广泛的索引符号来根据N进行系统地扩展。在寻求N阶梁柱单元的闭合形式解之后,通过将载荷的振幅与响应的振幅相关联,可以得出精确的动态刚度(DS)矩阵。最后,通过应用Wittrick-Williams算法处理全局DS矩阵,以提取结构的屈曲载荷。本文分析了各向同性的实心和薄壁截面梁以及层状复合结构。通过比较文献结果和使用商业有限元代码,证明了该配方的有效性及其广泛的适用性

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