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An efficient technique for simultaneous local and overall buckling analysis of stiffened panels

机译:同时进行加劲板局部和整体屈曲分析的有效技术

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摘要

The overall buckling and local buckling of stiffened panels are two possible failure modes and thus should be concerned by engineers in the preliminary design of lightweight structures. In this paper, an efficient technique is proposed to solve the local and overall buckling problem of stiffened panels simultaneously. A weak form quadrature plate element with stiffeners located anywhere in the plates other than along the nodal lines of the plate element is formulated. Explicit formulations with an arbitrary number of nodes are given. Improvement of solution accuracy can be easily done by increasing the number of element nodes if necessary. A convergence study is performed. Several numerical examples are given. Results are compared with either existing analytic solutions or finite element data for verification. It is shown that high accuracy can be achieved with a small number of nodes. In addition, the proposed method can allow a quick analysis of simultaneous overall and local buckling behavior of stiffened panels and thus may be suitable for optimization routines in preliminary design of stiffened panels.
机译:加劲板的整体屈曲和局部屈曲是两种可能的失效模式,因此工程师在轻型结构的初步设计中应予以关注。本文提出了一种有效的技术来同时解决加劲板的局部屈曲和整体屈曲问题。配制了一种弱形式的正交板元件,其加强筋位于板中除沿板元件的节点线以外的任何位置。给出了具有任意数量节点的显式公式。如果需要,可以通过增加元素节点的数量轻松地提高解决方案的准确性。进行收敛研究。给出了几个数值示例。将结果与现有分析解决方案或有限元数据进行比较以进行验证。结果表明,使用少量节点可以实现高精度。另外,所提出的方法可以允许快速分析加劲板的同时整体和局部屈曲行为,因此可以适合于加劲板的初步设计中的优化程序。

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