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Study on the thermal buckling and post-buckling of metallic sub-stiffening structure and its optimization

机译:金属亚加劲结构的热屈曲和后屈曲及其优化研究

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摘要

Thermal buckling and post-buckling behaviors of sub-stiffened panels were analyzed. The study was carried out by constructing an optimization processes of metallic sub-stiffened panel under the framework of Multidisciplinary software ModelCenter and Finite element software ABAQUS. The optimal design parameters of sub-stiffened panels for three different kinds of layout were acquired with Particle Swarm Optimization algorithm. The optimal results showed that, compared to the conventional stiffened panel with equivalent mass designs, the critical thermal buckling temperatures of prismatic sub-stiffened panel, grid sub-stiffened panel and curvilinear sub-stiffened panel increased by 63.1, 57.1 and 70.5 %, respectively. The thermal post-buckling equilibrium paths of conventional stiffened panel and sub-stiffened panels were also compared by using Riks method. The results indicated that the introduction of sub-stiffening to the conventional stiffened panel can significantly improve the panel's thermal buckling load and thermal post-buckling behavior, which demonstrates that sub-stiffened structures have a promising application prospect in the field of structural engineering.
机译:分析了亚加筋板的热屈曲和屈曲后行为。通过在多学科软件ModelCenter和有限元软件ABAQUS的框架下构造金属亚加筋板的优化过程来进行研究。利用粒子群优化算法获得了三种不同布局的亚加筋板的最优设计参数。最佳结果表明,与同等质量设计的传统加劲板相比,棱柱形亚加劲板,格栅亚加劲板和曲线亚加劲板的临界热屈曲温度分别提高了63.1%,57.1%和70.5%。 。还使用Riks方法比较了传统加劲板和次加劲板的热屈曲后平衡路径。结果表明,在传统的加劲板中引入亚加劲能可以显着改善板的热屈曲载荷和后屈曲行为,这表明亚加劲结构在结构工程领域具有广阔的应用前景。

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