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首页> 外文期刊>Thin-Walled Structures >Buckling analysis of thin-walled members with open-branched cross section via semi-analytical finite strip transfer matrix method
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Buckling analysis of thin-walled members with open-branched cross section via semi-analytical finite strip transfer matrix method

机译:用半解析有限条传递矩阵法分析开支截面薄壁构件的屈曲

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摘要

Thin-walled members with open-branched cross section have been used in many modem engineering structures, and their buckling performance has been widely studied. In this paper, two transfer methods are developed to tackle the transfer problems at the junction of the open-branched cross-section of thin-walled members by using semi-analytical finite strip transfer matrix method (FS-TMM) which is a combined use of semi-analytical finite strip method (SA-FSM) and transfer matrix method (TMM) for the buckling analysis. Compared to traditional SA-FSM, this method has a smaller matrix and higher computational efficiency due to no global stiffness matrix generated. An asymmetric E-section member, a symmetric I-section member and a X-section member with loaded edges simply supported are analyzed by the derived formulation. All the results are compared with SA-FSM's or finite element method's results to prove the reliability and efficiency of this method.
机译:具有开放分支横截面的薄壁构件已用于许多现代工程结构中,并且其屈曲性能已得到广泛研究。本文通过结合使用半解析有限条带传递矩阵法(FS-TMM),开发了两种传递方法来解决薄壁构件的开口分支截面交界处的传递问题。半分析有限条法(SA-FSM)和传递矩阵法(TMM)用于屈曲分析。与传统的SA-FSM相比,由于没有生成全局刚度矩阵,因此该方法具有较小的矩阵和较高的计算效率。通过导出的公式分析了具有简单支撑的加载边的非对称E型截面构件,对称I型截面构件和X型截面构件。将所有结果与SA-FSM或有限元方法的结果进行比较,以证明该方法的可靠性和有效性。

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