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Experiment and Finite Element Analysis on the Ultimate Strength of Ring-Stiffened Tube-Gusset Joints

机译:环加筋角撑板极限强度的试验与有限元分析

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摘要

Adding ring-stiffeners is an effective strategy for strengthening CHS tubular joints. However, research on the capacity of ring-stiffened CHS tube-gusset joints remains limited. In this study, we performed experimental and numerical analyses to derive static strength equations for this joint. For convenience, we simplified the complex joint model into a ring plate to CHS joint, which consisted of a CHS tube and a ring-stiffener. First, we tested five specimens to obtain failure mode and ultimate strength. Second, a finite element model was established and validated by the experimental results. Then, we used the verified numerical method to simulate the behavior of the ring plate to CHS joint. A wide range of geometric parameters was considered, and the relevant design guide was assessed. Finally, nonlinear analysis was performed, and a design formula was proposed. Good agreement was achieved between the proposed design formula and the results of experimental and numerical analyses.
机译:添加环加筋剂是加强CHS管状接头的有效策略。但是,关于环加劲的CHS管-角撑板接头的能力的研究仍然很有限。在这项研究中,我们进行了实验和数值分析,以得出该接头的静态强度方程。为方便起见,我们将复杂的接头模型简化为由CHS管和环形加劲肋组成的CHS接头的环形板。首先,我们测试了五个样本以获得破坏模式和极限强度。其次,建立了有限元模型并通过实验结果进行了验证。然后,我们使用验证的数值方法来模拟环板到CHS接头的行为。考虑了广泛的几何参数,并评估了相关的设计指南。最后进行了非线性分析,提出了设计公式。拟议的设计公式与实验和数值分析的结果之间取得了很好的一致性。

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