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Moment resistance of steel pipes subjected to combined loads

机译:组合载荷作用下钢管的抗弯矩

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The first part of this paper provides a review of recent investigations on steel pipes subjected to combined loads. Attention is given to studies involving both numerical and experimental components aimed at quantifying the modified moment resistance of pipes subjected to internal pressure and axial force. The comparison of experimental and finite element results indicate that the nonlinear shell finite element analysis is a reliable tool for predicting moment capacities of pipes. The second part of the paper reports two additional full-scale tests recently conducted at the University of Ottawa aimed at expanding the existing experimental database to pipes subjected to more complex load combinations involving twisting moment and shear (in addition to axial force, internal pressure, and bending). The finite element analysis for both tests is shown to provide excellent predictions of pipe moment capacity. The third part of the paper is a systematic parametric study based on the FEA model verified in previous and present investigations, aimed to assess the ability of pipe sections to attain their modified elastic and/or plastic moment resistance as predicted by analytically derived interaction equations. The parameters investigated are the applied torsion, internal pressure, axial force, and the diameter-to-thickness ratio of the pipe.
机译:本文的第一部分回顾了最近对承受组合载荷的钢管的研究。注意力集中在涉及数值和实验组成部分的研究上,目的是量化承受内压和轴向力的管道的抗弯矩。实验结果与有限元结果的比较表明,非线性壳体有限元分析是预测管道弯矩承载力的可靠工具。本文的第二部分报告了最近在渥太华大学进行的另外两项全面测试,目的是将现有的实验数据库扩展到承受更复杂载荷组合的管道,这些组合包括扭转力矩和剪切力(除了轴向力,内压,和弯曲)。两种测试的有限元分析均显示了出色的管道弯矩能力预测。本文的第三部分是在先前和当前研究中验证的有限元分析模型的基础上进行的系统参数研究,旨在评估通过分析得出的相互作用方程式预测的管段达到其改进的弹性和/或塑性抗弯强度的能力。研究的参数是施加的扭矩,内部压力,轴向力以及管子的直径与厚度的比率。

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