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Testing And Analysis Of Steel Pipes Under Bending, Tension,and Internal Pressure

机译:钢管在弯曲,拉伸和内压下的测试分析

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摘要

This paper reports a full-scale experimental program consisting of six pipe specimens made of X65 material (specified minimum yield strength=448 MPa) with 508 mm outer diameter, and a diameter-to-thickness ratio (D/t) of 81.2 subjected to combinations of bending, axial tension, and internal pressure. The study is aimed at determining whether the pipes are able to attain their modified plastic moment as predicted by analytically derived plastic interaction relations. The moment versus curvature relations, peak moment values, and local buckling behavior of the specimens as obtained from the experiments are documented. The peak moments obtained are compared to the analytically predicted moments. A nonlinear shell finite-element model is also developed using the finite-element analysis (FEA) simulator ABAQUS in order to predict the moment capacity and the local buckling behavior. Test results compare well with FEA results. It is observed that under certain combinations of axial tension and internal pressure, pipes with D/t=81.2 are able to attain their plastic moment resistances.
机译:本文报告了一个完整的实验程序,该程序由六个由X65材料制成的管样本(指定的最小屈服强度= 448 MPa),外径为508 mm,直径与厚度比(D / t)为81.2弯曲,轴向张力和内部压力的组合。该研究旨在确定管道是否能够达到通过分析得出的塑性相互作用关系所预测的修正塑性矩。从实验中获得的样本的弯矩与曲率关系,峰值弯矩值和局部屈曲行为均已记录在案。将获得的峰值矩与分析预测的矩进行比较。还使用有限元分析(FEA)仿真器ABAQUS开发了非线性壳有限元模型,以预测弯矩承载力和局部屈曲行为。测试结果与FEA结果很好地比较。可以看出,在一定的轴向张力和内部压力组合下,D / t = 81.2的管子就可以达到其塑性抗力矩性能。

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