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An experimental investigation of the effect of defect shape and orientation on the burst pressure of pressurised pipes

机译:缺陷形状与取向对加压管突发压力影响的实验研究

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The burst pressure of commonly used ductile steel pipes in oil and gas industries, i.e. X52 and X60, is measured under internal pressure loading. The pipes were machined with circular and boxed defects at different orientations to simulate actual metal loss defects. Defect shapes and orientations were investigated in detail to study how they affect the failure behaviour of interacting defects. The experimental burst pressure results were compared with those obtained using existing analytical methods from Design Codes. Comparison of the results showed conservatism in the existing analytical methods which may potentially lead to unnecessary plant shutdowns and pipe repairs. The outcome of the experimental tests revealed that the shapes of the defects have very small influence on the defect interaction behaviour. The burst tests interestingly showed that the defect orientation has an important effect on defect interaction. Defects oriented in the hoop and diagonal directions showed no defect interaction even when spaced by a distance of one wall thickness, while defects oriented in the longitudinal directions showed that defects interact even when the spacing is up to six wall thickness but the interaction fades away for defects spaced at longer distances.
机译:在内部压力负荷下测量常用的油气行业中常用的延性钢管的爆发压力,即X52和X60。管道用不同取向的圆形和盒式缺陷加工,以模拟实际的金属损失缺陷。详细研究了缺陷形状和方向,以研究它们如何影响相互作用缺陷的故障行为。将实验爆发压力结果与使用来自设计码的现有分析方法获得的那些进行比较。结果比较现有的分析方法中的保守主义可能导致不必要的工厂停机和管道修理。实验测试的结果显示,缺陷的形状对缺陷相互作用行为影响非常小。有趣的测试表明,缺陷取向对缺陷相互作用具有重要影响。即使在间隔一个壁厚间隔开的情况下,也没有缺陷相互作用,而在一个壁厚的距离间隔,而在纵向方向上取向的缺陷表明,即使间距最多六壁厚度,也显示缺陷,但相互作用越来越少在距离更长的距离间隔开的缺陷。

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