首页> 外文会议>2002 ASME Pressure Vessels and Piping Conference, Aug 5-9, 2002, Vancouver, British Columbia, Canada >AN EXPERIMENTAL STUDY ON THE EVALUATION OF FAILURE BEHAVIOR OF PIPE WITH LOCAL WALL THINNING
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AN EXPERIMENTAL STUDY ON THE EVALUATION OF FAILURE BEHAVIOR OF PIPE WITH LOCAL WALL THINNING

机译:局部壁变薄评价管道破坏行为的实验研究。

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摘要

The pipe failure tests were performed using 102mm-Sch.80 carbon steel pipe with various simulated local wall thinning defects, in the present study, to investigate the failure behavior of pipe thinned by flow accelerated corrosion (FAC). The failure mode, load carrying capacity, and deformation ability were analyzed from the results of experiments conducted under loading conditions of 4-point bending and internal pressure. A failure mode of pipe with a defect depended on the magnitude of internal pressure and axial thinning length as well as stress type and thinning depth and circumferential angle. Also, the results indicated that the load carrying capacity and deformation ability were depended on stress state in the thinning region and dimensions of thinning defect. With increase in axial length of thinning area, for applying tensile stress to the thinning region, the dependence of load carrying capacity was determined by circumferential thinning angle, and the deformation ability was proportionally increased regardless of the circumferential angle. For applying compressive stress to thinning region, however, the load carrying capacity was decreased with increase in axial length of the thinned area. Also, the effect of internal pressure on failure behavior was characterized by failure mode of thinned pipe, and it promoted crack occurrence and mitigated a local buckling of the thinned area.
机译:在本研究中,使用具有各种模拟局部壁薄化缺陷的102mm-Sch.80碳钢管进行了管道失效测试,以研究通过流动加速腐蚀(FAC)变薄的管道的失效行为。根据在四点弯曲和内压载荷条件下进行的实验结果,分析了失效模式,承载能力和变形能力。带有缺陷的管道的失效模式取决于内部压力的大小和轴向变薄长度以及应力类型,变薄深度和圆周角。结果还表明,承载能力和变形能力取决于减薄区域的应力状态和减薄缺陷的尺寸。随着变薄区域的轴向长度的增加,为了将拉伸应力施加到变薄区域,承载能力的依赖性由周向变薄角确定,并且变形能力与周向角成比例地增加。但是,为了对薄壁区域施加压缩应力,随着薄壁区域的轴向长度的增加,承载能力降低。同样,内部压力对失效行为的影响以薄壁管的失效模式为特征,它促进了裂纹的发生并减轻了薄壁区域的局部屈曲。

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