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Erosion Behaviour of API X100 Pipeline Steel at Various Impact Angles and Particle Speeds

机译:API X100管线钢在各种冲击角和颗粒速度下的腐蚀行为

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摘要

Erosion is the gradual removal of material due to solid particle impingement and results in a failure of pipeline materials. In this study, a series of erosion tests were carried out to investigate the influence of particle speed and impact angle on the erosion mechanism of API X100 pipeline steel. A dry erosion machine was used as the test equipment, while the particle speed ranged from 20 to 80 m/s and impact angles of 30° and 90° were used as test parameters. The eroded API X100 steel surface was characterized using scanning electron microscope (SEM) and X-ray photoelectron spectroscopy (XPS). The weight loss and erosion rate were also investigated. The results showed that at a 90° impact angle, a ploughing mechanism was occurring on the tested specimens, while material removal through low-angle cutting was the dominant mechanism at lower impact angles. Embedment of alumina particles on the target steel surface, micro-cutting, and low-angle cutting were observed at low impact angles. Therefore, the scratches, cuttings, and severe ploughings observed on some failed oil and gas pipelines could be attributed to the erosion mechanism.
机译:侵蚀是由于固体颗粒撞击而逐渐去除材料,并导致管道材料损坏。在这项研究中,进行了一系列腐蚀试验,以研究颗粒速度和冲击角对API X100管线钢的腐蚀机理的影响。使用干蚀机作为测试设备,而颗粒速度在20至80 m / s的范围内,并且30°和90°的冲击角用作测试参数。使用扫描电子显微镜(SEM)和X射线光电子能谱(XPS)表征腐蚀的API X100钢表面。还研究了重量损失和侵蚀率。结果表明,在90°的冲击角下,被测样品发生了犁形机理,而在较小的冲击角下,通过低角度切削去除材料是主要机理。在低冲击角下观察到氧化铝颗粒在目标钢表面上的嵌入,微切割和低角度切割。因此,在某些失效的油气管道上观察到的划痕,切割和严重的耕作可归因于腐蚀机理。

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