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Construction of erosion mechanism maps for pipeline steels

机译:管线钢腐蚀机理图的构建

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Oil and gas industry spends millions of dollars every year dealing with problems caused by erosion. Erosion is a complex phenomenon and in order to recommend ways to mitigate its effect, it is essential to have a full understanding of the tribo-mechanisms involved. In the present study, erosion tests were conducted on AISI 1018, AISI 1080, API X42, API X70 and API X100 steels using aluminum oxide as erodent. Particle velocities and attack angles employed were as follows: 36, 47, 63 and 81 m s(-1) at 30 degrees, 45 degrees, 60 degrees and 90 degrees, respectively. Erosion rate decreases with increasing impact angle and increases with increasing particle velocity. Several mechanisms are found to be responsible for the behavior of these steels under the experimental conditions employed in this work. Heavy plastic deformation and fracture, ploughing, delamination and different forms of metal cutting are identified as operative mechanisms during erosion. Empirical erosion mechanism maps are constructed showing the variation in erosion regimes, as a function of impact angle and normalized velocity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:石油和天然气行业每年要花费数百万美元来解决侵蚀造成的问题。侵蚀是一种复杂的现象,为了建议减轻其影响的方法,必须全面了解所涉及的摩擦机制。在本研究中,使用氧化铝作为侵蚀剂对AISI 1018,AISI 1080,API X42,API X70和API X100钢进行了腐蚀测试。所采用的粒子速度和迎角如下:分别在30度,45度,60度和90度下分别为36、47、63和81 m s(-1)。侵蚀率随冲击角的增加而降低,随颗粒速度的增加而增加。在这项工作中采用的实验条件下,发现了几种机制负责这些钢的行为。严重的塑性变形和断裂,耕作,分层和不同形式的金属切削被认为是侵蚀过程中的作用机理。建立了经验腐蚀机理图,显示了腐蚀方式随冲击角和归一化速度的变化。 (C)2016 Elsevier Ltd.保留所有权利。

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