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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effect of impact angle and velocity on erosion of API X42 pipeline steel under high abrasive feed rate
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Effect of impact angle and velocity on erosion of API X42 pipeline steel under high abrasive feed rate

机译:高磨削速率下冲击角和速度对API X42管线钢腐蚀的影响

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The cost of erosion attack to the global oil and gas industry has drawn significant attention amongst researchers in recent years. 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 API X42 steel using aluminum oxide as erodent. The extent of material degradation is a function of the properties of abrasive particle, target material, erodent velocity, abrasive feed rate, attack angle and environment. In this study, erosion tests were carried out under high mean abrasive feed rate of 160 g min~(-1). Particle velocities and attack angles employed were as follows: 36 m s~(-1), 47 m s~(-1), 56 m s~(-1) and 81 m s~(-1) at 30°, 45°, 60° and 90°, respectively. Similar to erosion at low abrasive feed rate, it is found that erosion rate decreases with increasing impact angle and increases with increasing particle velocity. However, under the present experimental conditions, it is found that the velocity exponent (n) in the erosion rate equation (E=kV~n) decreases with increasing abrasive particle angle of incidence. Contrary to common understanding for low particle feed rate tests, this finding suggests that the "n" value is mechanism dependent Several mechanisms are found to be responsible for the behavior of API X42 steel under the experimental conditions used in this work. Heavy plastic deformation and fracture, ploughing and metal cutting are identified as operative mechanisms during erosion of API X42 pipeline steel.
机译:近年来,侵蚀侵蚀对全球石油和天然气工业造成的损失已引起研究人员的极大关注。侵蚀是一种复杂的现象,为了建议减轻其影响的方法,必须对所涉及的摩擦机制有充分的了解。在本研究中,腐蚀试验是使用氧化铝作为腐蚀剂对API X42钢进行的。材料降解的程度取决于磨料颗粒,目标材料,腐蚀速度,磨料进给速率,攻角和环境的特性。在这项研究中,腐蚀试验是在160 g min〜(-1)的高平均磨料进给速度下进行的。在30°,45°,60°下使用的粒子速度和攻角分别为:36 ms〜(-1),47 ms〜(-1),56 ms〜(-1)和81 ms〜(-1)和90°。与低磨料进给速率下的腐蚀相似,发现腐蚀速率随冲击角的增加而降低,随颗粒速度的增加而增加。然而,在目前的实验条件下,发现腐蚀速率方程中的速度指数(n)随磨粒入射角的增加而减小。与对低颗粒进料速率测试的普遍理解相反,该发现表明“ n”值与机理有关。在此工作使用的实验条件下,发现几种机理对API X42钢的行为负责。在API X42管线钢腐蚀过程中,严重的塑性变形和断裂,翻耕和金属切削被确定为操作机理。

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