StudyTheEffect of Speed, Impinging Angle and Slurry Concentration on Erosion of Stainless Steel -316L

Hazim Mohammed Matloob حازم محمد مطلوب, Abdulhaqq A. Hamed عبدالحق عبدالقادر حامد
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Abstract

The main aim of the present research work is focused on the influence of key parameters, such as; impinging angle, rotational speed, and concentration of sand in water on the behaviour and characterization of erosion process of stainless steel-type 316L. In the current study, special erosion testing machine has been designed and constructed locally conforming to standard specifications. It was observed that, at a given impinging angle, concentration, and rotational speed, the variation of volume loss with accumulative distance is generally linear and the erosion rate has been determined from the least square fit of the variation of erosion volume loss with accumulative distance. It was found that increasing the impinging angle increases initially the extent of erosion rate and reach maximum rate at angle of 60 o . However, at higher impinging angle, there is a significant decrease in the erosion rate. The erosion rate increases considerably with increasing rotational speed from 550 r.p.m. to 1520 r.p.m. . It was also observed that increasing the concentration of sand particles to about 30 wt.%, increases the erosion rate. In all cases, the erosion rate is near a double after inserting the flow baffles compared to those cases without baffles, and has been attributed to increase of particles rotation and vortices in the flow.
速度、冲击角度和料浆浓度对-316L不锈钢冲蚀影响的研究
本研究工作的主要目的是研究关键参数的影响,如;冲击角、转速、水中砂粒浓度对316L型不锈钢冲蚀过程的影响及表征。在目前的研究中,根据标准规范,在当地设计和制造了专用的侵蚀试验机。观察到,在一定的撞击角、浓度和转速下,体积损失随累积距离的变化基本呈线性变化,通过对侵蚀体积损失随累积距离变化的最小二乘拟合确定了侵蚀速率。结果表明,随着冲击角的增大,冲蚀速率首先增大,并在60°角时达到最大。当冲击角增大时,冲蚀速率明显减小。转速从550转/分增加到1520转/分,腐蚀速率显著增加。还观察到,将沙粒浓度增加到30 wt.%左右,会增加侵蚀速率。在所有情况下,与不加挡板的情况相比,加挡板后的侵蚀速率几乎是两倍,这是由于流动中颗粒旋转和涡旋的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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