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Effect of Process Parameters on Abrasive Contamination during Water Abrasive Jet Machining of Mild Steel

机译:工艺参数对温和钢水磨机喷射加工过程中磨蚀污染的影响

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In the area of grit blasting, it is well known that microscopically small abrasive debris gets trapped on the surface, and due to impact the grits might cause the surface to fracture and a fraction of it to be embedded. The same problem appears in abrasive water jet (AWJ) machining especially in the so-called deformation wear zone or striation zone. The major aim in this study is to investigate the abrasive contamination on mild steel cutting surface. In the present study mild steel was used as the work material, since it is widely used in many industries. In order to analyze the pattern of the contaminations on the cut surface, the selected process parameters were abrasive flow rate, pressure and work feed rate. Abrasive contamination was measured at different depths along the path of the abrasives. The three selected zones for measuring abrasive contamination at different depths were the primary impact zone, the smoother zone and the deformation wear zone. It was found that contamination at the middle zone, i.e., the smoother zone had the least abrasive contamination while the initial impact zone and the deformation wear zone showed high abrasive contamination. It was also found that a higher pressure reduces abrasive contamination while a higher abrasive flow rate and work feed rate increase abrasive contamination.
机译:在砂砾爆破的区域中,众所周知,显微镜小的磨蚀碎片被捕获在表面上,并且由于撞击砂粒可能导致表面裂缝和嵌入物的一部分。在磨料水射流(AWJ)加工中出现相同的问题,特别是在所谓的变形磨损区或区状区。本研究的主要目的是研究轻度钢切割表面上的磨蚀污染。在本研究中,使用温和的钢作为工作材料,因为它被广泛用于许多行业。为了分析切割表面上污染的图案,所选的工艺参数是磨料流速,压力和工作进料速率。在磨料路径的不同深度下测量磨料污染。用于测量不同深度的磨蚀污染的三个选定的区域是主要冲击区,更平滑的区域和变形磨损区。发现在中间区的污染,即更平滑的区域具有最小的磨蚀性污染,而初始冲击区和变形磨损区显示出高磨蚀性污染。还发现,较高的压力减少磨蚀污染,而更高的磨料流速和工作进料速率增加磨蚀污染。

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