Effect of depth of cut (DOC) and degree of serrations (DOS) on surface roughness of aluminum 6061

Muhammad Sukroni, Heni Hendaryati, I. Aisyah
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Abstract

This study aims to determine the variation of the depth of cut (DOC) on the surface roughness and serration gram (DOS) in the 6061 aluminum turning process using medium speed. In this study the infeed depths used were 0.5 mm, 1 mm, 1.5 mm, and 2 mm by testing the surface roughness using a roughness tester, and testing the teeth gram (DOS) using the SEM (Scaning Electron Microscope) tester. The value of surface roughness (surface roughness) in relation to the depth of cut (DOC) in 6061 aluminum material using a conventional lathe has increased, while the value of the dentition gram (DOS) to the depth of cut (DOC) in the aluminum 6061 lathe process at a depth of 0.5 mm figure shows the percentage of DOS 31.8 percent then continues to decrease with increasing depth of ingestion on the lathe. Based on the research results, the increase in the surface roughness value was due to heat generation which resulted in damage to the chisel resulting in high surface roughness. In addition, variations in the depth of cut gave a negative effect by showing a decrease in the number of serrations in grams, which made it difficult to break and would result in eye damage. chisel
切削深度和锯齿度对6061铝表面粗糙度的影响
本研究旨在确定6061铝合金中速车削过程中切削深度(DOC)对表面粗糙度和锯齿形图(DOS)的影响。在本研究中使用的进给深度分别为0.5 mm, 1mm, 1.5 mm和2mm,使用粗糙度测试仪测试表面粗糙度,使用SEM(扫描电子显微镜)测试仪测试齿克(DOS)。6061铝合金材料的表面粗糙度(表面粗糙度)与切削深度(DOC)的关系在使用常规车床上有所增加,而齿列克(DOS)对切削深度(DOC)的价值在6061铝合金车床加工的0.5 mm深度图中显示,DOS的百分比为31.8%,然后随着车床上的摄入深度的增加而继续减少。根据研究结果,表面粗糙度值的增加是由于产生热量导致凿子损坏导致表面粗糙度高。此外,切割深度的变化产生了负面影响,显示出以克为单位的锯齿数量的减少,这使得它难以打破,并将导致眼睛损伤。凿
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