Characterization And Impact Of Cutting Parameters On Face-Milled Surfaces Of Pearlitic Ductile Iron

O.O. Ilori, T.F. Oyewusi, O.A. Fadare, F.F. Adeyemi
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Abstract

In an attempt to enhance the surface integrity of machined parts in the manufacturing industries, facemilled surface profiles of pearlitic ductile iron were characterized and analysed based on the effects of some cutting parameters. The pearlitic ductile iron used was locally  prepared. Atomic Force Microscope and Scanning Electron Microscope were used to characterizing the roughness profile of the machined  workpiece. The results showed increase in depth of cut from 400.37 to 652.37 nm at constant cutting fluid flow rate, cutting  speed and feed rate. Also, at varying cutting fluid flow rate, the roughness parameter decreased from 733.56 to 272.84 nm at constant  feed rate, depth of cut and cutting speed. Similar result was obtained with varying feed rate. However, there exists no definable course as  cutting speed increases at constant cutting fluid flow rate, depth of cut and feed rate. In conclusion, it was found that machining at  cutting fluid flow rate of 4 l/min, feed rate of 30 mm/rev, depth of cut of 0.2 mm and cutting speed of 1000 rev/min produced better  quality surfaces. Therefore, the findings in this study will be useful for the manufacturing industries to improve on the surface reliability  of the face milling process. 
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切削参数对珠光体球墨铸铁面铣表面的表征和影响
为了提高制造业加工零件的表面完整性,我们根据一些切削参数的影响,对珠光体球墨铸铁的面铣表面轮廓进行了表征和分析。所使用的珠光体球墨铸铁是当地制备的。使用原子力显微镜和扫描电子显微镜对加工工件的粗糙度轮廓进行表征。结果显示,在切削液流量、切削速度和进给量不变的情况下,切削深度从 400.37 纳米增加到 652.37 纳米。此外,在切削液流速、切削深度和切削速度不变的情况下,随着切削液流速的变化,粗糙度参数从 733.56 nm 下降到 272.84 nm。改变进给率也得到了类似的结果。然而,在切削液流量、切削深度和进给量不变的情况下,随着切削速度的增加,粗糙度参数并没有明显的变化。总之,研究发现,在切削液流量为 4 升/分钟、进给速度为 30 毫米/转、切削深度为 0.2 毫米、切削速度为 1000 转/分钟的条件下进行加工,可获得质量更好的表面。因此,这项研究的结果将有助于制造业提高面铣加工的表面可靠性。
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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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