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Investigation of Surface Roughness and Tool Wear Length With Varying Combination of Depth of Cut and Feed Rate of Aluminium Alloy and P20 Steel Machining

机译:铝合金切削深度和进给率与P20钢加工的不同组合对表面粗糙度和刀具磨损长度的影响。

摘要

High-speed milling technique is often used in many industries to boost productivity of the manufacturing of high-technology components. The occurrence of wear highly limits the efficiency and accuracy of high- speed milling operations. In this paper, analysis of high-speed milling process parameters such as material removal rate, cutting speed, feed rate and depth of cut carried out by implemented to conventional milling. This experiment investigate the effects of varying combination of depth of cut and feed rate to tool wear rate length using metallurgical microscope and surface roughness using portable surface roughness tester after end milling of Aluminium and P20 steel. Results showed that feed rate significantly influences the surface roughness value while depth of cut does not as the surface roughness value keep increasing with the increase of feed rate and decreasing depth of cut. Whereas, tool wear rate almost remain unchanged indicates that material removal rate strongly contribute the wear rate. It believe that with no significant tool wear rate the results of this experiment are useful by showing that HSM technique is possible to be applied in conventional machine with extra benefits of high productivity, eliminating semi-finishing operation and reducing tool load for finishing.
机译:高速铣削技术经常用于许多行业,以提高高科技零件制造的生产率。磨损的发生极大地限制了高速铣削操作的效率和准确性。本文通过对高速铣削工艺参数进行分析,如材料去除率,切削速度,进给速度和切削深度,都是通过对传统铣削进行的。该实验研究了切削深度和进给速率的不同组合对使用冶金显微镜进行切削的刀具磨损速率长度以及对铝和P20钢进行端铣削后使用便携式表面粗糙度测试仪进行的表面粗糙度的影响。结果表明,进给速度对表面粗糙度值有显着影响,而切削深度则不会,因为随着进给速度的增加和切削深度的减小,表面粗糙度值会持续增加。而工具磨损率几乎保持不变,表明材料去除率对磨损率有很大贡献。它认为,在没有显着的工具磨损率的情况下,该实验的结果是有用的,因为它表明HSM技术可以应用于常规机器,并具有高生产率,消除半精加工操作并减少精加工的工具负荷的额外好处。

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