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Analysis of surface roughness and chip cross-sectional area while machining with self-propelled round inserts milling cutter

机译:自推式圆刀片铣刀加工时的表面粗糙度和切屑横截面分析

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摘要

An interesting development in the field of machining is to improve the cutting tool performance by providing continuous indexing to the cutting edge actuated either by cutting velocity vector or by an external power. This paper presents an analysis of cutting process performed using a specifically designed and fabricated self-propelled rotary inserts face milling cutter. Statistically designed experiments were performed using Taguchi method with surface roughness and chip cross-sectional area as response variables. Analysis of experimental results using analysis of means and analysis of variance is discussed in detail. It is observed that inclination angle is the most significant factor influencing both surface roughness and chip cross-sectional area and can give better results in the range of 30-45 deg.
机译:机加工领域的一个有趣发展是通过对由切削速度矢量或外部动力驱动的切削刃提供连续分度来提高切削工具的性能。本文介绍了使用专门设计和制造的自走式旋转刀片端面铣刀执行的切削过程分析。使用Taguchi方法进行统计学设计的实验,将表面粗糙度和切屑横截面积作为响应变量。详细讨论了使用均值分析和方差分析对实验结果进行分析。可以看出,倾斜角是影响表面粗糙度和切屑横截面面积的最重要因素,在30-45度范围内可以提供更好的结果。

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