Determination of Optimal Cutting Parameters for Milling Process Against Surface Roughness of SKD11 Steel Using the Taguchi Method

Muhammad Sobron Yamin Lubis, S. D, Alfred Briantio, Rosehan Rosehan
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Abstract

In the milling process, good surface roughness conditions are indicated by low surface roughness values. Surface roughness is formed by the friction of the cutting tools on the surface of the workpiece. Increasing the use of cutting parameters will invariably increase the applied frictional force and faster scratching; however, if there are three cutting parameters used, such as cutting speed, infeed speed, and depth of cut, it is difficult to determine which parameter contributes to the resulting value. Good surface roughness. So based on this, to find out the optimal cutting parameters, this research was carried out. The study was carried out using a milling machine. In the SKD11 Steel material milling process, the surface roughness value of the workpiece is an indicator in determining a good surface condition. SKD11 steel material has a hardness value of 16-20 HRC and is a type of tool steel commonly used as cutting tools, Deep Drawing molds, Drawing Cones, and Compression Molding Dies. By varying the cutting parameters, the workpiece is formed using a milling machine. The cut workpiece is then measured for surface roughness using a surface test tool. Furthermore, to analyze the optimal cutting parameter values for minimal surface roughness, the Taguchi method is used. The results showed that the optimal surface roughness value was obtained from a combination of cutting parameters with a spindle speed of 1800 r/min, a feed rate of 256 mm/min, and a depth of cut of 0.25 mm.
基于表面粗糙度的SKD11钢铣削工艺最佳切削参数的田口法确定
在铣削过程中,较低的表面粗糙度值表示良好的表面粗糙度条件。表面粗糙度是由切削刀具在工件表面上的摩擦形成的。增加切削参数的使用将不可避免地增加施加的摩擦力和更快的划痕;然而,如果使用三个切削参数,如切削速度、进给速度和切削深度,则很难确定哪个参数对结果值有贡献。表面粗糙度好。因此,在此基础上,为了找出最优的切削参数,进行了研究。这项研究是用铣床进行的。在SKD11钢材料铣削加工过程中,工件的表面粗糙度值是确定良好表面状态的一个指标。SKD11钢材料硬度值为16- 20hrc,是一种常用作刀具、深拉模、拉深锥、压模的工具钢。通过改变切削参数,用铣床成形工件。然后用表面测试工具测量被切割工件的表面粗糙度。在此基础上,采用田口法分析了最小表面粗糙度下的最佳切削参数值。结果表明,在主轴转速为1800 r/min、进给速度为256 mm/min、切削深度为0.25 mm的切削参数组合下,获得了最佳的表面粗糙度值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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