OPTIMIZATION OF CUTTING DIRECTION PARAMETERS FOR A CNC MILLING MACHINING PROCESS POCKET ON STRUCTURE AND SURFACE ROUGHNESS ON POSTEP MOTORCYCLE SPARE PARTS

M. N. A. Habiby, Puspo Vandy Istianto, M. Fahmi
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Abstract

CNC Milling machine is a machine that is widely used for the manufacture of a component. Product quality will be related to product selling value and consumer satisfaction, therefore the best parameters must be known in order to produce quality products. This study aims to determine the effect of the cutting direction on the structure and surface roughness of the pocket feeding CNC Milling machining process. Experimental methods are used to improve the quality of products produced by CNC Milling machines. The parameters used in this study are variations of spindle speed 500 rpm, 1900 rpm, and 5000 rpm, as well as variations of cutting direction, namely one way and zig-zag. The tests carried out are in the form of surface roughness testing, micro-structure observations, and macro-structures. The data analysis technique used is descriptive statistics. The results obtained are the use of the cutting direction parameter affects the quality of the resulting product in the form of structure and surface roughness. The zig-zag cutting direction parameter with spindle speed 5000 rpm obtained the lowest average surface roughness value of 0.87 μm, while the one way cutting direction with spindle speed 500 rpm obtained the highest average roughness value of 2,84 μm. In conclusion, using a higher spindle speed will result in a lower roughness value, while the zig-zag cutting direction produces a lower roughness value and a more even surface structure compared to one way cutting direction.
摩托车零件结构和表面粗糙度数控铣削加工工艺袋的切削方向参数优化
数控铣床是一种广泛用于制造零件的机床。产品质量将关系到产品的销售价值和消费者满意度,因此,为了生产出优质的产品,必须知道最佳参数。本研究旨在确定切削方向对进给袋数控铣削加工过程中结构和表面粗糙度的影响。采用实验方法提高数控铣床生产的产品质量。本研究中使用的参数是主轴转速500rpm, 1900 rpm和5000 rpm的变化,以及切割方向的变化,即单向和之字形。所进行的测试以表面粗糙度测试、微观结构观察和宏观结构的形式进行。使用的数据分析技术是描述性统计。得到的结果是切削方向参数的使用以结构的形式影响所得产品的质量和表面粗糙度。主轴转速为5000 rpm时,锯齿形切削方向参数的平均表面粗糙度最小,为0.87 μm;主轴转速为500 rpm时,单向切削方向参数的平均表面粗糙度最大,为2,84 μm。综上所述,使用较高的主轴转速会导致较低的粗糙度值,而锯齿形切削方向比单向切削方向产生更低的粗糙度值和更均匀的表面结构。
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