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Tool Wear Analysis on Five-Axis Flank Milling for Curved Shape Part – Full Flute and Ground Shank End Mill

机译:弯曲形状部分的五轴侧面铣削刀具磨损分析 - 全槽和地柄端铣刀

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摘要

This paper is a study on full flute (extra-long tool) and ground shank end mill wear analysis by utilizing five-axis CNC to implement flank milling strategy on curved shape part. Five-axis machining eases the user to implement variations of strategy such as flank milling. Flank milling is different from point milling. Point milling cuts materials by using the tip of the tool whereas the flank milling uses the cutting tool body to cut material. The type of cutting tool used was end mill 10 mm diameter with High Speed Steel (HSS) material. One factor at a time was utilized to analyze the overall data. Feed rate and spindle speed were the two main factors that been set up equally for both full flute and ground shank end mill. At the end of this research, the qualitative analysis based on tool wear between full flute and ground shank end mill is observed. Generally, both types of cutting tools showed almost the same failure indication such as broken edge or chipped off edge, formation of pinned hole on the surface and serration formation or built-up edge (BUE) on the primary flute. However, the results obtained from the enlarged images which were captured by Optical Microscope indicated that, the ground shank end mill is better than the full flute end mill.
机译:本文是对全槽(超长工具)和地面柄端铣刀磨损分析的研究,利用五轴CNC在弯曲形状部分上实施侧翼铣削策略。五轴加工简化了用户实现诸如侧翼铣削的策略的变化。侧翼铣削与点铣削不同。点铣削通过使用工具的尖端切割材料,而侧面铣削使用切削刀具体切割材料。使用的切削刀具的类型是端铣刀10 mm直径,具有高速钢(HSS)材料。使用一个因素用于分析整体数据。进料速率和主轴速度是全槽和地面柄端磨机同样建立的两个主要因素。在本研究结束时,观察到基于刀柄末端铣刀之间的工具磨损的定性分析。通常,两种类型的切割工具显示出几乎相同的故障指示,例如断裂边缘或碎屑边缘,在初级槽上形成钉孔或灌条形成或内置边缘(BUE)。然而,从通过光学显微镜捕获的放大图像获得的结果表明,地面柄端铣刀优于全槽端磨机。

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