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Effects of different chamfered cutting edges of micro end mill on cutting performance

机译:微末端轧机不同倒角切削刃对切割性能的影响

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摘要

Tool life is a significant issue for the application of micro mills. Optimizing cutting edge geometries of micro mill is an effective way to improve tool life. This paper investigates the effects of different chamfered cutting edges of micro mill on the tool cutting performance. A series of slot milling experiments are conducted on aluminum alloy 7075 by using micro mills with various cutting edge chamfer lengths, and the tool wear and surface roughness are measured. The results show that the cutting edge chamfer of micro mill can improve the tool life. For the micro mill fabricated with sharp cutting edge, the fracture of cutting edge easily occurs resulting in the tool early broken. As the cutting edge chamfer length is bigger, the tool life becomes longer, but the tool flank wear width increases due to the higher stress in cutting region. However, the effects of various cutting edge chamfer lengths on surface roughness are not obviously found.
机译:刀具生活是应用微磨机的重要问题。 微型轧机优化切削刃几何形状是改善刀具寿命的有效方法。 本文研究了微轧机不同倒角切削刃对刀具切割性能的影响。 通过使用具有各种切削刃倒角长度的微型铣刀在铝合金7075上进行一系列槽铣实验,测量工具磨损和表面粗糙度。 结果表明,微磨机的切削刃倒角可以改善刀具寿命。 对于用尖锐的切削刃制造的微型磨削,切削刃的断裂易于发生,导致工具早期破损。 由于切削刃倒角长度较大,刀具寿命变长,但由于切割区域的应力较高,刀具侧面磨损宽度增加。 然而,没有明显发现各种切削刃倒角长度对表面粗糙度的影响。

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