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Effect of tool stiffness upon tool wear in high spindle speed milling using small ball end mill

机译:小型球头立铣刀在高主轴转速铣削中刀具刚度对刀具磨损的影响

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摘要

Longer tool life can be tentatively achieved at a higher feed rate using a small ball end mill in high spindle speed milling (over several tens of thousands of revolutions per minute), although the mechanism by which tool life is improved has not yet been clarified. In the present paper, the mechanism of tool wear is investigated with respect to the deviation in cutting force and the deflection of a ball end mill with two cutting edges. The vector loci of the cutting forces are shown to correlate strongly with wear on both cutting edges of ball end mills having various tool stiffnesses related to the tool length. The results clarified that tool life can be prolonged by reducing tool stiffness, because the cutting forces are balanced, resulting in even tool wear on both cutting edges as tool stiffness is lowered to almost the breakage limit of the end mill. A ball end mill with an optimal tool length showed significant improvement in tool life in the milling of forging die models.
机译:尽管尚未弄清楚延长刀具寿命的机理,但在高速主轴铣削中使用小球头立铣刀(每分钟数万转),可以尝试以较高的进给速率实现更长的刀具寿命。在本文中,针对切削力的偏差和具有两个切削刃的球头立铣刀的挠度,研究了刀具磨损的机理。示出了切削力的矢量轨迹与具有与刀具长度有关的各种刀具刚度的球头立铣刀的两个切削刃上的磨损密切相关。结果表明,通过降低刀具刚度可以延长刀具寿命,因为切削力是平衡的,因为刀具刚度降低到几乎立铣刀的断裂极限,所以两个切削刃上的刀具磨损均匀。具有最佳刀具长度的球头立铣刀在锻造模具模型的铣削中显示出刀具寿命的显着改善。

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