Effects of ultrasonic vibration on machining accuracy in microdrilling

H. Onikura, O. Ohnishi, J. Feng, T. Kanda, T. Morita, U. Bopp
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引用次数: 39

Abstract

The purposes of the present paper are to investigate the effects of ultrasonic vibration on machining accuracy of duralumin and to make clear the mechanisms for the improvement of machining accuracy in microdrilling. Ultrasonic vibration of 40 kHz considerably reduces the friction on the rake face, makes chips thinner and then decreases cutting forces. This decrease in cutting forces, especially the variation of the mean radial force, leads to the improvement of cutting accuracy, i. e., smaller hole oversize, a little better roundness at hole entrance. smaller displacement of hole center with ultrasonic vibration. The thin chip increases the velocity of chip flow, and results in better characteristics of chip disposal and less tendency of drill breakage.
超声振动对微孔加工精度的影响
本文旨在研究超声振动对硬铝加工精度的影响,明确微孔加工中提高硬铝加工精度的机理。40千赫的超声波振动大大减少了前刀面上的摩擦,使切屑更薄,然后降低了切削力。这种切削力的减小,特别是平均径向力的变化,导致了切削精度的提高,即孔外径较小,孔入口处圆度稍好。超声振动使孔中心位移较小。薄屑增加了屑流速度,屑处理特性更好,钻头破碎倾向更小。
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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