Ultraprecision micromachining of hardened steel by applying ultrasonic elliptical vibration cutting

N. Suzuki, A. Nakamura, E. Shamoto, K. Harada, M. Matsuo, M. Osada
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引用次数: 53

Abstract

Ultraprecision micromachining of hardened steel with a single point diamond tool, which is practically impossible due to rapid tool wear, is realized by applying elliptical vibration cutting technology which has been developed by the authors. A practical ultrasonic elliptical vibration cutting system is developed in the present research, which consists of a practical vibration control system and an ultraprecision planning machine. The control system is fabricated to keep the elliptical vibration to have a desired locus, where the amplitudes of the two directional vibrations and their phase shift are kept to be desired values, and the vibration frequency is locked to an average value of their resonant frequencies. The vibration control system is mounted on the on the ultraprecision planning machine, which consists of three feed tables with double hydrostatic oil guideways in XYZ axes, two rotary index tables in BC axes and a five axis control system. The developed elliptical vibration cutting system is applied to ultraprecision diamond planning of hardened die steel, and a high quality mirror surface is obtained over a large area of the whole finished surface. Maximum roughness of the finished surface is less than 0.04 /spl mu/m Ry, although the cutting distance reaches 1110 m. On the other hand, the surface finished by ordinary cutting without the vibration, is cloudy with maximum roughness of more than 0.52 /spl mu/m Ry, within a cutting distance of 1 m. Based on this advantage, the elliptical vibration cutting system is successfully applied to ultraprecision micromachining of dies for a front light panel of LCD. An optical quality surface with fine microgrooves over a large area of 122 /spl times/ 91 mm/sup 2/ and with surface roughness of less than 0.04 /spl mu/m Ry is obtained by the developed system, which is difficult for any conventional machining methods including grinding, polishing and ordinary cutting.
超声椭圆振动切削硬化钢的超精密微加工
采用笔者开发的椭圆振动切削技术,实现了单点金刚石刀具对淬硬钢的超精密微加工。本研究开发了一种实用的超声椭圆振动切割系统,该系统由实用的振动控制系统和超精密规划机组成。控制系统是为了使椭圆振动保持在期望的轨迹上,使两个方向振动的幅值及其相移保持在期望值,并将振动频率锁定在其谐振频率的平均值上。振动控制系统安装在超精密规划机上,该系统由XYZ轴上的三个带双静压油导轨的进给台,BC轴上的两个旋转分度台和五轴控制系统组成。将所开发的椭圆振动切削系统应用于淬硬模具钢的超精密金刚石规划,在整个加工表面的大面积上获得了高质量的镜面。虽然切割距离达到1110 m,但成品表面的最大粗糙度小于0.04 /spl mu/m Ry。另一方面,在无振动的情况下,普通切割后的表面浑浊,最大粗糙度大于0.52 /spl mu/m Ry,切割距离为1m。基于这一优点,椭圆振动切割系统成功地应用于LCD前灯面板模具的超精密微加工中。该系统可获得面积达122 /spl倍/ 91 mm/sup 2/、表面粗糙度小于0.04 /spl mu/m Ry的光学质量表面,这是磨削、抛光和普通切削等常规加工方法难以实现的。
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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