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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Cusp error reduction under high speed micro/meso- scale milling with ultrasonic vibration assistance
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Cusp error reduction under high speed micro/meso- scale milling with ultrasonic vibration assistance

机译:借助超声振动辅助技术在高速微/中尺度铣削下降低尖锐误差

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摘要

In the conventional use of vibration assisted machining, vibratory motion is mostly applied to the continuous machining processes such as turning where the cutting speed is much lower than the vibration speed. Even the recent articles on vibration assisted milling processes are also quite limited to low spindle speed less than 3k RPM. This study investigates vibration assistance that is applied to the workpiece in a high speed micro/meso-scale intermittent milling system where the cutting speed is much higher than the vibration speed. In addition to this, the vibration effect is analyzed considering feed and cross-feed directional application separately, which gives an idea of a right vibration assistance direction for surface quality improvement. To validate this, a one-directional ultrasonic vibration assisted milling system with ultrasonic frequency at 40 kHz and with amplitudes of a few microns is designed and its effect on the machined surface quality is investigated at high spindle RPMs over 15k. As a result, cusp heights are found to be reduced with ultrasonic vibratory motion of cutting edge in high cutting speed. Furthermore, the machined surface quality clearly tells that feed directional vibration assistance is able to generate better surface quality with reduced wavy burrs than cross-feed directional vibration assistance.
机译:在振动辅助加工的常规使用中,振动运动主要应用于诸如切削的连续加工过程,其中切削速度远低于振动速度。即使是关于振动辅助铣削加工的最新文章,也仅限于主轴转速低于3k RPM的情况。这项研究调查了在切削速度远高于振动速度的高速微/中尺度间歇铣削系统中应用于工件的振动辅助。除此之外,还分别考虑了进给和交叉进给方向的应用来分析振动效果,这为改善表面质量提供了正确的振动辅助方向。为了验证这一点,设计了一种单向超声振动辅助铣削系统,该系统具有40 kHz的超声频率和几微米的振幅,并在15k以上的高主轴转速下研究了其对加工表面质量的影响。结果,发现以高切削速度通过切削刃的超声振动运动减小了尖角高度。此外,加工后的表面质量清楚地表明,与交叉进给方向的振动辅助装置相比,进给方向的振动辅助装置能够产生更好的表面质量,同时减少了波状毛刺。

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