首页> 外文会议>Proceedings of the Twenty-sixth annual meeting of the American Society for Precision Engineering >OPTIMIZATION OF ELLIPTICAL VIBRATION ASSISTED MACHINING PROCESS THROUGH FINITE ELEMENT MODELING
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OPTIMIZATION OF ELLIPTICAL VIBRATION ASSISTED MACHINING PROCESS THROUGH FINITE ELEMENT MODELING

机译:有限元建模的椭圆振动辅助加工过程的优化

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摘要

Ultrasonic elliptical vibration assisted machining (EVAM) was introduced in the mid nineties as an improved method for ultraprecision machining [1]. EVAM applies micrometer scale elliptical motion to a tool tip that has shown to reduce tool forces and improve tool life and surface finish. It is also used to machine workpiece materials, such as steel, that otherwise cannot be diamond turned due to excessive chemical tool wear. In addition to forming smaller chips, the EVAM tool periodically comes out of contact with the workpiece, thereby allowing it to cool between cuts and reduce the tool temperature.
机译:超声波椭圆振动辅助加工(EVAM)在上世纪90年代中期被引入,是超精密加工的一种改进方法[1]。 EVAM将微米级的椭圆运动应用到工具尖端,已证明可减少工具作用力并提高工具寿命和表面光洁度。它也用于加工工件材料,例如钢,否则由于化学工具的过度磨损而无法进行金刚石车削。除了形成较小的切屑外,EVAM刀具还会定期与工件脱离接触,从而使其在两次切削之间冷却并降低刀具温度。

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