抛光
磨料
振动
机械加工
表面粗糙度
化学机械平面化
材料科学
磨料加工
表面光洁度
磁场
研磨
结构工程
冶金
机械工程
工程类
声学
复合材料
物理
量子力学
作者
Shaohui Yin,Takeo Shinmura
标识
DOI:10.1016/j.ijmachtools.2003.10.002
摘要
The automatic precision polishing technique of three-dimensional complicated micro-curved surfaces of components in extremely low surface roughness and high efficiency is greatly demanded by advanced industrial fields. The existing polishing methods have great difficulty in satisfying these demands. Therefore, three modes (horizontal vibration, vertical vibration and compound vibration) of vibration-assisted magnetic abrasive polishing processes have been developed. Previous research focused on each polishing characteristic. The aims of this paper are to characterize effects of vibration of workpiece on magnetic field, polishing pressure, in-process abrasive behavior and polishing performances in three vibration modes and to describe their machining mechanism. Furthermore, a realization of efficient polishing of a 3D micro-curved surface was confirmed to be possible by the process.
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