首页> 外文会议>Asia Pacific Conference on Optics Manufacture; 20070111-13; Hongkong(CN) >Research on Material Removal of a New Micro Machining Technology Based on the Magnetorheological Effect of Abrasive Slurry
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Research on Material Removal of a New Micro Machining Technology Based on the Magnetorheological Effect of Abrasive Slurry

机译:基于磨料浆磁流变效应的新型微细加工技术的材料去除研究

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摘要

Based on the magnetorheological (MR) effect of abrasive slurry, the particle-dispersed MR fluid is used as a special instantaneous bond to cohere abrasive particles and magnetic particles so as to form a dynamic, flexible tiny-grinding wheel to polish optical glass, ceramic and other brittle materials of millimeter or sub-millimeter scale with a high efficiency. Experiments were conducted to reveal the effects of different process parameters, such as grain sizes of abrasive particles, machining time, machining gap between the workpiece and the rotation tool, and rotation speed of the tool, on material removal rate of glass surface. The results indicate the following conclusions: material removal rate increases when the grain size of abrasives is similar to that of magnetic particles; machining time is directly proportional to material removal, but inversely proportional to material removal rate; machining gap is inversely proportional to material removal; polishing speed has both positive and negative influence on material removal rate, and greater material removal rate can be obtained at a certain rotation speed. In addition, the difference of the machining characteristics between this new method and the traditional fixed-abrasive machining method is analyzed.
机译:基于磨料浆的磁流变(MR)效应,将分散在颗粒中的MR流体用作特殊的瞬时结合剂,以粘结磨料颗粒和磁性颗粒,从而形成动态,灵活的细磨轮,以抛光光学玻璃,陶瓷以及高效率的毫米或亚毫米级的其他脆性材料。进行实验以揭示不同工艺参数(例如磨料颗粒的粒径,加工时间,工件与旋转工具之间的加工间隙以及工具的旋转速度)对玻璃表面材料去除率的影响。结果表明以下结论:当磨料的晶粒尺寸与磁性颗粒的晶粒尺寸相似时,材料去除率增加;加工时间与材料去除率成正比,但与材料去除率成反比。加工间隙与材料去除成反比;抛光速度对材料去除率有正反两方面的影响,在一定转速下可以获得更大的材料去除率。此外,分析了该新方法与传统的固定磨料加工方法之间的加工特性差异。

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