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Polishing properties of tiny grinding wheel based on Fe{sub}3O{sub}4 electrorheological fluid

机译:Fe {sub} 3O {sub} 4电流变液对微型砂轮的抛光性能

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摘要

Experiments were conducted to reveal the polishing properties of the Fe{sub}3O{sub}4 electrorheological fluid, which was used to form a dynamical, instantaneous tiny grinding wheel to polish optical glass. The profile of the polished area of the glass surface indicates that the material removal process is dominated by the synergy of the applied pressure and the relative velocity between the abrasives and the workpiece to be polished. It is also found that the rate of material removal is proportional to the intensity of external electric field and decreases with the extension of the machining gap between the workpiece and the needle-like tool.
机译:进行实验以揭示Fe {sub} 3O {sub} 4电流变流体的抛光性能,该流体用于形成动态瞬时细砂轮以抛光光学玻璃。玻璃表面抛光区域的轮廓表明,材料去除过程主要由施加压力与磨料与待抛光工件之间的相对速度的协同作用决定。还发现,材料去除率与外部电场强度成正比,并且随着工件和针状工具之间的加工间隙的扩大而降低。

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