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A Novel Superfine 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超细加工技术

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摘要

Based on the magnetorheological (MR) effect of abrasive slurry, this paper presents an innovative superfine machining method. In this technique, the particle-dispersed MR fluid is used as a special instantaneous bond to cohere abrasive particles and magnetic particles so as to form a dynamical tiny-grinding wheel. This tiny-grinding wheel can be used to polish the surface of brittle materials in millimeter or sub-millimeter scale. The characteristics of the machined glass surfaces examined by the scanning electron microscope (SEM) and the Talysurf roughness tester confirmed the effectiveness of the finishing technique. The machined surface with convex center and concave fringe demonstrates that the material removal process is dominated by the synergy of the applied pressure and the relative velocity between the abrasives and workpiece. In the case of glass finishing, the mode of material removal is found to be plastic, and controlled by the abrasive-wear mechanism.
机译:基于磨料浆的磁流变(MR)效应,本文提出了一种创新的超细加工方法。在这种技术中,颗粒分散的MR流体被用作特殊的瞬时结合剂,以粘结磨料颗粒和磁性颗粒,从而形成一个动态的微小研磨轮。这种微小的研磨轮可用于以毫米或亚毫米为单位抛光易碎材料的表面。通过扫描电子显微镜(SEM)和Talysurf粗糙度测试仪检查的机加工玻璃表面的特性证实了精加工技术的有效性。具有凸状中心和凹状边缘的加工表面表明,材料去除过程主要由施加压力和磨料与工件之间的相对速度的协同作用决定。在玻璃表面处理的情况下,发现材料的去除方式是塑料,并由磨料磨损机制控制。

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