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Mechanism of Surface Finishing in Ultrasonic-Assisted Magnetic Abrasive Finishing Process

机译:超声辅助磁性磨料表面处理的表面处理机理

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摘要

Ultrasonic-assisted magnetic abrasive finishing (UAMAF) integrates the use of ultrasonic vibrations and magnetic abrasive finishing (MAF) processes to finish surfaces of nanometer order within a minute's time. The present study emphasizes the mechanism of surface finishing in UAMAF. This article reports the study of the microscopic changes in the surface texture resulting from interaction of abrasives with ground workpiece surface. In addition to the surface roughness measurement, scanning electron and atomic force microscopy were used to understand the material removal process and wear behavior during finishing and to provide a fundamental insight of the finishing in UAMAF. The observed surface texture showed that the process is an accumulation of the microscratches resulting from the interaction of abrasive cutting edges with the workpiece surface. The X-ray diffraction (XRD) analysis revealed that the SiC is induced in the workpiece surface, increasing the hardness of the workpiece up to 960HV.
机译:超声辅助磁研磨抛光(UAMAF)结合了超声振动和磁研磨抛光(MAF)工艺的使用,可在一分钟内完成纳米级表面的抛光。本研究强调了UAMAF中表面精加工的机理。本文报道了由于磨料与磨削的工件表面相互作用而导致的表面纹理微观变化的研究。除表面粗糙度测量外,还使用扫描电子和原子力显微镜来了解精加工过程中的材料去除过程和磨损行为,并提供有关UAMAF精加工的基本信息。观察到的表面纹理表明,该过程是由于磨料切削刃与工件表面相互作用而产生的微划痕的积累。 X射线衍射(XRD)分析表明,在工件表面中会诱导SiC,从而将工件的硬度提高到960HV。

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