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Study of Magnetic Abrasive Finishing using Mechanically Alloyed Magnetic Abrasives

机译:使用机械合金磁磨探的磁磨料精加工研究

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The finishing characteristics of mechanically alloyed magnetic abrasives used in cylindrical magnetic abrasive finishing (MAF) are presented in this study. Mechanical alloying is a solid state powder processing technique, where the powder particles are subjected to impact by the balls in a high energy ball mill or attritor at room temperature. After the process, fine magnetic abrasives are obtained in which the abrasive particles are attached to the base metal matrix without any bonding material. The magnetic particle used in the magnetic abrasive production is iron powder and the abrasive is aluminium oxide. Magnetic abrasives play the role of cutting tools in MAF, which is emerging as an important non-conventional machining process. The experiments performed on stainless steel tubes examine the effects of varying the quantity of magnetic abrasives, magnetic flux density, speed of rotation of the workpiece and amount of lubricant. The surface roughness measurements demonstrate the effects of the abrasive behaviour on the surface modification. The surface roughness was analysed in terms of percentage improvement in surface finish (PISF). The obtained maximum PISF was 40 % and the minimum surface roughness was 0.63 um Ra.
机译:本研究介绍了用于圆柱形磁磨料精加工(MAF)的机械合金磁磨料的精加工特性。机械合金化是固态粉末加工技术,其中粉末颗粒在室温下通过球的撞击撞击。在该过程之后,获得细磁磨料,其中磨料颗粒在没有任何粘合材料的情况下连接到基础金属基质上。磁磨料生产中使用的磁性颗粒是铁粉,磨料是氧化铝。磁性研磨剂在MAF中发挥了切削刀具的作用,这是一种作为重要的非传统加工过程。在不锈钢管上进行的实验检查了改变磁磨料,磁通密度,工件旋转速度和润滑剂量的效果。表面粗糙度测量表明磨料行为对表面改性的影响。以表面光洁度(PISF)的改善百分比分析表面粗糙度。获得的最大PISF为40%,最小表面粗糙度为0.63μmRa。

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