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CONTROL OF PRESSING FORCE IN MAGNETIC ABRASIVE FINISHING USING PERMANENT MAGNET END-MILL TOOL

机译:永磁端铣刀在磁研磨加工中的压力控制

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The magnetic abrasive finishing (MAF) process is well known because of its high efficiency in yielding a mirror gloss finish zone. Clarification of the high efficiency machining mechanism has indicated that this high efficiency is obtained by iron particle cutting and the simultaneous polishing of alumina abrasives. This process yields unevenness, which is often evident on the workpiece surface. In a previous report, we compared magnetic polishing brushes consisting of iron powder paste (commercial paste) or steel balls (uniform size), and found that a large variation was generated when the magnetic polishing brush approached the workpiece surface in both cases. In this paper, we make slight changes to the steel-ball shape, obtaining saddle and barrel-shaped iron particles via stamping processing. The aim is to observe the control factor of the pressing force for these three different iron particle shapes and for different particle numbers, using a force sensor and a high-speed camera. The relationship between the iron particle shape, the iron particle number and the pressing force control is also explored in an attempt to discuss the mechanism behind the iron particle shape effect on the frictional force generation between the iron particles. It is found that the force variation can be reduced by adjusting the particle shape and number, which effectively reduces the damage caused when the brush approaches the workpiece surface.
机译:磁性磨料精加工(MAF)工艺众所周知,因为它在产生镜面光泽精加工区方面具有很高的效率。对高效率机械加工机构的澄清表明,这种高效率是通过铁颗粒切割和氧化铝磨料的同时抛光而获得的。此过程会产生不平整,这在工件表面上通常很明显。在以前的报告中,我们比较了由铁粉糊(商业糊)或钢球(均匀大小)组成的磁性抛光刷,发现在两种情况下,当磁性抛光刷接近工件表面时,都会产生较大的变化。在本文中,我们对钢球的形状进行了微小的更改,通过冲压处理获得了鞍形和桶形的铁颗粒。目的是使用力传感器和高速摄像机观察这三种不同铁颗粒形状和不同颗粒数量的压力控制因素。还探讨了铁颗粒形状,铁颗粒数量与压力控制之间的关系,以试图探讨铁颗粒形状影响铁颗粒之间摩擦力的机理。已经发现,可以通过调节粒子的形状和数量来减小力的变化,这有效地减小了当刷子接近工件表面时引起的损坏。

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