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High-efficient Regeneration of Grinding Performance using Adhesive Films in Dry Grinding of Carbon

机译:使用粘合膜在干磨碳中使用粘合膜的高效再生

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The grinding performance of wheel remarkably decreases by the wheel loading in dry grinding of precision hard carbon parts. When the wheel loading occurs, the dressing is carried out to remove loading chips for generation of the grinding performance. However, many abrasive grains, which have enough cutting ability under loading chips, are removed in dressing. We therefore have developed the wheel surface cleaning using adhesive films without dressing to remove loading carbon chips on wheel surfaces in our previous reports, and the cleaning could achieve the lean regeneration of grinding performance of fine grade diamond wheels. The removing ability of loading chips is improved by increasing the peeling speed of adhesive film, the pressing time of adhesive films or the number of pressing time. However the optimum cleaning condition has not been investigated. In this report, from the viewpoint of efficiency in the treatment, we therefore investigate the optimum rolling press process of adhesive film on loading disc wheel surfaces in dry grinding of carbon. The optimum treatment processes are experimentally made clear, analyzing SPa of cleaned wheel surfaces, which is one of surface roughness parameters having the correlation with the protrusion height of abrasive grains. Furthermore, the effect of the treatment on regeneration of grinding performance is experimentally verified by grinding tests of hard carbons.
机译:车轮的磨削性能通过精密硬碳部件的干式研磨中的车轮装载显着降低。当车轮装载发生时,进行敷料以除去加载芯片以产生研磨性能。然而,在敷料中除去许多具有足够切削能力的磨粒。因此,我们已经开发了使用粘性薄膜的车轮表面清洁,而不会敷在我们之前的报告中除去车轮表面上的装载碳芯片,并且清洁可以实现精细级金刚石轮毂的研磨性能的精益再生。通过增加粘合膜的剥离速度,粘合剂膜的剥离时间或按压时间的数量来改善加载芯片的去除能力。然而,尚未研究最佳的清洁条件。在本报告中,从治疗的效率的角度来看,我们研究了在碳干磨削的装载盘轮表面上的粘合膜的最佳轧制压榨过程。优化的处理过程是通过实验清除的清洁轮表面的分析,这是具有与磨粒的突出高度相关的表面粗糙度参数之一。此外,通过磨削硬碳的试验,通过研磨试验进行实验验证治疗对研磨性能再生的影响。

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