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作 者:徐旺[1] 苏宏华[1] 徐九华[1] 傅玉灿[1] 宫小北[1]
出 处:《金刚石与磨料磨具工程》2012年第1期38-41,52,共5页Diamond & Abrasives Engineering
基 金:973计划课题(2009CB724403);航空基金课题(2008ZE52054)
摘 要:单层钎焊金刚石砂轮在制作完成之初由于砂轮基体加工存在误差以及磨粒粒径大小不一等原因造成磨粒等高性不一致,这使其难以在硬脆材料的精密磨削中得到广泛的应用。采用自制的钎焊碟轮对80/100#单层钎焊金刚石砂轮进行了修整试验研究。在修整试验前后跟踪了砂轮磨粒等高性的变化,进行了SiC陶瓷的磨削试验,并观测了工件表面质量的变化情况。试验结果表明:采用此方法能够实现单层钎焊金刚石砂轮的高效精密修整。修整试验结束后砂轮磨粒等高性较好,磨削SiC陶瓷的表面质量得到明显改善,表面粗糙度Ra值达到了0.1μm以下。hard and applicatio grit size. The application of monolayer brazed diamond grinding wheel is limited in the precision grinding of brittle materials, because of the inconsistent contour of abrasive grain at the beginning of its n, which is caused by the machining tolerance of the wheel substrate and the differences in diamond The dressing experiments of monolayer brazed diamond grinding wheel with 80/100# grit size were carried out by using a self-made brazed plate wheel. Before and after dressing experiments, the changes of contour of abrasive grain were tracked, the grinding experiments on SiC ceramic materials were carried out, and the changes of the surface quality of workpieces were observed. The results show that high efficiency and precision dressing of monolayer brazed diamond grinding wheel can be realized, obviously improved surface quality of SiC ceramics and the surface roughness Ra 〈 O. 1 μm after dressing experiments are obtained.
分 类 号:TG74[金属学及工艺—刀具与模具] TQ164[化学工程—高温制品工业]
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