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作 者:王森 董海[1] 谷雨 王明 王加威 WANG Sen;DONG Hai;GU Yu;WANG Ming;WANG Jiawei(School of Mechanical Engineering,Dalian University of Technology,Dalian 116086,Liaoning,China)
机构地区:[1]大连理工大学机械工程学院,辽宁大连116086
出 处:《金刚石与磨料磨具工程》2022年第4期467-472,共6页Diamond & Abrasives Engineering
摘 要:针对聚晶金刚石(PCD)刀具的研磨质量问题,选择刃口钝圆半径、刃口缺陷度、后刀面粗糙度作为评价指标进行工艺参数的优化试验,并分析PCD的研磨去除机理。结果表明:工作台调定压力对刃口钝圆半径影响最显著;金刚石砂轮对刃口缺陷度影响最显著;砂轮转速对后刀面粗糙度影响最显著。选择4/5陶瓷基金刚石砂轮、1000 r/min砂轮转速、170 N工作台调定压力可以获得研磨质量较高的PCD刀具。试验条件下,PCD的主要去除方式为划擦作用与微细破碎。1000 r/min砂轮转速、170 N工作台调定压力下的微细破碎在保证较小刃口钝圆半径与刃口缺陷度的同时,可以获得相对平整的PCD表面。Aiming at grinding quality of polycrystalline diamond(PCD)tools,the grinding experiment was carried out to optimize the process parameters with cutting edge radius,cutting edge defect and flank roughness as the indexes.The grinding removal mechanism of PCD was also studied.The results show that the worktable setting pressure has the most significant effect on cutting edge radius.The diamond grinding wheel has the most significant effect on cutting edge de-fect.The grinding wheel speed has the most significant effect on flank roughness.PCD tools with high grinding quality can be obtained by using 4/5 ceramic-based diamond grinding wheel,1000 r/min grinding wheel speed and 170 N worktable setting pressure.Under the experimental conditions,the main removal methods of PCD are sliding effect and micro cracking.Smaller cutting edge radius,cutting edge defect and smoother surface of PCD can be obtained by micro cracking under the 1000 r/min grinding wheel speed and the 170 N worktable setting pressure.
分 类 号:TG71[金属学及工艺—刀具与模具] TG58
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