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氟金云母陶瓷钻削参数对刀具磨损的影响

Influence of technological parameter on tools wear in drilling fluorophlogopite
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摘要 通过氟金云母可加工陶瓷钻削试验,测试钻头主后刀面磨损宽度,计算材料去除体积。以单位材料去除体积的刀具磨损量(VB/V)为考查对象,通过单因素试验法讨论了刀具材料、冷却条件、主轴转速、钻头角度等加工参数对刀具磨损的影响。试验结果表明:刀具材料主要影响切削过程,氟金云母陶瓷钻削加工中,不宜选用高速钢钻头;冷却条件对刀具磨损率影响比较显著,加工过程中应采取必要的冷却措施;当主轴转速3 000<n<4 000 r/min,刀具磨损率较小;随钻头顶角增大,刀具磨损率变化不明显,说明适当增大顶角可以提高加工效率。研究结果表明,优化刀具材料和工艺参数,对氟金云母陶瓷的钻削加工具有现实价值。 In drilling fluorophlogopite, the wear width on major flank was measured and the material removal volume was calculated. The wear width per material removal volume(VB/V) was applied to evaluate tool wear in this test. Through single factor test, some machining parameters were discussed such as tool material, cooling conditions, spindle speed and tool angle. The test results show the tool wear rate is mainly affected by tool material and cooling conditions. During fluorophlogopite ceramics machining, the high-speed steel drill is not suitable for machining fluorophlogopite ceramics. The cooling condition is very necessary. The small tools wear rate can be obtained when spindle speed range is 3 000〈n〈4 000 r/min. The little change of tool wear rate with rising of apex angle, shows the machining efficiency can be improved through bigger tool apex angle. The study results indicate the low tool wear can be obtained through optimizing tool material and machining parameters in drilling fluorophlogopite ceramics.
出处 《兵器材料科学与工程》 CAS CSCD 北大核心 2006年第5期68-71,共4页 Ordnance Material Science and Engineering
基金 国家自然科学基金项目资助(50305023) 吉林省教育厅自然科学"十五"规划专项任务(2004-109)
关键词 可加工陶瓷 刀具磨损 工艺参数 钻削 氟金云母 machinable ceramics tool wear technological parameter drilling fluorophlogopite
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参考文献9

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