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首页> 外文期刊>Machining Science and Technology >COMPARATIVE STUDY OF TOOL LIFE AND HOLE QUALITY IN DRILLING OF CFRP/TITANIUM STACK USING COATED CARBIDE DRILL
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COMPARATIVE STUDY OF TOOL LIFE AND HOLE QUALITY IN DRILLING OF CFRP/TITANIUM STACK USING COATED CARBIDE DRILL

机译:涂层硬质合金钻头处理CFRP /钛合金堆垛时刀具寿命和孔质量的比较研究

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摘要

The use of hybrid materials including carbon fiber reinforced plastics (CFRPs) and lightweight metals such as titanium are increasing particularly in aerospace applications. Multi-material stacks require a number of holes for the assembly purposes. In this research, drilling trials have been carried out in CFRP, Ti-6Al-4Vand CFRP/Ti-6Al-4V stack workpieces using AlTiN coated tungsten carbide drill bit. The effects of process parameters have been investigated. The thrust force, torque, burr formation, delamination, surface roughness and tool wear have been analyzed at various processing condition. The experimental results have shown that the thrust force, torque, burr formation and the average surface roughness increase with the increased feed rate and decrease with the increased cutting speed in drilling of Ti-6Al-4V. In drilling CFRP, delamination and the average surface roughness has similar tendency with the cutting parameters however thrust force and torque rises with the increased cutting speed. The results showed that after making 15 holes in CFRP/Ti-6Al-4V stack, measured thrust forces were increased by 20% in CFRP and by 45% in Ti-6Al-4V. Delamination was found to be much smaller in drilling of CFRP in stack from compared to drilling single CFRP. Tool life was significantly shortened in drilling of stack due to the combination of the wear mechanisms.
机译:尤其是在航空航天应用中,包括碳纤维增强塑料(CFRP)和轻金属(如钛)在内的混合材料的使用正在增加。多材料堆栈需要多个孔才能进行组装。在这项研究中,已经使用AlTiN涂层碳化钨钻头在CFRP,Ti-6Al-4V和CFRP / Ti-6Al-4V堆叠工件上进行了钻孔试验。已经研究了工艺参数的影响。在各种加工条件下分析了推力,扭矩,毛刺形成,分层,表面粗糙度和工具磨损。实验结果表明,在Ti-6Al-4V钻削中,推力,扭矩,毛刺形成和平均表面粗糙度随进给速度的增加而增加,随切削速度的增加而减小。在CFRP钻孔中,分层和平均表面粗糙度与切削参数具有相似的趋势,但是推力和扭矩随切削速度的增加而增加。结果表明,在CFRP / Ti-6Al-4V叠层上打15个孔后,测得的推力在CFRP中增加了20%,在Ti-6Al-4V中增加了45%。与钻单个CFRP相比,发现在层叠CFRP钻孔中分层要小得多。由于磨损机制的组合,在钻削烟囱时,刀具寿命大大缩短。

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