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The performance of coated tungsten carbide drills when machining carbon fibre-reinforced epoxy composite materials

机译:机加工碳纤维增强环氧复合材料时涂层碳化钨钻头的性能

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摘要

This paper is concerned with the effect of coatings on the performance of tungsten carbide (WC) drills in the drilling of carbon fibre-reinforced epoxy. Although composites are becoming increasing popular, there is a deficit in the existing knowledge of drilling composites, and in particular carbon fibre-reinforced epoxy resins. Two coated drills, namely titanium nitride (TiN)-coated and diamond-like carbon (DLC)-coated drills, were investigated and for comparative purposes an uncoated drill. The testing involved drilling a series of consecutive holes. During these tests the thrust forces and torques were monitored, following which the tool was inspected for flank wear and the workpiece inspected for damage in terms of hole tolerance, delamination and spalling. For all three tool types (uncoated, TiN coated and DLC coated), only a small number of drilled holes were found to satisfy an H8 tolerance criterion. An investigation of the hole diameter through the thickness of the composite revealed that it was the outermost plies that caused the hole to fail this tolerance criterion. The effect of tool wear caused the measured thrust forces and torques to increase over the life of the tool. While the degree of measured tool wear was small by comparison with that associated with drilling conventional materials, the effects were found to result in unacceptable damage to the composite. The damage was apparent in the form of spalling, chip-out and matrix cracking. The coatings were not found to reduce either tool wear or damage to the composite.
机译:本文关注的是在碳纤维增强环氧树脂的钻孔过程中,涂层对碳化钨(WC)钻头性能的影响。尽管复合材料变得越来越流行,但是在钻探复合材料,特别是碳纤维增强环氧树脂方面的现有知识仍然不足。对两种涂层钻头,即氮化钛(TiN)涂层和类金刚石碳(DLC)涂层钻头进行了研究,出于比较目的,使用了未涂层的钻头。测试包括钻出一系列连续的孔。在这些测试过程中,将监控推力和扭矩,然后检查刀具的侧面磨损,并检查工件的孔公差,分层和剥落是否损坏。对于所有三种工具类型(未涂层,TiN涂层和DLC涂层),仅发现少量钻孔满足H8公差标准。通过对复合材料厚度的孔直径进行的调查显示,是导致孔未能达到此公差标准的最外层。工具磨损的影响导致测得的推力和扭矩在工具的整个使用寿命中增加。虽然与钻孔传统材料相比,测得的工具磨损程度较小,但发现这种作用会对复合材料造成不可接受的损坏。损坏以剥落,切出和基体开裂的形式明显。没有发现涂层减少工具磨损或对复合材料的损坏。

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