首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The impact of tool point angle and interlayer gap width on interface borehole quality in drilling CFRP/titanium stacks
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The impact of tool point angle and interlayer gap width on interface borehole quality in drilling CFRP/titanium stacks

机译:工具点角和层间隙宽度对钻井CFRP /钛堆界面钻孔质量的影响

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摘要

Although substantial research work has been conducted in order to understand and improve the drilling of multi-material aerospace stacks, some key aspects related to process and tool parameters and their impact on the interface quality still need to be addressed. This paper reports on the research conducted to investigate the impact of tool point angle and interlayer gap width on borehole quality, focussing on the interface region. A number of drilling tests were carried out using tools with different point angles and CFRP/titanium stacks with different interlayer gap widths. The results show that the damage on the CFRP interlayer surface is caused by the drilling of the titanium layer, as some of the upwards-travelling titanium chips penetrate into the stack interface. An increase in tool point angle results in larger entry burrs on the titanium interlayer surface, which is attributed to the correlation between tool point angle and thrust force and the capability of tools with low point angles to remove damage generated by surface skidding. The introduction of an interlayer gap promotes the ingress of titanium chips into the stack interface, thereby leading to more pronounced interface damage.
机译:虽然已经开展了大量研究工作,以了解和改进多材料航空航天组件的钻孔,但仍需解决与工艺和工具参数及其对界面质量的影响有关的一些关键方面。本文以界面区域为重点,研究了工具点角度和层间间隙宽度对钻孔质量的影响。使用具有不同点角的工具和具有不同层间间隙宽度的CFRP/钛堆进行了大量钻孔试验。结果表明,碳纤维布夹层表面的损伤是由于钛层的钻孔造成的,因为一些向上移动的钛屑穿透了堆叠界面。刀具尖角的增加会导致钛夹层表面出现较大的入口毛刺,这是由于刀具尖角和推力之间的相关性,以及具有较低尖角的刀具清除表面打滑产生的损伤的能力。层间间隙的引入促进了钛屑进入堆叠界面,从而导致更明显的界面损伤。

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