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首页> 外文期刊>Composite Structures >Comparative study of minimum quantity lubrication and dry drilling of CFRP/titanium stacks using TiAIN and diamond coated drills
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Comparative study of minimum quantity lubrication and dry drilling of CFRP/titanium stacks using TiAIN and diamond coated drills

机译:使用TiAIN和金刚石涂层钻头对CFRP /钛合金堆进行最小量润滑和干钻的比较研究

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摘要

Although minimum quantity lubrication (MQL) has been proved beneficial for the machinability improvement of metallic materials, it is still not well understood whether or not to use the MQL when machining the composite-titanium stacks and whether the MQL can achieve a comparable effect as it operates in the metal cutting processes. The current work is aimed at revealing the underlying mechanisms of the MQL drilling on the CFRP/Ti6Al4V stacks. Both the MQL and dry conditions were examined using the TiAlN-coated and diamond-coated carbide drills to quantify how the MQL operates when compared with the conventional dry machining. The effects of the MQL environment on the machinability of the composite-titanium stacks were quantified in terms of drilling thrust forces, delamination damage of the composite phase and tool wear signatures. A particular emphasis is put on the wettability testing of cut stack hole surfaces versus the minimum quantity lubricants in terms of the contact angle. The results indicate that the machined composite surface shows a strong ability to absorb the lubricants under the MQL condition and fails to form a protective oil film at the drill-chip interface, resulting in an increase of thrust forces and delamination damage. Moreover, the MQL environment cannot prevent the drill bits from premature failures during the machining of CFRP/Ti6Al4V. It is indicated that the MQL fails to yield a comparable beneficial role as it operates in the machining of individual metal alloys in terms of the examined drilling responses.
机译:尽管已证明最小量润滑(MQL)有助于改善金属材料的可加工性,但在加工复合钛合金叠层时是否使用MQL以及MQL能否达到与之相当的效果仍未得到很好的理解。在金属切割过程中进行操作。当前的工作旨在揭示在CFRP / Ti6Al4V堆栈上进行MQL钻孔的潜在机制。使用TiAlN涂层和金刚石涂层硬质合金钻头检查了MQL和干燥条件,以量化与传统干式加工相比MQL的工作方式。 MQL环境对复合钛合金叠层可加工性的影响通过钻进推力,复合相的分层破坏和工具磨损痕迹进行了量化。特别要强调的是切开的烟囱孔表面的润湿性测试,相对于接触角最小的润滑剂。结果表明,加工后的复合材料表面在MQL条件下显示出很强的吸收润滑剂的能力,并且在钻头-切屑界面处未能形成保护性油膜,从而导致推力增加和分层破坏。此外,MQL环境无法防止在CFRP / Ti6Al4V加工过程中钻头过早发生故障。结果表明,就检查的钻探响应而言,MQL在加工单个金属合金时无法发挥可比的有益作用。

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