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Delamination formation and suppression during rotary ultrasonic elliptical machining of CFRP

机译:CFRP旋转超声椭圆加工中的分层形成和抑制

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摘要

As a superior hole manufacturing process, rotary ultrasonic elliptical machining (RUEM) has been successfully employed for drilling carbon fiber reinforced plastics (CFRPs) recently. The delamination of CFRP during drilling is generally considered as the most undesirable form of damage and the most challenging failure mode. In order to reduce the delamination in this novel process, it is important to understand the formation and suppression mechanisms during RUEM of CFRP. In this study, the delamination formation in both core drilling (CD) and RUEM was observed and analyzed. The variation trend of delamination factor with feed speed as well as cutting speed was obtained. The experimental results show that, compared with CD, RUEM method can effectively reduce hole exit delamination by 5.4%-19.3% between 1/2 plies and 0.7%-8.4% between 2/3 plies at the feed rates from 50 to 100 mu m/rev. Moreover, the delamination suppression mechanism in RUEM was fully analyzed and verified. In a word, in the industry practice, RUEM can be considered as a competitive and promising technique to drill CFRP compared to other delamination suppression techniques.
机译:作为一种出色的孔加工工艺,旋转超声椭圆加工(RUEM)最近已成功地用于对碳纤维增强塑料(CFRP)进行钻孔。钻进过程中CFRP的分层通常被认为是最不希望的损坏形式和最具挑战性的破坏模式。为了减少这种新颖过程中的分层,重要的是了解CFRP RUEM过程中的形成和抑制机理。在这项研究中,观察和分析了岩心钻探(CD)和RUEM中的分层形成。得到了分层因子随进给速度和切削速度的变化趋势。实验结果表明,与CD相比,RUEM方法在进给速度为50至100μm时,可有效地减少1/2层之间的孔出口分层5.4%-19.3%和2/3层之间的0.7%-8.4%。 / rev。此外,还对RUEM中的分层抑制机制进行了充分的分析和验证。简而言之,在行业实践中,与其他分层抑制技术相比,RUEM可被认为是竞争性且很有前途的钻孔CFRP技术。

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