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Low-frequency vibration-assisted drilling of hybrid CFRP/Ti6Al4V stacked material

机译:杂交CFRP / Ti6Al4V堆叠材料的低频振动辅助钻孔

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摘要

The drilling of carbon fiber-reinforced polymers (CFRP) and Ti6Al4V alloy stacked materials play a significant role in the aerospace industry's ability to achieve improved machinability and assembly. Conventional drilling has resulted in various challenges such as CFRP delamination, unacceptable hole accuracy, and high tool wear. In addition, high cutting temperatures and poor chip evacuation mechanisms were also identified as important difficulties necessitating the drilling of each material separately. Low-frequency vibration-assisted drilling (LF-VAD) promises a high potential for overcoming these challenges. The primary objective of this study was to investigate the effect of machining parameters (cutting speed, feed rate, modulation amplitude, and modulation frequency) on the LF-VAD stacked drilling of CFRP/Ti6Al4V. The effect of applying a 2.5-cycle/rev frequency modulation to a wide range of machining parameters is reported, and the results are discussed. The variables considered included cutting speed, feed rate, and modulation amplitude. The results show up to a 56% reduction in cutting temperature, as well as a change in chip morphology. The effects on hole quality and surface roughness are also presented.
机译:碳纤维增强聚合物(CFRP)和Ti6Al4V合金堆叠材料的钻孔在航空航天行业实现改进的可加工性和装配能力中起着重要作用。传统的钻井导致各种挑战,例如CFRP分层,不可接受的孔精度和高工具磨损。此外,还认为高切削温度和较差的芯片疏散机制也被确定为需要分别钻孔的重要困难。低频振动辅助钻井(LF-VAD)承诺克服这些挑战的高潜力。本研究的主要目的是研究加工参数(切削速度,进料速率,调制幅度和调制频率)对CFRP / TI6AL4V的LF-VAD堆叠钻孔的影响。报道了将2.5周期/转向频率调制应用于各种加工参数的效果,并讨论了结果。被认为包括切割速度,进料速率和调制幅度的变量。切削温度降低了56%的56%,以及芯片形态的变化。还提出了对孔质量和表面粗糙度的影响。

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