Burr constitution analysis in ultrasonic-assisted drilling of CFRP/nano-graphene via experimental and data-driven methodologies

M. Baraheni, Behzad Hashemi Soudmand, Saeid Amini, Masoud Bayat, Ali Ebrahimi
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Abstract

In this study, a comprehensive investigation was undertaken to analyze the impact of various factors on thrust force and burr damage in carbon fiber reinforced polymer laminates during drilling operations. The factors examined included the incorporation of nano-graphene, the application of ultrasonic vibration, the type of cutting tool, and the feed rate. Statistical and machine learning techniques were employed to analyze the data, and image processing was utilized to illustrate the extent of burr damage surrounding the drilled holes. The developed model exhibited satisfactory prediction accuracy with minimal error rates. Statistical analysis revealed that the feed rate exerted the greatest influence on thrust force and facilitated the burr generation. Likewise, the addition of nano-graphene resulted in an increased thrust force due to improved rupture limits, consequently leading to cleaner holes with minimal burr damage. Furthermore, the implementation of ultrasonic vibration and the use of high-cobalt cutting tools were found to enhance drilling performance by reducing thrust force and minimizing the burr formation. The best hole quality was achieved at the lowest feed rate, in combination with a cutting tool containing 8% cobalt and the utilization of ultrasonic vibration.
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通过实验和数据驱动方法分析 CFRP/纳米石墨烯超声波辅助钻孔中的毛刺构成
在这项研究中,我们进行了一项综合调查,以分析在钻孔操作过程中各种因素对碳纤维增强聚合物层压板的推力和毛刺损伤的影响。考察的因素包括纳米石墨烯的加入、超声波振动的应用、切削工具的类型以及进给速度。采用统计和机器学习技术对数据进行分析,并利用图像处理来说明钻孔周围的毛刺损伤程度。所开发的模型具有令人满意的预测精度,误差率极低。统计分析表明,进给速度对推力的影响最大,并促进了毛刺的产生。同样,加入纳米石墨烯后,由于提高了断裂极限,推力增加,从而使钻孔更干净,毛刺损伤最小。此外,使用超声波振动和高钴切削工具还能降低推力,减少毛刺的形成,从而提高钻孔性能。在使用含 8%钴的切削工具和超声波振动的情况下,以最低的进给量获得了最佳的钻孔质量。
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