Jiang Hao, Ma Caiwen, Li Ming, Cao Zhiliang
State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an 10068, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Molecules. 2021 May 16;26(10):2953. doi: 10.3390/molecules26102953.
Ultrafast laser drilling has been proven to effectively reduce the heat-affected zone (HAZ) of carbon fiber-reinforced polymer (CFRP) composites. However, previous research mainly focused on the effects of picosecond laser parameters on CFRP drilling. Compared with a picosecond laser, a femtosecond laser can achieve higher quality CFRP drilling due to its smaller pulse width, but there are few studies on the effects of femtosecond laser parameters on CFRP drilling. Moreover, the cross-sectional taper of CFRP produced by laser drilling is very large. This paper introduces the use of the femtosecond laser to drill cylindrical holes in CFRP. The effect of laser power, rotational speed of the laser, and number of spiral passes on HAZ and ablation depth in circular laser drilling and spiral laser drilling mode was studied, respectively. It also analyzed the forming process of the drilling depth in the spiral drilling mode and studied the influence of laser energy and drilling feed depth on the holes' diameters and the taper. The experimental results show that the cylindrical hole of CFRP with a depth-to-diameter ratio of about 3:1 (taper < 0.32∘, HAZ < 10 m) was obtained by using femtosecond laser and a spiral drilling apparatus.
超快激光钻孔已被证明能有效减少碳纤维增强聚合物(CFRP)复合材料的热影响区(HAZ)。然而,以往的研究主要集中在皮秒激光参数对CFRP钻孔的影响上。与皮秒激光相比,飞秒激光由于其脉冲宽度更小,能够实现更高质量的CFRP钻孔,但关于飞秒激光参数对CFRP钻孔影响的研究较少。此外,激光钻孔产生的CFRP横截面锥度非常大。本文介绍了使用飞秒激光在CFRP上钻圆柱孔。分别研究了激光功率、激光转速和螺旋扫描次数在圆形激光钻孔和螺旋激光钻孔模式下对热影响区和烧蚀深度的影响。还分析了螺旋钻孔模式下钻孔深度的形成过程,并研究了激光能量和钻孔进给深度对孔直径和锥度的影响。实验结果表明,使用飞秒激光和螺旋钻孔设备可获得深度与直径比约为3:1(锥度<0.32°,热影响区<10μm)的CFRP圆柱孔。