Study on green picosecond laser machining quality of carbon fiber reinforced polymers

Yue Zhao, Honglu Bian, Wenchao Wang, Zhipeng Ning, Ming Gao, Xunxia Lu, Jiaxiu Wang, Xu Chen, Guoli Peng, Kaihu Zhang
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Abstract

This paper uses an ultrafast laser with a wavelength of 532nm and a pulse width of 10ps to conduct cutting process experiments on typical grades of CFRP materials in the aerospace manufacturing field, such as high-modulus CFRP and high-strength CFRP. After optimizing laser parameters and processing paths, a high-quality processing effect with minimal heat affected zone was obtained, and the fracture morphology characteristics and mechanical properties of the processed specimens were studied. The results indicate that under the laser wavelength, pulse width, and processing parameters selected in this paper, the morphology of the cut edge of typical CFRP materials was observed without visible heat affected zone through 200x optical microscope magnification, and the processed section was bright and burr-free, the fiber bundle section was neat, and the resin section was smooth through 2000x scanning electron microscope observation. Through the mechanical tensile testing, compared the ultrafast laser processed tensile specimens with the traditional mechanical cutting and punching tensile specimens, the ultrafast laser processed specimens of many typical grades of CFRP materials all have higher tensile mechanical properties, which also proves that the ultrafast laser pulse width and wave band used for CFRP materials have excellent processing quality, and are suitable for promotion and application in the aerospace manufacturing field. Finally, this paper introduces the typical applications of ultrafast laser processing CFRP in aerospace products.
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碳纤维增强聚合物的绿色皮秒激光加工质量研究
本文采用波长为 532nm、脉宽为 10ps 的超快激光,对航空航天制造领域的典型 CFRP 材料,如高模量 CFRP 和高强度 CFRP,进行了切割加工实验。在优化激光参数和加工路径后,获得了热影响区最小的高质量加工效果,并对加工试样的断口形貌特征和力学性能进行了研究。结果表明,在本文选定的激光波长、脉宽和加工参数条件下,通过 200 倍光学显微镜放大观察,典型 CFRP 材料的切边形貌无可见热影响区,通过 2000 倍扫描电子显微镜观察,加工断面光亮无毛刺,纤维束断面整齐,树脂断面光滑。通过力学拉伸试验,将超快激光加工的拉伸试样与传统的机械切割和冲压拉伸试样进行对比,多种典型牌号的 CFRP 材料的超快激光加工试样均具有较高的拉伸力学性能,这也证明了 CFRP 材料采用的超快激光脉宽和波段具有优异的加工质量,适合在航空航天制造领域推广应用。最后,本文介绍了超快激光加工 CFRP 在航空航天产品中的典型应用。
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