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激光清洗碳纤维增强聚合物及表面改性对化学活性和粘结强度的影响

Effect of laser cleaning of carbon fiber-reinforced polymer and surface modification on chemical activity and bonding strength.

作者信息

Tong Yanqun, Chen Xin, Zhang Ang, Fu Yonghong, Ren Xudong, Ye Yunxia, Xin Shanshan

出版信息

Appl Opt. 2020 Nov 10;59(32):10149-10159. doi: 10.1364/AO.404846.

Abstract

Bonding has been used to repair carbon fiber-reinforced polymer (CFRP) materials. However, research has shown that resin residue on the surface of CFRP can cause adhesion problems. Therefore, a reliable surface cleaning procedure is necessary to remove the resin residue before bonding. In this paper, the surface resin was removed by laser cleaning, while the surface properties of CFRP were improved. A pulsed laser cleaning experiment was designed to study the chemical activity and bonding strength of CFRP treated by laser with different laser power and scanning speed. The results showed that as the contact angle of the material surface decreased, chemical activity and adhesive properties were improved. The surface pretreated with laser power of 16 W (scanning speed of 1500 mm/s) had no resin residue and the best adhesive properties; the bonding strength was 1.6 times higher than that of the untreated surface, and the failure mode was dominated by a cohesive damage mode.

摘要

粘结已被用于修复碳纤维增强聚合物(CFRP)材料。然而,研究表明,CFRP表面的树脂残留会导致粘结问题。因此,在粘结之前,需要一个可靠的表面清洁程序来去除树脂残留。在本文中,通过激光清洗去除了表面树脂,同时改善了CFRP的表面性能。设计了脉冲激光清洗实验,以研究不同激光功率和扫描速度下激光处理后的CFRP的化学活性和粘结强度。结果表明,随着材料表面接触角的减小,化学活性和粘结性能得到改善。用16W激光功率(扫描速度为1500mm/s)预处理的表面没有树脂残留,粘结性能最佳;粘结强度比未处理表面高1.6倍,失效模式以内聚破坏模式为主。

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