项徽清,秦中立,张奇,刘建国.激光表面改性有机高分子材料的研究进展[J].表面技术,2020,49(5):103-111.
XIANG Hui-qing,QIN Zhong-li,ZHANG Qi,LIU Jian-guo.A Review of Laser Surface Modification on Organic Polymers[J].Surface Technology,2020,49(5):103-111
激光表面改性有机高分子材料的研究进展
A Review of Laser Surface Modification on Organic Polymers
投稿时间:2019-07-30  修订日期:2020-05-20
DOI:10.16490/j.cnki.issn.1001-3660.2020.05.013
中文关键词:  有机高分子材料  激光表面改性  表面性能  改性机理
英文关键词:organic polymers  laser surface modification  surface properties  modification mechanism
基金项目:国家自然科学基金面上项目(51775209)
作者单位
项徽清 华中科技大学 武汉光电国家研究中心 激光与太赫兹技术功能实验室,武汉 430074 
秦中立 华中科技大学 武汉光电国家研究中心 激光与太赫兹技术功能实验室,武汉 430074 
张奇 华中科技大学 武汉光电国家研究中心 激光与太赫兹技术功能实验室,武汉 430074 
刘建国 华中科技大学 武汉光电国家研究中心 激光与太赫兹技术功能实验室,武汉 430074 
AuthorInstitution
XIANG Hui-qing Functional Laboratory of Laser and Terahertz Technology, Wuhan National Laboratory of Optoelectronics (WNLO), Huazhong University of Science and Technology (HUST), Wuhan 430074, China 
QIN Zhong-li Functional Laboratory of Laser and Terahertz Technology, Wuhan National Laboratory of Optoelectronics (WNLO), Huazhong University of Science and Technology (HUST), Wuhan 430074, China 
ZHANG Qi Functional Laboratory of Laser and Terahertz Technology, Wuhan National Laboratory of Optoelectronics (WNLO), Huazhong University of Science and Technology (HUST), Wuhan 430074, China 
LIU Jian-guo Functional Laboratory of Laser and Terahertz Technology, Wuhan National Laboratory of Optoelectronics (WNLO), Huazhong University of Science and Technology (HUST), Wuhan 430074, China 
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中文摘要:
      有机高分子材料具有质轻、易成型、成本低等优点,在汽车、电子等领域有广泛的应用,但有机高分子材料的原始表面多数呈现化学惰性、表面能低,导致其应用受限。激光表面改性技术具有柔性化程度高、区域选择性好、可三维加工等诸多优势。简要综述了激光表面改性有机高分子材料的性能变化、机理和应用的国内外研究进展,表明通过激光改性可以在有机高分子材料表面形成诸如凸起、凹坑、沟槽、多孔和周期性结构等微观形貌,并使表面化学成分发生显著变化,进而影响其表面润湿性、表面能、吸附性、颜色和/或减阻等性能,这主要与有机高分子材料的自身特性、激光改性参数以及改性环境等因素密切相关,而且通过控制激光改性参数,还有可能实现对上述表面性能变化的精密调控。激光表面改性有机高分子材料在理论研究和实际应用中都具有巨大的价值,但目前对于激光表面改性有机高分子材料的理论研究落后于应用研究,还应进一步加强对改性技术和机理的探索与研究。
英文摘要:
      Organic polymers have many advantages including light weight, easy molding, low cost, etc., and thus have wide applications in such fields as automobiles, electronics, and so on. However, most of their pristine surfaces usually tend to be chemically inert and have low surface energy. Thus, this limits their broad and practical applications. Laser surface modification technology has many excellent features of high flexibility, good local selection, and three-dimensional (3D) processing. In this paper, the progress of the property changes, mechanisms, and applications of organic polymers after laser surface modification was reviewed. It showed that laser modification was able to form such surface micro-morphologies as bumps, pits, grooves, micro-pores and periodic microstructures, and to markedly change surface chemical compositions, which affected their wettability, surface energy, adsorbability, color, and/or lubrication. This was mainly related to the self-properties of the organic polymer materials, and the laser modification parameters and environment. By adjusting the laser parameters, it was probable to precisely control the change of the above surface properties. Laser surface modification on organic polymers has great theoretical and practical application values. Nevertheless, the study of laser surface modification theory lagged behind that of practical application. It is necessary to further enhance the exploration and study on laser surface modification technology and mechanism.
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