Chinese Journal of Lasers, Volume. 34, Issue s1, 1(2007)
Three-Dimensional Anti-Counterfeiting Identifiers Based on Laser Shock Processing
[1] [1] NASA. Information Technology Automatic identification and data capture techniques Guidelines for direct part marking (DPM),2003
[2] [2] F. J. Carpio, D. Araújo, F. J. Pacheco et al.. Fatigue behaviour of laser machined 2024 T3 aeronautic aluminium alloy[J]. Applied Surface Science, 2003, 208~209: 194~198
[3] [3] Dance C. Brent, Hackel Lloyda, Harris Fritz. A identification marking by means of laser peening. US Wo0161619. 2001-08-23
[4] [4] H. Haferkamp, P. Jschke, J. Stei et al.. Decoding of invisible laser markings using infrared technology[J]. Infrared Physics and Technology, 2002, 43: 171~174
[5] [5] Hongyu Zheng, Gnian Cher Lim. Laser-effected darkening in TPEs with TiO2 additives[J]. Optics and Lasers Engineering, 2004, 41: 791~800
[6] [6] J. Qi, K. L. Wang, Y. M. Zhu. A study on the laser marking process of stainless steel[J]. J. Materials Processing Technology, 2003, 139: 273~276
[7] [7] U. S. Department of Energy (Lawrence Livermore National Laboratory). Science and Technology Review . March 2001
[8] [8] Zhang Yongkang, Yin Sumin, Zhou Jianzhong et al.. Method and device of 3D nondestructive and high-anti-counterfeiting identifiers by laser shock wave[P]. Patent Application No. 200510037968.2
[9] [9] Zhou Jianzhong, Zhang Yongkang, Zhou Ming et al.. A kind of flexible film by laser shock processing[P]. Patent No. ZL02138338.3
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[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Three-Dimensional Anti-Counterfeiting Identifiers Based on Laser Shock Processing[J]. Chinese Journal of Lasers, 2007, 34(s1): 1