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Laser Marking System of 3D Nondestructive Anti-counterfeiting Identifiers Based on Liquid Crystal Mask

机译:基于液晶掩模的3D无损防伪标识激光打标系统

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The theoretical researches on fabrication, measurement and identification of laser marking system of 3D(three-dimension) anti-counterfeiting identifiers have been done in this paper. 3D identifiers were fabricated and 3D identifiers' modelings were reconstructed, and binary coding of gray images were encoded by programmable control of liquid crystal mask, spatial modulating of laser beam and photolithography fabrication technics. We regarded the depth of 3D identifiers as anti-counterfeiting information, and the original marking data and anti-counterfeiting information are saved in remote database server by database technology and computer network technology, so true produces can be distinguished from fake through network. The basic theory of 3D nondestructive anti-counterfeiting identifiers based on liquid crystal mask was built, and a new technology of creating 3D anti-counterfeiting identifiers by laser shock wave was set up, which differs entirely from marking by laser ablation (or laser thermal effect). A new high-efficiency theory of detecting and identifying on 3D anti-counterfeiting identifiers by 3D identifiers' reconstruction and binary coding was set up. The study enriches dynamic plastic deformation theory of partial high-strain-rate and anti-counterfeiting design & manufacturing theory which is also a highlight based on advanced manufacturing theory of mechanical effect on laser shock wave.
机译:本文对3D(三维)防伪标识激光打标系统的制作,测量和识别进行了理论研究。制作了3D标识符,并重建了3D标识符的模型,并通过液晶掩模的可编程控制,激光束的空间调制和光刻制造技术对灰色图像进行了二进制编码。我们将3D标识符的深度作为防伪信息,并通过数据库技术和计算机网络技术将原始标记数据和防伪信息保存在远程数据库服务器中,从而可以通过网络区分真伪。建立了基于液晶掩模的3D无损防伪标识的基本理论,建立了一种通过激光冲击波创建3D防伪标识的新技术,该技术与激光烧蚀(或激光热效应)打标完全不同。 )。建立了一种新的高效理论,通过3D标识符的重构和二进制编码对3D防伪标识符进行检测和识别。该研究丰富了部分高应变率的动态塑性变形理论和防伪设计与制造理论,这也是基于先进的激光冲击波机械效应制造理论的一个亮点。

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