首页> 外国专利> HIDDEN IMAGE IN THE THIN SHEET MATERIAL CREATION METHOD FROM PLURALITY OF THE VOLUMETRIC NANO-STRUCTURES PAIRS FOR THE SECURITIES AND IDENTIFICATION DOCUMENTS PROTECTION AGAINST FORGERY BY SEVERAL COMMON CHARACTERS

HIDDEN IMAGE IN THE THIN SHEET MATERIAL CREATION METHOD FROM PLURALITY OF THE VOLUMETRIC NANO-STRUCTURES PAIRS FOR THE SECURITIES AND IDENTIFICATION DOCUMENTS PROTECTION AGAINST FORGERY BY SEVERAL COMMON CHARACTERS

机译:厚度薄的材料制备方法中的隐藏图像,从多个纳米结构对的安全性和识别文档的保护性出发,采用多个共同特征

摘要

FIELD: image forming devices; manufacturing technology.;SUBSTANCE: hidden image in the thin sheet material body creation method from plurality of the volumetric nano-structures pairs for the securities and identification documents protection against forgery by several common characters. Method is implemented by acting on given points of the sheet material from the metal layer surface between two layers of plastic, located on the micro-lenses layer in the form of glass microbeads, deposited on the plastic substrate and partially immersed in the luminophor layer by the above-threshold power laser pulses. As a result, in the sheet material within the laser spot tremendous pressure occurs, displacing composing the laser beam light waves to the laser spot periphery. These waves penetrate inside the sheet material, within the laser spot fuse the micro-lenses with metal and luminophor particles, penetrate the plastic substrate, forming channels in it, and under the influence of enormous return pressure from micro-lenses reaching 100,000 atm., and high temperatures of the order of 3,000–4,000 °C in the adjacent to the metal layer plastic form between them the latent image points from the volumetric nanostructures pairs and nano-whiskers rows. In fact, the volumetric nanostructures pairs and nano-whiskers rows are formed as the result of the metal, glass, luminophor and plastic alloy high-speed crystallization. As a result of crystallization, on the sheet material front surface an image is formed from the points, which are a collection of crystals, and located between them the nano-whiskers rows represent the diffraction grids equivalent. With the sheet material turning relative to the light source, on the nano-whiskers rows its dispersion occurs, as a result of which, the subjected dispersion white light paints the crystal in different colors, creating a color iridescent image on the sheet material front surface. Proposed method enables creation of two more common characters to protect this material against counterfeiting, on the sheet material back side ensuring formation of the black and white image from the channels in the plastic substrate and visible in transmitted light the original color image inside the sheet material.;EFFECT: proposed security features are created by the proposed method in a thin film, so that this method can protect both securities and identification documents against forgery.;6 cl, 4 dwg
机译:领域:成像设备;制造技术。实质:在薄板材料主体创建方法中,从多个体积纳米结构对中隐藏的图像,用于证券和身份证明文件的防伪,具有几个共同的特征。通过从两层塑料之间的金属层表面作用于片材的给定点来实现该方法,两层塑料以玻璃微珠的形式位于微透镜层上,沉积在塑料基板上,并通过以下方式部分浸入发光体层中:高于阈值的功率激光脉冲。结果,在激光点内的片状材料中产生巨大的压力,从而将组成激光束的光波移动到激光点的外围。这些波穿透片状材料内部,在激光点内使微透镜与金属和发光体粒子融合,穿透塑料基板并在其中形成通道,并在微透镜的巨大返回压力的影响下达到100,000 atm,并且在它们之间的金属层塑料附近形成了大约3,000–4,000°C的高温,这是来自体积纳米结构对和纳米晶须行的潜像点。实际上,由于金属,玻璃,发光体和塑料合金的高速结晶,形成了体积纳米结构对和纳米晶须排。作为结晶的结果,在片材前表面上由作为晶体的集合的点形成图像,并且位于它们之间的纳米晶须行代表等效的衍射栅格。随着片状材料相对于光源的转动,在纳米晶须行上发生了色散,其结果是,所施加的色散白光将晶体涂成不同的颜色,从而在片状材料的前表面上形成了彩色彩虹色的图像。 。所提出的方法使得能够创建两个或更常见的字符来保护该材料免受伪造,在片材背面上确保从塑料基板中的通道形成黑白图像,并在透射光下可见片材内部的原始彩色图像。 。;效果:通过提议的方法在薄膜中创建提议的安全特征,因此该方法可以保护证券和身份证明文件免受伪造。; 6 cl,4 dwg

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