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Laser surface alloying of coins for authenticity

机译:硬币的激光表面合金化以确保真实性

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Abstract: This paper presents an exploratory investigation on verifying the feasibility of using a laser surface alloying technique to produce designs in the surface of coinage blanks. The specific aim of the work concerns the production of design features in coins that are difficult to produce by other techniques and which hence act as a barrier to forgery and features which permit automatic recognition in vending machines, particularly as a means of establishing the authenticity of the coins. Coins in many countries today are commonly manufactured from metal composites, where one substrate metal or alloy is coated with another by a process of electrodeposition or by mechanical bonding. The technique here described entails the use of a high power CO$-2$/ laser to bring about localized melting of the two layers. Visible distinction between alloyed and unalloyed regions or difference in other physical properties such as conductivity or magnetic properties can be obtained. The work also involved a fundamental study of the influence of the thermal properties of the materials on the CO2 laser alloying process. It was found that the thermal properties such as thermal conductivity of the substrate materials and the difference of the melting points between the coating layer and the substrate materials played an important role in the process. Laser control variables required for localized alloying for different substrate and coatings types were determined. The influence of both thermal properties and laser control variables on alloy type and alloy depth were investigated. Initial work on coin validation showed promising results of an automatic recognition of laser treated coins.!5
机译:摘要:本文提出了一项探索性研究,以验证使用激光表面合金化技术在造币毛坯表面进行设计的可行性。这项工作的具体目的涉及在硬币中制作难以通过其他技术制造的设计特征,从而阻碍伪造,并允许在自动售货机中自动识别特征,特别是作为确定真伪的一种手段。硬币。当今许多国家/地区的硬币通常由金属复合材料制成,其中一种基材的金属或合金通过电沉积或机械粘合的方法被另一种基材或合金覆盖。这里描述的技术需要使用高功率CO $ -2 $ /激光来实现两层的局部熔化。可以获得合金区域和非合金区域之间的明显区别,或其他物理性质(如电导率或磁性质)的差异。这项工作还涉及对材料的热性能对CO2激光合金化过程的影响进行基础研究。已经发现,热性能例如基材的导热性以及涂层和基材之间的熔点差在该过程中起重要作用。确定了针对不同基材和涂层类型进行局部合金化所需的激光控制变量。研究了热性能和激光控制变量对合金类型和合金深度的影响。硬币验证的初步工作显示了自动识别经过激光处理的硬币的可喜结果。!5

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