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Novel Approach to Plastic Card Overcoating Process

机译:塑料卡覆膜工艺的新方法

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Plastic cards are widely used in various industries all over the world. Many on-demand non-embossed pictured cards require overcoating (also referred to as laminating) processes for surface protection from fading, abrasion, alteration and counterfeiting. There are several lamination types, such as wet lamination, dry lamination, hot-melt lamination and extrusion lamination. The focus on this paper is the hot-melt lamination type which utilizes heat and pressure to adhere the film on the card. The laminating / overcoating layer material can be clear material with anti-abrasion capability or hologram material for authentication. Typical overcoating process in the thermal transfer card printer is done by thermal printhead or heat roller. This paper suggests the heating head for this process. The heating head works on a very similar principle as the thermal printhead. The heating resistive element and temperature sensing element are placed on the alumina head substrate. When power is applied, the resistive element generates heat for the overcoating material to thermally adhere to the plastic card surface. Unlike the thermal printhead, however, which has hundreds of tiny heating elements, the heating head has one contiguous heating element. The construction of the heating head gives more robust thermal performance and even heating capability across the overcoating material on the card surface. In comparison to a heat roller, the heating head can be used on-demand and does not require the constant pre-heating while the unit is on stand-by (more "eco-friendly" efficiency and safety).
机译:塑料卡广泛应用于世界各地的各个行业。许多按需非浮雕图片卡片需要进行表面涂层处理(也称为层压),以保护表面免于褪色,磨损,涂改和伪造。有几种层压类型,例如湿层压,干层压,热熔层压和挤出层压。本文的重点是热熔层压类型,它利用热量和压力将胶片粘在证卡上。层压/外涂层材料可以是具有抗磨能力的透明材料或用于认证的全息图材料。在热转印证卡打印机中,典型的外涂过程是通过热打印头或热辊完成的。本文提出了该过程的加热头。加热头的工作原理与热敏打印头非常相似。加热电阻元件和温度感测元件放置在氧化铝头基板上。通电时,电阻元件会产生热量,使外涂层材料热粘合到塑料卡的表面。但是,与具有数百个微小的加热元件的热​​敏打印头不同,加热头具有一个连续的加热元件。加热头的结构在梳棉机表面上的覆盖材料上提供了更强大的热性能和均匀的加热能力。与加热辊相比,加热头可以按需使用,并且在设备处于待命状态时不需要恒定的预热(更“环保”的效率和安全性)。

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