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Printability and Environmental Testing using Silver-based Conductive Flexographic Ink Printed on a Polyamide Substrate

机译:使用在聚酰胺基材上印有银基导电柔性型墨水的可印刷性和环境测试

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The effect of simulated environmental exposure conditions (high heat, freezing temperature, rain, and vacuum pressure) on the performance of a silver-based conductive flexo ink printed on a polyamide (nylon 6,6) substrate was examined. Conductivity, density, color, adhesion, abrasion resistance and creasing were evaluated. The tested environmental variables did not have an effect on the performance quality of silver conductive flexographic ink when printed on a polyamide substrate for the 85 - 100% solid ink density levels. Rain and temperature had the greatest impact on print performance in the 70-80% tint range. Exposure to these elements affected adhesion properties of the ink to the substrate, which lead to a negative effect on the conductivity and abrasion performance. This study indicated an antenna printed at common ink density levels using a silver-based flexographic printing ink on a polymeric film is a possible solution for the implementation of printed RFID components. This is a manufacturing option that can bring the packaging industry from a "slap and stick" RFID labeling method to an actual inline production method that can be applicable to both primary and secondary package tagging needs. Lastly, the study utilizes common ink testing procedures that will be useful in the development of standards for the production of printed RFID components in packaging applications.
机译:研究了模拟环境暴露条件(高热,冷热温度,雨水和真空压力)对在聚酰胺(尼龙6,6)基材上印有银基导电柔性墨水的性能的影响。评估电导率,密度,颜色,粘附,耐磨性和污水。当在85-100%固体墨水密度水平上印刷聚酰胺基质时,测试的环境变量对银导电柔性型墨水的性能质量没有影响。雨水和温度对30-80%的色调范围内的印刷性能产生了最大的影响。暴露于这些元素影响油墨对基材的粘附性能,这导致对导电性和磨损性能的负面影响。该研究表明,在聚合物膜上使用基于银基柔性版印刷油墨在共同的墨水密度水平下印刷的天线是用于实施印刷的RFID组分的可能解决方案。这是一种制造选项,可以将包装行业从“咔嗒声”RFID标记方法带到实际的内联生产方法,这些方法可以适用于初级和辅助包标记需求。最后,该研究利用常见的墨水测试程序,可用于制定在包装应用中生产印刷RFID组件的标准。

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