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The replacement of precious metal thick film inks using new conductive polymer technology

机译:使用新的导电聚合物技术替代贵金属厚膜油墨

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This work was undertaken as a feasibility study with limited actual testing. However, the four synthetic metal/conductive polymer systems studied in polymer thick film applications gave generally favorable results. There are many obstacles to be overcome in order to go from feasibility to practical applications. Prime among these is the need to develop alternative procedures to the conventional screen printed hybrid circuit. Application of these materials as a dispersed phase is not thought to be the best method of utilizing them. A method whereby the application could be as a bulk continuous form would greatly increase the sheet conductivity and possibly eliminate the need to dissolve or disperse. One of several possible approaches would be to utilize existing polymer processing methods, e.g. extrusion molding. The question of ambient stability which has been a fundamental shortcoming of all synthetic metal/conductive polymer technology to date remains to be determined. The limited observations suggest that incorporation of these materials into organic resin systems combined with protective overcoats greatly increase the probability of long-term stability.
机译:这项工作是作为可行性研究而进行的,实际测试很少。然而,在聚合物厚膜应用中研究的四种合成金属/导电聚合物体系总体上给出了令人满意的结果。为了从可行性转向实际应用,有许多障碍需要克服。其中最主要的是需要开发常规丝网印刷混合电路的替代程序。认为将这些材料作为分散相应用不是利用它们的最佳方法。一种可以以块状连续形式施用的方法将大大提高片材的电导率,并可能消除溶解或分散的需要。几种可能的方法之一将是利用现有的聚合物加工方法,例如,聚合物。挤压成型。迄今为止,环境稳定性问题一直是所有合成金属/导电聚合物技术的根本缺陷。有限的观察结果表明,将这些材料结合到有机树脂体系中并与保护性外涂层结合使用,大大增加了长期稳定性的可能性。

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