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Improving Performance of Laser-Printed Conductive Silver Lines

机译:提高激光印刷导电银线的性能

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摘要

Within the last decade, large efforts were made to implement digital printing as a production method for printed electronics. Especially in production of thick-film electronics, innovation is pushed forward to overcome the lacks of established screen-printing regarding flexibility and tooling. Besides the numerous approaches in using ink-jet printing for printed electronics, researchers at Helmut Schmidt University already showed huge progress in applying electrophotography ("laser printing") as a method to print conductive silver lines in order to form a conductive layout for thick-film circuits. Electrophotography is a solvent-free method, able to directly print silver toner onto ceramic substrates, forming a conductive line after firing. Benefits are high speeds and flexibility and a huge potential regarding precision. Now, after the feasibility of the method was proven and even functional conductive layouts like RFID coils were printed, the next steps have to be taken towards developing electrophotography to an applicable method in a thick-film production process. Thus, this paper describes the efforts in improving the method's performance. Different kinds of silver particles are tested towards their possibility of forming a silver toner. The resulting silver lines are examined regarding conductivity and printing precision. Also, surface treatment of substrates is considered as a method to reduce the number of required print cycles. Corresponding tests are performed. Furthermore, different firing profiles are tested towards their influence onto the resulting silver lines. Combining the results of these examinations, the performance of conductive silver lines could be improved significantly.
机译:在过去十年中,努力实现数字印刷作为印刷电子产品的生产方法。特别是在生产厚膜电子产品中,推动创新以克服缺乏关于灵活性和工具的缺乏型丝网印刷。除了使用印刷电子产品的喷墨印刷的众多方法之外,Helmut Schmidt大学的研究人员已经在应用电子照相(“激光印刷”)作为打印导电银线的方法时表现出巨大的进展,以形成厚度的导电布局电影电路。电子照相是一种无溶剂方法,能够将银色调色剂直接印在陶瓷基板上,在烧制后形成导电线。优点是高速度和灵活性以及精度的巨大潜力。现在,经过验证的方法的可行性,甚至印刷类似RFID线圈的功能导电布局,必须在厚膜制作过程中向适用的方法朝向应用电子照相来发展电子照相。因此,本文介绍了提高方法性能的努力。对它们形成银色调色剂的可能性来测试不同种类的银颗粒。检查所得的银线关于电导率和印刷精度。此外,基材的表面处理被认为是减少所需印刷循环循环的数量的方法。执行相应的测试。此外,不同的烧制曲线朝向其影响到所得的银线。结合这些考试的结果,可以显着提高导电银线的性能。

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