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ALL PAPER MEMBRANE SWITCH

机译:所有纸膜开关

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摘要

Printing of electronic circuitry on paper is a frontier being explored by many in the printing industry. The study was conducted to determine if conductive circuitry could be printed on paper with equivalent functional characteristics as traditional circuits printed on plastic substrates.This four week study utilized both UV and conventional solvent based screen printing inks. Ink thicknesses were varied to determine the effect upon the circuit. Paper samples were pretreated with UV dielectric ink to determine if there was any difference between circuits printed on pretreated and untreated substrates.Pretreatment with UV dielectric ink proved beneficial on uncoated paper stocks; but detrimental on coated paper stocks. Many untreated; coated paper stocks yielded circuits with equivalent or superior conductivity to circuits printed on polyester.The final; assembled circuits functioned as membrane switches. Future tests need to be done utilizing other pretreatments and curing parameters to determine the ideal combination of printed layers and materials to produce cost effective and dependable circuits on paper.
机译:在纸上印刷电子电路是印刷行业中许多人探索的前沿领域。进行该研究以确定导电电路是否可以印刷在纸上,其功能特性与印刷在塑料基板上的传统电路相同。 这项为期四周的研究同时使用了UV和传统的溶剂型丝网印刷油墨。改变墨水厚度以确定对电路的影响。纸样品用UV介电油墨进行预处理,以确定在预处理和未处理的基材上印刷的电路之间是否存在任何差异。 事实证明,使用UV介电油墨进行预处理对未涂布纸材有益。但对铜版纸原料有害。许多人未经治疗;铜版纸所产生的电路具有与印刷在聚酯上的电路相同或更高的电导率。 决赛;组装电路起薄膜开关的作用。未来的测试需要利用其他预处理和固化参数来确定印刷层和材料的理想组合,以在纸上生产经济高效且可靠的电路。

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