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The characterization of electrically conductive silver ink patterns on flexible substrates

机译:柔性基板上的导电银墨水图案的特征

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摘要

Electrically conductive silver ink patterns were produced by the screen printing method. Paper, fabrics and plastics were used as the substrate materials. The electrical properties of the samples were characterized by sheet resistance measurement as a function of curing temperature and curing time. The mechanical properties of the samples were characterized by cross hatch adhesion test, bending test and tensile test. Depending on the process parameters and materials, the sheet resistance of the printed conductive patterns varied between 0.04 Ω/□ and 0.13 Ω/□. The curing temperature appeared to have a significant effect on the sheet resistance. In all cases sheet resistance decreased as a function of curing temperature. Adhesion between the substrates and the conductive patterns appeared to be good. The result of the bending test indicated that the resistivity of the silver ink patterns increased as a function of the bending cycle process. The results of the tensile and electrical tests showed that with the screen printing method it is possible to produce highly stretchable electrically conductive patterns for practical applications.
机译:导电银油墨图案通过丝网印刷法制成。纸张,织物和塑料用作基材。通过薄层电阻测量将样品的电性能表征为固化温度和固化时间的函数。通过划格法附着力测试,弯曲测试和拉伸测试来表征样品的机械性能。取决于工艺参数和材料,印刷导电图案的薄层电阻在0.04Ω/□和0.13Ω/□之间变化。固化温度似乎对薄层电阻有显着影响。在所有情况下,薄层电阻均随固化温度而降低。基板与导电图案之间的粘合性似乎良好。弯曲测试的结果表明,银墨图案的电阻率随弯曲循环过程而增加。拉伸和电测试的结果表明,通过丝网印刷方法,可以生产出可实际应用的高度可拉伸的导电图案。

著录项

  • 来源
    《Microelectronics reliability 》 |2009年第7期| 782-790| 共9页
  • 作者单位

    Tampere University of Technology, Port, Electronics, P.O. Box 300, FI-28101 Pori, Finland;

    Tampere University of Technology, Port, Electronics, P.O. Box 300, FI-28101 Pori, Finland;

    Tampere University of Technology, Port, Electronics, P.O. Box 300, FI-28101 Pori, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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