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Cyclic Bending Reliability of Silk Screen Printed Silver Traces on Plastic and Paper Substrates

机译:塑料和纸质基材上丝印银迹的循环弯曲可靠性

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The effect of the substrate on the cyclic bending reliability of screen printed silver traces is studied in this paper. The silver screen printed test samples in this study were three different plastic films and three varieties of paper sheets. The specimens with line widths of 250, 500, 1000, and 2000 were subjected to cyclic bending, and their electrical behavior was monitored with dc resistance measurements . In this study, a 20% increase in resistance was defined as the failure criterion, and the reliability of each test population was assessed by a statistical Weibull analysis. The results showed that the reliability of the traces was highly dependent on the substrate thickness in all the studied materials. The traces on a 125- -thick polyethylene terephthalate substrate were found to have the lowest characteristic lifetimes of about 1000 bending cycles, whereas the traces with the same geometry on polyethylene terephthalate with a thickness of 50 endured hundreds of thousands of bending cycles. Similarly, decreasing the substrate thickness improved the reliability of the printed traces on paper substrates. This relationship was due to the reduced mechanical strain on the trace surface when using thinner substrates.
机译:本文研究了基材对丝网印刷银迹线循环弯曲可靠性的影响。本研究中的银丝网印刷测试样品是三种不同的塑料薄膜和三种纸质。将线宽分别为250、500、1000和2000的样品进行循环弯曲,并通过直流电阻测量监测其电性能。在这项研究中,将电阻增加20%定义为失效标准,并通过统计威布尔分析评估每个测试人群的可靠性。结果表明,在所有研究材料中,迹线的可靠性高度依赖于基板厚度。发现在厚度为125的聚对苯二甲酸乙二醇酯基底上的迹线的最低特性寿命约为1000个弯曲循环,而在厚度为50的聚对苯二甲酸乙二醇酯上具有相同几何形状的迹线则承受数十万个弯曲循环。同样,减小基板厚度可提高纸质基板上印刷迹线的可靠性。这种关系是由于使用较薄的基板时走线表面机械应力降低所致。

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