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Fatigue behaviour of inkjet-printed silver interconnects on silica-coated mesoporous flexible PET substrate

机译:疲劳的行为具有银互联在silica-coated介孔灵活的宠物衬底

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摘要

Inkjet-printed silver conductive patterns are used in many flexible electronics applications ranging from health care, industrial assets management to aviation. Understanding of the electrical behaviour of these printed patterns under different mechanical stresses and environmental conditions is important for their real-life application use. The present work addresses a special system, silver interconnects on silica-coated mesoporous polyethylene terephthalate (PET) substrate. The combination of the substrate porosity and roughness, and a sintering temperature limited by the low glass transition temperature (T g) of the PET leads to unique behaviours that may easily be misinterpreted. Thus, while the interconnect resistance increases during stretching and decreases with unloading, the resistance at zero load is lower after a given cycle than before it and it continues to drop in consecutive cycles. This effect is stronger for higher strain amplitudes, but it could be reduced or eliminated by preceding low temperature annealing. Humidity exposure and thermal cycling also led to major drops in resistance, albeit for different reasons, but both led to faster fatigue in subsequent mechanical deformation. Accounting for these behaviours in the assessment of life under realistic use conditions requires a mechanistic understanding.
机译:具有使用银导电模式在许多灵活的电子产品应用范围从卫生保健、工业资产管理航空。这些打印模式下的行为不同的机械应力和环境为他们的现实条件是很重要的应用程序使用。特殊的系统,银互联silica-coated介孔聚对苯二甲酸乙二醇酯(PET)衬底。基质孔隙度和粗糙度,a烧结温度的限制较低的玻璃转变温度(T g)的宠物会导致独特的行为,可能会很容易误解。在拉伸和阻力增加随卸荷电阻为零加载在一个给定的周期比以前低和它继续连续下降周期。这对高应变效应更强振幅,但它可以减少或消除由前低温退火。曝光和热循环也导致专业阻力下降,尽管不同原因,但导致更快的疲劳随后的机械变形。这些行为在生命的评估现实需要一个机械的使用条件的理解。

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