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Aging and Fatigue of Aerosol Jet-Printed Nano-Ag Traces on Flexible Substrate

机译:气溶胶喷射印刷纳米AG痕量曲线曲线上的老化和疲劳

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摘要

Conducting traces on a flexible substrate often have to survive significant and repeated deformation, making their fatigue resistance and the stability of it during long-term storage and use a potential concern. The question of stability is obvious in the case of, for example, screen or ink jet-printed traces where the organic matrix remains a critical part of the structure. We show it also to be important for nano-Ag traces that are sintered to ensure metallic bonding between the particles while eliminating most of the organics. We also show conventional accelerated aging tests to be potentially confusing or misleading for such traces, depending among other on practical limitations on sintering conditions. Examples are presented of how the fatigue resistance of application relevant aerosol jet-printed nano-Ag traces may degrade relatively rapidly at moderate temperatures. Even after "optimized" sintering at a much higher temperature subsequent aging at 75°C for only 100 h led to an order of magnitude reduction in the fatigue life in subsequent mild cycling. The rate of degradation is certain to vary with the design and the ink used as well as with sintering conditions, making it important to account for it all in materials selection, process optimization, and assessments of practical life.
机译:在柔性基板上进行迹线通常必须在长期储存期间产生显着和重复的变形,使其疲劳性和其稳定性和利用潜在的担忧。在例如屏幕或喷墨印刷迹线的情况下,稳定性的问题是显而易见的,其中有机基质仍然是结构的关键部分。我们表明它对烧结以确保颗粒之间的金属键合的纳米AG迹线也很重要,同时消除大部分有机物。我们还显示常规加速老化试验,以潜在地混淆或误导这些痕迹,这取决于烧结条件的实际限制。提出了应用相关气溶胶喷射印刷的纳米Ag迹线的疲劳电阻如何在中等温度下相对较快地降低施加施加的抗疲劳性。即使在75℃下随后老化的温度高于75℃的温度下烧结后,只有100小时导致随后的温和循环中疲劳寿命的尺寸级。劣化率肯定会随着设计和烧结和烧结条件而变化,使其在材料选择,过程优化和对实际生活的评估中进行了重要意义。

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  • 来源
    《Journal of Electronic Packaging》 |2021年第2期|021006.1-021006.7|共7页
  • 作者单位

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

    Department of Systems Science and Industrial Engineering Binghamton University Binghamton NY 13902;

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