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Behavior of Anisotropic Conductive Film (ACF) Joint Under Mechanical Shock

机译:机械冲击下各向异性导电膜(ACF)接头的行为

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The contact resistances investigated by this study of ACF joints using Au/Ni bumps and flexible substrates are found to be increased by the induced mechanical shock and also by the combined effect of heat/humidity and the mechanical shock. The samples humidified at 85℃/85% RH for 384 h, on which a load of 3.164 Kg was dropped four times from a height of 0.4 m, exhibit the most severe results. The contact resistance increases by 700%, which had been about 62Ω m in the as-bonded condition. The samples without humidification showed a sluggish and gentle increase in contact resistance with the induced mechanical shock. The contact resistance was found to be increased by 400% after the sixth drop from a height of 0.5 m. Scanning electron microscope images show particle deformation due to abrasion and friction between the contacting surfaces resulting from the sudden impact. Joints are also observed with no connections, which signify open circuits. Almost 25% of the circuits were found open in the samples (after 384 h in a humid environment), which have suffered severe mechanical shock (load drops four times from 0.4 m height). Breaking of the conductive layer of the particle and exposing the underlying polymeric portion were also observed.
机译:通过对使用Au / Ni凸点和柔性基板的ACF接头进行的这项研究研究发现,接触电阻会因感应机械冲击以及热/湿和机械冲击的共同作用而增加。样品在85℃/ 85%RH下加湿384 h,从0.4 m的高度上掉落了3.164 Kg的载荷四次,结果最为严重。接触电阻增加了700%,在接合状态下约为62Ωm。没有加湿的样品在引起机械冲击的情况下显示出缓慢而平缓的接触电阻增加。发现第六次下降后,接触电阻从0.5 m的高度增加了400%。扫描电子显微镜图像显示由于突然撞击导致接触表面之间的磨损和摩擦导致的颗粒变形。还观察到没有连接的接头,表示开路。发现样品中几乎有25%的电路断路(在潮湿环境中384小时后),这些电路遭受了严重的机械冲击(从0.4 m高度掉落四次)。还观察到了颗粒的导电层的断裂和暴露了下面的聚合物部分。

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