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Investigation on fracture and conductivity of flex-on-film flexible bonding using anisotropic conductive film considering repeated bending

机译:考虑重复弯曲的各向异性导电膜的柔性导电膜骨折和电导率研究

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This study conducts an experimental investigation into the bending behavior and electrical resistance properties of Flex (PI with Cu)-On-Film (ITO-coated PET) packages considering the flexible effects under static bending loads with sequential bending cycles. The FOF packages, consisting of flex (with fine-pitch Cu circuits) and film (ITO-coated PET plastic) are bonded by Anisotropic Conductive Film (ACF). During the ACF bonding process, the deformed conductive particles in the adhesive matrix between the Cu electrodes and the ITO film under the effects of the compression force, and these broken conductive particles will play an electrical conductive role. In the subsequent bending tests (loading &unloading with many cycles), the conductive particles experience a compression or tension stress, which causes a further propagation of the cracks formed in the original packaging process. The results show the measured electrical resistance in the specified conductive channel increases with the bending cycles increasing, and the microscopic observations show that the higher electrical resistance is the result of a smaller overall contact area between the conductive ACF particles and the Cu electrode/ITO film due to fatigue crumbling of the particles.
机译:本研究对弯曲弯曲负荷下的柔性效应具有连续弯曲循环的柔性效应,对弯曲(PI与Cu) - 膜(ITO涂层PET)封装进行弯曲行为和电阻性能的实验研究。由柔性(带细间距Cu电路)和薄膜(ITO涂覆的PET塑料)组成的FOF封装通过各向异性导电膜(ACF)键合。在ACF键合工艺期间,Cu电极和ITO膜之间的粘合剂基质中的变形导电颗粒在压缩力的效果下,并且这些断裂导电颗粒将发挥导电作用。在随后的弯曲试验中(用许多循环加载和卸载),导电颗粒经历压缩或张力应力,这导致原始包装过程中形成的裂缝进一步传播。结果表明,在指定的导电通道中的测量电阻随着弯曲循环的增加而增加,并且微观观察表明,较高的电阻是导电ACF颗粒和Cu电极/ ITO膜之间的较小总接触面积的结果由于疲劳粉碎颗粒。

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