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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Effects of Polymer Ball Size and Polyvinylidene Fluoride Nanofiber on the Ball Capture Rate for 100--Pitch Flex-on-Flex Assembly Using Anisotropic Conductive Films and Ultrasonic Bonding Method
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Effects of Polymer Ball Size and Polyvinylidene Fluoride Nanofiber on the Ball Capture Rate for 100--Pitch Flex-on-Flex Assembly Using Anisotropic Conductive Films and Ultrasonic Bonding Method

机译:聚合物球尺寸和聚偏二氟乙烯纳米纤维对各向异性导电膜和超声键合方法在100间距挠性上挠性组件中球捕获率的影响

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摘要

There are still many problems in the conductive adhesive, such as particle size and particle dispersion in the matrix, which can affect the stability of the electrical conductivity. In order to resolve the particle dispersion issue in the anisotropic conductive films (ACFs) during the bonding process, we need to increase capture rate of conductive balls between the top and the bottom metal electrodes. In this paper, the methods of increasing capture rates were studied. The capture rates of the conventional 20- and 10- $mu text{m}$ polymer ball ACFs were compared. In addition, the capture rates of the conventional polymer ball ACF and polyvinylidene fluoride (PVDF) nanofiber incorporated a polymer ball ACF were compared. As a result, the capture rates of 20- $mu text{m}$ polymer ball ACFs were $sim 30$ % higher than 10- $mu text{m}$ polymer ball ACFs. And the capture rate of PVDF nanofiber incorporated polymer ball ACF was 21% higher than the conventional polymer ball ACF. By using nanofiber and larger size of conductive balls, the capture rates can be increased.
机译:导电粘合剂中仍然存在许多问题,例如颗粒尺寸和颗粒在基质中的分散,这会影响电导率的稳定性。为了解决键合过程中各向异性导电膜(ACF)中的颗粒分散问题,我们需要提高顶部和底部金属电极之间的导电球捕获率。本文研究了提高捕获率的方法。比较了传统的20和10μmutext {m} $聚合物球ACF的捕获率。另外,比较了常规聚合物球ACF和结合有聚合物球ACF的聚偏二氟乙烯(PVDF)纳米纤维的捕获率。结果,20-μm文本{m} $聚合物球ACF的捕获率比10-μm文本{m} $聚合物球ACF高30%。并且PVDF纳米纤维结合的聚合物球ACF的捕获率比常规聚合物球ACF高21%。通过使用纳米纤维和更大尺寸的导电球,可以提高捕获率。

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