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Electrical and Thermal Conduction of Isotropic Conductive Adhesive based on Novel Conductive Particles

机译:基于新型导电颗粒的各向同性导电粘合剂的电气和热传导

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The electrical and thermal properties of a novel conductive adhesive based on silver coated polymer spheres have been measured. The results show that high electrical and thermal conductivity can be obtained with very small volume fractions of silver. The technique makes it possible to tune particle size and silver thickness, to optimize the required conductivity with respect to cost for a range of different applications. The spherical shape of the particles provides a fully isotropic behavior. A simplified model has been made based on the conductivity of a spherical shell and expected contact areas. The model grasps critical elements like the effect of particle size and silver thickness as well as the observed sintering of particles.
机译:基于银涂覆的聚合物球的新型导电粘合剂的电气和热性能已经测量。结果表明,可以用非常小的银体级数获得高电和导热率。该技术使得可以调整粒度和银厚度,以优化关于一系列不同应用的成本所需的电导率。颗粒的球形形状提供了完全各向同性的行为。基于球形壳和预期接触区域的电导率进行了简化的模型。模型掌握粒度和银厚度的效果的关键元素以及观察到的颗粒烧结。

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