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Mechanical and electrical properties investigation of micro-size single metal-coated polymer particle

机译:微米级单金属包覆聚合物颗粒的机械和电气性能研究

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Micro-sized metal coated polymer particles are widely used in the anisotropic conductive adhesive (ACA). The mechanical properties of the metal coated polymer particles are crucial important for the processing and reliability performance of ACA materials in driver IC package application. In this paper, mechanical characterization and electrical property of individual Ni/Au coated micro-size polymer particles were investigated by using the compression tester equipped with a flat indenter. There are three different diameters of metal coated polymer particles (3μm, 5μm, 10μm) selected to be evaluated the mechanical characterization. The mechanical properties of particles such as recovery rate, compression ratio and compression modulus, K value, were discussed through force-displacement curve by using micro-compression tester machine. The relationship between mechanical properties and different loading rate (0.5~5.0 mN/sec.), loading force (10~100mN) and particle size (3μm, 5μm, 10μm) were discussed in the research work. Due to the high temperature bonding process in driver IC package application, the stable mechanical property of metal particles of ACA at high temperature is important. The particular particle displays significantly force-displacement curve at the higher temperature (150°C) because of the polymer characterization. The electrical property of a metal-coated polymer particle is also important for ACA interconnection process. Contact resistance characteristic of a single metal-coated polymer particle was evaluated in this work. The contact resistance of a single metal-coated polymer particle through different thickness of metal coating layer, different loading force, and different loading rates from the micro-compressor was investigated. The electrical resistant influence through difference deformation of particles was discussed here. The electrical conductivity mostly depends on the metallic coating - aterials and deformation of particles. The investigation here would like apply a significant guiding to the manufacture design of metal coated polymer particle for the Anisotropic Conductive Adhesive packaging applications.
机译:微米尺寸的金属涂覆的聚合物颗粒广泛用于各向异性导电胶(ACA)中。金属涂层的聚合物颗粒的机械性能对于驱动器IC封装应用中ACA材料的加工和可靠性性能至关重要。在本文中,使用配备了扁平压头的压缩测试仪研究了单个Ni / Au涂层的微细聚合物颗粒的机械特性和电性能。选择三种不同直径的金属包覆的聚合物颗粒(3μm,5μm,10μm)以评估其机械性能。利用微压缩试验机通过力-位移曲线讨论了颗粒的力学性能,如回复率,压缩比,压缩模量,K值等。研究工作中讨论了力学性能与不同加载速率(0.5〜5.0 mN / sec。),加载力(10〜100mN)和粒度(3μm,5μm,10μm)之间的关系。由于驱动器IC封装应用中的高温粘合工艺,ACA金属颗粒在高温下的稳定机械性能非常重要。由于聚合物的特性,特定的颗粒在较高的温度(150°C)下显示出显着的力-位移曲线。金属涂覆的聚合物颗粒的电性能对于ACA互连过程也很重要。在这项工作中评估了单个金属包覆的聚合物颗粒的接触电阻特性。研究了单个金属包覆的聚合物颗粒在不同厚度的金属涂层,不同的加载力和来自微型压缩机的不同加载速率下的接触电阻。本文讨论了由于颗粒差异变形而产生的电阻影响。导电率主要取决于金属涂层-物料和颗粒的变形。此处的研究将对各向异性导电胶包装应用中金属涂层的聚合物颗粒的制造设计提供重要指导。

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