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Temperature dependence of mechanical properties of isotropic conductive adhesive filled with metal coated polymer spheres

机译:填充有金属涂层聚合物球的各向同性导电胶的机械性能与温度的关系

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An isotropic conductive adhesive (ICA) filled with metal-coated polymer spheres (MPS) has been studied as a novel approach to increase the flexibility, and hence the reliability, compared to the conventional metal-filled ICA. In this study, the effect of the metal coating on the die shear strength was investigated by comparing ICA materials with coated and uncoated polymer spheres. The other important part of the study was to assess the temperature dependence of the die shear strength of an MPS-based ICA, and also compare this with the behavior of a conventional ICA filled with Ag particles. The results showed that the metal coating does not have a critical effect on the die shear strength of ICA filled with MPS. The die shear strengths obtained for the MPS-based ICA and the conventional Ag-filled ICA have the same temperature dependence in the range of 20 °C to 120 °C. Furthermore, none of the ICA systems has experienced a critical drop in die shear strength at and above the glass transition temperature.
机译:与传统的金属填充ICA相比,填充金属涂覆的聚合物球体(MPS)的各向同性导电胶(ICA)已被研究为增加柔韧性并因此提高可靠性的新方法。在这项研究中,通过比较带有涂层和未涂层​​聚合物球的ICA材料,研究了金属涂层对模头剪切强度的影响。该研究的另一个重要部分是评估基于MPS的ICA的模切强度的温度依赖性,并将其与填充有Ag颗粒的常规ICA的性能进行比较。结果表明,金属涂层对填充有MPS的ICA的模切强度没有关键影响。对于基于MPS的ICA和传统的填充Ag的ICA,其模切强度在20°C至120°C范围内具有相同的温度依赖性。此外,在玻璃化转变温度及更高的温度下,没有一个ICA系统的模切强度出现严重下降。

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