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Microstructures and Properties of Sn2.5Ag0.7Cu0.1RE Composite Solders Reinforced with Cu-Coated Graphene Nanosheets Synthesized by Pyrolysis

机译:SN2.5AG0.7CU0.1RE复合焊料用热解合成的Cu涂层石墨烯纳米液加固的组织及性能

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摘要

Composite solder is a promising route to improve the properties and reliability of Sn-based lead-free solder. In this study, Cu-coated graphene nanosheets (Cu-GNSs) were synthesized using pyrolysis. Cu-GNSs reinforced Sn2.5Ag0.7Cu0.1RE composite lead-free solders were prepared via powder metallurgy. The size, distribution, and adsorption type of Cu nanoparticles on the GNSs were studied. The relation of the Cu-GNSs content and microstructure to the physical, wettability, and mechanical properties of composite solders was discussed. The results show that Cu nanoparticles (with a mean size of 13 nm) present uniform distribution and effective chemisorptions on the GNS. Microstructural evolution of composite solders is dependent on the addition of Cu-GNSs. With increasing Cu-GNSs addition, β-Sn grains become finer and the eutectic phase proportion becomes larger, while the morphology of the eutectic phase transforms from dispersion to network-type. The improvement of the tensile strength of the composite solder can be attributed to grain refinement and load transfer. While the existence of Cu-GNSs can effectively improve the wettability and slightly change the melting point, it can also lead to the decline of elongation and electrical conductivity of the composite solder.
机译:复合焊料是提高SN基无铅焊料的性能和可靠性的有希望的途径。在该研究中,使用热解合成Cu-涂覆的石墨烯纳米片(Cu-GNSS)。 Cu-GNSS加固SN2.5AG0.7CU0.1RE通过粉末冶金制备复合无铅焊料。研究了GNSS上的Cu纳米粒子的尺寸,分布和吸附类型。讨论了Cu-GNSS含量和微观结构与复合焊料的物理,润湿性和力学性能的关系。结果表明,Cu纳米颗粒(具有13nm的平均尺寸)在GNS上存在均匀的分布和有效的化学血散。复合焊料的微观结构演化取决于Cu-GNSS的添加。随着Cu-GNSS的增加,β-Sn颗粒变细,共晶相比例变大,而共晶相的形态从分散到网络型转化。复合焊料的拉伸强度的提高可归因于晶粒细化和负载转移。虽然Cu-GNSS的存在可以有效地改善润湿性和稍微改变熔点,但也可以导致复合焊料的伸长率和导电性的下降。

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