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Effect of Graphene Nanosheet Addition on the Wettability and Mechanical Properties of Sn-20Bi-xGNS/Cu Solder Joints

机译:石墨烯纳米片对Sn-20Bi-XGNS / Cu焊点润湿性和力学性能的影响

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摘要

Graphene nanosheets (GNSs) have an extensive application in materials modification. In this study, the effects of graphene nanosheets on the wettability of Sn-20Bi lead-free solder on copper (Cu) substrate and the growth behavior of intermetallic compound (IMC) layers at Sn-20Bi-xGNS/Cu solder joints were investigated. The experimental results indicate that the wettability of Sn-20Bi solder firstly diminished and then increased by the addition of GNSs. Meanwhile, a prism-shaped and scallop-shaped Cu6Sn5 IMC layer was clearly observed at the interface of the solder/substrate system. Moreover, it was found that a small amount of GNS addition can significantly inhibit the growth of the IMC layer at the interface as well as refine the microstructure. Additionally, by nano-indentation apparatus, it can be concluded that the hardness and elastic module of IMCs show the same variation trend, which firstly decreased and then increased. Besides, to intuitively demonstrate the reliability of IMCs, the relationship between the hardness and elastic module was established, and the ratio of hardness/elastic module (H/E) was adopted to characterize the reliability of IMCs. The results show that when the addition of GNSs was 0.02 wt%, the value of H/E is the minimum and the solder joint has the highest reliability.
机译:Graphene NanosheS(GNSS)在材料改性方面具有广泛的应用。在该研究中,研究了石墨烯纳米液对Sn-20Bi-XGNS / Cu焊接接头铜(Cu)衬底上的Sn-20Bi无铅焊料的润湿性的影响及Sn-20Bi-XGNS / Cu焊接接头的润湿性。实验结果表明,SN-20BI焊料首先降低的润湿性并通过添加GNSS来增加。同时,在焊料/基板系统的界面处清楚地观察棱镜形状和扇形形CU6SN5 IMC层。此外,发现少量GNS添加可以显着抑制界面处的IMC层的生长以及细化微观结构。另外,通过纳米压痕装置,可以得出结论,IMCs的硬度和弹性模块显示出相同的变化趋势,该变异趋势首先降低,然后增加。此外,为了直观地证明IMC的可靠性,建立了硬度和弹性模块之间的关系,采用硬度/弹性模块(H / E)的比率表征IMCs的可靠性。结果表明,当添加GNSS为0.02wt%时,H / E的值是最小的,并且焊点具有最高的可靠性。

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