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Wettability and Shear Strength of SAC305 Based Composite Solder with co-doping X (Ni or Al2O3) and CNTs Reinforcements

机译:共掺杂X(Ni或Al 2 O 3 )和CNTs增强的SAC305基复合焊料的润湿性和剪切强度

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Through the pre-mechanical mixing, and co-doping of two reinforcements (zero-dimensional nanoparticles Ni or Al2O3, and one-dimensional CNT) into SAC305 solder, different types of composite solders were fabricated in this study. In order to evaluate the strengthening effect and combined action of two reinforcements in these composite solders, the wetting angle on Cu substrate was measured. The microstructure of composite solder bumps formed after reflowing on PCB Cu pads was observed and the corresponding shear test was also conducted. From the experimental results, the addition of nanoparticles was found to play a leading role in composite solder’s wettability. In the Ni/CNT and Al2O3/CNT composite solder bumps, the IMC formation and morphology have been changed with the different mixing ratio and doping ratio of reinforcements. Particularly, the interfacial IMC thickness of Al2O3/CNT composite solder bumps shows a positive correlation with the CNT content. Meanwhile, the property of shearing resistance has been worsened by the addition of CNT in these Ni/CNT and Al2O3/CNT composite solder bumps. For the good-linked IMC/solder, the coated Ni-CNT composite solder has different performances in the tests.
机译:通过预机械混合,并将两种增强剂(零维纳米粒子Ni或Al2O3,以及一维CNT)共掺杂到SAC305焊料中,制备了不同类型的复合焊料。为了评估在这些复合焊料中的增强效果和两种增强剂的组合作用,测量了在铜基板上的润湿角。观察了回流焊后在PCB Cu焊盘上形成的复合焊料凸点的微观结构,并进行了相应的剪切试验。根据实验结果,发现纳米颗粒的添加在复合焊料的润湿性方面起着主导作用。在Ni / CNT和Al2O3 / CNT复合焊料凸点中,IMC的形成和形态随着增强剂的混合比和掺杂比的不同而发生了变化。特别是,Al2O3 / CNT复合焊料凸点的界面IMC厚度与CNT含量呈正相关。同时,通过在这些Ni / CNT和Al2O3 / CNT复合焊料凸块中添加CNT,抗剪切性的性质已经恶化。对于良好连接的IMC /焊料,涂覆的Ni-CNT复合焊料在测试中具有不同的性能。

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