首页> 外文会议>14th International Conference on Electronic Materials and Packaging >Effect of interfacial reaction layer on the brittle fracture of the SAC305 solder joint on ENIG and ENEPIG surface finish
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Effect of interfacial reaction layer on the brittle fracture of the SAC305 solder joint on ENIG and ENEPIG surface finish

机译:界面反应层对SAIG305焊点在ENIG和ENEPIG表面的脆性断裂的影响

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Brittle fracture generally occurred when a high level of strain and strain rate is applied. Since the brittle fracture takes place in the layer of intermetallic compound(IMC), the controlling of the IMC layer is important to lower the occurrence of the brittle fracture. In this study, the IMC structure of the solder joints on electroless nickel immersion gold (ENIG) and electroless nickel electroless palladium immersion gold (ENEPIG) surface finish was observed and the brittle fracture behaviors of solder joints were analyzed with a high speed shear (HSS) test. The HSS test was carried out at various speeds of 100–2000mm/s and fracture surface was observed to understand the failure modes. The brittle fracture increased with increasing shear speed. In case of the ENIG sample, the IMC thickness and the percentage of brittle fracture increased as the increase of the metal turnover(MTO) increased. On the other hand, the ENEPIG sample did not show a significant increase of IMC thickness or the percentage of brittle fracture as the MTO increased. From TEM observation, nano-sized voids were formed in the NiSnP layers. As the MTO of the electroless Ni plating solution increased, the amount of the nano-sized voids increased.
机译:当施加高水平的应变和应变率时,通常会发生脆性断裂。由于脆性断裂发生在金属间化合物(IMC)层中,因此IMC层的控制对于降低脆性断裂的发生很重要。本研究观察了化学镀镍浸金(ENIG)和化学镀镍化学钯浸金(ENEPIG)表面光洁度的焊点的IMC结构,并通过高速剪切(HSS)分析了焊点的脆性断裂行为。 )测试。在100-2000mm / s的各种速度下进行了高速钢测试,并观察了断裂面以了解其失效模式。脆性断裂随着剪切速度的增加而增加。对于ENIG样品,随着金属周转率(MTO)的增加,IMC厚度和脆性断裂百分比也增加。另一方面,随着MTO的增加,ENEPIG样品并未显示出IMC厚度或脆性断裂百分比的显着增加。从TEM观察,在NiSnP层中形成纳米级空隙。随着化学镀镍溶液的MTO增加,纳米级空隙的数量增加。

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