Characterization and degradation of β-Sn particles in thermal aged Pb-rich solder joint for low-temperature co-fired ceramic(LTCC) applications

被引:0
作者
JinHong Liu [1 ]
Zhe Zhu [2 ]
QiangQiang Nie [2 ,3 ]
JunFu Liu [2 ,3 ]
Peng He [1 ]
ShuYe Zhang [1 ]
机构
[1] State Key Laboratory of Advanced Welding and Joining,Harbin Institute of Technology
[2] Anhui Key Laboratory of Microsystem,East China Research Institute of Microelectronics
[3] School of Materials Science and Engineering,Hefei University of Technology
关键词
D O I
暂无
中图分类号
TG40 [焊接一般性问题];
学科分类号
080201 ; 080503 ;
摘要
High-lead solder joints are still playing an indispensable role in military and space applications.Nevertheless, in-depth characterization of high-lead solder joints and the underlying degradation mechanisms remain unexplored. This research first performed aging tests on Sn10Pb90 solder joints, the shear strength at room and elevated temperatures gradually reduced, and the resistance increased. Here, a two-layered Ni–Sn intermetallic compound(IMC) structure was identified using transmission electron microscopy(TEM), which could be attributed to the change of Sn content in the solder. Moreover, the internal annealing twin of a Sn particle was discovered,which could be attributed to creeping induced by thermal expansion coefficient(CTE) difference between Sn and Pb.Detailed analysis of partial and whole annealing twins was conducted through high-resolution TEM(HRTEM).Finally, four degradation mechanisms were proposed.Thickening of the IMC layer would result in increased brittleness and resistivity. For particle coarsening, apart from diminishing the ductility and toughness of the solder joint, it would also accelerate the creeping rate by weakening the phase boundary strength. Regarding voids and cracks induced by phase boundary sliding, wedgeshaped cracking and pore-shaped cracking were discovered and their formation was analyzed. Most importantly, the consumption of Sn resulted in a depletion of wettable layer,leading to the formation of Pb streams and isolated IMC islands, also known as the spalling and delamination of IMCs. Pb diffusion followed a spiral path, which was mutually influenced by orientation misfit and concentration gradient. A technique to prevent cracking was proposed.This research is expected to provide significant technical references for high-lead solder joints.
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页码:5346 / 5361
页数:16
相关论文
共 42 条
[1]   L12-γ′相共格析出强化Cuy(Ni3/4Al1/4)100-y合金显微组织与性能研究 [J].
薛汪洋 ;
刘桐 ;
胡小刚 ;
利助民 .
铜业工程, 2023, (05) :70-78
[2]   微量Ni对Sn-Bi-Ag焊料合金性能的影响 [J].
陈胜 ;
刘亚 ;
戴健 ;
郭志球 ;
吴长军 ;
陶小马 ;
王建华 ;
苏旭平 .
稀有金属, 2023, 47 (09) :1232-1242
[3]  
A high-Nb-TiAl alloy with ultrafine-grained structure fabricated by cryomilling and spark plasma sintering.[J].Hao Deng;Yong-Qiang Wei;Jun Tang;Ai-Jun Chen;Long-Qing Chen;Zu-Xi Xia;.Rare Metals.2023, 05
[4]  
Microstructure;mechanical properties and post-weld heat treatments of dissimilar laser-welded Ti_2AlNb/Ti60 sheet.[J].Yong Wu;Gang Liu;Zhi-Qiang Liu;Ze-Jun Tang;Bin Wang;.Rare Metals.2023, 04
[5]   PhosphorusfixationcapacityofCaO-SiO2-Al2O3-MnO-Ce2O3slagbasedonstructuralconsiderations [J].
Jiali Sun ;
Chengjun Liu ;
Maofa Jiang .
Journal of Rare Earths, 2023, 41 (03) :446-453
[6]  
Microstructure and mechanical properties of a new high-strength and high-toughness titanium alloy.[J].Dong Li;Song-Xiao Hui;Wen-Jun Ye;Cheng-Lin Li;.Rare Metals.2023, 01
[7]   Asuperiorstrength-ductilitysynergyofAl0.1CrFeCoNihigh-entropyalloywithfullyrecrystallizedultrafinegrainsandannealingtwins [J].
Jiahao Li ;
Kejie Lu ;
Xiaojun Zhao ;
Xinkai Ma ;
Fuguo Li ;
Hongbo Pan ;
Jieming Chen .
JournalofMaterialsScience&Technology, 2022, 131 (36) :185-194
[8]  
High uniformity and stability of 1S1R directly stacked for high-density cross-point memory applications.[J].Zhi-Ying Yu;Jia-Yi Zhao;Guo-Kun Ma;Ao Chen;Da-Lei Chen;Yi-Heng Rao;Hao Wang;.Rare Metals.2022, 11
[9]   In的添加对Sn-9Zn无铅焊料合金组织与性能的影响 [J].
杨娇娇 ;
彭言之 ;
陈东东 ;
白海龙 ;
李才巨 ;
易健宏 .
稀有金属, 2022, 46 (08) :1031-1040
[10]   Fracture strength of grains and grain boundaries in a dual-phase high-entropy ultra-high temperature ceramics [J].
Naughton-Duszova, Annamaria ;
Hrubovcakova, Monika ;
Vojtko, Marek ;
Albov, Dmitry ;
Medved, David ;
Dakova, Lenka ;
Medvecky, L'ubomir ;
Hvizdos, Pavol ;
Csanadi, Tamas .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2024, 44 (09) :5422-5431