Research Articles

Role of grain orientation in the failure of Sn-based solder joints under thermomechanical fatigue

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  • State Key Laboratory of Advanced Welding Production Technology, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen 518055, China

Online published: 2012-06-21

Abstract

A small Pb-free solder joint exhibits an extremely strong anisotropy due to the body-centered tetragonal (BCT) lattice structure of β-Sn. Grain orientations can significantly influence the failure mode of Pb-free solder joints under thermomechanical fatigue (TMF) due to the coefficient of thermal expansion (CTE) mismatch of β-Sn grains. The research work in this paper focused on the microstructure and damage evolution of Sn3.0Ag0.5Cu BGA packages as well as individual Sn3.5Ag solder joints without constraints introduced by the package structure under TMF tests. The microstructure and damage evolution in cross-sections of solder joints under thermomechanical shock tests were characterized using optical microscopy with cross-polarized light and scanning electron microscopy (SEM), and orientations of Sn grains were determined by orientation imaging microscopy (OIM). During TMF, obvious recrystallization regions were observed with different thermomechanical responses depending on Sn grain orientations. It indicates that substantial stresses can build up at grain boundaries, leading to significant grain boundary sliding. The results show that recrystallized grains prefer to nucleate along pre-existing high-angle grain boundaries and fatigue cracks tend to propagate intergranularly in recrystallized regions, leading to an accelerated damage after recrystallization.

Cite this article

Jing HAN, Hongtao CHEN,Mingyu LI . Role of grain orientation in the failure of Sn-based solder joints under thermomechanical fatigue[J]. Acta Metallurgica Sinica (English Letters), 2012 , 25(3) : 214 -224 . DOI: 10.11890/1006-7191-123-214

References

[1] P.T. Vianco, J.A. Rejent and A.C. Kilgo, J Electron Mater 32 (2003) 142

[2] D.M. Pierce,S.D. Sheppard, A.F. Fossum, P.T. Vianco and M.K. Neilsen, J Electron Packaging 130 (2008) 1

[3] M.A. Matin, W.P.Vellinga and M.G.D. Geers, Mater Sci Eng 445 (2007) 73

[4] T.T. Mattila, V. Vuorinen and J.K. Kivilahti, J Mater Res 19 (2004) 3214

[5] T.T. Mattila and J.K.Kivilahti, J Electron Mater 34 (2005) 969

[6] T.Laurila, T. Mattila, V. Vuorinen, J. Karppinen, J. Li, M. Sippola and J.K. Kivilahti, Microelectron Reliab 47 (2007) 1135

[7] J. Karppinen, T. Laurila and J.K. Kivilahti, Electronics Systemintegration Technology Conference (IEEE,Dresden, Germany, 2006) p.187

[8] A.U. Telang, T.R. Bieler,A. Zamiri and F. Pourboghrat, Acta Mater 55 (2007) 2265

[9] T. Marje, K. Korhonen, L.P. Lehman, M.A. Korhonen and D.W. Henderson, J Electron Mater 36 (2007) 173

[10] A. Mayyas, L. Yin and P. Borgesen, International Mechanical Engineering Congress & Exposition (ASME, Lake Buena Vista, Florida, USA, 2009) p.1

[11] T.T. Mattila and J.K.Kivilahti, IEEE Trans Compd Packaging Technol 33 (2010)629

[12] M.A. Matin, E.W.C. Coenen, W.P. Vellinga and M.G.D.Geers, Scr Mater 53 (2005) 927

[13] S. Dunford,S. Canumalla and P. Viswanadham, Electronic Components and Technology Conference (IEEE, USA, 2004) p.726

[14] L.P.Lehman, R.K. Kinyanjui, J. Wang, Y. Xing, L. Zavalij, P. Borgesen and E.J. Cotts, Electronic Components and Technology Conference (IEEE, Lake Buena Vista, FL, USA, 2005) p.674

[15] T.R. Bieler, H. Jiang, L.P. Lehman, T. Kirkpatrick and E.J. Cotts, Electronic Components and Technology Conference (IEEE, San Diego, FL, USA, 2006) p.370

[16] C. Zhang, J.K. Lin and L.Li, Electronic Components and Technology Conference (IEEE,Orlando, FL, USA, 2001) p.463

[17] H.T. Chen, M. Mueller, T.T. Mattila, J. Li, X.W. Liu, K.J.Wolter and M. Paulasto, J Mater Res 26 (2011) 2103

[18] H.T. Chen, J. Han and M.Y. Li, J Electron Mater 40 (2011) 2470

[19] H.T. Chen, L. Wang, J. Han, M.Y. Li and Q.B. Wu, J Electron Mater 40 (2011) 2445

[20] S.B. Park, R. Dhakal, L. Lehman and E. Cotts, Acta Mater 55 (2007) 3253

[21] S.B. Park, R. Dhakal, L.Lehman and E.J. Cotts, IEEE Trans Compon Packaging Technol 30 (2007) 178

[22] M. Erinc, P.J.G. Schreurs and M.G.D.Geers, Mech Mater 40 (2008) 780

[23] J.G. Lee and K.N. Subramanian, Microelectron Reliab 47 (2007) 118

[24] S. Choi, J.G. Lee, K.N. Subramanian, J.P. Lucas and T.R.Bieler, J Electron Mater 31 (2002) 292

[25] S.Terashima, M. Tanaka and K. Tatsumi, Sci Technol Weld Join 13 (2008) 60

[26] J. Villain, U. Corradi, C. Weippert, S.Klima, M. Meeh and S. Golling, Electronics Packaging Technology Conference (IEEE, Singapore, 2007) p.356

[27] X.W. Liu and W.J. Plumbridge, J Electron Mater 36 (2007) 1111

[28] M. Berthou, P. Retailleau, H. Fremont, A.G. Gracia and C.J. Davennel, Microelectron Reliab 49 (2009) 1267

[29] S.K. Seo, M.G. Cho and H.M. Lee, Mater Res Soc 25 (2010) 1950

[30] S. Terashima, T. Kohno, A. Mizusawa, K. Arai, O. Okada, T. Wakabayashi, M. Tanaka and K. Tatsumi, J Electron Mater 38 (2009) 33
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