Effect of the Soldering Atmosphere on the Wettability Between Sn4.0Ag0.5Cu (in wt.%) Lead-Free Solder Paste and Various Substrates

被引:0
作者
D. Soares
H. Leitão
C. S. Lau
J. C. Teixeira
L. Ribas
R. Alves
S. Teixeira
M. F. Cerqueira
F. Macedo
机构
[1] University of Minho,
[2] Bosch Car Multimedia,undefined
来源
Journal of Materials Engineering and Performance | 2018年 / 27卷
关键词
atmosphere; Pb-free solders; surface finishing; wettability;
D O I
暂无
中图分类号
学科分类号
摘要
The “degree of wetting,” which is related to the contact angle (θ) between the molten solder and the substrate, is a useful parameter on the solderability process control. The contact angle, however, is strongly dependent on the type of substrate surface finish and used atmosphere (inert or non-inert). Furthermore, the surface tension, being an important parameter on the solderability process and performance, can also be achieved if the contact angle is known. In this study, the SAC405 [Sn4.0Ag0.5Cu (in wt.%)] solder paste contact angle was measured, by the “sessile drop” method, as a function of the temperature, surface pad finish and used atmosphere. The results are discussed, and the contact angles obtained for the different conditions are compared and discussed. Then, the surface tension (experimental) was obtained from the measured contact angle and compared with the obtained by using computation models (theoretical). The experiments performed in high vacuum conditions, i.e., low oxygen content, over a temperature range, allowed the evaluation and understanding of the surface oxides layers role on the solder wettability. The present study shows that in the soldering process, even in an inert atmosphere, usually used in industry, occurs the formation of superficial oxides, over the liquid solder and/or at the pad surfaces, that strongly affects the solder paste wettability, specially with Sn and OSP (organic solderability preservative) finishing. Differences in contact angle of ≥ 10° were determined between the two types of used atmospheres. The experimental surface tension and theoretical surface tension obtained, for the NiAu substrate type, present good correlation. The lower contact angle values were obtained for the NiAu and OSP finish types, independently of the atmosphere type.
引用
收藏
页码:5011 / 5017
页数:6
相关论文
共 159 条
  • [31] Chen C(2009)Influence of Indium Addition on Characteristics on Sn-03-Ag-0.7Cu Solder Alloy J. Alloys Compd. 485 225-45
  • [32] Gonçalves C(2009)Wettability and Interfacial Reaction of Sn-Ag-Cu/Cu and Sn-Ag-Ni/Cu Solder Joints J. Alloys Compd. 486 142-236
  • [33] Leitão H(2012)Interface Reaction Between SnAgCu/SnAgCuCe Solders and Cu Substrate Subjected to Thermal Cycling and Isothermal Aging J. Alloy. Compd. 510 38-101
  • [34] Lau CS(2017)Density, Surface Tension and Viscosity of Ga-Sn Alloys J. Mol. Liq. 241 231-32
  • [35] Teixeira JC(2017)Some Remarks on the Solid Surface Tension Determination From Contact Angle Measurements Appl. Surf. Sci. 405 88-448
  • [36] Ribas L(2007)Recent Progress in the Determination of Solid Surface Tensions from Contact Angles Adv. Coll. Interface. Sci. 132 1-130
  • [37] Teixeira S(2012)Surface Properties and Wetting Behaviour of Liquid Ag-Sb-Sn Alloys J. Min. Metall. Sect. B Metall. 48 443-389
  • [38] Cerqueira MF(2007)SURDAT—Database of Physical Properties of Lead-Free Solders J. Min. Metall. Sect. B Metall. 43 125-2870
  • [39] Macedo F(1996)Application of Thermodynamic Databases to the Evaluation of Surface Tensions of Molten Alloys, Salt Mixtures and Oxide Mixtures Z. Metall. 875 380-1445
  • [40] Soares D(2004)Surface Tension and its Temperature Coefficient of Liquid Sn_X (X = Ag, Cu) Alloys Mater. Trans. 45 2864-4264