This paper presents the effect of indium (In) content on the melting temperature, wettabililty, dross formation, and oxidation characteristics of the Sn-2Ag-3Bi-xIn alloy. The melting temperature of the Sn-2Ag-3Bi-xIn alloy (2 ≤ x ≤ 6) was lower than 473 K. The melting range between the solidus and liquidus temperatures was approximately 20 K, irrespective of the indium content. As the indium content increased, the wetting time increased slightly and the maximum wetting force remained to be mostly constant. The dross formation decreased to approximately 50% when adding 1In to Sn-2Ag-3Bi, and no dross formation was observed in the case of Sn-2Ag-3Bi-xIn alloy (x ≥ 1.5) at 523 K for 180 min. Upon approaching the inside of the oxidized solder of the Sn-2Ag-3Bi-1.5In alloy from the surface, the O and In contents decreased and the Sn content increased based on depth profiling analysis using Auger electron spectroscopy (AES). The mechanism for restraining dross (Sn oxidation) of Sn-2Ag-3Bi alloy with addition of indium may be due to surface segregation of indium. This is due to the lower formation energy of indium oxide than those of Sn oxidation.
Skip Nav Destination
Suwon 443-742,
Changwon 642-831,
Article navigation
June 2013
Research-Article
Effect of Indium Content on the Melting Point, Dross, and Oxidation Characteristics of Sn-2Ag-3Bi-xIn Solders
Ae-Jeong Jeon,
Ae-Jeong Jeon
National Core Research Center (NCRC),
Pusan 609-735,
Pusan National University
,Pusan 609-735,
Korea
Search for other works by this author on:
Seong-Jun Kim,
Suwon 443-742,
Seong-Jun Kim
Samsung Electronics Co., Ltd.
,Suwon 443-742,
Korea
Search for other works by this author on:
Sang-Hoon Lee,
Changwon 642-831,
Sang-Hoon Lee
Korea Institute of Materials Science
,Changwon 642-831,
Korea
Search for other works by this author on:
Chung-Yun Kang
Chung-Yun Kang
1
National Core Research Center (NCRC),
Pusan 609-735,
e-mail: kangcy@pusan.ac.kr
Pusan National University
,Pusan 609-735,
Korea
e-mail: kangcy@pusan.ac.kr
1Corresponding author.
Search for other works by this author on:
Ae-Jeong Jeon
National Core Research Center (NCRC),
Pusan 609-735,
Pusan National University
,Pusan 609-735,
Korea
Seong-Jun Kim
Samsung Electronics Co., Ltd.
,Suwon 443-742,
Korea
Sang-Hoon Lee
Korea Institute of Materials Science
,Changwon 642-831,
Korea
Chung-Yun Kang
National Core Research Center (NCRC),
Pusan 609-735,
e-mail: kangcy@pusan.ac.kr
Pusan National University
,Pusan 609-735,
Korea
e-mail: kangcy@pusan.ac.kr
1Corresponding author.
Contributed by the Electronic and Photonic Packaging Division of ASME for publication in the JOURNAL OF ELECTRONIC PACKAGING. Manuscript received September 4, 2012; final manuscript received January 4, 2013; published online March 28, 2013. Assoc. Editor: S. B. Park.
J. Electron. Packag. Jun 2013, 135(2): 021006 (5 pages)
Published Online: March 28, 2013
Article history
Received:
September 4, 2012
Revision Received:
January 4, 2013
Citation
Jeon, A., Kim, S., Lee, S., and Kang, C. (March 28, 2013). "Effect of Indium Content on the Melting Point, Dross, and Oxidation Characteristics of Sn-2Ag-3Bi-xIn Solders." ASME. J. Electron. Packag. June 2013; 135(2): 021006. https://doi.org/10.1115/1.4023529
Download citation file:
Get Email Alerts
Cited By
High Gain and Wideband Antenna-in-Package Solution Using Fan-Out Technology
J. Electron. Packag (September 2023)
Process-Factor Optimization of Small-Area Sintered Interconnects for Power Electronics Applications
J. Electron. Packag (September 2023)
A Time Frequency Domain Based Approach for Ball Grid Array Solder Joint Fatigue Analysis Using Global Local Modeling Technique
J. Electron. Packag (September 2023)
Related Articles
Long-Term Microturbine Exposure of an Advanced Alloy for Microturbine Primary Surface Recuperators
J. Eng. Gas Turbines Power (May,2009)
Advances in Bonding Technology for Electronic Packaging
J. Electron. Packag (June,1993)
Primary Surface Recuperator Alloy Oxidation: A Comparison of Accelerated Engine Testing to Field Operation
J. Eng. Gas Turbines Power (April,2011)
Development of a Fused Deposition Modeling System for Low Melting Temperature Metal Alloys
J. Electron. Packag (March,2013)
Related Proceedings Papers
Related Chapters
Clinical issues and experience
Mechanical Blood Trauma in Circulatory-Assist Devices
Surface Analysis and Tools
Tribology of Mechanical Systems: A Guide to Present and Future Technologies
Cysteines on Amino Terminus Infer Oxidation States of Other Cysteines on Protein Chains
Intelligent Engineering Systems Through Artificial Neural Networks, Volume 17