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  5. Influence of solder joint length to the mechanical aspect during the thermal stress analysis
 
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Influence of solder joint length to the mechanical aspect during the thermal stress analysis

Journal
AIP Conference Proceedings
ISSN
0094243X
Date Issued
2017-09-26
Author(s)
Tan J.S.
Khor C.Y.
Rahim W.M.F.W.A.
Ishak M.I.
Rosli M.U.
Jamalludin M.R.
Zakaria M.S.
Nawi M.A.M.
Aziz M.S.A.
Ani F.C.
DOI
10.1063/1.5002257
Handle (URI)
https://hdl.handle.net/20.500.14170/11847
Abstract
Solder joint is an important interconnector in surface mount technology (SMT) assembly process. The real time stress, strain and displacement of the solder joint is difficult to observe and assess the experiment. To tackle these problems, simulation analysis was employed to study the von Mises stress, strain and displacement in the thermal stress analysis by using Finite element based software. In this study, a model of leadless electronic package was considered. The thermal stress analysis was performed to investigate the effect of the solder length to those mechanical aspects. The simulation results revealed that solder length gives significant effect to the maximum von Mises stress to the solder joint. Besides, changes in solder length also influence the displacement of the solder joint in the thermal environment. The increment of the solder length significantly reduces the von Mises stress and strain on the solder joint. Thus, the understanding of the physical parameter for solder joint is important for engineer prior to designing the solder joint of the electronic component.
Funding(s)
Ministry of Higher Education, Malaysia
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