Solder materials are used to provide a connection between electronic components and printed circuit boards (PCBs) using either the reflow or wave soldering process. As a board assembly passes through a reflow furnace the solder (initially in the form of solder paste) melts, reflows, then solidifies, and finally deforms between the chip and board. A number of defects may occur during this process such as flux entrapment, void formation, and cracking of the joint, chip or board. These defects are a serious concern to industry, especially with trends towards increasing component miniaturisation and smaller pitch sizes. This paper presents a modelling methodology for predicting solder joint shape, solidification, and deformation (stress) during the assembly process.
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1 August 1998
Technical Paper|
August 01 1998
Numerical modelling of solder joint formation
Chris Bailey;
Chris Bailey
Centre for Numerical Modelling and Process Analysis, University of Greenwich, London, UK
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Daniel Wheeler;
Daniel Wheeler
Centre for Numerical Modelling and Process Analysis, University of Greenwich, London, UK
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Mark Cross
Mark Cross
Centre for Numerical Modelling and Process Analysis, University of Greenwich, London, UK
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Publisher: Emerald Publishing
Online ISSN: 1758-6836
Print ISSN: 0954-0911
© MCB UP Limited
1998
Soldering & Surface Mount Technology (1998) 10 (2): 6–13.
Citation
Bailey C, Wheeler D, Cross M (1998), "Numerical modelling of solder joint formation". Soldering & Surface Mount Technology, Vol. 10 No. 2 pp. 6–13, doi: https://doi.org/10.1108/09540919810219912
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