DocumentCode
2994145
Title
Comparison of encapsulant curing with convection and microwave systems
Author
Tilford, T. ; Sinclair, K.I. ; Goussetis, George ; Bailey, Christopher ; Desmulliez, Marc Philippe Y. ; Parrott, A.K. ; Sangster, A.J.
Author_Institution
Centre for Numerical Modelling & Process Anal. (CNMPA), Univ. Of Greenwich, London, UK
fYear
2008
fDate
4-6 Nov. 2008
Firstpage
1
Lastpage
6
Abstract
Comparison of the performance of a conventional convection oven system with a dual-section microwave system for curing thermosetting polymer encapsulant materials has been performed numerically. A numerical model capable of analysing both the convection and microwave cure processes has been developed and is briefly outlined. The model is used to analyse the curing of a commercially available encapsulant material using both systems. Results obtained from numerical solutions are presented, confirming that the VFM system enables the cure process to be carried out far more rapidly than with the convection oven system. This capability stems from the fundamental heating processes involved, namely that microwave processing enables the heating rate to be varied independently of the material temperature. Variations in cure times, curing rates, maximum temperatures and residual stresses between the processes are fully discussed.
Keywords
convection; curing; heating; microwave ovens; microwave technology; VFM system; convection oven system; dual-section microwave system; encapsulant curing; heating process; microwave processing; thermosetting polymer encapsulant materials; Conducting materials; Curing; Dielectric materials; Electromagnetic coupling; Electromagnetic heating; Finite difference methods; Infrared heating; Microwave ovens; Polymers; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Manufacturing Technology Symposium (IEMT), 2008 33rd IEEE/CPMT International
Conference_Location
Penang
ISSN
1089-8190
Print_ISBN
978-1-4244-3392-6
Electronic_ISBN
1089-8190
Type
conf
DOI
10.1109/IEMT.2008.5507869
Filename
5507869
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