Simulation of sintering ceramics based on Master Sintering Curve
Author:
Affiliation:
1. Graduate School of Environment and Information Sciences, Yokohama National University
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/87/902/87_21-00237/_pdf
Reference12 articles.
1. An, K. and Johnson, D.L., The pressure-assisted master sintering surface, Journal of Materials Science, Vol.37 (2002), pp.4555–4559.
2. Argüello, J.G., Tikare, V. Garino, T.J. and Braginsky, M.V., Three-dimensional simulation of sintering using a continuum modeling approach, Proceedings of the Sintering 2003 (2003).
3. Argüello, J.G., Reiterer, M.W. and Ewsuk, K.G., Verification, performance, validation, and modifications to the SOVS continuum constitutive model in a nonlinear large-deformation finite element code, Journal of the American Ceramic Society, Vol.92, No.7 (2009), pp.1442–1449.
4. Brandt, B. and Rabe, T., Compilation and evaluation of the pressure-assisted master sintering surface for low-temperature cofired ceramics, Journal of the American Ceramic Society, Vol.98, No.11 (2015), pp.3503–3508.
5. Gasik, M. and Zhang, B., A constitutive model and FE simulation for the sintering process of power compacts, Computational Materials Science, Vol.18 (2000), pp.93–101.
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1. Analysis of sintering behavior of alumina green bodies molded under a strong magnetic field based on master sintering curve theory;Ceramics International;2022-10
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