Non-isothermal sintering of powdered vitrified composites. A kinetic model
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Other documents of the author: José Luis, Amorós Albaro; Blasco Roca, Encarna; Moreno Berto, Arnaldo Vicente; Zumaquero, Eulalia; Feliu Mingarro, Carlos
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comunitat-uji-handle2:10234/7033
comunitat-uji-handle3:10234/8618
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Title
Non-isothermal sintering of powdered vitrified composites. A kinetic modelAuthor (s)
Date
2019Publisher
ElsevierISSN
0167-577X; 1873-4979Bibliographic citation
AMOROS, J. L., et al. Non-isothermal sintering of powdered vitrified composites. A kinetic model. Materials Letters, 2019, vol. 236, p. 236-239.Type
info:eu-repo/semantics/articlePublisher version
https://www.sciencedirect.com/science/article/pii/S0167577X18316598Version
info:eu-repo/semantics/submittedVersionSubject
Abstract
This report sets out the results obtained on studying the sintering process of glass–zircon composites,
analysing the microstructural changes that developed on modifying zircon content. The sintering of composites ... [+]
This report sets out the results obtained on studying the sintering process of glass–zircon composites,
analysing the microstructural changes that developed on modifying zircon content. The sintering of composites with moderate zircon contents only developed via particle rearrangement by viscous flow. In contrast, at high zircon contents, the zircon solution–reprecipitation process was also required. A kinetic
model was developed and validated that describes the effect of the heating rate and zircon volume fraction on the composite degree of non-isothermal sintering progress associated with particle rearrangement by viscous flow. [-]
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Materials Letters, Volume 236, 2019Rights
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