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Nozahic, F. (author), Carabat, A.L. (author), Mao, W. (author), Monceau, D. (author), Estournes, C. (author), Kwakernaak, C. (author), van der Zwaag, S. (author), Sloof, W.G. (author)
Recently MoSi<sub>2</sub> sacrificial particles embedded in yttria partially stabilized zirconia (YPSZ)have been proposed as attractive healing agents to realize significant extension of the lifetime of the thermally loaded structures. Upon local fracture of the YPSZ, the embedded healing particles in the path and in the vicinity of the crack...
journal article 2019
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Kulczyk-Malecka, Justyna (author), Zhang, Xun (author), Carr, James (author), Nozahic, Franck (author), Estournès, Claude (author), Monceau, Daniel (author), Carabat, A.L. (author), Sloof, W.G. (author), van der Zwaag, S. (author), Withers, Philip J. (author), Xiao, Ping (author)
Yttria – partially stabilised zirconia (YPSZ) MoSi<sub>2</sub> composites have been designed to prolong the lifetime of the matrix by self – healing cracks during thermal cycling. The healing reaction at high temperatures is based on the decomposition of MoSi<sub>2</sub>, leading to a volumetrically expanding reaction product, which seals the...
journal article 2018
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Nozahic, Franck (author), Estournès, Claude (author), Carabat, A.L. (author), Sloof, W.G. (author), van der Zwaag, S. (author), Monceau, Daniel (author)
The present paper focuses on the Spark Plasma Sintering (SPS) manufacturing of a new type of self-healing thermal barrier coating (TBC) and a study of its thermal cycling behaviour. The ceramic coating consists on an Yttria Partially Stabilized Zirconia (YPSZ) matrix into which healing agents made of MoSi<sub>2</sub>-Al<sub>2</sub>O<sub>3<...
journal article 2018