Abstract No.:
6314

 Scheduled at:
Wednesday, June 10, 2020, Hall K1 11:30 AM
Modeling & Simulation I


 Title:
Numerical reconstruction of porous architecture for suspension plasma sprayed coatings

 Authors:
Yongli Zhao* / University Bourgogne Franche-Comté, France
Marie-Pierre Planche / Université de technologie de Belfort Montbéliard, France
Zexin Yu/ Université de technologie de Belfort Montbéliard, France
Xiujuan Fan/ Université de technologie de Belfort Montbéliard, France
François Peyraut/ Université de technologie de Belfort Montbéliard, France
Hanlin Liao/ Université de technologie de Belfort Montbéliard, France
Ghislain Montavon/ Université de technologie de Belfort Montbéliard, France
Jan Ilavsky/ Argonne National Laboratory, USA

 Abstract:
The porous architecture of coatings has a significant influence on the coating performances and thus should be properly designed for the intended applications. For simulating the coating properties, it is necessary to determine the numerical representation of the coating microstructure. In this study, YSZ coatings were manufactured by suspension plasma spray (SPS). Afterwards, the porosity and the pore size distribution of as-prepared coatings were investigated by the combination of three techniques, imaging analysis, X-ray transmission, and Ultra Small Angle X-ray Scattering (USAXS). A structural model for reconstructing the porous architecture of the SPS coating was subsequently computed according to the collected experimental results. Finally, the thermal property of the coating was simulated based on the structural model and were compared with the experimental results.

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