A multiscale numerical model is developed to predict the thermal radiative properties (TRP) of rough La2NiO4+δ coatings. The model integrates intrinsic and extrinsic contributions related to the chemical composition and the texture, respectively. High-temperature infrared reflectivity and thermogravimetric measurements on a La2NiO4+δ single crystal make it possible to understand the role of the excess oxygen in the intrinsic TRP. We show that dense ceramics with thicknesses higher than 4 μm are optically thick, and that one can adjust the surface roughness parameters to predict their TRP
International audienceThermal radiation is likely to play an important role in the calculation of th...
International audienceThermal and optical properties of ceramics are dependent on radiation scatteri...
International audienceThermal and optical properties of ceramics are dependent on radiation scatteri...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
Thermal radiation is likely to play an important role in the calculation of the energy balance in so...
Solid Oxide Fuel Cells (SOFCs) operate at temperatures above 1,100 K where radiation effects can be ...
International audienceThermal radiation is likely to play an important role in the calculation of th...
International audienceThermal and optical properties of ceramics are dependent on radiation scatteri...
International audienceThermal and optical properties of ceramics are dependent on radiation scatteri...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
International audienceA multiscale numerical model is developed to predict the thermal radiative pro...
Thermal radiation is likely to play an important role in the calculation of the energy balance in so...
Solid Oxide Fuel Cells (SOFCs) operate at temperatures above 1,100 K where radiation effects can be ...
International audienceThermal radiation is likely to play an important role in the calculation of th...
International audienceThermal and optical properties of ceramics are dependent on radiation scatteri...
International audienceThermal and optical properties of ceramics are dependent on radiation scatteri...