International audienceMany refractory materials exhibit high thermal shock resistance, which is often mostly due to their high flexibility. Understanding the microstructure key points allowing to develop a non-linear mechanical behaviour is of great relevance for future material improvements. The present work aims at optimising the processing of magnesia-spinel refractory materials close to industrial ones with simplified microstructures. The final goal is the investigation of the relationship existing between microstructure evolutions and induced thermomechanical properties. The thermal expansion mismatch which exists between the two phases (spinel inclusions and magnesia matrix) is expected to generate, during cooling, radial microcracks ...
Magnesia-spinel and magnesia-hercynite bricks destined for thermal shock applications in cement rota...
The thermomechanical behavior of a high-alumina refractory that contains 10 wt % of synthetic spinel...
International audiencePresented research was performed in framework of the ATHOR project, standing f...
International audienceMany refractory materials exhibit high thermal shock resistance, which is ofte...
International audienceIn some industrial applications, the need to improve the thermal shock resista...
In magnesia-spinel refractories, spinel inclusions are embedded in a magnesia matrix in order to inc...
International audienceThe improvement in thermal shock resistance of refractory materials is among t...
International audienceRefractory materials exhibit a heterogeneous microstructure consisting in coar...
International audienceThis work is devoted to the study of thermomechanical properties of several in...
Refractory brittleness is often reduced by the introduction of micro-cracks during the production pr...
International audienceFor refractory materials, a large strain behavior before failure is desired to...
Magnesia-spinel and magnesia-hercynite bricks destined for thermal shock applications in cement rota...
The thermomechanical behavior of a high-alumina refractory that contains 10 wt % of synthetic spinel...
International audiencePresented research was performed in framework of the ATHOR project, standing f...
International audienceMany refractory materials exhibit high thermal shock resistance, which is ofte...
International audienceIn some industrial applications, the need to improve the thermal shock resista...
In magnesia-spinel refractories, spinel inclusions are embedded in a magnesia matrix in order to inc...
International audienceThe improvement in thermal shock resistance of refractory materials is among t...
International audienceRefractory materials exhibit a heterogeneous microstructure consisting in coar...
International audienceThis work is devoted to the study of thermomechanical properties of several in...
Refractory brittleness is often reduced by the introduction of micro-cracks during the production pr...
International audienceFor refractory materials, a large strain behavior before failure is desired to...
Magnesia-spinel and magnesia-hercynite bricks destined for thermal shock applications in cement rota...
The thermomechanical behavior of a high-alumina refractory that contains 10 wt % of synthetic spinel...
International audiencePresented research was performed in framework of the ATHOR project, standing f...