The grain growth behavior in a typical Ni-based superalloy was investigated using isothermal heat treatment experiments over a holding temperature range of 1353–1473 K. The experimental results showed that the grain structure continuously coarsened as the holding time and holding temperature increased during heat treatment. A classical parabolic grain growth model was used to explore the mechanism of grain growth under experimental conditions. The grain growth exponent was found to be slightly above 2. This indicates that the current grain growth in the studied superalloy is mainly governed by grain boundary migration with a minor pinning effect from the precipitates. Then, the grain growth in the studied superalloy during isothermal heat t...
International audienceAccording to various studies, Grain Boundary Engineering (GBE) is likely to en...
International audienceA process model is described for the grain selection occurring during the soli...
In this paper, a predictive multi-scale model based on a cellular automaton (CA)-finite element (FE)...
The grain growth behavior in a typical Ni-based superalloy was investigated using isothermal heat tr...
Based on the thermal activation theory and curvature-driven mechanism, a 2D cellular automaton model...
The grain size of two commercial spray-formed superalloys, UDIMET 720 and MAR-M-002, has been invest...
Based on the thermodynamic conversion mechanism and energy transition principle, a three-dimensional...
A new cellular automaton (CA) model of abnormal grain growth (AGG) that considers anisotropic grain ...
International audienceThe present article focuses on establishing the nature of excessive grain grow...
The formation of stray grains during the casting process can severely reduce the performance of sing...
During static recrystallization, grains often have non-constant and non-uniform growth rates, signif...
It is well recognized that the presence of second phase particles strongly influences grain boundary...
Polycrystalline nickel base superalloys are known to possess high temperature strength, good crack g...
The grain texture of the as-printed material evolves during the laser-based powder bed fusion (PBF-L...
The mesoscopic grain model is a multiscale model which takes into account both the dendrite growth m...
International audienceAccording to various studies, Grain Boundary Engineering (GBE) is likely to en...
International audienceA process model is described for the grain selection occurring during the soli...
In this paper, a predictive multi-scale model based on a cellular automaton (CA)-finite element (FE)...
The grain growth behavior in a typical Ni-based superalloy was investigated using isothermal heat tr...
Based on the thermal activation theory and curvature-driven mechanism, a 2D cellular automaton model...
The grain size of two commercial spray-formed superalloys, UDIMET 720 and MAR-M-002, has been invest...
Based on the thermodynamic conversion mechanism and energy transition principle, a three-dimensional...
A new cellular automaton (CA) model of abnormal grain growth (AGG) that considers anisotropic grain ...
International audienceThe present article focuses on establishing the nature of excessive grain grow...
The formation of stray grains during the casting process can severely reduce the performance of sing...
During static recrystallization, grains often have non-constant and non-uniform growth rates, signif...
It is well recognized that the presence of second phase particles strongly influences grain boundary...
Polycrystalline nickel base superalloys are known to possess high temperature strength, good crack g...
The grain texture of the as-printed material evolves during the laser-based powder bed fusion (PBF-L...
The mesoscopic grain model is a multiscale model which takes into account both the dendrite growth m...
International audienceAccording to various studies, Grain Boundary Engineering (GBE) is likely to en...
International audienceA process model is described for the grain selection occurring during the soli...
In this paper, a predictive multi-scale model based on a cellular automaton (CA)-finite element (FE)...