International audienceThe fracture behavior of highly porous ceramics is simulated using the discrete element method. Spherical particles model the powder used to obtain the partially sintered ceramic material. Three-dimensional representative volume elements of porous microstructures made of several tens of thousands of particles were first generated by numerical sintering. Elastic force-displacement laws model the solid bonds formed between particles during sintering. A realistic fracture criterion, based on the local stress intensity factor associated with the bond between two particles, is also introduced. The simulation of tensile tests allows the assessment of the effective strength of these microstructures as a function of the residu...
Advanced ceramic materials have been extensively used in aerospace, automobile and other industries....
A particle-based simulation approach employing the discrete element method (DEM) is presented for ce...
Compaction ; ceramic powder ; aggregates ; discrete element simulation ; densification behavior ; co...
The fracture behavior of highly porous ceramics is simulated using the discrete element method. A re...
AbstractThe fracture behavior of highly porous ceramics is simulated using the discrete element meth...
International audienceIncreasing the pore volume fraction of porous ceramics enhances their function...
International audienceHighly porous ceramics are critical components of Solid Oxide Fuel Cells. Neve...
International audienceA discrete element model for the elastic and fracture behavior of partially si...
Highly porous ceramics are critical components of Solid Oxide Fuel Cells. Nevertheless, their mechan...
International audienceQuasi-static discrete element method (DEM) simulations are used to model the e...
International audiencePorous materials, especially ceramics, are used in an ever-expanding range of ...
International audiencePorous ceramic samples were processed either by freeze-casting or by slip-cast...
Advanced ceramic materials have been extensively used in aerospace, automobile and other industries....
Advanced ceramic materials have been extensively used in aerospace, automobile and other industries....
A particle-based simulation approach employing the discrete element method (DEM) is presented for ce...
Compaction ; ceramic powder ; aggregates ; discrete element simulation ; densification behavior ; co...
The fracture behavior of highly porous ceramics is simulated using the discrete element method. A re...
AbstractThe fracture behavior of highly porous ceramics is simulated using the discrete element meth...
International audienceIncreasing the pore volume fraction of porous ceramics enhances their function...
International audienceHighly porous ceramics are critical components of Solid Oxide Fuel Cells. Neve...
International audienceA discrete element model for the elastic and fracture behavior of partially si...
Highly porous ceramics are critical components of Solid Oxide Fuel Cells. Nevertheless, their mechan...
International audienceQuasi-static discrete element method (DEM) simulations are used to model the e...
International audiencePorous materials, especially ceramics, are used in an ever-expanding range of ...
International audiencePorous ceramic samples were processed either by freeze-casting or by slip-cast...
Advanced ceramic materials have been extensively used in aerospace, automobile and other industries....
Advanced ceramic materials have been extensively used in aerospace, automobile and other industries....
A particle-based simulation approach employing the discrete element method (DEM) is presented for ce...
Compaction ; ceramic powder ; aggregates ; discrete element simulation ; densification behavior ; co...