Product Name:
GrainGeoSintering and Stacking Structure Modeling Module
Detailed description:
GrainGeoSintering and stacking structure
GrainGeoThe module is used for modeling sintered, porous, granular, and powder materials. These materials are widely used in industries such as filtration, hydraulic fracturing, ceramics, construction, sound insulation, thermal insulation, coatings, filling, packaging, storage, waste treatment, metallurgy, textiles, pharmaceuticals, healthcare, defense, aerospace, etc.
Starting from the random distribution of particles, stacking and filling materials, as well as different shapes and shape distributions, morphological methods are used to model various states of the sintering process. The final model structure can be a powder and sintered material with open and closed pores, as well as a sintered composite material without pores. Particles can be spherical or ellipsoidal, but also include randomly distributed fibers and general polyhedra.
We can obtain 3D images and analysis data (*. gda files) modeled under random distribution, stacking, and filling methods, or export them as STL files in CAD software.GrainGeoThe sintered structure created by the module can only be output as a three-dimensional image, similar to the structure obtained from µ CT or FIB/SEM segmentation.
GrainGeo The geometric model created by the module is compared with other modelsGeoDictModules, such as:PoroDict、ConductoDict、FlowDict、ElastoDict、DiffuDictOrFilterDictWhen used in combination, the characteristics of the material can be directly calculated, such as pore size distribution, flow resistance (permeability, pressure drop), effective thermal and electrical conductivity, effective elasticity, effective diffusion, filtration efficiency, and filtration capacity.
For special situations such as stacking of spherical particles or dense fillers, priority should be given to using themPackGeoModules are used to achieve higher packing density and shorter running time.
GrainGeoCreated catalyst layer model
GrainGeoCreated byAl2O3(Aluminum oxide)
GrainGeoCreated digital hydraulic fracturing support agent model
GrainGeoPZT (lead zirconate titanate) piezoelectric ceramic model created