A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE

This paper deals with the use of probabilistic models such as Voronoi tessellation and the Johnson-Mehl model to simulate microstructures of monophased materials. Sintered cerine was chosen to test the various models. The values of morphological parameters measured, both on such models and real micr...

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Main Authors: Michel Coster, Xavier Arnould, Jean-Louis Chermant, Abder El Moataz, Thierry Chartier
Format: Article
Language:English
Published: Slovenian Society for Stereology and Quantitative Image Analysis 2011-05-01
Series:Image Analysis and Stereology
Subjects:
Online Access:http://www.ias-iss.org/ojs/IAS/article/view/778
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author Michel Coster
Xavier Arnould
Jean-Louis Chermant
Abder El Moataz
Thierry Chartier
author_facet Michel Coster
Xavier Arnould
Jean-Louis Chermant
Abder El Moataz
Thierry Chartier
author_sort Michel Coster
collection DOAJ
description This paper deals with the use of probabilistic models such as Voronoi tessellation and the Johnson-Mehl model to simulate microstructures of monophased materials. Sintered cerine was chosen to test the various models. The values of morphological parameters measured, both on such models and real microstructures are in very good agreement. An extension for porous materials is also presented. This work shows that the probabilistic models are very well suited for the simulation and description of ceramic and granular microstructures.
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spelling doaj.art-aa3d337b4242497c8b151ff3831eddb62022-12-22T02:13:47ZengSlovenian Society for Stereology and Quantitative Image AnalysisImage Analysis and Stereology1580-31391854-51652011-05-0124210511610.5566/ias.v24.p105-116750A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINEMichel CosterXavier ArnouldJean-Louis ChermantAbder El MoatazThierry ChartierThis paper deals with the use of probabilistic models such as Voronoi tessellation and the Johnson-Mehl model to simulate microstructures of monophased materials. Sintered cerine was chosen to test the various models. The values of morphological parameters measured, both on such models and real microstructures are in very good agreement. An extension for porous materials is also presented. This work shows that the probabilistic models are very well suited for the simulation and description of ceramic and granular microstructures.http://www.ias-iss.org/ojs/IAS/article/view/778cerineJohnson-Mehl modelmathematical morphologymicrostructural and probabilistic modelssintered ceramicsVoronoi tessellation
spellingShingle Michel Coster
Xavier Arnould
Jean-Louis Chermant
Abder El Moataz
Thierry Chartier
A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE
Image Analysis and Stereology
cerine
Johnson-Mehl model
mathematical morphology
microstructural and probabilistic models
sintered ceramics
Voronoi tessellation
title A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE
title_full A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE
title_fullStr A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE
title_full_unstemmed A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE
title_short A MICROSTRUCTURAL MODEL BY SPACE TESSELLATION FOR A SINTERED CERAMIC: CERINE
title_sort microstructural model by space tessellation for a sintered ceramic cerine
topic cerine
Johnson-Mehl model
mathematical morphology
microstructural and probabilistic models
sintered ceramics
Voronoi tessellation
url http://www.ias-iss.org/ojs/IAS/article/view/778
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