Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods

Tomography allows embedding of one space in another, especially ℛ2 → ℛ3, and observation of the nature of the volumetric internal composite structure. Now, not only a simple interpretation is expected of geometry defined via single thresholds of structures. The binary segmentation used for numerical...

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Main Authors: Katarzyna Pietrzak, Andrzej Gładki, Agata Strojny-Nędza, Tomasz Wejrzanowski, Kamil Kaszyca
Format: Article
Language:English
Published: Slovenian Society for Stereology and Quantitative Image Analysis 2021-04-01
Series:Image Analysis and Stereology
Subjects:
Online Access:https://www.ias-iss.org/ojs/IAS/article/view/1911
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spelling doaj-6a3df1f3f55e4728b50f38ed14232c4c2021-04-09T11:40:57ZengSlovenian Society for Stereology and Quantitative Image AnalysisImage Analysis and Stereology1580-31391854-51652021-04-01401394710.5566/ias.19111058Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT MethodsKatarzyna Pietrzak0Andrzej Gładki1Agata Strojny-Nędza2Tomasz Wejrzanowski3Kamil Kaszyca4Lukasiewicz Research Network - Institute of Microelectronics and PhotonicsLukasiewicz Research Network - Institute of Microelectronics and PhotonicsLukasiewicz Research Network - Institute of Microelectronics and PhotonicsWarsaw University of Technology, Faculty of Materials Science and Engineering, PolandLukasiewicz Research Network - Institute of Microelectronics and PhotonicsTomography allows embedding of one space in another, especially ℛ2 → ℛ3, and observation of the nature of the volumetric internal composite structure. Now, not only a simple interpretation is expected of geometry defined via single thresholds of structures. The binary segmentation used for numerical structure analysis requires more detailed presentation. This paper shows an example of image analysis techniques applied to study the homogeneity of two-phase material. Using tomography analysis, the results of the homogeneity of the SiC particles with 10vol.%, 20vol.%, 30vol.%, 40vol.% volumetric bulk density of Cu/SiC composites are presented. Finally, for two independent coordinate systems, the distribution of  SiC particle masses and their total moments of inertia were determined. The results confirmed that for well-mixed composite powders the homogeneity of the reinforcing phase is expected in samples with a  SiC volume near 30vol.%. In this case, segregation by translation and rotation of SiC particles in the matrix, during the sintering process is restricted.https://www.ias-iss.org/ojs/IAS/article/view/1911cu/sic composite materialsimage analysisisotropyuniformity
collection DOAJ
language English
format Article
sources DOAJ
author Katarzyna Pietrzak
Andrzej Gładki
Agata Strojny-Nędza
Tomasz Wejrzanowski
Kamil Kaszyca
spellingShingle Katarzyna Pietrzak
Andrzej Gładki
Agata Strojny-Nędza
Tomasz Wejrzanowski
Kamil Kaszyca
Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods
Image Analysis and Stereology
cu/sic composite materials
image analysis
isotropy
uniformity
author_facet Katarzyna Pietrzak
Andrzej Gładki
Agata Strojny-Nędza
Tomasz Wejrzanowski
Kamil Kaszyca
author_sort Katarzyna Pietrzak
title Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods
title_short Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods
title_full Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods
title_fullStr Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods
title_full_unstemmed Analysis of Isotropy and Uniformity of the Distribution of Reinforcing Phase in Cu/SiC Composite Materials Using μCT Methods
title_sort analysis of isotropy and uniformity of the distribution of reinforcing phase in cu/sic composite materials using μct methods
publisher Slovenian Society for Stereology and Quantitative Image Analysis
series Image Analysis and Stereology
issn 1580-3139
1854-5165
publishDate 2021-04-01
description Tomography allows embedding of one space in another, especially ℛ2 → ℛ3, and observation of the nature of the volumetric internal composite structure. Now, not only a simple interpretation is expected of geometry defined via single thresholds of structures. The binary segmentation used for numerical structure analysis requires more detailed presentation. This paper shows an example of image analysis techniques applied to study the homogeneity of two-phase material. Using tomography analysis, the results of the homogeneity of the SiC particles with 10vol.%, 20vol.%, 30vol.%, 40vol.% volumetric bulk density of Cu/SiC composites are presented. Finally, for two independent coordinate systems, the distribution of  SiC particle masses and their total moments of inertia were determined. The results confirmed that for well-mixed composite powders the homogeneity of the reinforcing phase is expected in samples with a  SiC volume near 30vol.%. In this case, segregation by translation and rotation of SiC particles in the matrix, during the sintering process is restricted.
topic cu/sic composite materials
image analysis
isotropy
uniformity
url https://www.ias-iss.org/ojs/IAS/article/view/1911
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