Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis
This research describes a study of 11 selected samples of brick clays applied in roofing tile production, by using simultaneous thermal analysis. Additionally, the laboratory-sized samples were prepared and fired (850-950 °C) and technological properties were determined. Mathematical analys...
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International Institute for the Science of Sintering, Beograd
2018-01-01
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doaj-d7d19081b3a142dd90c6a3c5d1eaa1fa2020-11-25T00:06:33ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X1820-74132018-01-0150448750010.2298/SOS1804487V0350-820X1804487VThermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysisVasić Milica V.0Pezo Lato L.1Zdravković Jelena D.2Vrebalov Marija3Radojević Zagorka4Institute for Testing of Materials IMS, BelgradeInstitute of General and Physical Chemistry, BelgradeFaculty of Technology and Metallurgy, Belgradea.d."Polet" IGK, Novi BečejInstitute for Testing of Materials IMS, BelgradeThis research describes a study of 11 selected samples of brick clays applied in roofing tile production, by using simultaneous thermal analysis. Additionally, the laboratory-sized samples were prepared and fired (850-950 °C) and technological properties were determined. Mathematical analysis was applied to sum all the experimental results and help discriminate the samples by their behavior during firing. The samples, very similar according to mineralogical and chemical content, as well as granulometry tests, were successfully grouped using principal component analysis (PCA). The PCA was used to explore and easily visualize the differences between samples. The PCA performed for differential thermal analysis (DTA), differential scanning calorimetry (DSC) and differential thermogravimetry (DTG) curves clearly showed that the heat flow was mainly influenced by carbonate content and its grain size, while DTG discriminated samples according to the contents of clay minerals and carbonates. In addition, dilatometry analysis revealed which samples underwent the highest densification during the firing process. The PCA analysis of fired products properties showed that the highest correlations were between water absorption with firing shrinkage and compressive strength. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. III45008, Grant no. TR31055 and Grant no. III45007]http://www.doiserbia.nb.rs/img/doi/0350-820X/2018/0350-820X1804487V.pdfbrick claythermal analysesprincipal component analysisdilatometry |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vasić Milica V. Pezo Lato L. Zdravković Jelena D. Vrebalov Marija Radojević Zagorka |
spellingShingle |
Vasić Milica V. Pezo Lato L. Zdravković Jelena D. Vrebalov Marija Radojević Zagorka Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis Science of Sintering brick clay thermal analyses principal component analysis dilatometry |
author_facet |
Vasić Milica V. Pezo Lato L. Zdravković Jelena D. Vrebalov Marija Radojević Zagorka |
author_sort |
Vasić Milica V. |
title |
Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis |
title_short |
Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis |
title_full |
Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis |
title_fullStr |
Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis |
title_full_unstemmed |
Thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis |
title_sort |
thermal, ceramic and technological properties of clays used in production of roofing tiles - principal component analysis |
publisher |
International Institute for the Science of Sintering, Beograd |
series |
Science of Sintering |
issn |
0350-820X 1820-7413 |
publishDate |
2018-01-01 |
description |
This research describes a study of 11 selected samples of brick clays applied
in roofing tile production, by using simultaneous thermal analysis.
Additionally, the laboratory-sized samples were prepared and fired (850-950
°C) and technological properties were determined. Mathematical analysis was
applied to sum all the experimental results and help discriminate the samples
by their behavior during firing. The samples, very similar according to
mineralogical and chemical content, as well as granulometry tests, were
successfully grouped using principal component analysis (PCA). The PCA was
used to explore and easily visualize the differences between samples. The PCA
performed for differential thermal analysis (DTA), differential scanning
calorimetry (DSC) and differential thermogravimetry (DTG) curves clearly
showed that the heat flow was mainly influenced by carbonate content and its
grain size, while DTG discriminated samples according to the contents of clay
minerals and carbonates. In addition, dilatometry analysis revealed which
samples underwent the highest densification during the firing process. The
PCA analysis of fired products properties showed that the highest
correlations were between water absorption with firing shrinkage and
compressive strength. [Project of the Serbian Ministry of Education, Science
and Technological Development, Grant no. III45008, Grant no. TR31055 and
Grant no. III45007] |
topic |
brick clay thermal analyses principal component analysis dilatometry |
url |
http://www.doiserbia.nb.rs/img/doi/0350-820X/2018/0350-820X1804487V.pdf |
work_keys_str_mv |
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