Physical properties of cullet-clay glass ceramic containing titanium nitride
Recycle glass as a major component in ceramic fabrication has received tremendous attention due to multi advantages as a starting material. A series of glass ceramics based on recycled glass cullet-kaolin clay containing titanium nitride has successfully been made. The X-ray diffraction technique ha...
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my.utm.1013562023-06-08T09:50:31Z http://eprints.utm.my/id/eprint/101356/ Physical properties of cullet-clay glass ceramic containing titanium nitride Syed Yaacob, S. N. Mohd. Noor, F. Sahar, M. R. Sayadi, S. H. Sazali, E. S. Aziz, Siti Maisarah Q Science (General) Recycle glass as a major component in ceramic fabrication has received tremendous attention due to multi advantages as a starting material. A series of glass ceramics based on recycled glass cullet-kaolin clay containing titanium nitride has successfully been made. The X-ray diffraction technique has been used to characterized the ceramic. Meanwhile, the physical properties such as density have been determined using the Archimedes Principle and their mechanical characteristic such as Vickers hardness and Young's Modulus has been determined in a usual manner. It is found that the ceramic is characterized by the occurrence of major crystalline peaks of Quartz and Tridymite while alumina and titania coexist as the minor phases. The density is observed to vary depending upon the cullet content while the hardness and elasticity are very much dependent on the concentration of titanium nitride. The SEM image indicates that for higher TiN content, the pores on the microstructural surface seem to be dispersed thus producing a smoother surface. Elsevier Ltd 2022 Article PeerReviewed Syed Yaacob, S. N. and Mohd. Noor, F. and Sahar, M. R. and Sayadi, S. H. and Sazali, E. S. and Aziz, Siti Maisarah (2022) Physical properties of cullet-clay glass ceramic containing titanium nitride. Materials Today: Proceedings, 66 (41). pp. 4010-4014. ISSN 2214-7853 http://dx.doi.org/10.1016/j.matpr.2022.04.949 DOI:10.1016/j.matpr.2022.04.949 |
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Q Science (General) Syed Yaacob, S. N. Mohd. Noor, F. Sahar, M. R. Sayadi, S. H. Sazali, E. S. Aziz, Siti Maisarah Physical properties of cullet-clay glass ceramic containing titanium nitride |
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Recycle glass as a major component in ceramic fabrication has received tremendous attention due to multi advantages as a starting material. A series of glass ceramics based on recycled glass cullet-kaolin clay containing titanium nitride has successfully been made. The X-ray diffraction technique has been used to characterized the ceramic. Meanwhile, the physical properties such as density have been determined using the Archimedes Principle and their mechanical characteristic such as Vickers hardness and Young's Modulus has been determined in a usual manner. It is found that the ceramic is characterized by the occurrence of major crystalline peaks of Quartz and Tridymite while alumina and titania coexist as the minor phases. The density is observed to vary depending upon the cullet content while the hardness and elasticity are very much dependent on the concentration of titanium nitride. The SEM image indicates that for higher TiN content, the pores on the microstructural surface seem to be dispersed thus producing a smoother surface. |
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Article |
author |
Syed Yaacob, S. N. Mohd. Noor, F. Sahar, M. R. Sayadi, S. H. Sazali, E. S. Aziz, Siti Maisarah |
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Syed Yaacob, S. N. Mohd. Noor, F. Sahar, M. R. Sayadi, S. H. Sazali, E. S. Aziz, Siti Maisarah |
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Syed Yaacob, S. N. |
title |
Physical properties of cullet-clay glass ceramic containing titanium nitride |
title_short |
Physical properties of cullet-clay glass ceramic containing titanium nitride |
title_full |
Physical properties of cullet-clay glass ceramic containing titanium nitride |
title_fullStr |
Physical properties of cullet-clay glass ceramic containing titanium nitride |
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Physical properties of cullet-clay glass ceramic containing titanium nitride |
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physical properties of cullet-clay glass ceramic containing titanium nitride |
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Elsevier Ltd |
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2022 |
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http://eprints.utm.my/id/eprint/101356/ http://dx.doi.org/10.1016/j.matpr.2022.04.949 |
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