An investigation on manufacturability of 312 TiSiC from new generation ceramics
2017
0 views
0 downloads
Advisor: Doç. Dr. Ahmet Atasoy
Abstract (EN)
In this work, Ti/Si/C powders were sintered under argon atmosphere by pressureless sintering method. Sintering was also carried out at different temperatures and durations. Thus, the effect of Ti3SiC2 formation at different temperatures and durations was investigated. For this purpose, mass loss / increase of sintered samples were measured, XRD and SEM analyzes were performed. As a result of the work, formation of Ti3SiC2 was observed. Ti3SiC2 formation effect was observed in the temperature, the time of sintering and the incorporation of stoichiometric excess carbon in the starting mixture. TiC and SiC compounds were formed by decomposition of Ti3SiC2 formed by excess carbon, temperature and time effect. As a result of the XRD investigations made, temperature, time, excess carbon in the structure and used graphite crucible cause effect the formation of Ti3SiC2. Ti3SiC2 formation was observed in the samples obtained as a result of the pressureless sintering in the 2-4 hour sample at 1300˚C and in the sample sintered at 1350˚C for 4 hours. C, TiC and SiC have been found at temperatures of 1400-1500 °C.
Author
Dr. Abdullah Koşar
How to Cite
Abdullah Koşar (Master Thesis). An investigation on manufacturability of 312 TiSiC from new generation ceramics, 2017, Sakarya University.
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Sakarya University
- Computational investigation of battery materials using density functional theory(2023)
- Haci Ahmed b. Seyyid al-Bigavî and Tarjama al-Awārif al-maārif (sections of 22-43)(2024)
- Synthesis of carbazol substituted 3,4-dihydropyrimidine-2(1h)-thione deri̇vati̇ves(2024)
- Classification of recyclable wastes with deep learning models: A comparison on the effect of dataset size(2024)
- Hermeneutical analysis of sacrifice, sacred violence and scapegoat motifs in Turkish Mythology(2024)
- Novel thio-chalcone substituted metallophthalocyanines: synthesis, characterization and redox behaviour(2018)
