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Intergranular area microalloyed aluminium-silicate ceramics fractal analysis

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2013
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Аутори
Purenović, Jelena
Mitić, Vojislav V.
Kocić, Ljubiša
Pavlović, Vladimir B.
Ranđelović, M.
Purenović, M.
Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документу
Апстракт
Porous aluminium-silicate ceramics, modified by alloying with magnesium and microalloying with alluminium belongs to a group of advanced multifunctional ceramics materials. This multiphase solid-solid system has predominantly amorphous microstructure and micro morphology. Intergranular and interphase areas are very complex, because they represent areas, where numbered processes and interactions take place, making new boundaries and regions with fractal nature. Fractal analysis of intergranular microstructure has included determination of ceramic grain fractal dimension by using Richardson method. Considering the fractal nature of intergranular contacts, it is possible to establish correlation between material electrical properties and fractal analysis, as a tool for future correlation with microstructure characterization. [Projekat Ministarstva nauke Republike Srbije, br. ON 172057 i br. III 45012]
Кључне речи:
aluminium silicate ceramics / microalloying / intergranular area / fractals
Извор:
Science of Sintering, 2013, 45, 1, 117-126
Издавач:
  • Belgrade : International Institute for the Science of Sintering
Пројекти:
  • Усмерена синтеза, структура и својства мултифункционалних материјала (RS-172057)
  • Синтеза, процесирање и карактеризација наноструктурних материјала за примену у области енергије, механичког инжењерства, заштите животне стредине и биомедицине (RS-45012)

DOI: 10.2298/SOS1301117P

ISSN: 1820-7413 (Online); 0350-820X (Print)

WoS: 000318150200012

Scopus: 2-s2.0-84877722682
[ Google Scholar ]
2
2
URI
http://dais.sanu.ac.rs/123456789/237
Колекције
  • ITN SANU - Opšta kolekcija / ITS SASA - General collection
Институција
Институт техничких наука САНУ / Institute of Technical Sciences of SASA
TY  - JOUR
AU  - Purenović, Jelena
AU  - Mitić, Vojislav V.
AU  - Kocić, Ljubiša
AU  - Pavlović, Vladimir B.
AU  - Ranđelović, M.
AU  - Purenović, M.
PY  - 2013
UR  - http://dais.sanu.ac.rs/123456789/237
AB  - Porous aluminium-silicate ceramics, modified by alloying with magnesium and microalloying with alluminium belongs to a group of advanced multifunctional ceramics materials. This multiphase solid-solid system has predominantly amorphous microstructure and micro morphology. Intergranular and interphase areas are very complex, because they represent areas, where numbered processes and interactions take place, making new boundaries and regions with fractal nature. Fractal analysis of intergranular microstructure has included determination of ceramic grain fractal dimension by using Richardson method. Considering the fractal nature of intergranular contacts, it is possible to establish correlation between material electrical properties and fractal analysis, as a tool for future correlation with microstructure characterization. [Projekat Ministarstva nauke Republike Srbije, br. ON 172057 i br. III 45012]
PB  - Belgrade : International Institute for the Science of Sintering
T2  - Science of Sintering
T1  - Intergranular area microalloyed aluminium-silicate ceramics fractal analysis
SP  - 117
EP  - 126
VL  - 45
IS  - 1
DO  - 10.2298/SOS1301117P
ER  - 
@article{
author = "Purenović, Jelena and Mitić, Vojislav V. and Kocić, Ljubiša and Pavlović, Vladimir B. and Ranđelović, M. and Purenović, M.",
year = "2013",
url = "http://dais.sanu.ac.rs/123456789/237",
abstract = "Porous aluminium-silicate ceramics, modified by alloying with magnesium and microalloying with alluminium belongs to a group of advanced multifunctional ceramics materials. This multiphase solid-solid system has predominantly amorphous microstructure and micro morphology. Intergranular and interphase areas are very complex, because they represent areas, where numbered processes and interactions take place, making new boundaries and regions with fractal nature. Fractal analysis of intergranular microstructure has included determination of ceramic grain fractal dimension by using Richardson method. Considering the fractal nature of intergranular contacts, it is possible to establish correlation between material electrical properties and fractal analysis, as a tool for future correlation with microstructure characterization. [Projekat Ministarstva nauke Republike Srbije, br. ON 172057 i br. III 45012]",
publisher = "Belgrade : International Institute for the Science of Sintering",
journal = "Science of Sintering",
title = "Intergranular area microalloyed aluminium-silicate ceramics fractal analysis",
pages = "117-126",
volume = "45",
number = "1",
doi = "10.2298/SOS1301117P"
}
Purenović J, Mitić VV, Kocić L, Pavlović VB, Ranđelović M, Purenović M. Intergranular area microalloyed aluminium-silicate ceramics fractal analysis. Science of Sintering. 2013;45(1):117-126
Purenović, J., Mitić, V. V., Kocić, L., Pavlović, V. B., Ranđelović, M.,& Purenović, M. (2013). Intergranular area microalloyed aluminium-silicate ceramics fractal analysis.
Science of SinteringBelgrade : International Institute for the Science of Sintering., 45(1), 117-126.
https://doi.org/10.2298/SOS1301117P
Purenović Jelena, Mitić Vojislav V., Kocić Ljubiša, Pavlović Vladimir B., Ranđelović M., Purenović M., "Intergranular area microalloyed aluminium-silicate ceramics fractal analysis" 45, no. 1 (2013):117-126,
https://doi.org/10.2298/SOS1301117P .

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