FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS
Transparent MgAl2O4 ceramic could be found in a wide range of applications for both military and civil sector due to its high melting point, good mechanical properties, small refractive index (1.71) and its ability to allow light in range from UV to mid-IR to pass through. In the present work, tran...
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doaj-5e194022a6ea4d158d05d648f07fa3842020-11-25T01:46:42ZengSciCell s.r.o.Acta Metallurgica Slovaca1335-15321338-11562019-09-0125310.12776/ams.v25i3.1313FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERSYen Ngoc Nguyen0Anh-Tu Dao1Minh-Hai Le2Khanh Quoc Dang3Makoto Nanko4School of Materials Science and Engineering, Hanoi University of Science and TechnologySchool of Materials Science and Engineering, Hanoi University of Science and TechnologySchool of Materials Science and Engineering, Hanoi University of Science and TechnologySchool of Materials Science and Engineering, Hanoi University of Science and TechnologyDepartment of Mechanical Engineering, Nagaoka University of Technology Transparent MgAl2O4 ceramic could be found in a wide range of applications for both military and civil sector due to its high melting point, good mechanical properties, small refractive index (1.71) and its ability to allow light in range from UV to mid-IR to pass through. In the present work, transparent MgAl2O4 were fabricated from metal nitrates via two steps. Firstly, the MgAl2O4 nanopowder was synthesized via solution combustion synthesis from the metal nitrates. Secondly, the powder was then consolidated by Pulsed Electric Current Sintering (PECS) technique to fabricate transparent ceramic. XRD patterns of the obtained powder showed the peaks of only MgAl2O4 phase. Besides, the atomic compositions of magnesium, aluminium and oxygen determined by EDX analysis were approximately corresponded to 1:2:4 of the molecular formula of MgAl2O4. After deagglomerating for 48 hours using soft ball-milling, the powder had the average particle of 27 nm. Transparent MgAl2O4 samples, which were sintered with two-step sintering mode of 1050oC/60 minutes-1400oC/20 minutes, permitted the transmission of visible and infrared light with the transmittance up to 80%, Vickers hardness of 14.2 GPa, and fracture toughness of 1.1 MPa.m1/2. The results are a critical step toward fabrication of high-quality transparent ceramics from metal nitrates. https://journals.scicell.org/index.php/AMS/article/view/119MgAl2O4transparent ceramiccombustion synthesisPECStwo-step sintering |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yen Ngoc Nguyen Anh-Tu Dao Minh-Hai Le Khanh Quoc Dang Makoto Nanko |
spellingShingle |
Yen Ngoc Nguyen Anh-Tu Dao Minh-Hai Le Khanh Quoc Dang Makoto Nanko FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS Acta Metallurgica Slovaca MgAl2O4 transparent ceramic combustion synthesis PECS two-step sintering |
author_facet |
Yen Ngoc Nguyen Anh-Tu Dao Minh-Hai Le Khanh Quoc Dang Makoto Nanko |
author_sort |
Yen Ngoc Nguyen |
title |
FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS |
title_short |
FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS |
title_full |
FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS |
title_fullStr |
FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS |
title_full_unstemmed |
FABRICATION OF TRANSPARENT MgAl2O4 SPINEL CERAMICS BY PECS PROCESSING OF COMBUSTION - SYTHESIZED NANOPOWDERS |
title_sort |
fabrication of transparent mgal2o4 spinel ceramics by pecs processing of combustion - sythesized nanopowders |
publisher |
SciCell s.r.o. |
series |
Acta Metallurgica Slovaca |
issn |
1335-1532 1338-1156 |
publishDate |
2019-09-01 |
description |
Transparent MgAl2O4 ceramic could be found in a wide range of applications for both military and civil sector due to its high melting point, good mechanical properties, small refractive index (1.71) and its ability to allow light in range from UV to mid-IR to pass through. In the present work, transparent MgAl2O4 were fabricated from metal nitrates via two steps. Firstly, the MgAl2O4 nanopowder was synthesized via solution combustion synthesis from the metal nitrates. Secondly, the powder was then consolidated by Pulsed Electric Current Sintering (PECS) technique to fabricate transparent ceramic. XRD patterns of the obtained powder showed the peaks of only MgAl2O4 phase. Besides, the atomic compositions of magnesium, aluminium and oxygen determined by EDX analysis were approximately corresponded to 1:2:4 of the molecular formula of MgAl2O4. After deagglomerating for 48 hours using soft ball-milling, the powder had the average particle of 27 nm. Transparent MgAl2O4 samples, which were sintered with two-step sintering mode of 1050oC/60 minutes-1400oC/20 minutes, permitted the transmission of visible and infrared light with the transmittance up to 80%, Vickers hardness of 14.2 GPa, and fracture toughness of 1.1 MPa.m1/2. The results are a critical step toward fabrication of high-quality transparent ceramics from metal nitrates.
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topic |
MgAl2O4 transparent ceramic combustion synthesis PECS two-step sintering |
url |
https://journals.scicell.org/index.php/AMS/article/view/119 |
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