New Journal of Glass and Ceramics

New Journal of Glass and Ceramics

ISSN Print: 2161-7554
ISSN Online: 2161-7562
www.scirp.org/journal/njgc
E-mail: njgc@scirp.org
"Decomposition Free Al2TiO5-MgTi2O5 Ceramics with Low-Thermal Expansion Coefficient"
written by Masahiro Fukuda, Toshinobu Yoko, Masahide Takahashi,
published by New Journal of Glass and Ceramics, Vol.3 No.4, 2013
has been cited by the following article(s):
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[1] Improvement of steam oxidation resistance of the γ-TiAl alloy with microarc oxidation coatings at 900–1200℃
Corrosion Science, 2022
[2] Remarkable Structural Modifications of Tialite Solid Solutions Obtained by Different Methods
Materials, 2022
[3] Forecast of Crystallizing Phases and Description of the Chemical Interaction in the Al2O3–TiO2–MgO System
Glass Physics and …, 2021
[4] Effect of microstructure on thermal and mechanical properties of solid solutions Al2TiO5-MgTi2O5
2020
[5] SiO2 katkısının Al2TiO5 seramiklerinin fiziksel özelliklerine etkisi
2020
[6] Synthesis of aluminium titanate by means of isostructural heterogeneous nucleation
2019
[7] SiO2 Katkısının Al2TiO5 Seramiklerinin Fiziksel Özelliklerine Etkisi The Effect of SiO2 Addition on Physical Properties of Al2TiO5 Ceramics
Pamukkale University Journal of Engineering Sciences, 2019
[8] Experimental study of phase equilibria in the Al2O3–MgO–TiO2 system and thermodynamic assessment of the binary MgO–TiO2 system
Journal of the American Ceramic Society, 2018
[9] An Initial Study, the Effect of MgO Addition on Some Physical Properties of Al2TiO5
7th International Conference on Innovations in Engineering and Technology, 2017
[10] Al2O3–TiO2/ZrO2–SiO2 based porous ceramics from particle-stabilized wet foam
Journal of Advanced Ceramics, 2017
[11] Al 2 O 3–TiO 2/ZrO 2–SiO 2 based porous ceramics from particle-stabilized wet foam
2017
[12] SiO2 添加チタン酸アルミニウム焼結体の熱的および機械的性質
材料, 2015
[13] Effects of MgO on Crystallization and Microwave Dielectric Properties of MgO‐Al2O3‐SiO2‐TiO2‐La2O3 Glass‐Ceramics
International Journal of Applied Glass Science, 2014
[14] 化学的・物理的修飾によるチタン酸アルミニウム系低熱膨張性高温材料の新展開
粉体および粉末冶金, 2014
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