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Online since: July 2018
Authors: Fátima Ternero Fernández, Francisco Gomez Cuevas, Juan Manuel Montes, Eduardo Sanchez Caballero, Raquel Astacio
The die used for MF-ERS consists of a ceramic tube (alumina 99.7%) inserted in a metallic hoop.
The powder mass is contained between two water cooled electrodes (punches), all enclosed in the ceramic tube.
Zavaliangos, Materials Science & Engineering, 2000, A287, 171-177
Cintas, Journal of Materials Science 46, 5197-5207 (2010)
Calero, International Journal of Refractory Metals and Hard Materials, Volume 66, August 2017, Pages 88-94.
The powder mass is contained between two water cooled electrodes (punches), all enclosed in the ceramic tube.
Zavaliangos, Materials Science & Engineering, 2000, A287, 171-177
Cintas, Journal of Materials Science 46, 5197-5207 (2010)
Calero, International Journal of Refractory Metals and Hard Materials, Volume 66, August 2017, Pages 88-94.
Online since: June 2017
Authors: Vitaly A. Beregovoi, A.M. Beregovoi
Results and Discussion
Mix design of ceramic matrix for porous composites
The probability of arising structure-forming processes was estimated on the base of thermodynamic potential (DG).
International Congress, Global Construction: Ultimate Concrete Opportunities, Dundee, Scotland. (2005) 89-96
Proceedings of the International Congress Concrete: constructions sustainable option.
Vol: Concrete for fire Engineering.
Beregovoi, Porous glass-crystal materials for thermal protection of building and structures, ARPN Journal of Engineering and Applied Sciences. 11, 19 (2016) 11709-1712.
International Congress, Global Construction: Ultimate Concrete Opportunities, Dundee, Scotland. (2005) 89-96
Proceedings of the International Congress Concrete: constructions sustainable option.
Vol: Concrete for fire Engineering.
Beregovoi, Porous glass-crystal materials for thermal protection of building and structures, ARPN Journal of Engineering and Applied Sciences. 11, 19 (2016) 11709-1712.
Online since: July 2015
Authors: I. Ketut Gede Sugita, Ketut Astawa, I. Wayan Bandem Adnyana, I. Gusti Ngurah Priambadi, A.A.I.A. Sri Komaladewi
Study Program of Mechanical Engineering Faculty of Engineering Udayana University.
International Journal of Mechanical and Industrial Engineering (IJMIE) ISSN No. 2231-6477, Vol-3, Iss-1
International Journal of Clean Coal and Energy, 2013, 2, 13-21
International Journal.
Agricultural Engineering International: the CIGR Journal of Scientific Research and Development.
International Journal of Mechanical and Industrial Engineering (IJMIE) ISSN No. 2231-6477, Vol-3, Iss-1
International Journal of Clean Coal and Energy, 2013, 2, 13-21
International Journal.
Agricultural Engineering International: the CIGR Journal of Scientific Research and Development.
Online since: December 2012
Authors: T. Hussain
Materials Science and Engineering A, 2004. 368(1-2): p. 222-230
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2003. 217(11): p. 1603-1613
Engineering Fracture Mechanics, 1985. 21(1): p. 31-48
Chemical and Petroleum Engineering, 2002. 38(3): p. 245-248
Advanced Engineering Materials, 2007. 9(5): p. 418-423
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2003. 217(11): p. 1603-1613
Engineering Fracture Mechanics, 1985. 21(1): p. 31-48
Chemical and Petroleum Engineering, 2002. 38(3): p. 245-248
Advanced Engineering Materials, 2007. 9(5): p. 418-423
Online since: January 2013
Authors: Jan Mikšovsky, Jaroslav Lukeš, Zdeněk Tolde, Jan Remsa, Miroslav Jelínek, Tomáš Kocourek
Micro and Macro Scratch and Microhardness Study of Biocompatible DLC and TiO2 Films Prepared by Laser
Jan Mikšovský 1,2,a, Jaroslav Lukeš 3,b, Zdeněk Tolde 4,c, Jan Remsa 1,2,d, Tomáš Kocourek 1,2,e, Miroslav Jelínek1,2,f
1 Czech Technical University in Prague, Faculty of Biomedical Engineering, nám.
Rickerby, Materials Science and Engineering, A 140, ( 1991), 583-592 [2] S.
[6] International standards ISO 20502: Fine ceramics - Determination of adhesion of ceramic coatings by scratch testing
Mathia, Tribology International, 39, 124–128, (2006)
Pharr, Journal of Material Research, 7, 1564-1583, (1992).
Rickerby, Materials Science and Engineering, A 140, ( 1991), 583-592 [2] S.
[6] International standards ISO 20502: Fine ceramics - Determination of adhesion of ceramic coatings by scratch testing
Mathia, Tribology International, 39, 124–128, (2006)
Pharr, Journal of Material Research, 7, 1564-1583, (1992).
Online since: November 2012
Authors: Ying Jie Qiao, Ying Ying Liu, Ai Dong Liu
Pressureless Sintering and Properties of Boron Carbide-Titanium Diboride Composites by In-situ Reaction
Liu Ai-donga, Qiao Ying-jieb, Liu Ying-ying
College of Material Science and Chemical Engineering, Harbin Engineering University,
Harbin 150001, China
aliuaidong@hrbeu.edu.cn, b qiaoyingjie@hrbeu.edu.cn
Keywords: Pressureless sintering; boron carbide; titanium diboride; mechanical properties
Abstract.
The ceramics contained 5-25 vol.
Erosion wear of boron carbide ceramic nozzles by abrasive air jets.
International Materials Reviews.2010, 5, (1),4-40
Journal of Refractory Metals and Hard Materials .2012, 30:139–144.
The ceramics contained 5-25 vol.
Erosion wear of boron carbide ceramic nozzles by abrasive air jets.
International Materials Reviews.2010, 5, (1),4-40
Journal of Refractory Metals and Hard Materials .2012, 30:139–144.
Online since: September 2014
Authors: Adriana Scoton Antonio Chinelatto, Adilson Luiz Chinelatto, Eleomar Lena
The Pechini method is a type of sol-gel method, widely used for the synthesis of ceramic fine powders.
Appleby: Journal of Power Sources Vol. 37 (1992), p. 223
Fergus: Journal of Power Sources Vol. 162 (2006), p. 30
Chinelatto: Ceramics International Vol. 36 (2010), p. 1737
Estournès: Materials Science and Engineering A Vol. 527 (2010), p. 1577
Appleby: Journal of Power Sources Vol. 37 (1992), p. 223
Fergus: Journal of Power Sources Vol. 162 (2006), p. 30
Chinelatto: Ceramics International Vol. 36 (2010), p. 1737
Estournès: Materials Science and Engineering A Vol. 527 (2010), p. 1577
Online since: October 2007
Authors: Wei Ping Shen, Chang Chun Ge, Ling Bai, Ke Zhang
Low-pressure Preheating Combustion Synthesis of Silicon Nitride
Ke Zhang
a∗, Ling Baib, Weiping Shenc, Changchun Ged
1
School of Material Science and engineering, University of Science and Technology Beijing,
Beijing, 100083, China
a
zkdaz@163.com, bbailingniao111@163.com,c shenwp@mater.ustb.edu.cn,
d
ccge@mater.ustb.edu.cn
Keywords: silicon nitride, preheating, combustion synthesis, diluent
Abstract: Silicon nitride was prepared by means of low-pressure preheating combustion synthesis in
this paper.
In the past many years, silicon nitride ceramics have been widely applied in many fields, such as, chemical industry, metallurgy, mechanical industry, oil interests, electron, and aerospace.
Journal of the Chinese Ceramic Society,1980, 8(4):414~421(in Chinese) [11] Cao Y G.
Study on combustion synthesis of silicon nitride ceramics.
International Journal of Self-Propagating High-Temperature Synthesis, 2000,9(2): 171-191
In the past many years, silicon nitride ceramics have been widely applied in many fields, such as, chemical industry, metallurgy, mechanical industry, oil interests, electron, and aerospace.
Journal of the Chinese Ceramic Society,1980, 8(4):414~421(in Chinese) [11] Cao Y G.
Study on combustion synthesis of silicon nitride ceramics.
International Journal of Self-Propagating High-Temperature Synthesis, 2000,9(2): 171-191
Online since: January 2012
Authors: Wen Fang Li, Hui Yong Guo, Wen Bo Huang, Ming Wang
The synthesis and characterization of Ba0.5Sr0.5TiO3 film fabricated by micro arc oxidation
Min Wang1,2,a, Huiyong Guo1,b, Wenbo Huang1,c, Wenfang Li1,d *
1 School of Material Science and Engineering, South China University, Guangzhou 510640 China
2 College of Mechanical Engineering,Guangdong Polytechnic Normal University,Guangzhou 510665 China
awinawang@163.com, bhuiyongguo@163.com, cxiapipi@21cn.com,
d*mewfli@scut.edu.cn(corresponding author)
KeyWords: micro arc oxidation; Ba0.5Sr0.5TiO3; dielectric film; synthesis; characterization
Abstract.
The effects of deposition temperature on structure and dielectric properties of Ba0.6Sr0.4TiO3 thin films produced by pulsed laser deposition [J].Ceramics International;2009,35:2283-2287
Effects of excess Bismuth on Structure and properties of SrBi4Ti4O15 ceramics [J].Bulletin of The Chinese Ceramic Society:2006,25(4):76-79
Formation of BaTiO3 coating on titante by microarc oxidation method [J].Journal of Matierals Science: 2002, 37: 2263-2265
Journal of Materials Engineering:2002,2:34-37.
The effects of deposition temperature on structure and dielectric properties of Ba0.6Sr0.4TiO3 thin films produced by pulsed laser deposition [J].Ceramics International;2009,35:2283-2287
Effects of excess Bismuth on Structure and properties of SrBi4Ti4O15 ceramics [J].Bulletin of The Chinese Ceramic Society:2006,25(4):76-79
Formation of BaTiO3 coating on titante by microarc oxidation method [J].Journal of Matierals Science: 2002, 37: 2263-2265
Journal of Materials Engineering:2002,2:34-37.
Online since: May 2015
Authors: Dalibor Vojtech, Alena Michalcová, Tomáš Kubatík, Petra Svobodová, Ivo Marek
The spark plasma sintering method is very popular in last two decades mainly in the field of ceramics compaction.
Archives of Materials Science and Engineering 34 (1) (2008) 52-56
Takeuchi, Recent progress in bulk glassy, nanoquasicrystalline and nanocrystalline alloys, Materials Science and Engineering A 375 – 377(2004) 16–30
Michalcová et al., Structure and mechanical properties of AlCr6Fe2Ti1 alloy produced by rapid solidification powder metallurgy method, International Journal of Materials Research 101 (2) (2010) 307-309
Handbook of Advanced Ceramics, 2nd ed., Academic Press: Oxford, 2013, Chapter 11.2.3, pp 1149–1177
Archives of Materials Science and Engineering 34 (1) (2008) 52-56
Takeuchi, Recent progress in bulk glassy, nanoquasicrystalline and nanocrystalline alloys, Materials Science and Engineering A 375 – 377(2004) 16–30
Michalcová et al., Structure and mechanical properties of AlCr6Fe2Ti1 alloy produced by rapid solidification powder metallurgy method, International Journal of Materials Research 101 (2) (2010) 307-309
Handbook of Advanced Ceramics, 2nd ed., Academic Press: Oxford, 2013, Chapter 11.2.3, pp 1149–1177