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Online since: January 2011
Authors: Horia Colan
The Romanian Academy published the first papers in 1956, 1957, 1958 in the specialized journals Studii si cercetări de metalurgie (Studies and Researches of Metallurgy) and Revue roumaine de metallurgie, lead by Prof.
The setting up, at the Technical University in Cluj-Napoca, of the first department of specialization in the materials science in Romania and of the first Faculty of Materials Science and Engineering (1990) brought new premises for research and intern and international cooperation in the domain of powders metallurgy.
(ceramic rings for face seals) at Intreprinderea de matrite si piese din fonta, Odorheiul Secuiesc (1985); - the technical line of ceramic insulators for high power diodes and thyristors, at Electroceramica Turda (1985) etc.
Important researches were also carried on at the University of Craiova, at Polytechnic Institute of Bucharest, at Polytechnic Institute of Timisoara (ceramics).
Some of them: sintered magnetic materials, contact materials, heavy alloys for high voltage switches, carbonated materials (electrographitic metal-graphite, bakelite - graphite, hard carbon), and ceramics.
The setting up, at the Technical University in Cluj-Napoca, of the first department of specialization in the materials science in Romania and of the first Faculty of Materials Science and Engineering (1990) brought new premises for research and intern and international cooperation in the domain of powders metallurgy.
(ceramic rings for face seals) at Intreprinderea de matrite si piese din fonta, Odorheiul Secuiesc (1985); - the technical line of ceramic insulators for high power diodes and thyristors, at Electroceramica Turda (1985) etc.
Important researches were also carried on at the University of Craiova, at Polytechnic Institute of Bucharest, at Polytechnic Institute of Timisoara (ceramics).
Some of them: sintered magnetic materials, contact materials, heavy alloys for high voltage switches, carbonated materials (electrographitic metal-graphite, bakelite - graphite, hard carbon), and ceramics.
Online since: May 2014
Authors: Mario Rosso, Béla Varga, Ildiko Peter
Liu, Microstructural coarsening of semi-solid aluminium alloys, Materials Science and Engineering: A 496 1-2 25 (2008) 439-446
Al-Samman, Superior light metals by texture engineering: Optimized aluminum and magnesium alloys for automotive applications, Acta Materialia 61 (2013) 818–843
Durinkova, M.Chapulova, Properties of recycled AlZn10Si8 cast alloy after annealing, Materials Engineering - Materiálové inžinierstvo 18 (2011) 1-7
Krajewski, Structural stability of the high-aluminium zinc alloys modified with Ti addition, Archives of Foundry Engineering 12/1 (2012) 61-66
Series Materials Science and Engineering 9 (2010) 1-8.
Al-Samman, Superior light metals by texture engineering: Optimized aluminum and magnesium alloys for automotive applications, Acta Materialia 61 (2013) 818–843
Durinkova, M.Chapulova, Properties of recycled AlZn10Si8 cast alloy after annealing, Materials Engineering - Materiálové inžinierstvo 18 (2011) 1-7
Krajewski, Structural stability of the high-aluminium zinc alloys modified with Ti addition, Archives of Foundry Engineering 12/1 (2012) 61-66
Series Materials Science and Engineering 9 (2010) 1-8.
Online since: March 2013
Authors: Zong Yuan Zeng, Shao Li Wu
The numerical simulation and design of the electrical heating system for electric conductive ultra-high-temperature-ceramics test specimen
Zongyuan Zeng1, a*, Shaoli Wu1, b
1Department of Engineering Mechanics, College of Resource and Environment Science,
Chongqing University, Chongqing 400030, China
(*Corresponding author.
Tel.+86-13650536510)*Isaac527@sina.com Keywords: ultra-high temperature ceramics; rapid electric heating; cooling facilities; numerical simulation Abstract.
Introduction Ultra-high temperature ceramics play an important role in ultra-high temperature fabric ceramics materials, ultra-high temperature composite materials, fireproofing materials, nuclear control materials and thermal protective layer in high speed near space vehicle.
International Journal of Mechanical Sciences 49, 2007, 379–391.[2012-05-22].www.elsevier.com/locate/ijmecsci
High-strength zirconium diboride-based ceramics.
Tel.+86-13650536510)*Isaac527@sina.com Keywords: ultra-high temperature ceramics; rapid electric heating; cooling facilities; numerical simulation Abstract.
Introduction Ultra-high temperature ceramics play an important role in ultra-high temperature fabric ceramics materials, ultra-high temperature composite materials, fireproofing materials, nuclear control materials and thermal protective layer in high speed near space vehicle.
International Journal of Mechanical Sciences 49, 2007, 379–391.[2012-05-22].www.elsevier.com/locate/ijmecsci
High-strength zirconium diboride-based ceramics.
Online since: February 2012
Authors: Ping Bai
Therefore, rebounded water hydraulic transmission is one of popular issues of international fluid power transmission techniques.
After ceramization of the end face and inner-hole of floating plate, Al2O3 thickness of ceramic coating was 130 m.
[5]Ji Luo.Design and Study of Internal Gear Pump Used in Water Hydraulics[J]China Mechanical Engineering.
[6]PingBAI.Experiment research on new ceramic technique for water hydraulic components[J]Machine Tool & Hydraulics.
Application of microarc oxidation to high-pressure gear pump [J]JOURNAL OF HARB IN INSTITUTE OF TECHNOLOGY.
After ceramization of the end face and inner-hole of floating plate, Al2O3 thickness of ceramic coating was 130 m.
[5]Ji Luo.Design and Study of Internal Gear Pump Used in Water Hydraulics[J]China Mechanical Engineering.
[6]PingBAI.Experiment research on new ceramic technique for water hydraulic components[J]Machine Tool & Hydraulics.
Application of microarc oxidation to high-pressure gear pump [J]JOURNAL OF HARB IN INSTITUTE OF TECHNOLOGY.
Online since: May 2020
Authors: Xian Zheng Gong, Li Wei Hao, Yu Liu, Xiao Qing Li, Feng Gao, Ning Liu, Yan Zheng
Ceramic.
Life cycle carbon footprint comparing with Portland cement, Journal of Cleaner Production. 131 (2016) 20-27
Comparative life cycle assessment of ceramic brick, concrete brick and cast-in-place reinforced concrete exterior walls, Journal of Cleaner Production. 137 (2016) 70-82
(In Chinese) [22] Martina Pini·Anna Maria Ferrari·Rita Gamberini·Paolo Neri·Bianca Rimini, Life cycle assessment of a large, thin ceramic tile with advantageous technological properties, The International Journal of Life Cycle Assessment. 19 (2014) 1567- 1580
Ouellet-Plamondon, Life cycle assessment of emergent masonry blocks, Journal of cleaner production. 171 (2018) 1622-1637
Life cycle carbon footprint comparing with Portland cement, Journal of Cleaner Production. 131 (2016) 20-27
Comparative life cycle assessment of ceramic brick, concrete brick and cast-in-place reinforced concrete exterior walls, Journal of Cleaner Production. 137 (2016) 70-82
(In Chinese) [22] Martina Pini·Anna Maria Ferrari·Rita Gamberini·Paolo Neri·Bianca Rimini, Life cycle assessment of a large, thin ceramic tile with advantageous technological properties, The International Journal of Life Cycle Assessment. 19 (2014) 1567- 1580
Ouellet-Plamondon, Life cycle assessment of emergent masonry blocks, Journal of cleaner production. 171 (2018) 1622-1637
Online since: February 2022
Authors: Artem I. Lizunov, Saeed Kamali, Zhanna V. Eremeeva, Yury V. Konyukhov
Application of Nano-Chromium Oxide for Production of Boron Carbide Ceramics
Zhanna V.
Chukhlanov, Light heat-resistant polymer concretes based on oligooxyhydridesilmethylensiloxysilane and hollow spherical fillers, Magazine of Civil Engineering, 90 (2019) 37-46
Structure and properties of two-layer coatings, Surface Engineering and Applied Electrochemistry, 54(6) (2018) 535-545
Gorokhovsky, Synthesis of the hollandite-like copper doped potassium titanate high-k ceramics, Ceramics International, (2020) DOI: 10.1016/j.ceramint.2020.10.158
Permyakova, Influence of etching and annealing on evolution of surface structure of metallic glass, Proceedings of SPIE - The International Society for Optical Engineering, 5400 (2004) 265-268
Chukhlanov, Light heat-resistant polymer concretes based on oligooxyhydridesilmethylensiloxysilane and hollow spherical fillers, Magazine of Civil Engineering, 90 (2019) 37-46
Structure and properties of two-layer coatings, Surface Engineering and Applied Electrochemistry, 54(6) (2018) 535-545
Gorokhovsky, Synthesis of the hollandite-like copper doped potassium titanate high-k ceramics, Ceramics International, (2020) DOI: 10.1016/j.ceramint.2020.10.158
Permyakova, Influence of etching and annealing on evolution of surface structure of metallic glass, Proceedings of SPIE - The International Society for Optical Engineering, 5400 (2004) 265-268
Online since: September 2013
Authors: Chuan Zhen Huang, Jun Wang, Zeng Wen Liu, Peng Yao, Dun Liu, Hong Tao Zhu
Study on the effect of standoff distance on processing performance of alumina ceramics in two modes of abrasive waterjet turning patterns
Dun Liua, Chuanzhen Huangb , Jun Wangc, Hongtao Zhud, Peng Yaoe , ZengWen Liuf
Center for Advanced Jet Engineering Technologies (CaJET), Key Laboratory of High-efficiency and Clean Mechanical Manufacture (Ministry of Education), School of Mechanical Engineering, Shandong University, Jinan, China, 250061
aliudunsdu@gmail.com, bchuanzhenh@sdu.edu.cn, cjun.wang@unsw.edu.au, dhtzhu@sdu.edu.cn, eyaopeng@sdu.edu.cn, fzw-liu@sdu.edu.cn
Keywords:Depth of penetration, Standoff distance, AWJ turning, Surface roughness
Abstract.
Alumina (Al2O3) ceramics is an important technical oxide ceramic material and has wide applications.
Wang: Abrasive Waterjet Machining of Engineering Materials (Trans Tech Publications, Switzerland, 2003) [4] D.S.Srinivasu, D.A.Axinte, P.H.Shipway, et al: Int.
Babu: International Journal of Machining and Machinability of Materials Vol. 3(2008), p. 120 [7] Bostjan Jurisevic, Daniel Brissaud, Mihael Junkar: Int.
Manu Vol.32(1992), p 725-736 [10] Faber K, Oweinah H:Poceedings of 10th International symposium, Amsterdam, 1991, p365-382 [11] J.
Alumina (Al2O3) ceramics is an important technical oxide ceramic material and has wide applications.
Wang: Abrasive Waterjet Machining of Engineering Materials (Trans Tech Publications, Switzerland, 2003) [4] D.S.Srinivasu, D.A.Axinte, P.H.Shipway, et al: Int.
Babu: International Journal of Machining and Machinability of Materials Vol. 3(2008), p. 120 [7] Bostjan Jurisevic, Daniel Brissaud, Mihael Junkar: Int.
Manu Vol.32(1992), p 725-736 [10] Faber K, Oweinah H:Poceedings of 10th International symposium, Amsterdam, 1991, p365-382 [11] J.
Online since: September 2013
Authors: Haji Aripin, Endangsusilowati S. Prima, Inyoman Nyoman Sudiana, Seitaro Mitsudo, Sliven Sabchevski, Saboru Sano, Hikamitsu Kikuchi
Plasma Physics and Engineering, Institute of Electronics of the Bulgarian Academy of Sciences, Bulgaria.
Pattabhi: E-journal of Chemistry, Vol. 5 (2008), p. 233
Yusuf: Global Journal of Environmental Research, Vol. 4 (2010), p. 127
Sabchevski: The Open Materials Science Journal, Vol. 4 (2010), p. 117
Idehara: Indonesian Journal of Material Science, Vol. 11 (2010), p. 79
Pattabhi: E-journal of Chemistry, Vol. 5 (2008), p. 233
Yusuf: Global Journal of Environmental Research, Vol. 4 (2010), p. 127
Sabchevski: The Open Materials Science Journal, Vol. 4 (2010), p. 117
Idehara: Indonesian Journal of Material Science, Vol. 11 (2010), p. 79
Online since: November 2015
Authors: Paula Łada, Katarzyna Konopka, Marta Bartnik, Aleksandra Miazga
The Size and Shape Analysis of Titanium Particles in Composites from ZrO2 – Ti System
ŁADA Paulaa,*, BARTNIK Martab, MIAZGA Aleksandrac,
KONOPKA Katarzynad
Faculty of Materials Science and Engineering, Warsaw University of Technology, Woloska 141 St., Warsaw, Poland
apaula.lada@inmat.pw.edu.pl, bbartnik.marta@gmail.com, caleksandra.miazga86@gmail.com, dka.ko@inmat.pw.edu.pl
Keywords: ceramic-metal composite, zirconium oxide, titanium, stereology
Abstract.
Sene, Electrical resistivity of ceramic-metal composite materials: Application in crucibles for induction furnaces, Ceramics International 26 (1999) 325-335 [7] J.S.
Moya at al., Mullite-refractory metal (Mo, Nb) composites, Journal of the European Ceramic Society 28 (2008) 479-491 [8] S.
Suresh, Functionally graded metals and metal-ceramic composites: Part 1 Processing, Internationals Materials Reviews 6 vol. 40 (1995) 239-265 [10] K.
Kurzydłowski, Ceramic matrix composites with gradient concentration of metal particles, Journal of the European Ceramic Society 27 (2007) 651-654 [12] K.
Sene, Electrical resistivity of ceramic-metal composite materials: Application in crucibles for induction furnaces, Ceramics International 26 (1999) 325-335 [7] J.S.
Moya at al., Mullite-refractory metal (Mo, Nb) composites, Journal of the European Ceramic Society 28 (2008) 479-491 [8] S.
Suresh, Functionally graded metals and metal-ceramic composites: Part 1 Processing, Internationals Materials Reviews 6 vol. 40 (1995) 239-265 [10] K.
Kurzydłowski, Ceramic matrix composites with gradient concentration of metal particles, Journal of the European Ceramic Society 27 (2007) 651-654 [12] K.
Online since: December 2007
Authors: Li Zhi Gu, T. Lee
Vantadori: International Journal of Solids and structures,
Vol.41 (20) (2004), pp. 5499-5515
Hashiguchi: International Journal of Solids and structures, Vol.41 (20) (2004), pp. 5541-5563
Mroz: International Journal of Solids and structures, Vol.42 (15), (2005), pp.4436-4467
Saleh: International Journal of Solids and structures, Vol.42 (15)(2005), pp.4484-4493
Ding: Key Engineering Materials, Vol. 259-260 (2004), pp. 456-461.
Hashiguchi: International Journal of Solids and structures, Vol.41 (20) (2004), pp. 5541-5563
Mroz: International Journal of Solids and structures, Vol.42 (15), (2005), pp.4436-4467
Saleh: International Journal of Solids and structures, Vol.42 (15)(2005), pp.4484-4493
Ding: Key Engineering Materials, Vol. 259-260 (2004), pp. 456-461.