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Online since: March 2025
Authors: J. Gottmyers Melwyn, C. Bhagyanathan, G. Sathiyaseelan, P. Srinath
Materials Science Forum.(2009).
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing,(2003).Available from: 10.1016/S0921-5093(03)00615-4 [16] Tibor, Kulcsar., Tamas, Kekesi.
Journal of Materials Processing Technology, 127(1), 2002. pp.96-106
Materials Science Forum, (2020).
Journal of Materials Processing Technology, 127(1),2002.
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing,(2003).Available from: 10.1016/S0921-5093(03)00615-4 [16] Tibor, Kulcsar., Tamas, Kekesi.
Journal of Materials Processing Technology, 127(1), 2002. pp.96-106
Materials Science Forum, (2020).
Journal of Materials Processing Technology, 127(1),2002.
Online since: October 2012
Authors: E. Haruman, Yupiter H.P. Manurung, M.A.R. Ridzwan, K.A. Sunhaji, Mohd Shahar Sulaiman, T. Ghalib, Mohd Redza Ridhwan, N.L. Robert, M.H. Hazwan
The material used for the simulation was low carbon steel with thickness of 4 mm.
Table 1: Chemical composition of material.
This research is financially sponsored by E-Science MOSTI Malaysia Project (Nr: 03-01-01-SF0355).
Bergheau: Prediction of welding residual distortions of large structures using a local/global approach, Journal of Mechanical Science and Technology, 21 (2007), p. 1700-1706
Pönisch: Application of weding simulation for chassis components within the development of manufacturing methods, Computational Materials Science, 28 (2003), p. 540-547
Table 1: Chemical composition of material.
This research is financially sponsored by E-Science MOSTI Malaysia Project (Nr: 03-01-01-SF0355).
Bergheau: Prediction of welding residual distortions of large structures using a local/global approach, Journal of Mechanical Science and Technology, 21 (2007), p. 1700-1706
Pönisch: Application of weding simulation for chassis components within the development of manufacturing methods, Computational Materials Science, 28 (2003), p. 540-547
Online since: February 2014
Authors: De Qi Xiong, Jun Song Han, Xin Lu Lv, Ya Li Gao, Xiang Gao
Materials and methods
Materials
Sea urchins were collected from Dalian Lvshun District Pacific farms.
Journal of Northwest University for Nationalities (Natural Science), 2011, 32(3): 70-74
Chinese Journal of Applied Ecology, 2003, 14(3): 409-412
Asian Journal of Ecotoxicology, 2012, 7(3): 305-311
Ecological Science , 2008, 27(2): 90-94
Journal of Northwest University for Nationalities (Natural Science), 2011, 32(3): 70-74
Chinese Journal of Applied Ecology, 2003, 14(3): 409-412
Asian Journal of Ecotoxicology, 2012, 7(3): 305-311
Ecological Science , 2008, 27(2): 90-94
Online since: December 2012
Authors: Xin Li, Chen Chen Yang, Jun Rui Wu, Miao Zhang, Xi Qing Yue
Materials And Methods
Materials.Natural fermentation sour pickled cabbages were collected from Daqing aera.
Journal of Nanjing Agricultural University.1991,vol 14(4),p. 99-103 [5] Q.F.
Journal of Microbiology .2003, vol 23(4):p.41-44 [6] H.
Jong, The effect of kimchi on production of free radicals and anti-oxidative enzyme activities in the brain of SAM[J].Journal of the Korean society of food science and nutrition.2002,vol 3l(1):p.117-123 [7] QIU He-yuan et al(Chemistry Department,Hanshan Teachers College,Chaozhou,Guangdong 521041);Contents of Nitrate and Nitrite of 9 Wild Vegetables (Invasive Plants) in Guangdong Province[J];Journal of Anhui Agricultural Sciences;2008-20 [8] N.
Acta. 1998, vol 359, p.173–183 [11] FAN Ya-na,GAI Ke (School of Chemistry and Chemical Engineering,Longdong University,Xifeng 745000,Gansu,China);The determination of the nitrite content of several pickled vegetables.Journal of Baoji University of Arts and Sciences Natural Science Edition.2008,p.11-1
Journal of Nanjing Agricultural University.1991,vol 14(4),p. 99-103 [5] Q.F.
Journal of Microbiology .2003, vol 23(4):p.41-44 [6] H.
Jong, The effect of kimchi on production of free radicals and anti-oxidative enzyme activities in the brain of SAM[J].Journal of the Korean society of food science and nutrition.2002,vol 3l(1):p.117-123 [7] QIU He-yuan et al(Chemistry Department,Hanshan Teachers College,Chaozhou,Guangdong 521041);Contents of Nitrate and Nitrite of 9 Wild Vegetables (Invasive Plants) in Guangdong Province[J];Journal of Anhui Agricultural Sciences;2008-20 [8] N.
Acta. 1998, vol 359, p.173–183 [11] FAN Ya-na,GAI Ke (School of Chemistry and Chemical Engineering,Longdong University,Xifeng 745000,Gansu,China);The determination of the nitrite content of several pickled vegetables.Journal of Baoji University of Arts and Sciences Natural Science Edition.2008,p.11-1
Online since: February 2014
Authors: Michal Prach, Roman Koleňák
Wettability of ceramic materials was dealt with in works [13,14].
In Journal of materials science 32, (1997), p. 6387–6393
Žúbor: Soldering of Ceramic Materials Using Ultrasonic Energy.
In Journal of Materials Engineering and Performance, Vol. 12, (8/2003), p. 383-389
In Journal of Materials Science, Vol. 27, (1992), p. 4536-4544
In Journal of materials science 32, (1997), p. 6387–6393
Žúbor: Soldering of Ceramic Materials Using Ultrasonic Energy.
In Journal of Materials Engineering and Performance, Vol. 12, (8/2003), p. 383-389
In Journal of Materials Science, Vol. 27, (1992), p. 4536-4544
Online since: February 2015
Authors: Rodrigo B. Canto, Francisco Antonio Rocco Lahr, André Luis Christoforo, Francisco Augusto Zago Marques, Carlos Eduardo G. da Silva, Túlio Hallak Panzera
International Journal of Composite Materials.
International Journal of Composite Material.
Construction and Building Materials.
Materials Research.
Materials Science & Engineering.
International Journal of Composite Material.
Construction and Building Materials.
Materials Research.
Materials Science & Engineering.
Online since: August 2013
Authors: Lei Lei Gao, Jin Zhong Zhang
Journal of Materials Processing Technology, Vol.211(2011) pp.1034-1043
Materials Science and Engineering: A, Vol.526( 2009)pp.84-92., H.H.
Materials Science and Engineering: A, Vol.527(2010)pp.3365-3372
Materials Science and Engineering: A, Vol.512(2009)pp.100-104
Materials Science and Engineering A, Vol. 206 (1996) 302-313.
Materials Science and Engineering: A, Vol.526( 2009)pp.84-92., H.H.
Materials Science and Engineering: A, Vol.527(2010)pp.3365-3372
Materials Science and Engineering: A, Vol.512(2009)pp.100-104
Materials Science and Engineering A, Vol. 206 (1996) 302-313.
Online since: August 2019
Authors: Sulaiman Shukri, Isao Watanabe, Budhy Kurniawan, Saidah Sakinah Mohd Tajudin, Dita Puspita Sari, Muhammad Redo Ramadhan, Mohamed Ismail Mohamed-Ibrahim, Irwan Ramli
Watanabe1,2,4,5,6,h
1Meson Science Laboratory, RIKEN Nishina Center, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan
2Muon Spin Relaxation Laboratory, Department Condensed Matter Physics, Graduate School of Science, Hokkaido University, Sapporo 060-8010, Japan
3Department of Physics, Faculty of Science, Universitas Cokroaminoto Palopo, Palopo 91921, Indonesia
4Computational Chemistry and Physics Laboratory, Universiti Sains Malaysia, Penang 11800, Malaysia
5USM-RIKEN International Center for Ageing Science, School of Distance Education, Universiti Sains Malaysia, Pulau Pinang 11800, Malaysia.
6Department Fisika, FMIPA, Universitas Indonesia, Depok 16424, Indonesia,
7Graduate School of Engineering and Science, Shibaura Institute of Technology, 307 Fukasaku, Minuma-Ku, Saitama City, Saitama 337-8570 Japan.
Summary We estimated the muon sites in YBa2Cu3O6 (YBCO6) which is the mother material for the Y-based high-Tc superconducting oxide.
This study is supported by the Bilateral Program of Japan Society for the Promotion of Science.
Adachi, μSR Studies on Magnetism in High-Tc Cuprates, Journal of the Physical Society of Japan 85, 091006 (2016)
Furthmüller, Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set, Computational Materials Science 6, 15 (1996)
Summary We estimated the muon sites in YBa2Cu3O6 (YBCO6) which is the mother material for the Y-based high-Tc superconducting oxide.
This study is supported by the Bilateral Program of Japan Society for the Promotion of Science.
Adachi, μSR Studies on Magnetism in High-Tc Cuprates, Journal of the Physical Society of Japan 85, 091006 (2016)
Furthmüller, Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set, Computational Materials Science 6, 15 (1996)
Online since: December 2008
Authors: Hans Maier, Harald Bolt, Marco Grattarola, Peter Worbs
The materials used for brazing were fine
grain graphite R 6710 plates from the German company SGL Group and the CFC NB31.
Series, 2004, Chapter 2.3 [3] Selection of copper alloys, Materials Assessment Report, ITER EDA Doc.
Nicholas: Journal of Materials Science Vol. 5 (1970), p. 149-155 [8] D.A.
Nicholas: Journal of Materials Science Vol. 8 (1973), p. 640-648 [9] F.
Deruyttere: Journal of Materials Science Vol. 22 (1987) p. 1-16 [10] J.
Series, 2004, Chapter 2.3 [3] Selection of copper alloys, Materials Assessment Report, ITER EDA Doc.
Nicholas: Journal of Materials Science Vol. 5 (1970), p. 149-155 [8] D.A.
Nicholas: Journal of Materials Science Vol. 8 (1973), p. 640-648 [9] F.
Deruyttere: Journal of Materials Science Vol. 22 (1987) p. 1-16 [10] J.
Online since: October 2015
Authors: Virgil Geamăn, Tibor Bedő, Irinel Radomir, Mihai Alin Pop
Development of light materials with height mechanical properties in the modern industries is one of the most critical issues.
Porous materials are light-weight structural materials with specific strength, heat emission effiency or filtering property.
Shue, Review Metallic foams: their production, properties and applications, Journal of Materials Science 18 (1983) 1899-1911
Lefebvre, The effect of microstructure on the permeability of metallic foams, Journal of Materials Science 42 (2007) 4372-4383
Dunand, Porous metals and metallic foams: Current status and recent developments, Advanced Engineerung Materials 10 (2008) 123-131
Porous materials are light-weight structural materials with specific strength, heat emission effiency or filtering property.
Shue, Review Metallic foams: their production, properties and applications, Journal of Materials Science 18 (1983) 1899-1911
Lefebvre, The effect of microstructure on the permeability of metallic foams, Journal of Materials Science 42 (2007) 4372-4383
Dunand, Porous metals and metallic foams: Current status and recent developments, Advanced Engineerung Materials 10 (2008) 123-131