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Online since: September 2012
Authors: Xu Jun Mi, Song Xiao Hui, Yan Yan Fu, Wen Jun Ye
Journal of Materials Engineering and Performace, Vol 16 (No. 6), 2005, p 681-685
[2] R.R.
Koss, Ed., The Materials Society, 1993, p 335-346 [3] Paul J.
Journal of Materials Engineering and Performance, Vol 14 (No. 6),2005,p. 799-811
Journal of Materials Engineering and Performance, Vol 16 (No. 6), 2005, p 788-791 [6] N.G.
Materials Science and Engineering A , Vol 490, 2008, p369–377 [7] N.G.
Koss, Ed., The Materials Society, 1993, p 335-346 [3] Paul J.
Journal of Materials Engineering and Performance, Vol 14 (No. 6),2005,p. 799-811
Journal of Materials Engineering and Performance, Vol 16 (No. 6), 2005, p 788-791 [6] N.G.
Materials Science and Engineering A , Vol 490, 2008, p369–377 [7] N.G.
Online since: September 2010
Authors: Levente Balogh, Tibor Berecz
Investigation of the Influence of Surface Strengthening Technology on
the Material of Railway Car Wheel Axles
Tibor Berecz1a
, Levente Balogh2b
1
Department of Material Science and Engineering, Technical and Economical University of
Budapest
1111 Budapest (Hungary), Bertalan Lajos utca 7.
2
Department of Materials Physics, Lóránd Eötvös University
1117 Budapest (Hungary), Pázmány Péter sétány 1/a.
This process is able to increase the strength of the surface and improves its fatigue properties as a result of the change in the microstructure of materials.
The nominal chemical composition of the base-materials of axles can be seen in Table 1.
Szabó: Microstructure Development of Creep Resistant Ferritic Steel during Creep; Materials Science and Engineering A 387-389C (2004) pp. 710-715
Ungár: Correlation between Strength and Microstructure of BallMilled Al-Mg Alloys Determined by X-ray Diffraction; Materials Science and Engineering A 387-389 (2004) pp. 343-347
This process is able to increase the strength of the surface and improves its fatigue properties as a result of the change in the microstructure of materials.
The nominal chemical composition of the base-materials of axles can be seen in Table 1.
Szabó: Microstructure Development of Creep Resistant Ferritic Steel during Creep; Materials Science and Engineering A 387-389C (2004) pp. 710-715
Ungár: Correlation between Strength and Microstructure of BallMilled Al-Mg Alloys Determined by X-ray Diffraction; Materials Science and Engineering A 387-389 (2004) pp. 343-347
Online since: April 2011
Authors: Chong Wang, Yan Sheng Jiand
Evans: Fracture in Ceramic Materials: Toughening Mechanisms, Machining Damage, Shock (Noyes Publications, Berkeley, California, 1984)
Pellacani: Journal of the European Ceramic Society Vol. 27 (2007), p. 1859
Laan: Journal of the American Ceramic Society Vol. 84 (2004), p. 1309
Buoso: Obtenção da Cordierita: Avaliação e Melhoria de Sua Resistência ao Choque Térmico, Master paper, Department of Metallurgy and Materials Engineering, Federal University of Rio Grande do Sul, Porto Alegre, Brazil (1996).
Lynch: Handbook of Materials Science Vol. 2 (CRC Press, Boca Raton, Florida, 1987)
Pellacani: Journal of the European Ceramic Society Vol. 27 (2007), p. 1859
Laan: Journal of the American Ceramic Society Vol. 84 (2004), p. 1309
Buoso: Obtenção da Cordierita: Avaliação e Melhoria de Sua Resistência ao Choque Térmico, Master paper, Department of Metallurgy and Materials Engineering, Federal University of Rio Grande do Sul, Porto Alegre, Brazil (1996).
Lynch: Handbook of Materials Science Vol. 2 (CRC Press, Boca Raton, Florida, 1987)
Online since: June 2020
Authors: Jiří Svoboda, Ehsan Saebnoori, Ondrej Chocholaty, Omid Khalaj, Hana Jirková
The Oxide Precipitation Hardened (OPH) steel is a new developed group of materials from Oxide Dispersion Strengthened (ODS) alloys which are well known advanced materials for high temperature properties.
For all materials, the passive regions end at less than 650 mV (vs SCE).
Pareja, "Microstructure and mechanical behavior of ODS and non-ODS Fe–14Cr model alloys produced by spark plasma sintering," Journal of Nuclear Materials, vol. 436, pp. 68-75, 2013
Weisenburger, et al., "Al-containing ODS steels with improved corrosion resistance to liquid lead–bismuth," Journal of Nuclear Materials, vol. 428, pp. 125-130, 2012
Zhang, et al., "The corrosion and stress corrosion cracking behavior of a novel alumina-forming austenitic stainless steel in supercritical water," Journal of Nuclear Materials, vol. 484, pp. 339-346, 2017
For all materials, the passive regions end at less than 650 mV (vs SCE).
Pareja, "Microstructure and mechanical behavior of ODS and non-ODS Fe–14Cr model alloys produced by spark plasma sintering," Journal of Nuclear Materials, vol. 436, pp. 68-75, 2013
Weisenburger, et al., "Al-containing ODS steels with improved corrosion resistance to liquid lead–bismuth," Journal of Nuclear Materials, vol. 428, pp. 125-130, 2012
Zhang, et al., "The corrosion and stress corrosion cracking behavior of a novel alumina-forming austenitic stainless steel in supercritical water," Journal of Nuclear Materials, vol. 484, pp. 339-346, 2017
Online since: April 2026
Authors: Ihab Ragai, Austin Clark, Philip Barnett, Elizabeth Mamros, Brian Young
Materials and Methodology
Materials.
Materials tested along with experimental joints are shown in Table 2.
[7] Mitsubishi Chemical Advanced Materials. (2025, January 11).
Journal of Thermoplastic Composite Materials, 32(9), 1242–1267. https://doi.org/10.1177/0892705718785676
Journal of Composites Science, 9(1), 6. https://doi.org/10.3390/jcs9010006
Materials tested along with experimental joints are shown in Table 2.
[7] Mitsubishi Chemical Advanced Materials. (2025, January 11).
Journal of Thermoplastic Composite Materials, 32(9), 1242–1267. https://doi.org/10.1177/0892705718785676
Journal of Composites Science, 9(1), 6. https://doi.org/10.3390/jcs9010006
Online since: August 2022
Authors: Olexandr Tarasenko, Maksym Kustov, Andriy Melnichenko, Oleksii Basmanov
Materials and Methods of Research
A cloud of gas spreads in the direction of the wind.
Journal of Achievements in Materials and Manufacturing Engineering, 91 1 (2018) 27–33
In Materials Science Forum, 1038 (2021) 361–373
Savchenko, Thermodynamic Study of Fire-Protective Material.
Materials Science Forum, 1038 (2021) 486–491.
Journal of Achievements in Materials and Manufacturing Engineering, 91 1 (2018) 27–33
In Materials Science Forum, 1038 (2021) 361–373
Savchenko, Thermodynamic Study of Fire-Protective Material.
Materials Science Forum, 1038 (2021) 486–491.
Online since: September 2013
Authors: Suhaimi Abdul-Talib, Mohd Faizal Ab Jalil, Ain Nihla Kamarudzaman, Chia Chay Tay
Materials and Methods
Preparation of Biosorbent.
Journal of Hazardous Materials, B135 (2006), p. 328–336
Basiru, “Removal of copper (II), iron (III) and lead (II) ions from Mono-component Simulated Waste Effluent by Adsorption on Coconut Husk, African Journal of Environmental Science and Technology, Vol. 4 (6) (2010), p. 382–387
Abdul-Talib, Pleurotus ostreatus spent mushroom compost as green biosorbent for nickel (II) biosorption., Water science and technology : a journal of the International Association on Water Pollution Research, Vol. 64 (12) (2011), p. 2425–2432
Ahmad, Equilibrium modeling and kinetic studies on the adsorption of basic dye by a low-cost adsorbent: coconut (Cocos nucifera) bunch waste., Journal of hazardous materials, Vol. 158 (1) (2008), p. 65–72.
Journal of Hazardous Materials, B135 (2006), p. 328–336
Basiru, “Removal of copper (II), iron (III) and lead (II) ions from Mono-component Simulated Waste Effluent by Adsorption on Coconut Husk, African Journal of Environmental Science and Technology, Vol. 4 (6) (2010), p. 382–387
Abdul-Talib, Pleurotus ostreatus spent mushroom compost as green biosorbent for nickel (II) biosorption., Water science and technology : a journal of the International Association on Water Pollution Research, Vol. 64 (12) (2011), p. 2425–2432
Ahmad, Equilibrium modeling and kinetic studies on the adsorption of basic dye by a low-cost adsorbent: coconut (Cocos nucifera) bunch waste., Journal of hazardous materials, Vol. 158 (1) (2008), p. 65–72.
Online since: July 2014
Authors: V. Krishnaraj, R. Prakash, G.S. Tarun, G.Denesh Kumar, M. Vijayagopal
Carbon fiber reinforced plastics (CFRP) are used as structural materials in automotive and aerospace industries because of its superior properties like high strength to weight ratio and high stiffness to weight ratio.
R.Teti [1] presented his work on conventional machining of different composite materials with various issues on tool wear.
In this paper cutting temperature and tool wear were taken as the important factors influencing the surface quality of the edge trimmed CFRP materials.
Teti: Machining of composite materials
Miranda, Machining optimisation in carbon fiber reinforced composite materials, Journal of Materials Processing Technology Vol.92 – 93 (1999) pp. 135 – 140
R.Teti [1] presented his work on conventional machining of different composite materials with various issues on tool wear.
In this paper cutting temperature and tool wear were taken as the important factors influencing the surface quality of the edge trimmed CFRP materials.
Teti: Machining of composite materials
Miranda, Machining optimisation in carbon fiber reinforced composite materials, Journal of Materials Processing Technology Vol.92 – 93 (1999) pp. 135 – 140
Online since: December 2011
Authors: Qi Hong Zhu, Hong Xia Xia
Materials and Methods
The tested materials.
Journal of Wuhan University of Science and Engineering, 23(4) (2010) 57~60 [5].
Effect of Cu2+ and Cd2+ on Activity and Fluorescence Spectrum of Catalase[J].Journal of Agro-environmental Science, 23(6) (2004)1086~1088
Effect of Low Temperature Stress on Physiological and Biochemical Characteristics of Hongfenjiaren[J].Jiangsu Journal of Agricultural Sciences, 24(5) (2008) 612~61 [20].
Copper Stress on the Growth and Some Physiological Parameters of Carex dispalata[J].Journal of Agro-Environment Science, 29(2) (2010) 264~269 [23].
Journal of Wuhan University of Science and Engineering, 23(4) (2010) 57~60 [5].
Effect of Cu2+ and Cd2+ on Activity and Fluorescence Spectrum of Catalase[J].Journal of Agro-environmental Science, 23(6) (2004)1086~1088
Effect of Low Temperature Stress on Physiological and Biochemical Characteristics of Hongfenjiaren[J].Jiangsu Journal of Agricultural Sciences, 24(5) (2008) 612~61 [20].
Copper Stress on the Growth and Some Physiological Parameters of Carex dispalata[J].Journal of Agro-Environment Science, 29(2) (2010) 264~269 [23].
Online since: November 2012
Authors: Zhen Zhang, Tian En Fan, Jian Hao Lin, Xiao Li Yu, Cheng Ji Weng
Factors influencing the reductive removal of Cr(VI) by zero-valent iron materials in the presence of humic acid
TianEn Fan, ChengJi Weng, JianHao Lin, XiaoLi Yu, Zhen Zhang *
School of Bioscience, Taizhou University, Linhai 317000, People’s Republic of China
* Corresponding author.
Liu: Environmental Science & Technology.
Zhang: Environmental Science, Vol. 3(1982). p. 38-42
Eisazadeh: Journal of Applied Polymer Science, Vol. 4(1994). p. 1964-1967
Wang: China Environmental Science, Vol. 24(2004). p. 76-80.
Liu: Environmental Science & Technology.
Zhang: Environmental Science, Vol. 3(1982). p. 38-42
Eisazadeh: Journal of Applied Polymer Science, Vol. 4(1994). p. 1964-1967
Wang: China Environmental Science, Vol. 24(2004). p. 76-80.