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Online since: February 2014
Authors: Mohd Faisal Taha, Ahmad S. Rosman, Maizatul Shima Shaharun
Hoding: Materials Chemistry and Physics Vol. 78 (2002) p 132-137
Shaharun: Journal of Applied Sciences Vol 10(12) (2010), p 1060-1067
Shao: Journal of Hazardous Materials Vol. 171 (2009), p 693-703
Chi: Journal of Hazardous Materials Vol. 187 (2011), p 182-189
Sikawar: Journal of Colloid and Interface Science Vol. 303 (2006), p 80-86.
Online since: October 2013
Authors: Shuang Fei Wang, Jia Chuan Chen, Qin Wu, Bao Bin Wang, Xin Yu Wang
Materials and methods 2.1 Experimental apparatus and wastewater Simulation of Cr6 + wastewater: Concentration of 30, 50, 100, 150, 200, 300 mg/l, 5g/l.
The concentration of the water was 5g/l and the material of the elctrode was iron-titanium.
References [1] Zhang Shilei,Jin Yinjia and Tong Meiping, Industrial Water Treatment ,2012-10,32(10):p.19-22. in chinese [2] Ma Jing-huan,Li Qiang,Pei Xiao-jun and Xiang Jun, Journal of Tianjin University of Science & Technology, Vol.32No.10Oct,2012:p.54-57. in chinese [3] Cocke D L,Mollah MYA and Morkovsky P, Journal of Hazardous Materials,2004:p.199-210
[4] Chu Jinyu, Shi Xingmei, Du Yansheng and Ma Fang, Journal of Jiangsu University ( Natural Science Edition), Vol. 32 No.1 ,2011,1(3),p.103-106 .in chinese [5] Soto-Salazar C,Escobar C andToral M I.
Journal of Hazardous Materials,2006,81(4):p.384-391 [6] Zhu Xiaomei , Sun Bing, Zhao Na and NA Haizhen, Journal of Hebei University ( Natural Science Edition), Vol.30 No.5Sep. 2010,p.538-542. in chinese [7] Peter K Holt,Geoffrey W Barton,Cynthia and Mitchell.Chemosphere,2005,59: p.355-367
Online since: March 2010
Authors: Jin Gou Ji, Xiao Yu Yuan, Zhi Ning Xia, Peng Peng Liu, Ji Da Chen
Experimental Materials and equipments.
Characterization of materials.
Zhang: Journal Biomedial Materials Research. 2002, Vol.61 (2002),p. 1
Mou, et al .: Functional Materials.
Chen: Materials Journal.
Online since: January 2013
Authors: Nesar Merah, Muneer Al-Qadhi
Materials and Processing Methods Materials.
Singh: Journal of Material Science Vol. 41 (2006), p. 2219
Rhee: Materials Science and Engineering Part A Vol. 448 (2007), p. 264
Jeelani, Materials Science and Engineering A Vol. 527 (2010), p. 7920
Hujjati: Materials Science and Engineering A Vols. 445-446 (2007), p. 467
Online since: March 2008
Authors: Yu Quan Chen, Er Liang Liu, Li Min Shi
With widely using difficult-to-process materials, such as the stainless steel and SnSb alloy, the magnetic-electrochemical compound polishing process has been paid much more attention by some Japanese and Chinese researchers.
Introduction Compound polishing methods are now being studied and applied in processing parts of materials that are difficult-to-process[1].
Fig.1 The charged particle in electromagnetic field Especially, some researchers have put forward the magnetic-electrochemical compound polishing process to difficult-to-process materials parts such as stainless steel, SnSb alloy.
Chen: Journal of Materials Processing Techology, Vol. 129 (2002) No.11, pp. 310-314
Lui: Journal of Materials Processing Technology, Vol. 95 (1999) No.4, pp.191-200
Online since: January 2001
In second chapter, ro le of non-stoichiometry and soft chemistry in the preparation of advanced catalysts have been discussed with examples of different classes of ~atalytic materials based on complex oxides.
In the next chapter layered nano-architectures between cationi c and anionic materials using many functional molecules such as polyions, proteins, lipid membranes were studied.
He worked in the Metallurgy Dept. of Massachusetts Institute of Technology USA as a visiting scientist and was invited to be Vi.siting Professor in Materials Science, Tohoku University, Sendai: Visiting Professor in Solid State Physics, Australian National University, Canberra and as National Visiting Professor of Materials Science by Government of Japan.
He is the editor of Diffusion Processes in Nuclear Materials published by Elsevier Science Publishers B.V., Amsterdam.
He is also editor of Surface Coatings for Advanced Materials and Lasers in Materials Science published by Trans Tech Publications Ltd., UetikonZuerich and Special Defects in Semi-Conducting Materials published by Scitec Publicati ons, Uetikon-Zuerich.
Online since: August 2014
Authors: Xian Zai Yan, Chun Rong Wang, Li Li Yu, Rong Fang
As a new generation of nanocomposite materials, signify an emerging field in the frontiers of materials science and nanotechnology[1, 2].
Reference [1] R K Mishra, K Ramasamy, and S M Lim: Journal of Materials Science: Materials in Medicine.Vol.(2014), p. 1-15
[2] L M Popescu, R M Piticescu, and A Antonelli: Journal of Materials Science: Materials in Medicine.Vol.24( 2013), p. 2491-2503
[8] Y Djaoued, S Badilescu, and P V Ashrit: Journal of Sol-Gel Science and Technology.Vol.24( 2002), p. 247-254
[9] X Ma, J Yu, N Wang: Macromolecular Materials and Engineering.Vol.292( 2007), p. 723-728
Online since: June 2014
Authors: Zhe Li, Shi Lei
Picture 3 Picture 4 Construction cost and material property The construction cost is composed of labor cost and material cost.
The main material of the traditional residence of Dong minority in Western Hunan is timber.
Architectural Journal, 1995 (5): 42-44
Architectural Journal, 2002 (4): 45-47
Architectural Journal, 2004 (3): 32-35.
Online since: January 2014
Authors: Grzegorz Junak, Marek Cieśla, Jerzy Herian
The impact of pearlite morphology on the cracking characteristics and basic mechanical properties of materials was analyzed.
In the materials fracture toughness tests at room temperature it has been found that KIc value for hot rolled material is lower by 27% in relation to the material after isothermal annealing.
Aniołek, Modelling of structure and properties of pearlitic steel and abrasive wear of the turnout frog in the cyclic loading conditions, Journal of Achievements in Materials and Manufacturing Engineering 49/1 (2011) 71-81
Aniołek, The structure and properties of steel with different pearlite morphology and its resistance to abrasive wear, Archives of Materials Science and Engineering 31/2 (2008) 83-86
Khaira, Abrasive wear behaviour of a high carbon steel: effects of microstructure and experimental parameters and correlation with mechanical properties, Materials Science and Engineering A 343 (2003) 235-242.
Online since: September 2013
Authors: Yun De Shen, Zhen Zhe Li, A. Hui Yuan, Tai Hong Cheng
Acknowledgements This material is based upon works funded by Zhejiang Provincial Natural Science Foundation of China under Grant No.
Journal of Applied Mechanics Vol. 70 (2002), p. 32
Advanced Materials Research Vol. 287-290 (2011), p. 1486
Aerospace Science and Technology Vol. 7 (2003), p. 298
Journal of Thermal Science and Technology Vol. 2 (2007), p. 123
Showing 14531 to 14540 of 97103 items