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Online since: August 2014
Authors: Yang Yang, Qi Jie Zhai, Zheng Yan Shen, Yun Hu Zhang, Chang Jiang Song, Wei Lu
Material Science Engineer A , 2004;375-377: 581-584
Material Science Engineer A, 2000;279 (1): 16-24(9)
Material Science R, 1989;4 (1):1-40
Metallurgical and Materials Transactions A, 2007;38(9): 1991-2000
Material Science Engineer, 1984;65(1): 75-83
Online since: August 2014
Authors: Guo Zheng Kang, Gui Ling Yan, Hong Wang, Zhou Chen
Journal of Materials Science. 39 (2004): 365-367
Materials Science and Engineering A .517 (2009) :180–184
Materials Science and Engineering A. 497, (2008): 408–415
Journal of Solid Mechanics and Materials Engineering. 3 (2009): 425-439
Materials for Mechanical Engineering. 30 (2006): 14-17.
Online since: September 2013
Authors: Guo Lin Wang, Wen Xian Tang, Jian Zhang, You Su Wei
Establishment of the materials library.
Journal Wuhan University of Technology (Materials Science Edition), 2013, 28(1): 150-156
MATERIALS SCIENCE & TECHNOLOGY . 2012, 20(2): 16-22
MATERIALS SCIENCE & TECHNOLOGY. 2012, 20(4): 20-25
Journal of Central South University (Science and Technology). 2012, 43(11): 4300-4305.
Online since: August 2013
Authors: Shi Gang Xin, Qing Huang, Cui Tian Guo
Electroless nickel plating on ME20M Magnesium Alloys with an Environmentally-friendly Pretreatment GUO Cui-Tian 1, a, XIN Shi-Gang 1,b and HUANG Qing3,c 1 Key Laboratory of Inorganic Coating Materials, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China actguo@student.sic.ac.cn, bsgxin@mai.sic.ac.cn, chq100121216@hotmail.com Keywords: magnesium; electroless nickel plating; Ni-P alloy; pretreatment; corrosion resistance Abstract.
Luan: Journal of Alloys and Compounds, 2002, 336(1-2): 88-113
Ebert: Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2001, 302(1): 37-45
Sepulveda: Corrosion Science, 2012, 55: 194-200
Paydar: Materials & Design, 2010, 31(6): 3095-3099
Online since: January 2012
Authors: Jun Zhang, Yan Hui Guo
Preparation and Characterization of Large-sized ADM Monocrystals ZHANG Jun1,a*, GUO Yanhui 2,b 1,2 Chemical Engineering & Pharmaceutics School, Henan University of Science & Technology, Luoyang 471003, P.R.China; aemail: j-zhang@126.com, bemail: win4553@yahoo.com.cn Keywords: ammonium dimolybdate, monocrystal, preparation, characterization Abstract: Non-agglomerated ammonium dimolybdate (ADM) monocrystals with large diameter and high dispersion has been prepared through reaction-evaporation-crystallization (REC) process using ammonium tetramolybdate and ammonia solution as reactants.
Therefore, the above characteristics of monocrystal ADM have made it the preferred selection for the raw material in the production of metal molybdenum powder of high quality.
Non-agglomerated ADM monocrystals with large diameter and high dispersion were prepared through REC united process using low priced and easily obtained ammonium tetramolybdate and ammonia solution as starting materials.
Acknowledgements This work has been financially supported by the National Natural Science Foundation of China (No. 21076063), Luoyang Key Lab Construction Project (1003016A), and Luoyang Municipal Science and Technology Plan Project (1101030A).
Wang, J.Han, China Molybdenum Industry, 27 (1)(2003)43-45 [2] Z.C.Xu, P.Zhang, China Molybdenum Industry, 25 (4)(2001)54-57 [3] J.Han,China Molybdenum Industry, 32 (2)(2008) 55-57 [4] W.C.Li,Chinese Journal of Nonferrous Metals, (4) (2007)41-48 [5] J.L.Tang, L.X.Tang, J.H.Luo, China Molybdenum Industry, 34 (4)(2010) 21-22 [6] X.A.Zhang, W.J.Wen, M.Y.Hui, Science in China (B) , 37 (2)(2007)156-163 [7] Q.Q.Liu, J.Yang, X.J.Sun, Journal of Inorganic Materials, 22 (1)(2007)70-74 [8] B.Z.Zhu, L.Y.Yu, X.Y.Shang, Jounal of Lanzhou University, 33 (3) (1997)72-76 [9] W.M.Shaheen, Journal of Thermal Analysis and Calorimetry, 59(2000) 961-970
Online since: February 2011
Authors: Wei Gong, Chun Zhang, Jie Yu, Ying He, Li He
Introduction Microcellular polymer materials have attracted much attention because of their scientific interest and potential applications.
Experimental Materials polypropylene (PP, T30S) was purchased from Peking Yanshan Petrochemical Corporation.
Journal of Applied Polymer Science, Vol. 156-166(2007), p. 75 [2] M.
Journal of Chong Qing University In Chinese.
Journal of Materials Science, Vol. 2397-2401(1997), P. 32 [12] N.
Online since: October 2014
Authors: Zainovia Lockman, Mary Donnabelle Balela, Christian Mark Pelicano
Zinc Oxide Nanostructures Formed by Wet Oxidation of Zn Foil Christian Mark Pelicano1,a, Zainovia Lockman2,b, Mary Donnabelle Balela1,c 1Department of Mining, Metallurgical and Materials Engineering, University of the Philippines 1101 Diliman, Quezon City, Philippines 2School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia 14300 Nibong Tebal, Penang, Malaysia acopelicano@upd.edu.ph, bzainovia@eng.usm.my, cmdlbalela@gmail.com Keywords: Wet Oxidation, Zinc Oxide Nanostructures Abstract.
Acknowledgment The authors would like to thank the Department of Science and Technology-Engineering Research and Development for Technology (DOST-ERDT) for the research assistance.
Liu et al., “A comprehensive review of ZnO materials and devices,” Journal of Applied Physics, 98 (2005) 1–103 [3]S.
,“Leaf-like ZnO nanostructure and its excellent photocatalytic activity”, Materials Letters, 122 (2014) 1–4 [10] Gang Meng et al.,”One step synthesis of vertically aligned ZnO nanowire arrays with tunable length”, Applied Surface Science, 256 (2010) 6543–6549 [11] H.
,“Comprehensive study of ZnO nanostructures grown using chemical bath deposition: from growth to application”, Smart Nano-Micro Materials and Devices, 8204 (2011) 10 [18] Ling Ding et al.
Online since: May 2012
Authors: Huan Huan Nie, Yuan Long Yang, Yuan Yao, Jing Shu Zhang
The composite slab with sandwich bottom panel is fabricated by filling with lightweight materials into the composite slab with hollow bottom panel.
Noorzaei: Construction and Building Materials Vol. 24 (2010), p. 2604-2611 [13] 06SG439-1 (2006).
Chang: Journal of Hefei University of Technology(Natural Science) Vol. 32 (2009), p. 1219-1223.
Jiang: Journal of Central South University of Technology(Natural Science) Vol. 1 (2004), p.147-150.
Wu: Journal of Shaoyang University(Science and Technology) Vol. 3 (2006), p. 63-65.
Online since: May 2011
Authors: Rui Bo Ren, Li Tao Geng, Wen Yang Qi
However, most researches on dynamic response of saturated asphalt pavement considered all pavement structural layer as porous materials for analysis convince[5-7].
In the 3D model, asphalt layers are regard as saturated porous materials, while other structural layers are taken as elastic materials.
[3] N.Kringos, A.Scarpas: International Journal of Solids and Structures.
[7] Luo Zh., Zhou Zh., Zheng J., Ling J.: Journal of Changsha Communications University.
[11] Hu X., Sun L.: Journal of Changan University (Natural Science Edition).
Online since: November 2012
Authors: Yue Fang Chen, Si Yu Xu, Hao Guo, Hao Xu, Xiao Yan Qu, Li Xia Cao
Adsorption is an optimal method by using lipophilic materials to adsorb oil in the waste water.
Materials and Methods Materials and reagents Rice Husk: Rice husk was purchased from a farm in Xuzhou, Jiangsu province.
Journal of Hazardous Materials, 2009, 162: 312-320
Journal of Hazardous Materials, 2008, 153: 222-1234
Journal of Hazardous Materials, 2007, 141: 77-85
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