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Online since: May 2011
Authors: Jian Hua Liu, Kyaw Soe, Mei Yu, Song Mei Li
Corrosion Behavior of 10CrNiCu Steel Influenced by Thiobacillus Ferrooxidans Kyaw Soe1, a, Songmei Li1, b, Jianhua Liu1, c, Mei Yu1, d 1Key Laboratory of Aerospace Materials and Performance (Ministry of Education), School of Materials Science and Engineering, Beihang University, Beijing 100191, China ajuesuo@gmail.com, bsongmei_li@buaa.edu.cn, cliujh@buaa.edu.cn, dyumei@buaa.edu.cn Keywords: Microbiologically influenced corrosion; Thiobacillus Ferrooxidans; 10CrNiCu Steel; Nyquist plot Abstract.
Materials and methods Samples preparation.
Tano: Journal of Bacteriology, Vol.170 (1998), p. 5956
[20] Congmin Xu, Yaoheng Zhang, Guangxu Cheng and Wensheng Zhu: Materials Science and Engineering A, Vol.443 (2007), p. 235
Fang: Materials Characterization, Vol.48 (2002), p. 195.
Online since: June 2015
Authors: Francesco La Via, Massimo Camarda, Ruggero Anzalone, Stefania Privitera, Nicolò Piluso
Materials Science Forum, 740, 167 (2013). ].
Solid State Devices and Materials, Tokyo, pp. 227 (1987). ] or “chloride-based chemistries” [[] D.
Journal of vacuum science and technology B, 26, 4,1504 (2008). ] and point like defects[[] J.
Journal of the electrochemical society 159, 3, R46 (2012). ].
Materials Science Forum Vols. 527-529, 163 (2006). ].
Online since: June 2017
Authors: Jian Tao Wu, Xing Fu Chen, Jun Tao Li, Hao Ran Liu, Yang Li, Pei Jia Li
Pei, Study on the Microstructure and Properties of K465 Alloy, Journals of Northeastern University, Vol 129, No.8 [2] F.
M, Modes of Grain Selection in Spiral Selector during Directional Solidification of Nickle-base Superalloys, Material Science and Technology, 214-220, 28-3, 2012 [5] L.
Askeland, The Science and Engineering of Materials, University of missouri, ISBN:0-534-55396-6, USA (2005) [9] A.D.
Rollet, Abnormal Grain Growth and Texture Development, ISSN 0543-5846, Materials Science & Engineering: Carnegie Mellon University [10] G.X.
Rong, The Fundamentals of Material Science, ISBN: 798-7-313-02480-0, Shanghai Jiaotong University Publishing House (2006)
Online since: December 2012
Authors: Chun Long Wang, Xue Min Zhang, Lin Jun Wang, Liang Jiao, Jin Ping Li
Their result showed that water molecule could get to the interface of liquid CO2 along the material surface can promote the formation process.
Zhu: Journal of Petroleum Science and Engineering.
Wang: Journal of Jilin University.
Tang: Journal of Process Engineering.
Guo and R.Z.Wang: Journal of Colloid and Interface Science.
Online since: August 2011
Authors: Wen Xian Wang, Ya Qiong Ge
Experimental Study on Laser Surface Cladding of Ni60 alloy on AZ31B Magnesium Alloy Yaqiong Ge1, a, Wenxian Wang2,3,b 1 College of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan, 030024, China 2 College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan, 030024, China 3 Key Laboratory of Interface Science and Engineering in Advanced Materials of Taiyuan University of Technology Ministry of Education, Taiyuan, 030024, China ajoan1028@163.com, bwwx960@126.com Keywords: AZ31B magnesium alloy, Ni60 laser cladded layer, Microhardness, Wear resistance, Corrosion resistance Abstract: In order to improve the corrosion and wear resistance of AZ31B magnesium alloy, Ni alloy cladding layer which had no crack and hole on AZ31B magnesium substrate was created by a 5kW continuous wave CO2 laser.
Introduction Owing to the advantages of low density, rich in natural resources, free-pollution, recirculation, high specific rigidity and strength and well thermal conduction etc., magnesium alloy become the third largest metallic engineering materials after steel and aluminum materials, and is titled as ‘the new-style and green industry structure materials’ for the 21st century[1,2].
With the well-known infiltration, corrosion resistance, wear resistance, self-lubrication under high temperature and moderate price [4], Ni alloy powder is the most extensive used cladded materials.
Experimental materials and procedures Experimental materials.
Journal of Rare Metal Materials and Engineering, Vol. 34(2005), p.701-704(In Chinese)
Online since: December 2012
Authors: Bin Li, Bing Qi, Liang Rui Tang, Zhong Miao Kang
The vast majority of the world leaves glass fiber reinforced plastic (FRP) composites manufacturing, the main consideration fiberglass / composite other materials do not have some advantages.
Carbon fiber composite material depends on the price of carbon fiber, carbon fiber composite materials, performance is significantly better than glass fiber composites, but the price is also the most expensive.
Progress is also designed composite blades for wind turbine technology, materials, processes, equipment, technical progress etc..
Advanced Materials Research, Manufacturing Process Technology. (2011), p. 2050-2053
International Journal of Energy Research Special Issue: Green Energy Systems Volume 35, Issue 15, (2011), p.1360–1370
Online since: March 2015
Authors: Jian Bo Xiong, Chun Lin Deng
Journal of Southeast University, 11 (36) (2006)7-14
Journal of Portland. 38 (11)(2010) 2218-2224
Materials Review, 17 (9) (2003)48-50
China Journal of Highway and Transport, 4(2007)
Journal of building materials, 8 (2) (2005)134-138
Online since: July 2016
Authors: Xian Yan Zhou, Dan Zeng, Lei Cao
A Statistical Theory of the Strength of Materials, Proc.
[5] Haibin Zhou, Haiqing Ren, Jianxiong Lü et al, Size Effect of Length on Flexural Strength of Chinese Fir Dimension Lumber Used in Wood Structure, Journal of Building Materials, Vol.12, No.4, 2009, pp.501-504
[6] Haibin Zhou, Xiuqin Luo, Xiu Zhao et al, Effect of Size on Ultimate Compression Parallel to Grain of Visually-Graded Chinese Larch Dimension Lumber, Journal of Building Materials, Vol. 15, No. 3, Jun. 2012, pp.435-438
Canadian Journal of Civil Engineering, Vol.12, No.2, 1986, pp.218-232
[11] ASTM D198-05a, Standard Test Methods of Static Tests of Lumber in Structural Sizes,American Society for Testing and Materials, Philadelphia, 2002
Online since: October 2014
Authors: Nor Hayati Hamid, Shamilah Anudai Anuar, M.H. Hashim
Such materials used for retrofitting are steel plate, SFRC (steel fiber reinforced concrete), CFRP (carbon fiber reinforced polymer), additional shear wall and base isolator to strengthen the damaged structures [2, 3, 4, 5].
Acknowledgment The authors would like to express gratitude to e-Science Fund from MOSTI (Ministry of Science, Technology and Innovation), Putrajaya, Malaysia and RMI (Research Management Institute) for the funding of this research work.
[3] Abdul Ghani, K.D., and Hamid, N.H., Comparing the Seismic Performance of Beam-Column Joints with and without SFRC when subjected to Cyclic Loading, Advanced Materials Research, 626, (2013), pp 85-89
[4] Hamid, N.H., Hadi, N.D. and Ghani, K.D., Retrofitting of Beam-Column Joint Using CFRP and Steel Plate, World Academy of Science, Engineering and Technology, International Science Index, 84, (2013), pp 783-788
Structural Performance of Two Types Wall Slab Connection Under Out-of-Plane Lateral Cyclic Loading, Journal of Engineering Science and Technology, Vol. 7, No. 2. (2012), 177-194
Online since: July 2011
Authors: Jian Zhong Wang, Hai Ming Yang, Dong Jun Zhang, Jin Gang Qi, Zuo Fu Zhao, Shan Dai
Effects of Different Melt Modification Techniques on the Structure and Properties of Silicon Brass ZHAO Zuo-fu1,a, QI Jin-gang2,b, DAI shan2,c, ZHANG Dong-jun2,d, YANG Hai-ming2,a, WANG Jian-zhong1,2,a 1School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing 100083 2School of Material Science and Engineering, Liaoning University of Technology, Jinzhou 121001 aemail: zzf197810089927@163.com, bemail: qijingang1974@sina.com, cemail: wojiusm1986528@163.com, demail: zhangdongjun_3@126.com Key words: Nonleaded free-cutting brass; Modification; Cutability Abstract.
Therefore, nonleaded free-cutting brass should urgently be developed as a key issue by material workers.
Take H65Si1.5 silicon brass as the experimental material, whose melt is treated by Bi, electric pulse and Bi-EPM respectively, observe the solidification structure; meanwhile, test the mechanical properties and cutability to study the effects on the structure and properties of silicon brass.
Acknowledgements The authors gratefully acknowledge financial support from the National Natural Science Foundation of China (No. 51074087), Key laboratory Foundation of Educational Department of Liaoning Province (No.2008S120, No.2008S118) and Liaoning BaiQianWan Talents Program (No. 2010921096).
References [1] Yang B, Zhang L N, Liu B X, et a1: Hot Working Technology Vol. 36 (2007), p. 11 [2] Wang Z T, Tian R Z. in: (Central South University publishes, ChangSha 2002) [3] Huang J S, Peng C Q, Zhang S Q: The Chinese Journal of Nonferrous Metals Vol. 16 (2006), p. 1486 [4] Pang J S, Xiao Y X: Journal of Guangdong University of Technology Vol. 18 (2001), p. 63 [5] Rohatgi P K, Nath D, Kim J K: Corrosion Science Vol. 42 (2000), p. 1553 [6] Chen B X, Zhong J H, Song J: Special Casting&Nonferrous Alloys Vol. 26 (2006), p. 535 [7] Chen B X, Song J, Zhong J H: Foundry Vol. 55 (2006), p. 516 [8] Rohatgi P K, Ray S, Church N: AFS Transaction Vol. 100 (1992), p. 1 [9] Huang J S, Peng C Q, Zhang S Q, et a1: Journal of Materials Science&Engineering Vol. 24 (2006), p. 854