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Online since: July 2014
Authors: Rui Zhang, Zhong Yi Cai, Mi Wang, Heng Qiu Xu, Lin Lin Li, Yu Li Zhang, Xiao Fei Gao, Da Li Wang
J Materials and Design. 50 (2013)702-712
Computational Materials Science 47(2010)857-866
Journal of Materials Processing Technology. 153–154(2004) 816–820
Journal of Materials Processing Technology. 162–163 (2005)540–545
Journal of Materials Processing Technology. 210(2010)3–23.
Online since: October 2010
Authors: Tian Han, Jie Bai, Zhong Jun Yin
(2) Where, is a coefficient determined by material and geometric characteristics.
Fig. 8 Time and frequency domain Acknowledgments This work is supported by Natural Science Foundation of China (Grant no. 50905014).
[4] Yanli Lin, Fulei Chu and Rujiang Hao: Journal of Vibration and Shock Vol. 27 (2008), p.25-29.In Chinese
[7] G.Chen,C.G.Li andD.Y.Wang: Journal of engineering for gas turblnes and power, Vol. 2(2010), p.1-9
[8] Yanli Lin, Wenxiu Lu and Fulei Chu: Journal of Vibration and Shock Vol. 27 (2008), p.25-28.In Chinese
Online since: January 2019
Authors: Bing Heng Lu, Peng Luo, Li Juan Zhang, Bo Wen Wang
Experiment Equipment and Materials.
Advanced Engineering Materials, 2004, 6(5):299-303
Materials Science & Engineering A, 2004, 375-377(1):213-218
Journal of Materials Engineering and Performance, 2014, 23(6): 1917-1928
Materials & Design, 2015, 65:417-424
Online since: December 2011
Authors: Ye Ruan, Xiao Ming Qiu, Wen Biao Gong
Corrosion behavior of 6082-T6 Al joint welded with Twin Wire MIG Ye Ruan1,a, Xiao Ming Qiu2,b and Wen Biao Gong3,c 1 School of Material Science and Engineer, Jilin University, Changchun 130025, China 2 School of Material Science and Engineer, Jilin University, Changchun 130025, China 3 School of Material Science and Engineer, Changchun University of Technology, Changchun 130012, China ayuanye0689@sina.com, bqiuxm621@yahoo.cn, cgwbiao@sina.com Keywords: 6082-T6 Al-alloy; Twin wire MIG; Welded joint; Corrosion.
[6] C.F.Dong, Y.H.An and X.G.Li: The Chinese Journal Nonferrous Metals. 19. 346–352(2009)
[7] H.R.Zhou, X.G.Li and C.F.Dong: Journal of Chinese Society for Corrosion and Protection. 28. 345–350(2008)
[15] Z.G.Zhang, Z.Y.Zhou and C.Y.Liu:Journal of Chinese Society for Corrosion and Protection. 28. 345–350(2008)
[16] G.X.Lu, S.K.Guan and H.J.Chen: The Chinese Journal Nonferrous.15. 734–738(2005).
Online since: December 2012
He has been, and is, a very lively and active figure in the growth of quality materials science at Roorkee.
Unusually among scientists and technologists, his interests and work extend well beyond materials science.
His varied contributions to metallurgy and materials science are briefly touched upon, their origin and development described.
Materials Science and Engineering at its core is an interdisciplinary subject which embodies fundamental knowledge from the great disciplines of Science and Engineering.
Thomas Wohlbier, Director, Trans Tech Publications for coming forward to publish this special volume in Materials Science Forum.
Online since: December 2011
Authors: M. Pochrząst, Jan Marciniak, K. Wróbel, Bohdan Bączkowski
The selected materials met the requirements enclosed in the standard [6] with respect to chemical composition and mechanical properties – Tabele 1 and 2.
These properties are directly connected with corrosion resistance of materials which has direct influence on durability and in consequence, application properties of restorations.
Chowdhary: Evaluation on the Corrosion of the Three Ni-Cr Alloys with Different Composition, International Journal of Dentistry, 2011
Corrosion Science 48 (2006) 1696–1720
Trzaska: Electrochemical impedance spectroscopy in materials science.
Online since: December 2023
Authors: Kamaal S. Al-Hamdani, Moheimen Al-Thamir, Mohammed Jameel Sahi, Aqeel Ahmed Abed
Lavernia, Particulate reinforced metal matrix composites—a review, Journal of materials science 26 (1991) 1137-1156
Zhou, In situ synthesis of Fe-based alloy clad coatings containing TiB 2–TiN–(h-BN), International Journal of Minerals, Metallurgy, and Materials 22(6) (2015) 613-619
Li, Microstructure and mechanical properties of Ni-based composite coatings reinforced by in situ synthesized TiB 2+ TiC by laser cladding, International Journal of Minerals, Metallurgy, and Materials 20(1) (2013) 57-64
Gui, In situ synthesis and hardness of TiC/Ti 5 Si 3 composites on Ti-5Al-2.5 Sn substrates by gas tungsten arc welding, International Journal of Minerals, Metallurgy, and Materials 20(3) (2013) 284-289
Clare, Cold sprayed metal-ceramic coatings using satellited powders, Materials Letters 198 (2017) 184-187
Online since: January 2016
The outcome of this event is also published in Material Science Forum, indexed by SCOPUS.
Co-operation between Indonesia and Malaysia becomes more important, particularly in the development of application of geopolymer materials.
Starting from MIGS-1, which was held in Kuala Lumpur, Malaysia, more than 50 scientific papers (6 from Indonesia) were published at a reputable international journal.
The objectives of the event are to promote understanding and updating of geopolymer science, applications and composition.
It is also disseminations for initiation and support of international collaborative activities for development of research and technology relating to various aspects of green materials.
Online since: January 2007
Authors: In Hyuck Song, Hai Doo Kim, Young Wook Kim, Doo Hee Jang, Jung Hye Eom
Processing of Polymer-Derived Microcellular Ceramics Containing Reactive Fillers Young-Wook Kim 1,a , Doo-Hee Jang1,b , Jung-Hye Eom1,c , In-Hyuck Song 2,d and Hai-Doo Kim 2,e 1 Department of Materials Science and Engineering, University of Seoul, 90 Jeonnong-dong, Dongdaemun-ku, Seoul 130-743, Republic of Korea 2 Ceramic Materials Group, Korea Institute of Machinery and Materials, Gyeongnam 641-010, Republic of Korea a ywkim@uos.ac.kr, bdmavk78@uos.ac.kr, cjunghye-um@uos.ac.kr, d sih1654@kmail.kimm.re.kr, e khd1555@kmail.kimm.re.kr Keywords: Porous materials, Processing, Porosity, Polymer-derived ceramics.
Introduction Polymer-derived microcellular ceramics are lightweight materials consisting of a microcellular structure.
Due to the combination of properties resulting from the polymer-derived ceramic material and the microcellular structure, these ceramics have a high potential for a number of industrial applications such as filters, insulators, gas sensors, catalytic carriers, absorbents, and lightweight structural materials [1-3].
The porosity of the microcellular ceramics was calculated from the bulk density of the microcellular ceramics and the theoretical density of the strut materials.
Park: submitted to Journal of Ceramic Society of Japan (2006).
Online since: October 2014
Authors: Ping Xian, Chao Bing Deng, Xiao Fei Wang, Jie Fu
Materials and methods Experimental apparatus and water.
Total organic carbon is a composite indicator of total organic material in water, which can reflected the change trend of organic material in the water directly.
Chinese environmental science press (2002).
(In Chinese) [3] Mia Kim, Seong-Yun Jeong, Su Jeong Yoon, Sun Ja Cho, Young Hun Kim, Min Ju Kim, Eun Yoen Ryu and Sang-Joon Lee: Journal of Bioscienceand Bioengineering.106.5(2008), p.492-502 [4] J J Su, B Y Liu, and C Y Liu: Journal of Applided Microbiology.90.3(2001), p.457-462 [5] Jiaxi LI and Jidong Gu: Chinese Journal of applied and Environmental Biology.10.6(2004),p. 782-785(In Chinese) [6] S.J.
Porter: Journal of Colloid and Interface Science. 280(2004), p.322-333 [7] Guosheng Liu, Xiaojie Hao, Peiling Duan, Ying Hou and Wenyan Qin: Chinese Journal of applied and Environmental Biology. 17.1(2011), p.118-120(In Chinese)