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Online since: March 2016
Authors: Zainal Arifin Ahmad, Julie Juliewatty Mohamed, Syarifah Aishah Syed Salim, C.T. Ping
Ahmad1
1Structural Materials Niche Area, School of Materials and Minerals Resources Engineering, Engineering Campus, Universiti Sains Malaysia, 14300 Nibong Tebal, Penang.
Materials Science and Engineering: B, 177(9), 673-677
Materials Chemistry and Physics, 115(2), 585-589
Chiang Mai Journal of Science, 41 (2), 453-446
Materials Science and Engineering: B, 99(1), 294-297.
Materials Science and Engineering: B, 177(9), 673-677
Materials Chemistry and Physics, 115(2), 585-589
Chiang Mai Journal of Science, 41 (2), 453-446
Materials Science and Engineering: B, 99(1), 294-297.
Online since: September 2015
Authors: Ivan Timoshkin, Anton Ermoshkin, Alfiya Lutz
Today, the development and application of composite materials (CM) which consist of a matrix and reinforcing elementsdistributedwithin it and having qualitatively new, unique properties are some of the main directions of development of modern materials science and engineering.
The first group is coarse-grained materials (< 0.04).
The second group is fine-grained materials and nanomaterials (0.05 – 0.09).
Mazaheri, RMeratian, A .Emadi, R.Najarian, Comparison of microstructural and mechanical properties of Al–TiC, Al–B4C and Al–TiC–B4C, Materials Science and Engineering, 2013.- Vol.A 560.- P.278-287
ErmoshkinRole of Halide Salts Na3AlF6and Na2TiF6 in Self-propagating High-temperature Synthesis of Al-10%TiC Nanocomposite Alloy in Aluminum Melt, Life Science Journal 2014;11(12s): 570-575
The first group is coarse-grained materials (< 0.04).
The second group is fine-grained materials and nanomaterials (0.05 – 0.09).
Mazaheri, RMeratian, A .Emadi, R.Najarian, Comparison of microstructural and mechanical properties of Al–TiC, Al–B4C and Al–TiC–B4C, Materials Science and Engineering, 2013.- Vol.A 560.- P.278-287
ErmoshkinRole of Halide Salts Na3AlF6and Na2TiF6 in Self-propagating High-temperature Synthesis of Al-10%TiC Nanocomposite Alloy in Aluminum Melt, Life Science Journal 2014;11(12s): 570-575
Online since: February 2013
Authors: Hong Yan Zhao, Jun Bao Zhang
For new control scheme, in the theoretical derivation and actual operation were introduced, the new scheme in the actual operation of the encountered problems were analyzed, and the method of solution to meet the Plate material.
Introduction Presensitized Offset Plates, is a kind of offset plate material that sensitive liquid advance coating on the plate surface formed[1].
[2] ZhangJunbao,2010,The application of PLC in automatic joint edition machine,Guangxi Journal of Light Industry,26/12,60-61
[3] YanGongJuan,ZhangChaoYing,LiJianShe,2004,Clutch type flying cutter mechanism dynamic characteristics analysis,Journal of North China University of Technology,16/1,51-54
[4] ZhaoBin,2004,Sheet transverse production line equipment process analysis,Science & Technology of Baotou Steel Corporation,30/5,54-56
Introduction Presensitized Offset Plates, is a kind of offset plate material that sensitive liquid advance coating on the plate surface formed[1].
[2] ZhangJunbao,2010,The application of PLC in automatic joint edition machine,Guangxi Journal of Light Industry,26/12,60-61
[3] YanGongJuan,ZhangChaoYing,LiJianShe,2004,Clutch type flying cutter mechanism dynamic characteristics analysis,Journal of North China University of Technology,16/1,51-54
[4] ZhaoBin,2004,Sheet transverse production line equipment process analysis,Science & Technology of Baotou Steel Corporation,30/5,54-56
Online since: January 2011
Authors: Zhi Biao Feng, Ren Jiao Han, Jing Long Wang
In recent years, with large-scale preparation of multi-walled carbon nanotubes (MWCNTs), it increases day by day in practical applications such as catalyst carrier, electrode material, hydrogen storage material, composite reinforcement material, field launcher and so on[3].
Journal of An hui Norma University: Natural Science,2002,25(2):157-160
Science Bulletin. 2001,46(9):785-787
Beijing Sport University Journal, 2007,30(1):68-70
[13] Yavuz Onganer,Cigdem Temur(Tsik), [J]Journal of Colloid and Interface Science,1998,205:241
Journal of An hui Norma University: Natural Science,2002,25(2):157-160
Science Bulletin. 2001,46(9):785-787
Beijing Sport University Journal, 2007,30(1):68-70
[13] Yavuz Onganer,Cigdem Temur(Tsik), [J]Journal of Colloid and Interface Science,1998,205:241
Online since: June 2012
Authors: Xiao Zhong Zhang, Zu Yao Wang
China
2School of Sciences, Zhejiang University of Science and Technology, Hangzhou Zhejiang 310023, P.R.
[J] Journal Ningxia Univrsity,1996,17(3):34~38
Journal of Membrane Science 2008
Journal of Polymer Science Part B: Polymer Physics. 1992;30:231
Journal of Polymer Science Part B: Polymer Physics. 1987; 25:855.
[J] Journal Ningxia Univrsity,1996,17(3):34~38
Journal of Membrane Science 2008
Journal of Polymer Science Part B: Polymer Physics. 1992;30:231
Journal of Polymer Science Part B: Polymer Physics. 1987; 25:855.
Online since: March 2011
Authors: Reza Jafari Nedoushan, Mohammad Mashayekhi, Mahmoud Farzin
Lee: Materials Science and Engineering: A, Vol. 435-436 (2006), p. 687
Cocks: Mechanics of Materials, Vol. 13 (1992), p. 165
Taleff: Materials Science and Engineering: A, Vol. 494 (2008), p. 86
Cocks: Computational Materials Science, Vol. 1 (1993), p. 95
Taleff: Metallurgical and Materials Transactions A, Vol. 39 (2008), p. 50
Cocks: Mechanics of Materials, Vol. 13 (1992), p. 165
Taleff: Materials Science and Engineering: A, Vol. 494 (2008), p. 86
Cocks: Computational Materials Science, Vol. 1 (1993), p. 95
Taleff: Metallurgical and Materials Transactions A, Vol. 39 (2008), p. 50
Online since: June 2013
Authors: Ji Hua Li, Shan Bai Xiong, Bing Qing Zhu, Li Jing Lin, Guo Ti Lv, Xiao Bing Huang, Chang Xin Huang
Journal Of Food Science, 75(6): H205-H211
Journal of Applied Biological Chemistry, 55(2): 95-101
LWT-Food Science and Technology, 41:1514-1520
LWT-Food Science and Technology, 43, 226-231
Science and Technology, 25, 69-73
Journal of Applied Biological Chemistry, 55(2): 95-101
LWT-Food Science and Technology, 41:1514-1520
LWT-Food Science and Technology, 43, 226-231
Science and Technology, 25, 69-73
Online since: March 2010
Authors: Xiu Li Zhang, Yi Ming Mi, Tao Ji, Hong Xia Xu, Yan Ting Xie, Ying Shen
This conclusion will serve as an
important reference for developing and applying materials.
The relationship between the SHPB test and the simulation shows as well the model parameters of materials under high strain rate.
Experience constitutive equations model and physics based constitutive model are the two main constitutive models presently that can describe strain rate dynamic response behavior of metal materials.
The "virtual" experiments save money and time, and the method of the determination of parameters can also be used in the research of other metallic materials.
References [1] Kichida K, Akisue O: Tetsu-To-Hagane (铁と钢), Vol. 76 (1990), p.759 [2] SHA Guiying, HAN Enhou: Chinese Journal of Materials Research, Vol. 19(6) (2005), p.561( In Chinese) [3] ZHANG Xiuli, LIU Changli: Journal of Materials Engineering, Vol. 9 (2006), p.53 (In Chinese) [4] G.
The relationship between the SHPB test and the simulation shows as well the model parameters of materials under high strain rate.
Experience constitutive equations model and physics based constitutive model are the two main constitutive models presently that can describe strain rate dynamic response behavior of metal materials.
The "virtual" experiments save money and time, and the method of the determination of parameters can also be used in the research of other metallic materials.
References [1] Kichida K, Akisue O: Tetsu-To-Hagane (铁と钢), Vol. 76 (1990), p.759 [2] SHA Guiying, HAN Enhou: Chinese Journal of Materials Research, Vol. 19(6) (2005), p.561( In Chinese) [3] ZHANG Xiuli, LIU Changli: Journal of Materials Engineering, Vol. 9 (2006), p.53 (In Chinese) [4] G.
Online since: July 2011
Authors: Yun Ping Ji, Zong Chang Liu, Hui Ping Ren
Study on Microstructure of Quenched Martensite in W6Mo5Cr4V2 Steel
Yunping Ji, Zongchang Liu and Huiping Ren
School of Material and Metallurgy, Inner Mongolia University of Science and Technology, Baotou 014010, Inner Mongolia, China
jiyunpingpp@163.com
Keywords: W6Mo5Cr4V2, Cryptocrystalline martensite, Stacking fault, Midrib, Twin crystal
Abstract.
Acknowledgements The author would like to thank her collaborators from the innovation team of high added-value steel materials shaping and microstructure control in Inner Mongolia University of Science and Technology.
Morphology and Formation Mechanism of Martensite in Steels with Different Carbon Content [J].Advanced Materials Research, 2011, 201-203: 1612-1618
[2] Zuyao Xu: Martensite Phase Transformation and Martensite (Science Press, Beijing 1999) (In Chinese)
[3] Zongchang Liu: Journal of Inner Mongolia University of Science and Technology, Vol. 27 (2008), p. 293 (In Chinese) [4] Zongchang Liu, Haiyan Wang, Huiping Ren: Journal of Inner Mongolia University of Science and Technology, Vol. 28 (2009), p.99 (In Chinese) [5] Zongchang Liu, Yunping Ji, Xueqiang Lin, Haiyan Wang, Huiping Ren: Heat Treatment of Metals, Vol. 35 (2010), p.118 (In Chinese)
Acknowledgements The author would like to thank her collaborators from the innovation team of high added-value steel materials shaping and microstructure control in Inner Mongolia University of Science and Technology.
Morphology and Formation Mechanism of Martensite in Steels with Different Carbon Content [J].Advanced Materials Research, 2011, 201-203: 1612-1618
[2] Zuyao Xu: Martensite Phase Transformation and Martensite (Science Press, Beijing 1999) (In Chinese)
[3] Zongchang Liu: Journal of Inner Mongolia University of Science and Technology, Vol. 27 (2008), p. 293 (In Chinese) [4] Zongchang Liu, Haiyan Wang, Huiping Ren: Journal of Inner Mongolia University of Science and Technology, Vol. 28 (2009), p.99 (In Chinese) [5] Zongchang Liu, Yunping Ji, Xueqiang Lin, Haiyan Wang, Huiping Ren: Heat Treatment of Metals, Vol. 35 (2010), p.118 (In Chinese)
Online since: October 2014
Authors: Hong Gen Qin, Shuai Shuai Geng, Chao Ming Pang, You Hua Tao
Compared with other materials, the compressive strength of ALC is lower.
A green building materials product that is thermal insulation, energy conservation and emissions reduction can be prepared.
Scientific Journal of Materials Science.3(2013)103-107
Journal of Xuzhou Institute of Technology(Natural Sciences Edition).26(2011)1-5
New Building Materials. 5 (2002)1-5
A green building materials product that is thermal insulation, energy conservation and emissions reduction can be prepared.
Scientific Journal of Materials Science.3(2013)103-107
Journal of Xuzhou Institute of Technology(Natural Sciences Edition).26(2011)1-5
New Building Materials. 5 (2002)1-5