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Online since: April 2011
Authors: Ming Yu Hu, Jin Sheng Peng, Cheng Ping Ding, Jian Yi Chen
Raw materials
2.1 Cement
Ordinary Portland cement of grade 32.5 with about 14% of mineral additives and 5% of gypsum was used in the study.
Development Guide to Building Materials 4 (2008), p. 1-5 (in Chinese) [4] Wang Fusheng, Sun Ruilian, Qin Xiaojuan.
Journal of South China University of Technology (Natural Science) 31(2003), p. 93~96 (in Chinese) [7] Liu Sifeng, Sun Wei, Wang Peiming.
Journal of Southeast University (Natural Science Edition) 36(2006), p. 263-268 (in Chinese) [8] LIU Lian xin.
Journal of Building Materials 4(2001), p. 395-399 (in Chinese)
Development Guide to Building Materials 4 (2008), p. 1-5 (in Chinese) [4] Wang Fusheng, Sun Ruilian, Qin Xiaojuan.
Journal of South China University of Technology (Natural Science) 31(2003), p. 93~96 (in Chinese) [7] Liu Sifeng, Sun Wei, Wang Peiming.
Journal of Southeast University (Natural Science Edition) 36(2006), p. 263-268 (in Chinese) [8] LIU Lian xin.
Journal of Building Materials 4(2001), p. 395-399 (in Chinese)
Online since: December 2012
Authors: Maris Knite, G. Sakale, D. Jakovlevs, I. Aulika
Carbon nanotubes (CNTs) are materials that can respond to the presence of gaseous substances by the electrical property’s change.
Materials and methods Polyisoprene was used as the composite matrix material.
For polymer-like materials the movement of the VOC diffusion front inside a material is controlled not only by external factors like pressure, temperature and VOC concentration but also by the polymer macromolecule capability to rearrange their conformation as well.
Yeow, A review of carbon nanotubes-based gas sensors, Journal of sensors, (2009) Article ID 493904 24 pages [6] G.U.
Zheng, X.S.Yi, Time dependence of piezoresistance for the conductor-filled polymer composites, Journal of Polymer Science: B 38 (2000) 2739-2749
Materials and methods Polyisoprene was used as the composite matrix material.
For polymer-like materials the movement of the VOC diffusion front inside a material is controlled not only by external factors like pressure, temperature and VOC concentration but also by the polymer macromolecule capability to rearrange their conformation as well.
Yeow, A review of carbon nanotubes-based gas sensors, Journal of sensors, (2009) Article ID 493904 24 pages [6] G.U.
Zheng, X.S.Yi, Time dependence of piezoresistance for the conductor-filled polymer composites, Journal of Polymer Science: B 38 (2000) 2739-2749
Online since: March 2008
Authors: Marcus M.K. Lee, Jun Deng, Pei Yan Huang
Introduction
Since the 1990s, the use of carbon fibre reinforced polymer (CFRP) materials has made large
advances in civil engineering construction, particularly in bridge upgrade and rehabilitation.
Key Engineering Materials 2006, 306-308:1343-1348
Design guidance for strengthening concrete structures using fibre composite materials.
Progress in Structural Engineering and Materials 2002; 4(2):131-148
Journal of Bridge Engineering 2001; 6(6):514-522
Key Engineering Materials 2006, 306-308:1343-1348
Design guidance for strengthening concrete structures using fibre composite materials.
Progress in Structural Engineering and Materials 2002; 4(2):131-148
Journal of Bridge Engineering 2001; 6(6):514-522
Online since: June 2013
Authors: Takashi Matsumura, Ryosuke Watanabe, Yuji Musha
Yasuda, Y, Effect of surface texturing on friction reduction between ceramic and steel materials under lubricated sliding contact, Wear 254 (2003) 356–363
Hu, Microstructure and mechanical characteristics of laser coating–texturing alloying dimples, Applied Surface Science 255 (2008) 3251–3256
Ge, Tribological properties of surface dimple-textured by pellet-pressing, Procedia Earth and Planetary Science 1 (2009) 1513–1518
ESAFORM Conf. on Material Forming, AIP Conf.
Takahashi, Micro dimple milling on cylinder surfaces, Journal of Manufacturing Processes 14 (2012) 135–140.
Hu, Microstructure and mechanical characteristics of laser coating–texturing alloying dimples, Applied Surface Science 255 (2008) 3251–3256
Ge, Tribological properties of surface dimple-textured by pellet-pressing, Procedia Earth and Planetary Science 1 (2009) 1513–1518
ESAFORM Conf. on Material Forming, AIP Conf.
Takahashi, Micro dimple milling on cylinder surfaces, Journal of Manufacturing Processes 14 (2012) 135–140.
Online since: January 2011
Authors: Yong Hong Wu, Xiang Min Zheng, Li Min Zhou
Materials and Methods
Study area is located in Pujiang Town Shanghai, the Southern Yangtze River Delta alluvial plain(Fig. 1), its surface is covered by Quaternary sediments, with average surface elevation being 4.3m.
References [1] Yan Wen, Gu Sen-chang, Chen Zhong, Chen Mu-hong: Journal of tropical oceanography, Vol.21(2002), pp.75-83(in Chinese)
[2] Nesbitt, H.W., Young, G.M.: The Journal of Geology, Vol.97(1989), pp.129-147
[14] Parrington, J.R., Zoller, W.H., Aras, N.K.: Science, Vol.220(1983), pp.195-197
[15] Chen, Jun, An, Zhisheng, Wang, Yongjin: Science in China (D), Vol.28(1998), pp.498-504
References [1] Yan Wen, Gu Sen-chang, Chen Zhong, Chen Mu-hong: Journal of tropical oceanography, Vol.21(2002), pp.75-83(in Chinese)
[2] Nesbitt, H.W., Young, G.M.: The Journal of Geology, Vol.97(1989), pp.129-147
[14] Parrington, J.R., Zoller, W.H., Aras, N.K.: Science, Vol.220(1983), pp.195-197
[15] Chen, Jun, An, Zhisheng, Wang, Yongjin: Science in China (D), Vol.28(1998), pp.498-504
Online since: September 2013
Authors: Jian Gang Yang, Ying Ying Ma, Qiu Lin
Materials and Methods
Strain: Aspergillus oryzae A52820121203, provided by Dr.
H.Chen,et al: International Journal of Food Science and Technology, 2010,45(6):1297~1302
Vuuren: Journal of Applied Microbiology,2010, 109( 3): 963~973
Fang: Sichuan University of Science and Engineering, 2007:1~18.
In Chinese [13] S.X.Zhao: Brewing Science and Technology,1992,51(2):53~54.
H.Chen,et al: International Journal of Food Science and Technology, 2010,45(6):1297~1302
Vuuren: Journal of Applied Microbiology,2010, 109( 3): 963~973
Fang: Sichuan University of Science and Engineering, 2007:1~18.
In Chinese [13] S.X.Zhao: Brewing Science and Technology,1992,51(2):53~54.
Online since: April 2014
Authors: Xiu Feng Ma
Some journals are published study geography problem mathematically.
These methods in the teaching materials, notes, books and research papers are often can see.
The Annals of Regional Science, 2006, 40(3): 677 -691
The Annals of Regional Science, 2009, 43(1): 267 - 282
Journal of geographical research, 1997, 16 (1) : 11-22.
These methods in the teaching materials, notes, books and research papers are often can see.
The Annals of Regional Science, 2006, 40(3): 677 -691
The Annals of Regional Science, 2009, 43(1): 267 - 282
Journal of geographical research, 1997, 16 (1) : 11-22.
Online since: June 2014
Authors: Yuan Ching Lin, Jia Bin Bai, Jiun Nan Chen
:Materials for Tribology, Tribology Series, 20, Elsevier, 1992
[3] Mandl,S.
Materials Science and Engineering: A, 2001, 316 (1-2), pp. 200-204 [7] Singh,V.
;Qiao, Y.; Xu, T.: Friction and Wear Behavior of Plasma Nitrided 1Cr18Ni9Ti Austenitic Stainless Steel under Lubrication Condition, Materials Science and Engineering: A, 2005, 402 (1-2), pp. 135-141 [10] Li,G.
[13] Sexton,L.; Lavin,S.; Byrne,G.; Kennedy,A.: Laser cladding of aerospace materials, Journal of Materials Processing Technology, 2002, 122 (1), pp. 63-68 [14] Cheng, F.
C.: A Preliminary Study of Laser Cladding of AISI 316 Stainless Steel Using Preplaced NiTiWire, Materials Science and Engineering: A, 2004, 380 (1-2), pp. 20-29 [15] Chiu, K.
Materials Science and Engineering: A, 2001, 316 (1-2), pp. 200-204 [7] Singh,V.
;Qiao, Y.; Xu, T.: Friction and Wear Behavior of Plasma Nitrided 1Cr18Ni9Ti Austenitic Stainless Steel under Lubrication Condition, Materials Science and Engineering: A, 2005, 402 (1-2), pp. 135-141 [10] Li,G.
[13] Sexton,L.; Lavin,S.; Byrne,G.; Kennedy,A.: Laser cladding of aerospace materials, Journal of Materials Processing Technology, 2002, 122 (1), pp. 63-68 [14] Cheng, F.
C.: A Preliminary Study of Laser Cladding of AISI 316 Stainless Steel Using Preplaced NiTiWire, Materials Science and Engineering: A, 2004, 380 (1-2), pp. 20-29 [15] Chiu, K.
Online since: January 2012
Authors: G. H. Bao, T. J. Ge, A.S. Luyt, X. G. Jian, Wei He
The ‘trained’ network would contain adequate information about the material behavior to qualify as a material model.
Durman, Modeling of tribological properties of alumina fiber reinforced zinc-aluminum composites using artifical neural network, Materials Science and Engineering A, 363(2003) 203-210
Mackay, Neural network model of creep strength of austenitic stainless steels, Materials Science technology, 18(2002) 654-663
Xishan, Artificial neural network prediction of the microstructure of 60Si2MnA rod based on its controlled rolling and cooling process parameters, Material Science Engineering A, 344(1-2) (2003) 318-322
Material science, 35(2000)4393
Durman, Modeling of tribological properties of alumina fiber reinforced zinc-aluminum composites using artifical neural network, Materials Science and Engineering A, 363(2003) 203-210
Mackay, Neural network model of creep strength of austenitic stainless steels, Materials Science technology, 18(2002) 654-663
Xishan, Artificial neural network prediction of the microstructure of 60Si2MnA rod based on its controlled rolling and cooling process parameters, Material Science Engineering A, 344(1-2) (2003) 318-322
Material science, 35(2000)4393
Online since: October 2007
Authors: Zhi Guo Fan, Chao Ying Xie
Microstructures and Phase Transformations of Ti-50.9at%Ni
Alloy processed by Equal Channel Angular Extrusion
at Medium Temperature
Chaoying Xiea, Zhiguo Fan
b
Open Laboratory of State Education Commission for High Temperature Materials and Tests,
Department of Materials Science, Shanghai Jiao Tong University, Shanghai 200030, China
a
cyxie@sjtu.edu.cn, bfanzhiguo@sjtu.edu.cn
Keywords: Equal Channel Angular Extrusion; Ti-50.9at%Ni alloy; Submicron grains; Phase
transformation
Abstract.
Acknowledgement We thank for the financial support from the National Science Fund of China (No.A50671067) and Fund from Education Department for Returned Scholars of China.
Materials Science Forum, 2006: 503-504: 539-544 [4] Zhenhua Li, Xianhua Cheng, Qianqian ShangGuan.
Journal of Nuclear Materials, 2007: 361: 298-305 [9] C.Y.Xie, Z.G.Fan.
Materials Science Forum, 2006: 503-504: 1013-1018 [10] J.I.Kim, Yinong Liu, S.Miyazaki.
Acknowledgement We thank for the financial support from the National Science Fund of China (No.A50671067) and Fund from Education Department for Returned Scholars of China.
Materials Science Forum, 2006: 503-504: 539-544 [4] Zhenhua Li, Xianhua Cheng, Qianqian ShangGuan.
Journal of Nuclear Materials, 2007: 361: 298-305 [9] C.Y.Xie, Z.G.Fan.
Materials Science Forum, 2006: 503-504: 1013-1018 [10] J.I.Kim, Yinong Liu, S.Miyazaki.