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Online since: January 2013
Authors: Fang Guo, Wei Gu, Jie Jun Tang, Ming Hai Murong
The structural equation is obtained as:
(3)
Where is a parameter related to the materials strength.
Acknowledgements This work was financially supported by the National Natural Science Foundation (51078042, 51278067), the Hunan Science and Technology Plan Project(2009003)and the Western Traffic Science and Technology Plan Project (2009 318 000 048).
Chinese Journal of Geotechnical Engineering, 1997,19(2):1-7
Chinese Journal of Rock Mechanics and Engineering, 2002, 21(9): 1397-1391
Journal of East China Geological Institute, 2002, 25(3):220-227.
Acknowledgements This work was financially supported by the National Natural Science Foundation (51078042, 51278067), the Hunan Science and Technology Plan Project(2009003)and the Western Traffic Science and Technology Plan Project (2009 318 000 048).
Chinese Journal of Geotechnical Engineering, 1997,19(2):1-7
Chinese Journal of Rock Mechanics and Engineering, 2002, 21(9): 1397-1391
Journal of East China Geological Institute, 2002, 25(3):220-227.
Online since: May 2011
Authors: Yuan Chen, Chang Bin Xia, Fan Gao, Ying Zhu, Chen Lin Dai, Jun Liu, Ling Zhang
Experimental materials and equipment
(1)Sludge is the original mud from sludge thickening tank at a sewage treatment plants in Changsha.
The microstructure shows that there are less colloidal material, porosity and larger, faster spin speed
Engineering Vol. 25 (In Chinese 2008), p. 19-22 [6] Li Gan, Zhaoping Meng and Jienan Pan: Journal of China University of Mining and Technology.
Vol. 14 (In Chinese 2004), p. 238-242 [7] Rongmei Shi, Ping Ning: Journal of Kunming University of Science and Technology.
Vol. 14 (In Chinese 2008), p. 65-85 [8] Junju Shen, Leilei Ren and Yuanyi Zhuang: Journal of Hazardous Materials.
The microstructure shows that there are less colloidal material, porosity and larger, faster spin speed
Engineering Vol. 25 (In Chinese 2008), p. 19-22 [6] Li Gan, Zhaoping Meng and Jienan Pan: Journal of China University of Mining and Technology.
Vol. 14 (In Chinese 2004), p. 238-242 [7] Rongmei Shi, Ping Ning: Journal of Kunming University of Science and Technology.
Vol. 14 (In Chinese 2008), p. 65-85 [8] Junju Shen, Leilei Ren and Yuanyi Zhuang: Journal of Hazardous Materials.
Online since: May 2011
Authors: Yu Liang Qiu, Xiao Yong Hu, Xiao Xu Zhang, Bao Wen Kou, Wei Hua Dong
Table 1 shows the mechanical parameters of rock, tunnel structure and backfill materials.
Acknowledgements This study is supported by Science and Technology Special Support of CCCC (KYHT2008-10).
Jiyang Fu, Jiu-rong Wu, An Xu: Journal of Hunan University (Natural Sciences), Vol. 35 (2008), P. 23-27, in Chinese
Guihong Chen: China Railway Science, Vol. 26 (2005), P. 93 -97, in Chinese
Journal of South China University of Technology: Natural Science, Vol. 27 (1999), P. 108-114, in Chinese.
Acknowledgements This study is supported by Science and Technology Special Support of CCCC (KYHT2008-10).
Jiyang Fu, Jiu-rong Wu, An Xu: Journal of Hunan University (Natural Sciences), Vol. 35 (2008), P. 23-27, in Chinese
Guihong Chen: China Railway Science, Vol. 26 (2005), P. 93 -97, in Chinese
Journal of South China University of Technology: Natural Science, Vol. 27 (1999), P. 108-114, in Chinese.
Online since: November 2013
Authors: Zhan Wang, Jian Rong Pan, Shu Jun Hu
Other factors influence the capacity of steel frames, such as shear deformation, residual stress, geometric and material nonlinearity are explicated.
In the analysis of the EBF, trilinear model, geometric and material nonlinearity, shear deformation and residual stress are explicated.
Second-order Refined Plastic Hinge Analysis of Frame Design, Part 1, Journal of Structural Engineering, ASCE, Vol. 119 (1993), p. 3196-3216
Practical Advanced Analysis for Braced Steel Frames Design, Journal of Structural Engineering, ASCE, Vol.122(1996), p. 1266-1274
Non-linear Static and Cyclic Analysis of Semi-rigid Steel Frames, Elsevier Science (2000)
In the analysis of the EBF, trilinear model, geometric and material nonlinearity, shear deformation and residual stress are explicated.
Second-order Refined Plastic Hinge Analysis of Frame Design, Part 1, Journal of Structural Engineering, ASCE, Vol. 119 (1993), p. 3196-3216
Practical Advanced Analysis for Braced Steel Frames Design, Journal of Structural Engineering, ASCE, Vol.122(1996), p. 1266-1274
Non-linear Static and Cyclic Analysis of Semi-rigid Steel Frames, Elsevier Science (2000)
Online since: February 2014
Authors: Ping Ping Xu, Xue Jie Liu, Shi Yang Sun, Xin Tan
Many physical and mechanical properties of solid materials had great deal to do with the existence of vacancy.
Vacancy of ordinary material could be measured by experimental.
Journal of Chongqing University, 31-12(2008), p 1342 [6] J.
Applied Surface Science. 253 (2007), p. 3779
Journal of Physics F, Vol.10 (1980), p. 571
Vacancy of ordinary material could be measured by experimental.
Journal of Chongqing University, 31-12(2008), p 1342 [6] J.
Applied Surface Science. 253 (2007), p. 3779
Journal of Physics F, Vol.10 (1980), p. 571
Online since: November 2011
Authors: Yan Qin, Zhi Xiong Huang, Jin Rong Jia, Liang Zhao, Shi Wei Zhao, Guang Wu Zhang, Bi Fang Dai
Experimentation
Materials
The soybean oil used in the preparation of the SOMG was food grade and was used alkali refined.
Results and discussion Preparation of SOMG.FT-IR spectrum is a useful tool to study the structure for polymeric materials.
Journal of Applied Polymer Science, 2005, 97:825–836
Polymer Engineering and Science, 2007, 47:1469–1479
Journal of Applied Polymer Science, 2003, 90:197–202.
Results and discussion Preparation of SOMG.FT-IR spectrum is a useful tool to study the structure for polymeric materials.
Journal of Applied Polymer Science, 2005, 97:825–836
Polymer Engineering and Science, 2007, 47:1469–1479
Journal of Applied Polymer Science, 2003, 90:197–202.
Online since: September 2011
Authors: Yu Ke Yang, Shao Gang Jin, Hua Zhang
A New Method of Activated Carbon Loading MnO2 to Formaldehyde Degradation
Yuke yanga, Hua Zhangb, Shaogang Jin
Tianjin Municipal Key Lab of Fiber Modification and Functional Fibers, Institute of Functional Fibers, School of Materials Science and Engineering, Tianjin Polytechnic University, Tianjin 300160, China
ayangyukeyyk@163.com, bhua1210@126.com
Keywords: MnO2; formaldehyde degradation; activated carbon; loading
Abstract: The major indoor air pollution-formaldehyde has been a serious threat to our lives to our lives, and accordingly the formaldehyde degradation has turned into a concerned issue of public.
Experimental Materials.
Acknowledgements The authors are thankful to Tianjin Municipal Science Foundation (NO: 09ZCKFSF02300) and State Key Laboratory of Hollow Fiber Membrane Materials and Processes (Tianjin Polytechnic University) for financial support.
Journal of Physical Chemistry B, 2002, 106: 9054-9058 [5] Yanzhen Fan, Baozhen Wang.
Infrared Spectra of Minerals, Science Press, Beijing, 1982, p. 117 (in Chinese)
Experimental Materials.
Acknowledgements The authors are thankful to Tianjin Municipal Science Foundation (NO: 09ZCKFSF02300) and State Key Laboratory of Hollow Fiber Membrane Materials and Processes (Tianjin Polytechnic University) for financial support.
Journal of Physical Chemistry B, 2002, 106: 9054-9058 [5] Yanzhen Fan, Baozhen Wang.
Infrared Spectra of Minerals, Science Press, Beijing, 1982, p. 117 (in Chinese)
Online since: September 2014
Authors: Alexander Y. Pak, D.S. Nikitin, A.A. Sivkov, I.A. Rakhmatullin
Physical and chemical properties of materials depend on crystallite sizes, so the use of ultrafine SiC powders can improve characteristics of ceramics.
Acknowledgments This work was supported in part by the Ministry of Education and Science of the Russian Federation in the framework of State task “Science” (project “Dynamic Synthesis of Nanodisperse Crystalline Phases in Gas–Plasma Systems with Carbon and Nitrogen”, project. no. 7.1659.2011).
Andrievski, Synthesis, structure and properties of nanosized silicon carbide, Reviews on Advanced Materials Science. 22 (2009) 1-20
Li, Synthesis of SiC by silicon and carbon combustion in air, Journal of the European Ceramic Society. 29 (2009) 175-180
Production of Ultradispersed Crystalline Silicon Carbide by Plasmodynamic Synthesis, Journal of Superhard Materials. 35/3 (2013) 137-142.
Acknowledgments This work was supported in part by the Ministry of Education and Science of the Russian Federation in the framework of State task “Science” (project “Dynamic Synthesis of Nanodisperse Crystalline Phases in Gas–Plasma Systems with Carbon and Nitrogen”, project. no. 7.1659.2011).
Andrievski, Synthesis, structure and properties of nanosized silicon carbide, Reviews on Advanced Materials Science. 22 (2009) 1-20
Li, Synthesis of SiC by silicon and carbon combustion in air, Journal of the European Ceramic Society. 29 (2009) 175-180
Production of Ultradispersed Crystalline Silicon Carbide by Plasmodynamic Synthesis, Journal of Superhard Materials. 35/3 (2013) 137-142.
Online since: June 2011
Authors: Xing Pin Chen, Rui Xiao, Can Sun, Zhen Xia Lin, Qing Liu
Tan: Materials Science and Engineering A, Vol. 339 (2003) No. 1-2, p. 124
Barnett: Materials Science and Engineering A, Vol. 464 (2007) No. 1-2, p. 1 [8] M.R.
Barnett: Materials Science and Engineering A, Vol. 464 (2007) No. 1-2, p. 8 [9] L.
Cui: Materials Science and Engineering A, Vol. 517 (2009) No. 1-2, p. 160
Bettles: Materials Science and Engineering A, Vol. 386 (2004) No. 1-2, p. 205
Barnett: Materials Science and Engineering A, Vol. 464 (2007) No. 1-2, p. 1 [8] M.R.
Barnett: Materials Science and Engineering A, Vol. 464 (2007) No. 1-2, p. 8 [9] L.
Cui: Materials Science and Engineering A, Vol. 517 (2009) No. 1-2, p. 160
Bettles: Materials Science and Engineering A, Vol. 386 (2004) No. 1-2, p. 205
Online since: March 2009
Authors: Rainer Hock, Peter J. Wellmann, Ulrike Künecke, Philip Hens, Katja Konias
Wellmann1,e
1
Department of Material Science - Electrical Engineering Materials (WW6), University of
Erlangen-Nuremberg, Martensstr. 7, 91058 Erlangen, Germany
2
Institute for Crystallography, University of Erlangen-Nürnberg, Staudtstrasse 3, 91058
Erlangen, Germany
a
philip.hens@ww.uni-erlangen.de, bulrike.kuenecke@ww.uni-erlangen.de,
ckatja.konias@krist.uni-erlangen.de, drainer.hock@krist.uni-erlangen.de,
e
peter.wellmann@ww.uni-erlangen.de
Keywords: bulk growth, germanium, EDX, Hall, lattice parameters, dislocations
Abstract.
The change in lattice parameters has also been shown in ion implanted material [6].
Goeken: Materials Science Forum Vols. 556-557 (2007), p. 259 [2] K.
Spaeth: Materials Science Forum Vols. 338-342 (2000), p. 785 [8] S.
Wellmann: Journal of Crystal Growth Vol. 289 (2006), p. 520
The change in lattice parameters has also been shown in ion implanted material [6].
Goeken: Materials Science Forum Vols. 556-557 (2007), p. 259 [2] K.
Spaeth: Materials Science Forum Vols. 338-342 (2000), p. 785 [8] S.
Wellmann: Journal of Crystal Growth Vol. 289 (2006), p. 520