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Online since: March 2015
Authors: Bo Chen, Fei Xia, Ying Hua Bai, Xiao Fei Fan
The Young’s moduli of the steel and concrete material are 210 and 25 GPa, respectively.
The densities of the steel and concrete material are se7900 and 2500 kg/m3, respectively.
Acknowledgements The writers are grateful for the financial support from the National Natural Science Foundation of China (51178366), the Natural Science Foundation of Hubei Province (2014CFA026), the open fund of the Engineering Research Center for Bridge Safty Monitoring and Reinforcing of Hubei Province (QLZX2014013) and the self-determined and innovative research funds of WUT (Undergraduate project No. 146606002).
Journal of Sound and Vibration, 1997, 205(1), 1-18
A new damage index for detecting sudden change of structural stiffness, International Journal of Structural Engineering and Mechanics, 26(3): 315-341 (SCI)
The densities of the steel and concrete material are se7900 and 2500 kg/m3, respectively.
Acknowledgements The writers are grateful for the financial support from the National Natural Science Foundation of China (51178366), the Natural Science Foundation of Hubei Province (2014CFA026), the open fund of the Engineering Research Center for Bridge Safty Monitoring and Reinforcing of Hubei Province (QLZX2014013) and the self-determined and innovative research funds of WUT (Undergraduate project No. 146606002).
Journal of Sound and Vibration, 1997, 205(1), 1-18
A new damage index for detecting sudden change of structural stiffness, International Journal of Structural Engineering and Mechanics, 26(3): 315-341 (SCI)
Online since: September 2013
Authors: Yue Xu, Jin Bao Liang, Xian Zhou Tang, Xian Xi Tang
China Railway Science, 2009, 30(2):49-53 (In Chinese)
[2] J.
Journal of Southeast University (Natural Science Edition), 2010, 40(5): 1034-1038 (In Chinese) [3] T.
Journal of Experimental Mechanics, 2000, 15(3): 286-292 (In Chinese) [8] L.
Journal of Zhengzhou University (Engineering Science), 2007, 28(4): 4-7 (In Chinese) [9] L.
China Civil Engineering Journal, 2007, 40(3): 6-10 (In Chinese)
Journal of Southeast University (Natural Science Edition), 2010, 40(5): 1034-1038 (In Chinese) [3] T.
Journal of Experimental Mechanics, 2000, 15(3): 286-292 (In Chinese) [8] L.
Journal of Zhengzhou University (Engineering Science), 2007, 28(4): 4-7 (In Chinese) [9] L.
China Civil Engineering Journal, 2007, 40(3): 6-10 (In Chinese)
Online since: October 2011
Authors: Ting Lin Huang, Jun Chen Kang, Jin Lan Xu, Ai Ping Liu, Yu Hua Dong, Sen Wang
Therefore, it is considered that the Haiyu zeolite should be the best barrier materials to clean sediment of the ancient Canal.
Materials and methods Study sites Table 1 showed the property of sediment and water sample used in the experiment.
Therefore, it is considered that the Haiyu zeolite should be the best barrier materials to clean sediment of the ancient Canal.
It is considered that the Haiyu zeolite should be the best barrier materials to clean sediment of the ancient Canal.
Journal of Environmental Science 23(5) (2011), p 738-743
Materials and methods Study sites Table 1 showed the property of sediment and water sample used in the experiment.
Therefore, it is considered that the Haiyu zeolite should be the best barrier materials to clean sediment of the ancient Canal.
It is considered that the Haiyu zeolite should be the best barrier materials to clean sediment of the ancient Canal.
Journal of Environmental Science 23(5) (2011), p 738-743
Online since: March 2015
Authors: Wei Xu, Hai Bin Wang, Tao Xiang
Material and Methods
Egg white (EW) spray-dried at 60-70℃ after decarbohydrate treatment was provided by Han Wei foods Corp.
In Egg Science and Technology, 4th ed.; Stadelman, W.
World’s Poultry Science Journal. 2002, 58, 31-39 [8] Saeki, H.
Journal of Food Science. 1994, 59, 525-527
Journal of Food Science. 1995, 60, 707-710
In Egg Science and Technology, 4th ed.; Stadelman, W.
World’s Poultry Science Journal. 2002, 58, 31-39 [8] Saeki, H.
Journal of Food Science. 1994, 59, 525-527
Journal of Food Science. 1995, 60, 707-710
Online since: April 2014
Authors: Jia Fu Li, Dong Sheng Li, Jia Cheng Hu, Li Jian, Ting Cui
Direct observational method only realizes the qualitative detection with lacking science.
It only realizes the qualitative detection with lacking science and has big artificial error.
At last, the authors gratefully acknowledge the support of Natural Science Foundation (Grant No.51075378).
Mao, Research of air-tight property detector used in diaphragm style gas meter, Journal of China University of Metrology, 22 (2011) 15-19
Maksoud, Roughness parameters, Journal of Materials Processing Technology, 123 (2002) 133-141.
It only realizes the qualitative detection with lacking science and has big artificial error.
At last, the authors gratefully acknowledge the support of Natural Science Foundation (Grant No.51075378).
Mao, Research of air-tight property detector used in diaphragm style gas meter, Journal of China University of Metrology, 22 (2011) 15-19
Maksoud, Roughness parameters, Journal of Materials Processing Technology, 123 (2002) 133-141.
Online since: January 2024
Authors: Klodjan Xhexhi, Fabrizio Aimar
Materials and Methods
Study areas.
The effect of surface material is related to CO2 emissions, reflective properties of materials, etc.
By reflecting solar radiation, reflective materials like white roofs can be used to reduce the UHI impact [20].
Journal of Environmental Sciences, 20(1), (2007) 120–128.
International Journal of Science and Research, (2015) 4(12)
The effect of surface material is related to CO2 emissions, reflective properties of materials, etc.
By reflecting solar radiation, reflective materials like white roofs can be used to reduce the UHI impact [20].
Journal of Environmental Sciences, 20(1), (2007) 120–128.
International Journal of Science and Research, (2015) 4(12)
Online since: January 2017
Authors: Gui Qiang Li, Yong Gui Zhang, Chun Yong Yang, Yang Wang, Hao Chun Yan
Meanwhile, other studies also indicated the increase of radon in multistory or high-rise buildings was obvious[5], and theradon exhalation rate of some lightweight concrete materials was higher than traditional building materials [6].
Building materials was an important source of radon [7], and concrete was of the maximum usage in building materials.
Experimental Raw Materials.
It was because all the materials were the same, with only mix proportion of actived carbon changing.
The authors would like to thank China Building Materials Academy for assistance with the various experiments.
Building materials was an important source of radon [7], and concrete was of the maximum usage in building materials.
Experimental Raw Materials.
It was because all the materials were the same, with only mix proportion of actived carbon changing.
The authors would like to thank China Building Materials Academy for assistance with the various experiments.
Online since: February 2011
Authors: Feng Liu, Wen Jun Wang, Jun Tao Wang, Yong Lei Xin, Xiang Bo Li, Li Wei Xiong
The Structure and Electrochemical Properties of BDD
Deposited on Ti Substrate by MWCVD
Feng Liu 1,a, Wenjun Wang 2,b, Juntao Wang 1,c, Liwei Xiong 2,d,
Yonglei Xin 1,e, Xiangbo Li 1, f
1 Science and Technology on Marine Corrosion and Protection Laboratory,
Luoyang Ship Material Research Institute,Qingdao 266101, P.R.China
2 Provincial Key Laboratory of Plasma Chemistry & Advanced Materials,
Wuhan Institute of Technology, Wuhan, 430073, P.R.China
aliuf@sunrui.net, balicejoe@163.com, cwangjt@sunrui.net, dzhily2000@126.com ,exinyl@sunrui.net,flixb@sunrui.net
Keywords: MWCVD; BDD Electrode; Electrochemical Oxidation
Abstract.
Ti is an attractive substrate material for the BDD film electrodes due to the compromise between material cost, corrosion and mechanical stability[7].
The electrochemical oxidation of 2,4-dichlorophenol at BDD electrode is to evaluate the potential application of this electrode material for the electrochemical treatment of phenol – containing wastewater.
Murugananthan, Electrochimica Acta 2009, 54: 2031–2038 [2]Lei Liu, Guohua Zhao, Meifen Wu, et al, Journal of Hazardous Materials 2009, 168 :179–186 [3] Onofrio Scialdone, Alessandro Galia, Giuseppe Filardo, Electrochimica Acta 2008, 53: 7220–7225 [4] P.
Rodrigoa, et al, Journal of Hazardous Materials 2009,164:120–125 [5] MeifenWu, Guohua Zhao, Mingfang Li, et al, Journal of Hazardous Materials 2009, 163: 26-31 [6] GAO Cheng Yao, CHANG Ming, Acta Phys.
Ti is an attractive substrate material for the BDD film electrodes due to the compromise between material cost, corrosion and mechanical stability[7].
The electrochemical oxidation of 2,4-dichlorophenol at BDD electrode is to evaluate the potential application of this electrode material for the electrochemical treatment of phenol – containing wastewater.
Murugananthan, Electrochimica Acta 2009, 54: 2031–2038 [2]Lei Liu, Guohua Zhao, Meifen Wu, et al, Journal of Hazardous Materials 2009, 168 :179–186 [3] Onofrio Scialdone, Alessandro Galia, Giuseppe Filardo, Electrochimica Acta 2008, 53: 7220–7225 [4] P.
Rodrigoa, et al, Journal of Hazardous Materials 2009,164:120–125 [5] MeifenWu, Guohua Zhao, Mingfang Li, et al, Journal of Hazardous Materials 2009, 163: 26-31 [6] GAO Cheng Yao, CHANG Ming, Acta Phys.
Online since: August 2014
Authors: Alexander Ryabchikov, Harri Lille, Jakub Kõo, Fjodor Sergejev, Renno Reitsnik, Min Jie Dong
Brush-plating is a simple processing method for selective plating of desired materials onto metallic materials without dipping the machine part (work piece) into a tank of the electrolyte.
Materials Science (Medžiagotyra) 4 (2002) 417–420
[6] Micro and Nano Mechanical Testing of Materials and Devices.
Materials Science and Engineering A 416 (2006) 139–149
Journal of Ceramic Processing Research.
Materials Science (Medžiagotyra) 4 (2002) 417–420
[6] Micro and Nano Mechanical Testing of Materials and Devices.
Materials Science and Engineering A 416 (2006) 139–149
Journal of Ceramic Processing Research.
Online since: January 2013
Authors: Zi Liang An, Fu Zhen Xuan, Shan Tung Tu
Journal of Nuclear Materials, 1998, 258-263: 281-288
[3] Yu X.
Key Engeering Materials, 2006, 324-325: 979-982 [6] Li J.
Journal of Nuclear Materials, 2003, 321(2-3): 129-134 [7] Kundu S, Chatterjee S.
Materials Science and Engineering A, 2004, 36(1-2): 119-123 [9] Kliauga A.
Materials Characterization, 2005, 54(4-5): 327-337
Key Engeering Materials, 2006, 324-325: 979-982 [6] Li J.
Journal of Nuclear Materials, 2003, 321(2-3): 129-134 [7] Kundu S, Chatterjee S.
Materials Science and Engineering A, 2004, 36(1-2): 119-123 [9] Kliauga A.
Materials Characterization, 2005, 54(4-5): 327-337