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Online since: June 2019
Authors: Bu Ming Chen, Shi Chuan Wang, Sheng Chen, Tai Xiang Huang, Hui Huang, Ya Peng He, Wen Kai Yan, Zhong Cheng Guo, Rui Dong Xu, Hai Tao Yang
Composite PbO2-TiO2 materials deposited from colloidal electrolyte: Electrosynthesis, and physicochemical properties.
Effects of current density on preparation and performance of Al/conductive coating/a-PbO2-CeO2-TiO2/β-PbO2-MnO2-WC-ZrO2 composite electrode materials.
Rare Metal Materials and Engineering, 45(2016):946-951
Corrosion Science, 44(2002):1655-1668
[34] W Yang, H Wang, F Fu, Preparation and performance of Ti/Sb-SnO2/β-PbO2 electrode modified with rare earth, Rare Metal Materials and Engineering, 39(2010):1215-1218
Effects of current density on preparation and performance of Al/conductive coating/a-PbO2-CeO2-TiO2/β-PbO2-MnO2-WC-ZrO2 composite electrode materials.
Rare Metal Materials and Engineering, 45(2016):946-951
Corrosion Science, 44(2002):1655-1668
[34] W Yang, H Wang, F Fu, Preparation and performance of Ti/Sb-SnO2/β-PbO2 electrode modified with rare earth, Rare Metal Materials and Engineering, 39(2010):1215-1218
Online since: April 2014
Authors: Feng Ping Wang, Mei Xu, Xue Jiao Liu, Jian Ling Hu, Yan Li, Quan Shui Li, Yan Zhen Lu
The Journal of Physical Chemistry C, 2008, 112(29): 10773-10777
The Journal of Physical Chemistry C, 2011, 115(18): 9136-9145
The Journal of Physical Chemistry, 1993, 97(25): 6692-6695
Journal of Materials Chemistry, 2011, 21(8): 2495-2501
The Journal of Physical Chemistry B, 2002, 106(37): 9463-9483
The Journal of Physical Chemistry C, 2011, 115(18): 9136-9145
The Journal of Physical Chemistry, 1993, 97(25): 6692-6695
Journal of Materials Chemistry, 2011, 21(8): 2495-2501
The Journal of Physical Chemistry B, 2002, 106(37): 9463-9483
Online since: April 2011
Authors: Soumia Bendella, Ahmed Belasri
Modeling of a Ne-Xe-HCl DC Discharge for Excimer Lamp
BENDELLA Soumia and BELASRI Ahmed
Laboratory of Plasma Physics, Materials Conducting and their Applications
Faculty of Science.
It is a function of the cathode material and the photon energy.
Kroesen: Journal of Applied Physics Vol. 90 (2001), p. 3720 [4] U.
Carman: IEEE Transactions on Plasma Science Vol. 30 n°1 (2002) [19] R.J.
Manos: Journal of Applied Physics, Vol. 85 (1999), p. 7505 [25] M.V.
It is a function of the cathode material and the photon energy.
Kroesen: Journal of Applied Physics Vol. 90 (2001), p. 3720 [4] U.
Carman: IEEE Transactions on Plasma Science Vol. 30 n°1 (2002) [19] R.J.
Manos: Journal of Applied Physics, Vol. 85 (1999), p. 7505 [25] M.V.
Online since: October 2010
Authors: Kai Yong Jiang, Hong You Li, Chao Huang, Hao Ping Zeng, Yu Ying Shi
Because the workpiece material is accreted at atomic size and there is no heat affected zones, cutting force and tool wear.
Journal of materials science, 1995 (30):5743-5749
Journal of Applied Electrochemistry, 1993, 23(3): 231-240
Journal of Alloys and Compounds, 2008, 466(1-2): 19-22
Tsinghua Science and Technology, 2009, 14(S1):144-148
Journal of materials science, 1995 (30):5743-5749
Journal of Applied Electrochemistry, 1993, 23(3): 231-240
Journal of Alloys and Compounds, 2008, 466(1-2): 19-22
Tsinghua Science and Technology, 2009, 14(S1):144-148
Online since: April 2014
Authors: Xiao Ping Su, Jin Hui Guo
Table 2 Mix ratio and property of NSC C30
raw materials (kg/m3)
slump
(mm)
28d cube compressive strength
(MPa)
cement
water
sand
aggregate
354
170
657
1220
62
37.2
Test Results and Analysis
Appearance Change of NSC under the Action of Salt Corrosion and Dry-wet Cycle
The appearance of concrete specimens changed gradually under the action of dry–wet cycle in each salt solution.
Acknowledgements The project was financially supported by the research project of Ministry of Housing and Urban-Rural Development of China(2013-H-4), science and technology research project of Jilin Provincial Science & Technology Department(20130413055GH), and the key discipline of Jilin province.
Journal of Ecology and Rural Environment, 2006, 22(1): 20-23, 28 (In Chinese)
Chinese Journal of Soil Science, 2001(S1): 26-30 (In Chinese)
Journal of Jilin University (Earth Science Edition), 2013,43(3): 851-857 (In Chinese)
Acknowledgements The project was financially supported by the research project of Ministry of Housing and Urban-Rural Development of China(2013-H-4), science and technology research project of Jilin Provincial Science & Technology Department(20130413055GH), and the key discipline of Jilin province.
Journal of Ecology and Rural Environment, 2006, 22(1): 20-23, 28 (In Chinese)
Chinese Journal of Soil Science, 2001(S1): 26-30 (In Chinese)
Journal of Jilin University (Earth Science Edition), 2013,43(3): 851-857 (In Chinese)
Online since: August 2013
Preface
On the successful basis of GBMCE 2011 and 2012, 2013 the 3rd International
Conference on Green Building, Materials and Civil Engineering (GBMCE) will
be held in Taiwan during August 21-23, 2013, The conference aims mainly at
promoting the development of Green Building, Materials and Civil Engineering,
strengthening the international academic cooperation and communications, and
exchanging research ideas.
I think GBMCE 2013 will be the most comprehensive Conference focused on the Building, Materials and Civil Engineering.
We believe the proceedings will provide the readers a broad overview of the latest advances in the field of Building, Materials and Civil Engineering.
On behalf of the guest editors for this conference proceeding, we would like to thank the National 863 Program of China, National Science Fund of China.
Thomas Wohlbier, Managing Editor of Journal of Advanced Materials Research, is greatly acknowledged.
I think GBMCE 2013 will be the most comprehensive Conference focused on the Building, Materials and Civil Engineering.
We believe the proceedings will provide the readers a broad overview of the latest advances in the field of Building, Materials and Civil Engineering.
On behalf of the guest editors for this conference proceeding, we would like to thank the National 863 Program of China, National Science Fund of China.
Thomas Wohlbier, Managing Editor of Journal of Advanced Materials Research, is greatly acknowledged.
Online since: April 2026
Authors: Alan Taub, Jacob Harris, Sangharsha Gharat, Luohaoran Wang, Ali Zolali, Mihaela Banu
American Journal of Applied Sciences, 11(10):1798, 2014
In Proceedings of the 2023 International Conference on Composite Materials, 2023
Mechanics of Advanced Materials and Structures, 24(5):377–384, 2017
In IOP Conference Series: Materials Science and Engineering, volume 96, page 012012.
Journal of Composites Science, 5(12):319, 2021
In Proceedings of the 2023 International Conference on Composite Materials, 2023
Mechanics of Advanced Materials and Structures, 24(5):377–384, 2017
In IOP Conference Series: Materials Science and Engineering, volume 96, page 012012.
Journal of Composites Science, 5(12):319, 2021
Online since: September 2013
Authors: Yan Zhao, Qing Song Yang
Materials and Methods
1.1 The materials
The seeds of winter oilseed rape (Brassica Napus L.
Jiang, Chinese Science Bulletin 58, 2, 140.(2013) [2].
Azooz, Global Journal of Molecular Sciences 3, 1, 18-20.( 2008) [3].
Sharma, Journal of Environmental Biology 30, 3, 461-466. (2009) [4].
Tahira, Pakistan Journal of Biological Science 4, 5, 575-580. (2001)
Jiang, Chinese Science Bulletin 58, 2, 140.(2013) [2].
Azooz, Global Journal of Molecular Sciences 3, 1, 18-20.( 2008) [3].
Sharma, Journal of Environmental Biology 30, 3, 461-466. (2009) [4].
Tahira, Pakistan Journal of Biological Science 4, 5, 575-580. (2001)
Online since: March 2010
Authors: Hong Min Guo, Xiang Jie Yang, Xue Quan Luo
Heterogeneous nucleation for AZ91 with in situ synthesis Al4C3
Xue-Quan Luo, Hong-Min Guo a, Xiang-Jie Yang
School of Materials Science and Engineering, Nanchang University, Nanchang 330031, China
a
guohongmin@ncu.edu.cn
Keywords: Mg-Al alloys, Heterogeneous nucleation, Al4C3.
[7] Tongxiang Fan, Zhongliang Shi, Di Zhang and Renjie Wu: Materials Science and Engineering.
Hashmi: Journal of Materials Processing Technology.
Hashmi: Journal of Materials Processing Technology.
[11] Yaghmaee, M.S. and Kaptay.G: Materials Science Forum.
[7] Tongxiang Fan, Zhongliang Shi, Di Zhang and Renjie Wu: Materials Science and Engineering.
Hashmi: Journal of Materials Processing Technology.
Hashmi: Journal of Materials Processing Technology.
[11] Yaghmaee, M.S. and Kaptay.G: Materials Science Forum.
Online since: January 2005
Authors: Mei Ling Wang, Guo Liang Chen, Xidong Hui
Influence of Nb on the Interface Structure of Tungsten Fiber Reinforced
Zr-based Bulk Metallic Glass Composites
*
Wang meiling
1, a
, Hui xidong
1,b and Chen guoliang
1,c
1
State Key Laboratory for Advanced Metal and Materials, University of Science and Technology
Beijing, Beijing, 100083, P.
References [1] Bian Zan, He Guo: Rear Metal Materials and Engineering Vol. 30, (2001), P. 190 [2] T.C.
Johnson; J.Mater.Res. 13(1998), P. 2898 [9] Qiu Keqiang,Wang Aimin,Zhang Haifeng: Chinese Journal of Materials Research Vol 16(2002), P.389 [10] T.B.
Ishida: Journal of Materials Science 21(1986), P. 1171 [13] Yu Yongning: Principles of Metallography (Metallurgical Industry Press, Beijing 2000) [14] G.
Metcalfe: Composite Materials: Interface in Metal Matrix Composites (Academic Press, London 1974). 2 1 0 -1 -2 -3 0.0 0.2 0.4 0.6 0.8 1.0 a,Zr55Al10Ni5Cu30 b,(Zr55Al10Ni5Cu30)0.98Nb2 c, Zr57Al10Ni12.6Cu15.4Nb5 W fiber matrix c b a Relative Concentration of Zr Dinstance from the Center of Interface(um) Fig. 4 Relative concentration of Zr across the W fiber/matrix interface Table 2 The diffusion coefficient of Zr in W fiber
References [1] Bian Zan, He Guo: Rear Metal Materials and Engineering Vol. 30, (2001), P. 190 [2] T.C.
Johnson; J.Mater.Res. 13(1998), P. 2898 [9] Qiu Keqiang,Wang Aimin,Zhang Haifeng: Chinese Journal of Materials Research Vol 16(2002), P.389 [10] T.B.
Ishida: Journal of Materials Science 21(1986), P. 1171 [13] Yu Yongning: Principles of Metallography (Metallurgical Industry Press, Beijing 2000) [14] G.
Metcalfe: Composite Materials: Interface in Metal Matrix Composites (Academic Press, London 1974). 2 1 0 -1 -2 -3 0.0 0.2 0.4 0.6 0.8 1.0 a,Zr55Al10Ni5Cu30 b,(Zr55Al10Ni5Cu30)0.98Nb2 c, Zr57Al10Ni12.6Cu15.4Nb5 W fiber matrix c b a Relative Concentration of Zr Dinstance from the Center of Interface(um) Fig. 4 Relative concentration of Zr across the W fiber/matrix interface Table 2 The diffusion coefficient of Zr in W fiber