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Online since: July 2005
Authors: José-Maria Calderón Moreno, Guy Anné, Monica Popa, Pavol Hvizdoš, Raúl Bermejo
Calderón Moreno,1 Pavol Hvizdoš,1 Raúl Bermejo,1 Guy Anne 2 1 Materials Science and Engineering Department, Universidad Politecnica de Catalunya, Avda.
Journal Title and Volume Number (to be inserted by the publisher) 3 Raman.
Ford: Functionally Graded Materials: Design, Processing and Applications.
Materials Processing Technology 143-144 (2003), p. 572
Van der Biest: Functionally Graded Materials VII, Trans Tech Publications, Switzerland, 2003, p. 171
Online since: September 2013
Authors: Ye Fa Tan, Hui Yong Ji, Li Gao, Xiao Long Wang, Wei Zhao, Qi Feng Jing
During ESD process, when the Stellite 21 electrode touched the 45 steel surface, high density current was produced in a very short time of 10-6~10-5 s, and high temperature plasma arc of 8000~25000 ˚C was formed [3], then the Stellite materials were melted immediately and sputtered to the substrate surface in high speed.
The Stellite 21 materials transferred and infiltrated onto the substrate surface continually by repeated deposition, then new strengthening points were formed, and accordingly numerous strengthening points overlapped with each other to form a strengthening coating with an orange peel macro-morphology.
This is mainly because at the initial stage of ESD, under the influence of the instantaneous high temperature, when Stellite 21 materials sputter to the substrate, the substrate materials are melted rapidly and splash towards the electrode, accordingly electrode materials and substrate materials mix with each other in bonding zone.
Zhou: Welding Journal, Vol. 89 (2010), p. 172
Sun: Journal of University of Science and Technology Beijing, Vol. 31 (2009), p. 1152.
Online since: December 2007
Authors: Fang Hong Sun, Ming Chen, Bin Shen, Wei Zuo
Introduction Diamond was one of the ideal materials which were suitable for industrial applications because of its unique combination of excellent physical properties, such as high hardness, good thermal conductivity, outstanding wear and chemical resistance.
Shen: Journal of Materials Processing Technology, Vol.129 (2002), pp.435
Shen: Diamond and Related Materials, Vol.13 (2004), pp.6
Wen: Modelling and Simulation in Materials Science and Engineering, Vol.12 (2004), pp.325
Manricio: Brazilian Journal of Physics,Vol.36 (2006), pp.313.
Online since: December 2012
Authors: Chi Ma, Jue Ying Zhang, Ying De Hu, Chen Xuan Dong
It will narrow the cost gap between the PV power generation and conventional power generation. 2.2 Weaknesses The production process of PV is of energy intensive and high raw material input.
Due to the constrains of the production technology in China, the average raw material consumption and energy consumption per unit of PV product is higher than the average in the world.
For instance, for producing 1 kg polycrystalline silicon in China, it needs 4 times of energy input, and much more raw material input than that required in the industrial counties, such as 4 times of silicon powder, 13 times of liquefied Chloride (Cl) and 90 times of Hydrogen, etc.
Acknowledgements The research is supported jointly by Scientific Research Foundation sponsored by the Youth Program of Humanities Social Science sponsored by National Ministry of Education (10YJC630086), Zhejiang Provincial Natural Science Foundation (LY12G03032) and Chinese Research Institution of SME from Zhejiang University of technology.
Chinese and Foreign Energy,vol. 16,July,2011 [2] Chen Rong: Opportunity and challenge for Chinese PV industry development after nuclear crises in Japan, Journal of Zhengzhou Aviation Industrial Management College, vol.29, August, 2011 [3] Yu Zhongdong: Strategic analysis on Chinese PV industry and development, Hebei Journal, vol, 30, September, 2010 [4] Pu Xinping: Current statement and tendency of polycrystalline industry at home and abroad, Chemical Industry. vol.26,July, 2008 [5] Li Hua, Xia Aiming: Strategic thinking on PV industry development in China, Proceedings of 10th Annual Conference on Solar PV technology [6] http://news.bjix.com.cn/html/20120417/354836shtml [7] http://www.jrj.com.cn/newsread.detail.asp?
Online since: September 2013
Authors: Yan Ling Zhao, Chun Yu Che, Hong Bo Wang, Zi Yan Yun, Guan Hong Xu
Application of Knowledge Based Engineering in Aeronautics Mold Parts Parametric Design ZHAO Yan-ling1,a, CHE Chun-yu2,b, WANG Hong-bo3,c, YUN Zi-yan4,d, XU Guan-hong5,e 1,2,3,4 School of Mechanical and Power Engineering, Harbin University of Science and Technology, NO.52 Xue fu Street, Nan gang District,Harbin,150080,China 5Technical Supervision Center of Daqing Petroleum Administration Bureau, NO.552 Xi bin Street, Rang hu lu District,Daqing,163453,China azhaoyanling@sina.com,bchechunyu_1988@126.com,c573572750@qq.com, dyunziyan89@126.com, e724460325@qq.com Keywords: Aeronautic mold part, knowledge-based engineering, knowledge fusion, parametric design.
Introduction Composite material has the specific material properties of high strength, high stiffness, fatigue resistance and corrosion resistance, which make it be one of the uppermost material in aircraft parts manufacturing[1,2].
Acknowledgment Supported by national science foundation (51275140), scientific research project of Heilongjiang department (12511094) and Harbin technical personnel special fund (2011RFJGG010).
References [1] Fuguan Zhang:Research on Parametric Design of Molding Tools for Composite Material Components (2009) [2] G.Bravo-Aranda, F.Hernandez-Rodriguez: Knowledge-based system development for assisting structural design.Advances in Engineering Software.Vol. 30(2009),p.763-774 [3] Hezhen Yang, Deyu Wang, Lijuan Xia: The research development of knowledge engineering in ship design.
Journal of agricultural machinery .Vol. 4(2003),p.109-112 [6] Yufeng Zhang:Applied research of aerospace manufacturing mould.Metal processing.Vol. 9(2010),P.22-24 [7] Kun Chen, Pei Chen, Dingfang Chen: Expert system research and development of mould design based on knowledge base engineering.Journal of wuhan university of science and technology.
Online since: May 2013
Authors: Qiang Yu, Guang Ren Lv
Intelligent supply chain to realize the intelligent logistics management system, through the effective allocation of resources, make the enterprise in the supply chain between the flow of materials more fully more efficient supply chain, ensure real-time material supply and business of the implementation of the synchronization operation.
References [1] Dongfei Liu, Wei Lu School of Computer Science and Technology, Wuhan University of Technology Wuhan, Hubei Province 430070, China.
Proceedings of 2007 International Symposium on Distributed Computing and Applications to Business, Engineering and Science(Volume Ⅱ)[C], 2007
[5] Thevissen.Patrick W.Implantation of an RFID.tag into human molars t0reduce hard forensic identification labor.Forensic Science Intemational.2006,159(5):S33-S39
The International Journal of Logistics Management,2009
Online since: October 2013
Authors: Chang Yong Li, Chun Yan Jia, Chun Jie Liu
Acknowledgement The authors thank to the financial supports of the Scientific and Technical Leader Raising Plan of Zhengzhou City, China (096SYJH23105); the Support Plan of Science and Technology Innovation Team in Henan University, China (13IRTSHN002); and the Technical Plan Project of Education Department of Henan Province, China (2010A560011).
Ge: Applied Mechanics and Materials Vols. 71-78 (2011), p4361-4364
Li: Advanced Materials Research Vols. 295-297 (2011), p436-439
Liu: Journal of Railway Science and Engineering No.3 (2006), p15-20
Chen: Journal of Kunming University of Science and Technology No.2 (2001), p36-38
Online since: September 2013
Authors: Xiao Xian Li, Wei Jie Li, Liu Yun
Finding the DEF of the feature item’s corresponding concept in the HowNet, obtain a plurality of the feature extension and give the same weight ,, according to the different sememe identifier (Relevance (#) materials (?)
Acknowledgements This work has been supported by the National Natural Science Foundation of China under Grant 61172072, 61271308, the Beijing Natural Science Foundation under Grant 4112045, the Research Fund for the Doctoral Program of Higher Education of China under Grant W11C100030, the Beijing Science and Technology Program under Grant Z121100000312024.
[2] Li, Wen: Fine-grained sentiment classification based on HowNet (Journal of Convergence Information Technology 2012) [3] Huang, Sheng: News topic detection based on hierarchical clustering and named entity (NLP-KE 2011 - Proceedings of the 7th International Conference on Natural Language Processing and Knowledge Engineering 2011) [4] Pullar, R.C.: Method for the preparation of aligned fibre samples for magnetic measurement using VSM (Journal of Magnetism and Magnetic Materials 2000) [5] Zhang, Dan: Topic detection based on K-means (2011 International Conference on Electronics, Communications and Control)
Online since: July 2017
Authors: Anna V. Shipilova, Andrey A. Solovyev, Igor V. Ionov, Anastasya N. Kovalchuk, Maiya R. Rombaeva, Alexander L. Lauk, Alexey M. Lebedinskiy, Egor A. Smolyanskiy
Yttria-stabilized zirconia (YSZ) is the most widely used electrolyte material for SOFCs [1].
In SOFC with reduced operating temperature it is preferable to use materials with mixed ion and electron conductivity, such as La0.6Sr0.4Co0.2Fe0.8O3 (LSCF), which offer sufficiently high electron conductivity at 600 °C [2].
But a significant problem of this material is its ability to enter a chemical reaction with YSZ electrolyte at high working temperatures.
Electrical properties of thin bilayered YSZ/GDC SOFC electrolyte elaborated by sputtering// Journal of Power Sources, 2006, V. 156, p. 45-49
Application of PVD methods to solid oxide fuel cells// Applied Surface Science, 2014, V. 310, p. 272-277
Online since: June 2014
Authors: I.C. Guedes, K.A. Marques, Ricardo Peixoto Suassuna Dutra, Suylan Lourdes Araújo Dantas, Heber Sivini Ferreira
Dutra5,e 1,2,3,4,5Federal University of Paraíba / Technology Center / Department of Materials Engineering - University City, S / N - CEP 58051-900 - João Pessoa - Paraíba, Brazil – Phone: (83) 3216-7076.
Clay Science vol. 33 (2006) p.13–20
Clay Science, v. 42 (2008) p. 8-24
Clay Science vol. 39 (2008) p. 19–27
Journal of Petroleum Science and Engineering vol.45 (2004) p. 123– 128