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Online since: February 2022
Authors: Andrei Galkin, Natalia Klochkova, Dmitrii A. Shatagin, Maksim S. Anosov
Chen, Real-time control of welding penetration during robotic GTAW dynamical process by audio sensing of arc length, The International Journal of Advanced Manufacturing Technology. 74(1-4) (2014) 235-249
Lv, Arc sound model for pulsed GTAW and recognition of different penetration states, The International Journal of Advanced Manufacturing Technology. 108 (2020) 3175-3191
Klochkova, Cyber-physical hybrid processing system digital twin, Materials Science Forum. 1037 (2021) 119-124
Kostyuchenko, Model of the electric arc in Matlab / Simulink, Electrical Engineering and Power Engineering. 2 (2013) 40-46
Lv, Arc sound model for pulsed GTAW and recognition of different penetration states, The International Journal of Advanced Manufacturing Technology. 108 (2020) 3175-3191
Klochkova, Cyber-physical hybrid processing system digital twin, Materials Science Forum. 1037 (2021) 119-124
Kostyuchenko, Model of the electric arc in Matlab / Simulink, Electrical Engineering and Power Engineering. 2 (2013) 40-46
Online since: July 2013
Authors: Jin Zhi Liao, Ming Jen Tan, Emin Bayraktar
Tension-Tension Fatigue Behaviour of Carbon Nanotube Reinforced Aluminium Composites
Jinzhi Liao1,a, Ming-Jen Tan1,b and Bayraktar Emin2,c
1School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore
2Supmeca/LISMMA-Paris, School of Mechanical and Manufacturing Engineering, 3 rue Fernand Hainaut 93407 St Ouen Cedex, France
aliao0025@e.ntu.edu.sg, bmmjtan@ntu.edu.sg, cbayraktar@supmeca.fr
Keywords: Aluminium composite, Carbon nanotubes, Fatigue, Cyclic softening, Dislocation rearrangement
Abstract.
As the crack advanced, energy was dissipated by the frictional pull-out of the bridging CNTs from the matrix, reducing the cyclic crack propagation rate.
As strain advanced, dislocation tangles moved gradually towards the grain boundaries.
Forum 690 (2011) 294
As the crack advanced, energy was dissipated by the frictional pull-out of the bridging CNTs from the matrix, reducing the cyclic crack propagation rate.
As strain advanced, dislocation tangles moved gradually towards the grain boundaries.
Forum 690 (2011) 294
Online since: December 2013
Authors: Meng Gang Li, Bing Qing Zhao, Zhu Cui Jing
The NREL dedicates to develop renewable energy and energy efficiency technologies and practices, advances related science and engineering, and transfer knowledge and innovations to address the nation’s energy and environmental goals.
Fixed-price subsidy system, quota system, energy tax, franchise, financial subsidies and public benefit funds are commonly used institutional tools for new energy area and key strategies for advancing new energy development.
First, it is necessary to keep tracing the trend of new energy policies and standards of the developed countries and introduce the advanced international practice to improve the new energy development supporting policy system suitable for China.
Acknowledgements This work was financially supported by the major special project of the Ministry of Education -“Industrial safety engineering research”(239010522), the special project of the Ministry of Education-“Research of Chinese credit rating system”(239005522) and the Beijing Philosophy and Social Science Research Base-Beijing Industrial Security and Development Base Funds.
Available from: http://news.xinhuanet.com/politics/2011-03/16/c_121193916.htm (2011) [3] Information on http://finance.chinanews.com/ny/2012/07-13/4030608.shtml(2012) [4] Chaohua Wang: Economic forum.
Fixed-price subsidy system, quota system, energy tax, franchise, financial subsidies and public benefit funds are commonly used institutional tools for new energy area and key strategies for advancing new energy development.
First, it is necessary to keep tracing the trend of new energy policies and standards of the developed countries and introduce the advanced international practice to improve the new energy development supporting policy system suitable for China.
Acknowledgements This work was financially supported by the major special project of the Ministry of Education -“Industrial safety engineering research”(239010522), the special project of the Ministry of Education-“Research of Chinese credit rating system”(239005522) and the Beijing Philosophy and Social Science Research Base-Beijing Industrial Security and Development Base Funds.
Available from: http://news.xinhuanet.com/politics/2011-03/16/c_121193916.htm (2011) [3] Information on http://finance.chinanews.com/ny/2012/07-13/4030608.shtml(2012) [4] Chaohua Wang: Economic forum.
Online since: March 2007
Authors: Koshiro Aoki, Akira Azushima
Development and Properties of High Strengthened Carbon Steels
Produced by Repetitive Side Extrusion and Heat Treatment Process
Koshiro Aoki1,a and Akira Azushima2,b
1
Shibaura Institute of Technology, Department of Mechanical Engineering II, Faculty of Engineering,
307 Fukasaku Minuma-ku, Saitama, 337-8570, JAPAN
2
Yokohama National University, Department of Mechanical Engineering, Faculty of Engineering,
79-5 Tokiwadai Hodogaya-ku, Yokohama, 240-8501, JAPAN
a
aoki-k@sic.shibaura-it.ac.jp, b azu@ynu.ac.jp
Keywords: Shear deformation; Ultrafine grain; ECAE.
Engineering(1974), p. 314 [2] K.
Azushima: Advanced Technology of Plasticity 2002, Vol. 2(2002), p.1195 [12] K.
Azushima: Advanced Technology of Plasticity 2005, (2005), p.441 [16] H.
Matsumoto: Advanced Technology of Plasticity, Vol.
Engineering(1974), p. 314 [2] K.
Azushima: Advanced Technology of Plasticity 2002, Vol. 2(2002), p.1195 [12] K.
Azushima: Advanced Technology of Plasticity 2005, (2005), p.441 [16] H.
Matsumoto: Advanced Technology of Plasticity, Vol.
Online since: August 2015
Authors: Alin Cazac, Costică Bejinariu, Petru Lazăr, Ioan Gabriel Sandu, Andrei Victor Sandu
Chemical Deposition of Thin Layers on Reinforcing Steel
Petru LAZĂR1a, Costică BEJINARIU1b, Andrei Victor SANDU1,2,c ,
Alin Marian CAZAC1d, Ioan Gabriel SANDU1,3e
1Gheorghe Asachi Technical University of Iasi, Faculty of Materials Science and Engineering, Blvd.
Mangeron 41, 700050, Iasi, Romania 2 Center of Excellence Geopolymer & Green Technology (CEGeoGTech), School of Materials Engineering, Universiti Malaysia Perlis, 01000 Kangar, Perlis, Malaysia 3Romanian Inventors Forum, Str.
Ricketts, Standard Handbook for Civil Engineers, Fourth Edition, McGraw-Hill Book Company, 1995
Preparation and structural and chemical characterization, Journal of Optoelectronics and Advanced Materials, 14 (2012) 699-703
Evaluation of corrosion resistance, Journal of Optoelectronics and Advanced Materials, 14 (2012) 704-708
Mangeron 41, 700050, Iasi, Romania 2 Center of Excellence Geopolymer & Green Technology (CEGeoGTech), School of Materials Engineering, Universiti Malaysia Perlis, 01000 Kangar, Perlis, Malaysia 3Romanian Inventors Forum, Str.
Ricketts, Standard Handbook for Civil Engineers, Fourth Edition, McGraw-Hill Book Company, 1995
Preparation and structural and chemical characterization, Journal of Optoelectronics and Advanced Materials, 14 (2012) 699-703
Evaluation of corrosion resistance, Journal of Optoelectronics and Advanced Materials, 14 (2012) 704-708
Online since: June 2011
Authors: Sheng Lu, Jing Chen, Liang Wen Wu
Microstructure and properties of TiAlN compound films fabricated on AZ91D alloy by magnetron sputtering
Sheng LU1a, Liangwen WU1b and Jing CHEN2c
1School of Materials Science and Engineering; Jiangsu University of Science and Technology, Zhenjiang, 212003, Jiangsu, China
2School of Mechanical Engineering; Jiangsu University of Science and Technology,
Zhenjiang, 212003, Jiangsu, China
alusheng119@yahoo.com.cn, bwlw_mail@yahoo.com.cn, cchenjing0612@yahoo.com.cn
Keywords: TiAlN film, magnetron sputtering, magnesium alloy, corrosion.
Acknowledgment The present work was supported by the key laboratory of advanced welding technology of Jiangsu Province, China, grant No.
Clow: Advanced Materials and Processes Vol. 150 (4) (1996), p. 33
Ebert: Materials Science and Engineering A Vol. 302 (1) (2001), p. 37
Liu: Material science forum Vol. 561-565 (2007), p. 1185
Acknowledgment The present work was supported by the key laboratory of advanced welding technology of Jiangsu Province, China, grant No.
Clow: Advanced Materials and Processes Vol. 150 (4) (1996), p. 33
Ebert: Materials Science and Engineering A Vol. 302 (1) (2001), p. 37
Liu: Material science forum Vol. 561-565 (2007), p. 1185
Online since: April 2012
Authors: Rafael Rezende Montes, Henrique Souza de Santis, Priscila Anadão, Hélio Wiebeck
Rheology Assessment of PSf/ NMP Solution and its Influence on Membrane Structure
Priscila Anadãoa, Rafael Rezende Montesb, Henrique Souza de Santisc
and Hélio Wiebeckd
Department of Metallurgical and Materials Engineering, School of Engineering, University of São Paulo, 05508-900, Brazil
apriscila.anadao@gmail.com (corresponding author), b rrmontes85@gmail.com,
c souzadesantis@yahoo.com.br, dhwiebeck@usp.br
Keywords: polysulfone, membrane, wet-phase inversion method, molar mass.
Polysulfone (PSf) is widely used as an engineering thermoplastic material to fabricate membranes for applications in microfiltration, ultrafiltration, reverse osmosis and gas separation [4-6].
Experimental Polysulfone (PSf) Udel® P-1700 and Udel® P-3500, whose Mw* are 62973 and 71526, respectively, were kindly supplied by Solvay Advanced Polymers.
Authors are thankful to Solvay Advanced Polymers for giving polysulfone Udel® P-1700 and P-3500.
Forum Vol. 660-661 (2010), p. 1081
Polysulfone (PSf) is widely used as an engineering thermoplastic material to fabricate membranes for applications in microfiltration, ultrafiltration, reverse osmosis and gas separation [4-6].
Experimental Polysulfone (PSf) Udel® P-1700 and Udel® P-3500, whose Mw* are 62973 and 71526, respectively, were kindly supplied by Solvay Advanced Polymers.
Authors are thankful to Solvay Advanced Polymers for giving polysulfone Udel® P-1700 and P-3500.
Forum Vol. 660-661 (2010), p. 1081
Online since: May 2014
Authors: Quan An Li, Xiao Jie Song, Wen Chuang Liu
Advanced Materials Research. 750-752(2013) 583-586
Materials Science and Engineering, A. 302(2001) 47-52
Materials Science and Engineering, B. 127(2006) 105-107
Mater Sci Forum.419-422(2003) 473—478
Advanced Materials Research..352(2011) 239-242
Materials Science and Engineering, A. 302(2001) 47-52
Materials Science and Engineering, B. 127(2006) 105-107
Mater Sci Forum.419-422(2003) 473—478
Advanced Materials Research..352(2011) 239-242
Online since: June 2014
Authors: Bo Jiang, Ying Pan
Smart Metering for Applications
Ying Pan 1, a *, Bo Jiang 2,b
1Harbin University Engineering Institute Harbin ,China
2Harbin University Engineering Institute Harbin, China
a64271449@qq.com, b623013565@qq.com
Keywords: smart meter; remote monitoring; distribution grid; power industry; energy efficiency.
Smart meter is an advanced energy meter that measures consumption of electrical energy providing additional information compared to a conventional energy meter.
Smart meter is an advanced energy meter that measures the energy consumption of a consumer and provides added information to the utility company compared to a regular energy meter.
Khan, “Monitoring Power for the Future”, Power Engineering Journal, April 2001, IEE, pp. 81-85
[8] Han Chen, Paul Chou, Sastry Duri, Hui Lei, Johnathan Reason, “The Design and Implementation of a Smart Building Control System,” E-Business Engineering, IEEE International Conference on, pp. 255-262, 2009 IEEE International Conference on e-Business Engineering [9] Lee.P.K., Lai.
Smart meter is an advanced energy meter that measures consumption of electrical energy providing additional information compared to a conventional energy meter.
Smart meter is an advanced energy meter that measures the energy consumption of a consumer and provides added information to the utility company compared to a regular energy meter.
Khan, “Monitoring Power for the Future”, Power Engineering Journal, April 2001, IEE, pp. 81-85
[8] Han Chen, Paul Chou, Sastry Duri, Hui Lei, Johnathan Reason, “The Design and Implementation of a Smart Building Control System,” E-Business Engineering, IEEE International Conference on, pp. 255-262, 2009 IEEE International Conference on e-Business Engineering [9] Lee.P.K., Lai.
Online since: September 2014
Authors: Nikita V. Martyushev, Alexandr V. Kabyshev, Igor G. Vidayev, Aleksander S. Ivashutenko
Another feature of alumina-zirconia ceramics is its large anionic conductivity at high temperatures, which allows attributing this ceramic material to superionic conductors widely applied in power engineering.
Martyushev, Alignment of the microstructure of castings from the heterophase lead bronzes, Advanced Materials Research. 880 (2014) 163 - 167 [3] N.V.
Semenkov, The possibility of casting surface alloying by nanopowders, Advanced Materials Research. 880 (2014) 272 - 275 [4] I.G.
Bogdan, The resource efficiency assessment technique for the foundry production, Advanced Materials Research. 880 (2014) 141 - 145 [5] A.A.
Kostikov, Study of phase formation processes in a three-component system of diopside, porcelain, alumina, in Proceedings of the Russian-German Forum on Nanotechnology, Tomsk Polytechnical University, Tomsk, 2013, pp. 201-205
Martyushev, Alignment of the microstructure of castings from the heterophase lead bronzes, Advanced Materials Research. 880 (2014) 163 - 167 [3] N.V.
Semenkov, The possibility of casting surface alloying by nanopowders, Advanced Materials Research. 880 (2014) 272 - 275 [4] I.G.
Bogdan, The resource efficiency assessment technique for the foundry production, Advanced Materials Research. 880 (2014) 141 - 145 [5] A.A.
Kostikov, Study of phase formation processes in a three-component system of diopside, porcelain, alumina, in Proceedings of the Russian-German Forum on Nanotechnology, Tomsk Polytechnical University, Tomsk, 2013, pp. 201-205