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Online since: February 2011
Authors: Xiao Feng Shang, Kai Zhang
Microstructure and Properties of Thin-Wall Part by Laser Metal Deposition Shaping Kai Zhang1,a and Xiaofeng Shang2,b 1School of Mechanical Engineering, Shenyang University of Technology, Shenyang 110870, China 2School of Machinery and Automobile, Shenyang Institute of Aeronautical Engineering, Shenyang 110136, China azhangkai@sut.edu.cn, bxfshang@vip.sohu.com Keywords: microstructure and properties; thin-wall part; Laser Metal Deposition Shaping (LMDS); grain categories.
The advanced technology can build fully-dense metal components directly from CAD files without a mould or tool.
Introduction Laser additive direct metal deposition is an advanced manufacturing technology, which developed from laser cladding and rapid prototyping techniques.
Materials Science and Engineering, 65(1): 75-83
Materials Science Forum, Vols. 534-536: 457-460.
Online since: June 2010
Authors: J.S. Bhatti, R.A. Pasha
Box No. 1398, Rawalpindi, Pakistan. 2 University of Engineering & Technology Taxila, P.O.
The aim of this research work is the advancement of the coupled field analysis for structural vibration control with advanced methodology and to promote the design and analysis activities in the field of passive vibration control techniques using smart structures.
G., "The Piezo-Electric Resonator," Proceedings of the Institute of Radio Engineering, Vol. 10, 1922, pp. 83-114
R., "An Examination of Applying Shunted Piezoelectrics to Reduce Aeroelastic Response," CEAS/AIAA/ICASE/NASA Langley International Forum on Aeroelasticity and Structural Dynamics 1999, Williamsburg, Virginia, June 22-25, 1999
Molyneaux., " Energy Transduction Analysis of Piezoelectric based Vibration Control of Smart Structures.," School of Aerospace, Mechanical & Manufacturing Engineering, RMIT Univ.
Online since: July 2015
Authors: Bogdan Pojawa
The Institution of Electrical Engineers, London 2000
Huang, "Effect of Ambient Temperature on Three-Shaft Gas Turbine Performance under Different Control Strategy", Advanced Materials Research, Vols 424-425, pp. 276-280, Jan. 2012
School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN 47907-1288, USA 2014
Hu, "Research on NOx Concentration Field Distribution of a Turbo-Jet Engine Emissions", Advanced Materials Research, Vols 732-733, pp. 46-51, Aug. 2013
Tang, "Thermal and Stress Field Analysis in Heavy-Duty Gas Turbine Exhaust System", Advanced Materials Research, Vols 516-517, pp. 688-691, May. 2012
Online since: May 2011
Authors: Xiao Yu Zhang
The Behavior and Effect of Nano-copper on the Interface in the Process of Sintering Fe-base Powder Metallurgy Parts ZHANG Xiao-yu Key Laboratory of Advanced Structrural Materials, Ministry of Education, Changchun University of Technology, Changchun 130012, P.
The Science and design of engineering materials .Beijing: Mechanical industry publishing, (2003)
Mechanical engineering,Forum Vol. 4(2005),p. 5-11
Influence ofspecimen dimensions on the tensile behavior of ultra-fine-grained Cu.Scripta Materialia .Forum Vol. 59(2008), p. 627-630 .
Online since: September 2018
Authors: R.L.O. da Rosa, R.A.C. Felix, Luiz P. Brandão
Xavier Sigaud, 150, Urca, Rio de Janeiro - RJ - Brasil - CEP: 22290-180. 2Section of Mechanical and Materials Engineering, Instituto Militar de Engenharia - IME.
Kestens: Advanced Engineering Materials Vol. 12 (10) (2010), p.1077
Paolinelli: Materials Science Forum Vols. 467-470 (2004), p. 869
Bezerra: Materials Science Forum Vols. 775-776 (2014), p. 427
Online since: March 2010
Authors: J.H. Li, Wei Fu Fan, Zhong Mei Zhang
Zhang 3,c 1 School of Mechanical and Electric Engineering, Zhongyuan University of technology 2 School of Electric and Information Engineering, Zhongyuan University of technology 3 College of Information & Business, Zhongyuan University of technology ZhengZhou, P.R.
Li: Materials Science & Engineering A, Vols.499 (1) (2008), pp.248-251
Fan.: Materials Science & Engineering A, Vols. 499 (1) (2008), pp.200-203
Ding: Materials Science Forum, Vols.575-578 (2009), pp.316-321
Zhang: Materials Science Forum, Vols. 628-629 (2009), pp.541-546.
Online since: October 2010
Authors: M. Bobby Kannan, V.S. Raja
Raja 2, b 1 Discipline of Chemical Engineering, James Cook University, Townsville 4811, Australia 2 Department of Metallurgical Engineering and Materials Science, Indian Institute of Technology Bombay, Mumbai, India a bobby.mathan@jcu.edu.au, bvsraja@iitb.ac.in Keywords: Aluminium alloys; Stress corrosion cracking; Intergranular corrosion; Heat-treatment; Scandium alloying Abstract.
Forum 331-337 (2000), p.1653
Raja: Engineering Fracture Mechanics 77 (2010), p.249
Raja: Advances in Mater.
Forum 331-337 (2000), p.799.
Online since: April 2007
Authors: Renata Bachorczyk Nagy, Marek Danielewski, Maciej Pietrzyk, Bartłomiej Wierzba
The Stress Field in Cu-Fe-Ni Diffusion Couples Bartłomiej Wierzba1,a, Marek Danielewski2,b , Renata Bachorczyk-Nagy 2,c and Maciej Pietrzyk1,d 1 Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, Al.
The Calphad is an effective method and can be used in advanced modeling.
Danielewski, Defect and Diffusion Forum, 237-240 (2005), p. 50 [12] D.R.
A Handbook for Materials Research and Engineering.
A Handbook for Materials Research and Engineering.
Online since: October 2020
Authors: Antônio Augusto Couto, Givanildo Alves dos Santos, Carlos Frajuca, Francisco Yastami Nakamoto, Gilmar Ferreira Batalha, Vinícius Torres dos Santos, Márcio Rodrigues da Silva, Alexandre Neves Ribeiro, Mauricio Silva Nascimento
The effects of manufacturing processes on microstructure and properties of engineering materials have been highlighted in various studies [1-7].
Santo: Materials Science Forum Vol. 899 (2017), p. 424
Couto: Defect and Diffusion Forum vol. 371 (2017), p. 78
Garcia: Advanced structured materials Vol. 33 (2017), p. 215
Garcia: Journal of Materials Engineering and Performance Vol. 23 (1) (2014), p. 333
Online since: June 2025
Authors: Hisaki Watari, Shinichi Nishida, Hiizu Ochi, Misaki Kubozono, Hiroshi Fuse, Toshio Haga
Watari: Advanced Materials Research Vol. 264-265 (2011), p. 1911 [3] S.
Kumai: Archives of Materials Science and Engineering , Vol. 30(2008), p.117
Nishida: Key Engineering Materials, Vol. 978 (2023), p 35
Nishida: Materials Science Forum, Vol. 1007 (2020), p. 34
Haga: Key Engineering Materials, Vol. 934 (2022), p. 81.