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Online since: March 2010
Authors: Xi Peng Xu, Guo Qin Huang, Hai Rong Wu
PCBN
cutters was manufactured by a China National Engineering Research Center and their main
geometric parameters are: front rake=0º, relief angle=7 º, wedge angle=90 º, nose radius=0.3mm,
and chamfer=-2º×0.5mm.
The voltage generated by the tool-workpiece thermocouple (ε) was also collected by DEWE-2010 and transferred into cutting temperature (T) based on the relation of voltage - temperature curve calibrated in advance.
Fukayac: Materials Science Forum, Vols. 534-536 (2007), pp.1117-1120
The voltage generated by the tool-workpiece thermocouple (ε) was also collected by DEWE-2010 and transferred into cutting temperature (T) based on the relation of voltage - temperature curve calibrated in advance.
Fukayac: Materials Science Forum, Vols. 534-536 (2007), pp.1117-1120
Online since: November 2014
Authors: Hong Wang, Hong Cheng Tian
Introduction
Universal Plug and Play (UPnP) [1-3] is proposed by UPnP forum, which is headed by microsoft corporation.
When values of stateful variables change, the service descriptive file may define whether event messages are sent to the facility fixed in advance (such as, controller or information appliance).
[2] Yun Cui, Hanku Lee: Method of Device Matching for QoS Based UPnP Framework in Cloud Computing Service, (2011 First ACIS/JNU International Conference on Computers, Networks, Systems and Industrial Engineering (CNSI), 2011)
When values of stateful variables change, the service descriptive file may define whether event messages are sent to the facility fixed in advance (such as, controller or information appliance).
[2] Yun Cui, Hanku Lee: Method of Device Matching for QoS Based UPnP Framework in Cloud Computing Service, (2011 First ACIS/JNU International Conference on Computers, Networks, Systems and Industrial Engineering (CNSI), 2011)
Online since: January 2020
Authors: Sergey O. Nepryakhin, Danil L. Shvarts
Guoming, 3D thermal mechanical coupled elasto-plastic finite element analysis in the whole rolling process of H-beam, Material science forum. 575-578 (2008) 532-538
Guoming, Simulation analysis and application of hot rolled large size H-beams, Journal of metallurgical engineering. 1 (2012) 48-52
Yanagimoto, Computational rolling mill CORMILL System and computational press COPRESS System, Current advances in materials and processes. 3 (1997) 333-336
Guoming, Simulation analysis and application of hot rolled large size H-beams, Journal of metallurgical engineering. 1 (2012) 48-52
Yanagimoto, Computational rolling mill CORMILL System and computational press COPRESS System, Current advances in materials and processes. 3 (1997) 333-336
Online since: May 2005
Authors: M. Konuma, Ulrich Starke, Stephen E. Saddow, S. Soubatch, Shailaja P. Rao, W.Y. Lee
Starke
1,f
1
Max-Planck-Institut für Festkörperforschung, Heisenbergstr. 1, D-70569, Stuttgart, Germany
2
Electrical Engineering Department, 4202 East Fowler Avenue, ENB118, Tampa, FL 33620, USA
a
S.Soubatch@fkf.mpg.de, bsaddow@ieee.org, csprao@eng.usf.edu, dW.Lee@fkf.mpg.de,
e
M.Konuma@fkf.mpg.de, fU.Starke@fkf.mpg.de
Keywords: Surface Structure, Morphology, Reconstruction, SiC(0001), 4H-SiC, Etching,
Hydrogen, Optical Microscopy, Atomic Force Microscopy, AFM, Low-Energy Electron Diffraction,
LEED, X-Ray Photoelectron Spectroscopy, XPS, Step-Bunching, Step, Termination
Abstract.
Starke: Atomic structure of SiC surfaces p. 281, in Silicon Carbide, Recent Major Advances (eds: W.J.
Forum Vol. 338-342 (2000), p. 391.
Starke: Atomic structure of SiC surfaces p. 281, in Silicon Carbide, Recent Major Advances (eds: W.J.
Forum Vol. 338-342 (2000), p. 391.
Online since: July 2011
Authors: Astrid Heckl, Martin M. Franke, Michael Hilbinger, Robert F. Singer
. – Mack – Str. 81, D-90762 Fürth, Germany
2Institute of Science and Technology of Metals, Department of Materials Science and Engineering, University of Erlangen, Martensstr. 5, D-91058 Erlangen, Germany
amartin.franke@nmfgmbh.de, bmichael.hilbinger@nmfgmbh.de, castrid.heckl@ww.uni-erlangen.de, drobert.singer@ww.uni-erlangen.de
Key words: superalloys, investment casting, numerical modeling, temperature gradient, solidification rate, primary dendrite arm spacing
Abstract.
An advance in withdrawal speed accelerates the solidification process consequently, since the position of solidus - liquidus - interface is depending on the casting - transaction out of the heating furnace.
Mills: Materials Science Forum Vol. 508 (2006), p. 591 [9] N.
An advance in withdrawal speed accelerates the solidification process consequently, since the position of solidus - liquidus - interface is depending on the casting - transaction out of the heating furnace.
Mills: Materials Science Forum Vol. 508 (2006), p. 591 [9] N.
Online since: November 2012
Authors: Valéria Mertinger, Gábor Buza, Balázs Major
Zeiss AxioVision Imager m1M with motorized stage, scanning electron microscopy (1830I Amray SEM with EDAX system), Bruker D8 advance XRD system with CoKa radiation and MonoCap optic were used.
Guoa, Microstructure, mechanical and fretting wear properties of TiC stainless steel composites, Materials Characterization 59 (2008), 84-90 [8] Sveda M; Roosz A; Buza G, Formation of lead bearing surface layers on aluminum alloys by laser alloying , Materials Science Forum Volume: 508 (99-104), 2006 [9] L.
Sabbaghzadeh, Effect of pulsed laser parameters on in-situ TiC synthesis in laser surface treatment, Optics and Lasers in Engineering 49 (2011) 557–563 [12] G.
Guoa, Microstructure, mechanical and fretting wear properties of TiC stainless steel composites, Materials Characterization 59 (2008), 84-90 [8] Sveda M; Roosz A; Buza G, Formation of lead bearing surface layers on aluminum alloys by laser alloying , Materials Science Forum Volume: 508 (99-104), 2006 [9] L.
Sabbaghzadeh, Effect of pulsed laser parameters on in-situ TiC synthesis in laser surface treatment, Optics and Lasers in Engineering 49 (2011) 557–563 [12] G.
Online since: June 2020
Authors: Wasim M. K. Helal, Gui Xin Wang, Wen Ping Zhang, Xiao-Bo LI
Engineering Failure Analysis, 55, 139-147
Advanced Materials Research, 631–632, 978–981. https://doi.org/10.4028/www.scientific.net/amr.631-632.978 [23]Wang, G.
China Mechanical Engineering, 15, 365-369
Chinese Internal Combustion Engine Engineering, 24, 31-32
Engineering Failure Analysis, 3(1), 1-3
Advanced Materials Research, 631–632, 978–981. https://doi.org/10.4028/www.scientific.net/amr.631-632.978 [23]Wang, G.
China Mechanical Engineering, 15, 365-369
Chinese Internal Combustion Engine Engineering, 24, 31-32
Engineering Failure Analysis, 3(1), 1-3
Online since: February 2012
Authors: M.N. Hafsa, H. Hehsan, M.N.M. Busari, M.F.M. Omar, M. Ibrahim, S. Sharif
Feng: Rapid investment casting Direct and indirect approaches via model maker II, International Journal of Advanced Manufacturing Technology 25 (2005), p.26-32M
Yan: Rapid manufacture of metal tooling by rapid prototyping, International Journal of Advanced Manufacturing Technology 21 (2003), p.469-475
Dickens: Improvements in investment casting with stereolithography Patterns, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture (2005), p.215 1-11
[14] Tromans, G.: Developments in Rapid Casting, Profesional Engineering Publishing (2004)
D.: On the Integration of Layered Manufacturing and Material Removal Process, International Journal of Machine Science and Engineering 122 (2000), p.100–108
Yan: Rapid manufacture of metal tooling by rapid prototyping, International Journal of Advanced Manufacturing Technology 21 (2003), p.469-475
Dickens: Improvements in investment casting with stereolithography Patterns, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture (2005), p.215 1-11
[14] Tromans, G.: Developments in Rapid Casting, Profesional Engineering Publishing (2004)
D.: On the Integration of Layered Manufacturing and Material Removal Process, International Journal of Machine Science and Engineering 122 (2000), p.100–108
Online since: January 2020
Authors: M. S. Korolyov, A.Y. Altukhov, Evgeniy V. Ageev
Lipatov, Russian Engineering Research, 2013, pp.144-149
Murty, Materials Science and Engineering: A, 2010, pp.2370-2378
Vlasenko, Advanced materials, 2006, pp.79-85
Horyakova, Russian Engineering Research, 2014, pp.694–696
Horyakova, Russian Engineering Research, 2015, pp.33–35
Murty, Materials Science and Engineering: A, 2010, pp.2370-2378
Vlasenko, Advanced materials, 2006, pp.79-85
Horyakova, Russian Engineering Research, 2014, pp.694–696
Horyakova, Russian Engineering Research, 2015, pp.33–35
Online since: November 2016
Authors: Miloš Janeček, Michal Hájek, Jozef Veselý, Petr Harcuba, Jana Šmilauerová, Pavel Zháňal
Williams, Titanium, Engineering Materials, Processes, Springer Berlin Heidelberg,
2007. doi:10.1007/978-3-540-73036-1
Kobayashi, Effects of ω-phase precipitation on β→α, α'' transformations in a metastable β titanium alloy,Materials Science and Engineering: A 312 (1) (2001) 182-188. doi:10.1016/S0921-5093(00)01891-8
Cieslar, Precision of electrical resistivity measurements, Materials Science and Engineering: A 462 (1-2) (2007) 339-342. doi:10.1016/j.msea.2006.01.175[20] T.
Ansel, Synthesis and phase transformations of beta metastable ti-based alloys containing biocompatible Ta, Mo and Fe beta-stabilizer elements, Advanced Engineering Materials 8 (10) (2006) 961-965. doi:10. 1002/adem.200600106
Prima, T.Gloriant,High-strength nanostructured ti-12mo alloy fromductilemetastable beta state precursor,Materials Science and Engineering: A 527 (16-17) (2010) 4262-4269. doi: 10.1016/j.msea.2010.03.044..
Kobayashi, Effects of ω-phase precipitation on β→α, α'' transformations in a metastable β titanium alloy,Materials Science and Engineering: A 312 (1) (2001) 182-188. doi:10.1016/S0921-5093(00)01891-8
Cieslar, Precision of electrical resistivity measurements, Materials Science and Engineering: A 462 (1-2) (2007) 339-342. doi:10.1016/j.msea.2006.01.175[20] T.
Ansel, Synthesis and phase transformations of beta metastable ti-based alloys containing biocompatible Ta, Mo and Fe beta-stabilizer elements, Advanced Engineering Materials 8 (10) (2006) 961-965. doi:10. 1002/adem.200600106
Prima, T.Gloriant,High-strength nanostructured ti-12mo alloy fromductilemetastable beta state precursor,Materials Science and Engineering: A 527 (16-17) (2010) 4262-4269. doi: 10.1016/j.msea.2010.03.044..