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Online since: July 2007
Authors: S.F. Medina, Manuel Gómez, J.I. Chaves
Gregorio
del Amo 8, Madrid, 28040, Spain.
2
University of Pittsburgh, Basic Metals Processing Research Institute (BAMPRI), Department of
Materials Science and Engineering, Pittsburgh, PA 15261 USA.
In order to verify the accuracy of the method of determination of the recrystallized fraction, to observe the advance/inhibition of recrystallization and to study the influence of interpass time on microstructure, precipitation state and pinning forces, five samples were water-quenched after applying a deformation step at 875 ºC and carrying out an isothermal holding period of 2, 7, 18, 70 and 700 s.
Forum Vol. 500-501 (2005) p. 147
Forum Vol. 500-501 (2005) p.131
Forum Vol. 480-481 (2005) p. 489
In order to verify the accuracy of the method of determination of the recrystallized fraction, to observe the advance/inhibition of recrystallization and to study the influence of interpass time on microstructure, precipitation state and pinning forces, five samples were water-quenched after applying a deformation step at 875 ºC and carrying out an isothermal holding period of 2, 7, 18, 70 and 700 s.
Forum Vol. 500-501 (2005) p. 147
Forum Vol. 500-501 (2005) p.131
Forum Vol. 480-481 (2005) p. 489
Online since: January 2015
Some conference representatives came to Taiwan on Oct. 27th,
participated in the "Cross-Strait Academic Forum on New Media and Graphic Communication"
which held in National Taiwan University of Arts.
Therefore, as an academic exchange platform for scientific research and innovation, "China Academic Conference on Printing and Packaging" promoted the communication within the people of the same trade at home and abroad, shared the advanced achievements in this field, was achieved the effects we excepted for.
and Engineering, Nanjing Forestry University College of Materials Science and Engineering, Beijing University of Chemical Technology School of Light Industry & Chemical Engineering, Dalian Polytechnic University Zhengzhou Institute of Surveying and Mapping Faculty of Printing and Packaging Engineering, Xi'an University of Technology College of Packaging and Printing Engineering, Tianjin University of Science and Technology Light Industry College, Harbin University of Commerce College of Printing and Packaging Engineering, Qilu University of Technology School of Food and Chemical Engineering, Beijing Technology and Business University School of Media and Communication, Shenzhen Polytechnic Innventia AB, Sweden Conference Executive Committee Chairman WANG Yongsheng (President of Beijing Institute of Graphic Communication) CHEN Yan (President of China Academy of Printing Technology) HSIEH Yungcheng (President of National Taiwan University of Arts) Vice Chairman
PU Jialing (Vice President of Beijing Institute of Graphic Communication) XU Wencai (Vice President of Beijing Institute of Graphic Communication) CHU Tingliang (Vice President of China Academy of Printing Technology) Conference Academic Committee Chairman LI Deren (Academician of Chinese Academy of Sciences, Academician of China Engineering Academy, Professor of Wuhan University, Director of State Key Laboratory of Information Engineering in Surveying, Mapping and Remote) Vice Chairman NI Guangnan (Academician of China Engineering Academy, Researcher of Institute of Computing Technology Chinese Academy of Sciences, Board Chairperson of Chinese Information Processing Society of China) CHEN Kefu (Academician of China Engineering Academy, Professor of South China University of Technology, Director of Academic Committee of State Key Laboratory of Pulp and Paper Engineering) ZOU Jing (Academician of China Engineering Academy, Professor of School of Chemical
Engineering and Technology of Tianjin University, Specialist of Photographic Materials) ZHUANG Songlin (Academician of China Engineering Academy, Director and Professor of School of Optical-Electrical and Computer Engineering of University of Shanghai for Science and Technology, Optical expert) LU Bingheng (Academician of Chinese Academy of Engineering, Professor of Xi'an Jiaotong University, Director of the National Engineering Research Center of Rapid Manufacturing) Commissioners ANDREEV Yuri(Head of Moscow State University of Printing Arts) BIGGER Stephen W.
Therefore, as an academic exchange platform for scientific research and innovation, "China Academic Conference on Printing and Packaging" promoted the communication within the people of the same trade at home and abroad, shared the advanced achievements in this field, was achieved the effects we excepted for.
and Engineering, Nanjing Forestry University College of Materials Science and Engineering, Beijing University of Chemical Technology School of Light Industry & Chemical Engineering, Dalian Polytechnic University Zhengzhou Institute of Surveying and Mapping Faculty of Printing and Packaging Engineering, Xi'an University of Technology College of Packaging and Printing Engineering, Tianjin University of Science and Technology Light Industry College, Harbin University of Commerce College of Printing and Packaging Engineering, Qilu University of Technology School of Food and Chemical Engineering, Beijing Technology and Business University School of Media and Communication, Shenzhen Polytechnic Innventia AB, Sweden Conference Executive Committee Chairman WANG Yongsheng (President of Beijing Institute of Graphic Communication) CHEN Yan (President of China Academy of Printing Technology) HSIEH Yungcheng (President of National Taiwan University of Arts) Vice Chairman
PU Jialing (Vice President of Beijing Institute of Graphic Communication) XU Wencai (Vice President of Beijing Institute of Graphic Communication) CHU Tingliang (Vice President of China Academy of Printing Technology) Conference Academic Committee Chairman LI Deren (Academician of Chinese Academy of Sciences, Academician of China Engineering Academy, Professor of Wuhan University, Director of State Key Laboratory of Information Engineering in Surveying, Mapping and Remote) Vice Chairman NI Guangnan (Academician of China Engineering Academy, Researcher of Institute of Computing Technology Chinese Academy of Sciences, Board Chairperson of Chinese Information Processing Society of China) CHEN Kefu (Academician of China Engineering Academy, Professor of South China University of Technology, Director of Academic Committee of State Key Laboratory of Pulp and Paper Engineering) ZOU Jing (Academician of China Engineering Academy, Professor of School of Chemical
Engineering and Technology of Tianjin University, Specialist of Photographic Materials) ZHUANG Songlin (Academician of China Engineering Academy, Director and Professor of School of Optical-Electrical and Computer Engineering of University of Shanghai for Science and Technology, Optical expert) LU Bingheng (Academician of Chinese Academy of Engineering, Professor of Xi'an Jiaotong University, Director of the National Engineering Research Center of Rapid Manufacturing) Commissioners ANDREEV Yuri(Head of Moscow State University of Printing Arts) BIGGER Stephen W.
Online since: September 2017
Authors: V.M. Kolokol’tsev, A.S. Tuboltseva, A.S. Savinov
This is especially urgent for such a resource- and energy-intensive branch of industry as the casting production of ferrous and non-ferrous metals, which is the main engineering base for the machine construction industry.
Zhukovsky, Strength of the casting mold, Mechanical engineering, Moscow, 1989
Hojny, Multiscale modelling of mechanical properties of steel deformed in semi-solid state - experimental background, Key Engineering Materials, 643-650
Hojny, Physical simulation of steel deformation in the semi-solid state, Advanced Structured Materials, 47, 85-119
Savinov, The simulation of the carbon steel deformation resistance in the brittle-ness temperature range, Proceedings of XV International scientific conference: New technologies and achievements in metallurgy, material engineering and production engineering, Zajemska, Monika (ed), Czestochowa: Czestochowa university of technology, Faculty of production engineering and materials technology, 2014
Zhukovsky, Strength of the casting mold, Mechanical engineering, Moscow, 1989
Hojny, Multiscale modelling of mechanical properties of steel deformed in semi-solid state - experimental background, Key Engineering Materials, 643-650
Hojny, Physical simulation of steel deformation in the semi-solid state, Advanced Structured Materials, 47, 85-119
Savinov, The simulation of the carbon steel deformation resistance in the brittle-ness temperature range, Proceedings of XV International scientific conference: New technologies and achievements in metallurgy, material engineering and production engineering, Zajemska, Monika (ed), Czestochowa: Czestochowa university of technology, Faculty of production engineering and materials technology, 2014
Online since: April 2011
Authors: Qiu Xin Yuan, Yin Lei Wang, Jia Chang Xu, Zheng Cha, Tai An Liu
The engineering data include the main supporting parameters (supporting forms, etc.), mining parameters (coal cutting speed, forward length, etc.), organization and management parameters (work forms, types, etc.), and ventilation parameters (air resistance, etc.).
Engineering data Monitoring data Vein data Equipment data Scene data Non-spatial data Spatial data Simulation model database Fig.1.
Therefore, GIS platform needs to achieve the following objectives: (1) advanced architecture, reusability, scalability, easy system update. (2) Having a strong secondary development capability that can quickly build up professional applications systems. (3) Providing conversion middleware and achieving map format transformation with other GIS systems (such as ArcGIS, MapInfo, MapGIS, etc.) or graphics software (e.g.
Schofield: Advanced computer techniques: Development for the minerals industry towards the new millennium, Proc.
Chen: Developments of spatial information-based Digital Mine in China, Journal of Coal Science & Engineering, 2008, (3).
Engineering data Monitoring data Vein data Equipment data Scene data Non-spatial data Spatial data Simulation model database Fig.1.
Therefore, GIS platform needs to achieve the following objectives: (1) advanced architecture, reusability, scalability, easy system update. (2) Having a strong secondary development capability that can quickly build up professional applications systems. (3) Providing conversion middleware and achieving map format transformation with other GIS systems (such as ArcGIS, MapInfo, MapGIS, etc.) or graphics software (e.g.
Schofield: Advanced computer techniques: Development for the minerals industry towards the new millennium, Proc.
Chen: Developments of spatial information-based Digital Mine in China, Journal of Coal Science & Engineering, 2008, (3).
Online since: February 2022
Authors: Evan T. Salim, Suhair R. Shafeeq, Mohammed Jalal Abdul Razzaq, Mohammed H.A. Wahid
Salim2,c*, M.H.A.Wahid3,d
1Laser and Optoelectronic Department, University of technology, Baghdad, Iraq.
2Applied Science Department, University of Technology, Baghdad, Iraq
3Semiconductor Photonics & Integrated Light wave Systems (SPILS), School of Microelectronic Engineering, University Malaysia Perlis, 02600 Arau, Perlis, Malaysia
aloe.21.14@uotechnology.edu.iq, bmohammed.j.abdulrazzaq@uotechnology.edu.iq, c*evan_tarq@yahoo.com & evan.t.salim@uotechnology.edu.iq,ddrhalim@gmail.com
Keywords: Nb2O5; recent applications; photocatalyst; thin film.
A Adnan, Structural and Morphological Properties of Nano Photonic Silicon Structure for Photonics Applications, Defect and Diffusion Forum 398 (2020) 29-33
Salim, Silver Doped Niobium Pentoxide nanostructured thin film, Optical Structural and Morphological Properties, IOP Conference Series Materials Science and Engineering 454(1) (2018) 012174
Fakhri, Simulation, fabrication and validation of surface acoustic wave layered sensor based on ZnO/IDT/128° YX LiNBO3, International Journal of Applied Engineering Research 11(15) (2016) 8785-8790 [40] E Bemporad, F Carassiti, M Sebastiani, G Lanza, V Palmieri, H Padamsee, Superconducting and microstructural studies on sputtered niobium thin films for accelerating cavity applications, Supercond.
Wang, Nb2O5-Based Photocatalysts, Advanced Science 8 (2021) 2003156
A Adnan, Structural and Morphological Properties of Nano Photonic Silicon Structure for Photonics Applications, Defect and Diffusion Forum 398 (2020) 29-33
Salim, Silver Doped Niobium Pentoxide nanostructured thin film, Optical Structural and Morphological Properties, IOP Conference Series Materials Science and Engineering 454(1) (2018) 012174
Fakhri, Simulation, fabrication and validation of surface acoustic wave layered sensor based on ZnO/IDT/128° YX LiNBO3, International Journal of Applied Engineering Research 11(15) (2016) 8785-8790 [40] E Bemporad, F Carassiti, M Sebastiani, G Lanza, V Palmieri, H Padamsee, Superconducting and microstructural studies on sputtered niobium thin films for accelerating cavity applications, Supercond.
Wang, Nb2O5-Based Photocatalysts, Advanced Science 8 (2021) 2003156
Online since: August 2022
Authors: Esah Hamzah, Noraziana Parimin
Role of Mn Alloying Element on the Oxide Growth Behavior of 800H Nickel-Based Alloy at 900°C
Noraziana PARIMIN1,a* and Esah HAMZAH2,b
1Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis (UniMAP), 02600 Arau, Perlis, Malaysia.
2Faculty of Mechanical Engineering, Universiti Teknologi Malaysia (UTM), 81310 Skudai, Johor, Malaysia.
Campbell, Elements of Metallurgy and Engineering Alloys, ASM International, Ohio, 2008
Tan, Corrosion behavior of Ni-base alloys for advanced high temperature water-cooled nuclear plants, Corros.
Forum 1010 (2020) 58-64
Forum 1010 (2020) 40-45.
Campbell, Elements of Metallurgy and Engineering Alloys, ASM International, Ohio, 2008
Tan, Corrosion behavior of Ni-base alloys for advanced high temperature water-cooled nuclear plants, Corros.
Forum 1010 (2020) 58-64
Forum 1010 (2020) 40-45.
Online since: September 2020
Authors: Nur Farhana Mohd Yunos, Muhammad Asri Idris, Jian Hao Chong, Ahmed Indris Mohammed
IDRIS2,3,d
1Institute of Engineering Mathematics, Universiti Malaysia Perlis, Pauh Putra Campus, 02600 Arau, Perlis, Malaysia
2CoE Frontier Materials Research, University Malaysia Perlis, 02600 Arau, Perlis, Malaysia
3School of Materials Engineering, University Malaysia Perlis, 02600 Arau, Perlis, Malaysia
a*farhanadiyana@unimap.edu.my, robertchong950@gmail.com,cahmedidris99@ymail.com, asri@unimap.edu.my
Keywords: Carbothermal reduction; Reduction time; Ilmenite ore; Coke; Phase evolution
Abstract.
Acknowledgments The project was financially supported by a Fundamental Research Grant Scheme (FRGS/1/2013/SG06/UNIMAP/02/4) and (FRGS/2/2014/SG06/UNIMAP/02/3) from the Ministry of Higher Education Malaysia, Research Management and Innovation Center and technical staff from School of Materials Engineering, University Malaysia Perlis (UniMAP) for this research are hereby acknowledged.
Forum, Vol. 880 (2017), p. 63-66
Forum, Vol. 819 (2015), p. 381-386
Sharifah, et al.: Advanced Materials Research, Vol. 858 (2014), p. 265-271
Acknowledgments The project was financially supported by a Fundamental Research Grant Scheme (FRGS/1/2013/SG06/UNIMAP/02/4) and (FRGS/2/2014/SG06/UNIMAP/02/3) from the Ministry of Higher Education Malaysia, Research Management and Innovation Center and technical staff from School of Materials Engineering, University Malaysia Perlis (UniMAP) for this research are hereby acknowledged.
Forum, Vol. 880 (2017), p. 63-66
Forum, Vol. 819 (2015), p. 381-386
Sharifah, et al.: Advanced Materials Research, Vol. 858 (2014), p. 265-271
Online since: January 2012
Authors: Franco Maria Montevecchi, Marco A. Deriu, Tamara C. Bidone, Giuseppe Falvo D’urso Labate, Diana Massai, Umberto Morbiducci
[2] Fermeglia, M and Pricl S., Multiscale molecular modeling in nanostructured material design and process system engineering.
Computers & Chemical Engineering, 2009. 33(10): p. 1701-1710
Forum.
In Silico Bioreactors for the Computer-Aided Design of Tissue Engineering Applications.
Computational Engineering: Design, Development and Applications, edited by Jaclyn E.
Computers & Chemical Engineering, 2009. 33(10): p. 1701-1710
Forum.
In Silico Bioreactors for the Computer-Aided Design of Tissue Engineering Applications.
Computational Engineering: Design, Development and Applications, edited by Jaclyn E.
Online since: January 2021
Authors: Mahesh Chandra Somani, Ilkka Herman Miettunen, Jukka I. Kömi, Sakari Pallaspuro, S. Assa Aravindh, Sumit Ghosh, Wei Cao
Assa Aravindh2,c, Sumit Ghosh1,d, Wei Cao2,e, Mahesh Somani1,f, Jukka Kömi1,g
1Materials and Mechanical Engineering, Centre for Advanced Steels Research, University of Oulu, Finland
2Nano and Molecular Systems, Centre for Advanced Steels Research, University of Oulu, Finland
a*sakari.pallaspuro@oulu.fi, bilkka.miettunen@oulu.fi, cassa.sasikaladevi@oulu.fi, dsumit.ghosh@oulu.fi, ewei.cao@oulu.fi, fmahesh.somani@oulu.fi, gjukka.komi@oulu.fi
Keywords: direct-quenching, partitioning, TEM, nanotwinning, residual austenite, omega phase.
Quenching and partitioning produces advanced high-strength steels that utilise transformation-induced plasticity for improved strength and deformability.
Introduction Aiming to satisfy the need for ever-stronger and tougher, yet economical structural materials, the third generation advanced high-strength steels, such as quenched and partitioned steels [1,2] have emerged as potential candidates.
A recent advance within this type are novel low-alloyed direct-quenched and partitioned (DQP) steels [3–5], which can facilitate stabilisation of γret during slow cooling directly after reaching the desired quench-stop temperature (TQ), thus omitting the additional partitioning step.
Forum. 426–432 (2003) 1089–1094. doi:10.4028/www.scientific.net/MSF.426-432.1089
Quenching and partitioning produces advanced high-strength steels that utilise transformation-induced plasticity for improved strength and deformability.
Introduction Aiming to satisfy the need for ever-stronger and tougher, yet economical structural materials, the third generation advanced high-strength steels, such as quenched and partitioned steels [1,2] have emerged as potential candidates.
A recent advance within this type are novel low-alloyed direct-quenched and partitioned (DQP) steels [3–5], which can facilitate stabilisation of γret during slow cooling directly after reaching the desired quench-stop temperature (TQ), thus omitting the additional partitioning step.
Forum. 426–432 (2003) 1089–1094. doi:10.4028/www.scientific.net/MSF.426-432.1089