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Online since: February 2011
Authors: Xiao Lei Zhang, Jin Ming Wu
Vol.218(2008), p. 446
[5] C.G.Zhu, R.H.Wang: Mathematical Problems in Engineering,Vol.2007(2007), p. 11
[6] C.
) [8] Z.M.Wu: Advances in Mathematics Vol.27(1998), p. 202 [9] Z.M.Wu: Advances in Computational Mathematics, Vol.4(1995), p. 283 [10] H.Wendland: Advances in Computational Mathematics, Vol.4(1995), p. 389 [11] M.S.Floater, A.Iske: J.Comput.
Unsworth: Computer Graphics Forum Vol.24 (2005), p.809
) [8] Z.M.Wu: Advances in Mathematics Vol.27(1998), p. 202 [9] Z.M.Wu: Advances in Computational Mathematics, Vol.4(1995), p. 283 [10] H.Wendland: Advances in Computational Mathematics, Vol.4(1995), p. 389 [11] M.S.Floater, A.Iske: J.Comput.
Unsworth: Computer Graphics Forum Vol.24 (2005), p.809
Online since: January 1987
The "Third International Symposium on Halide Glasses," organized by Jacques
Lucas, was held at the Universite de Rennes in France in June, 1985. the
accelerating research activity in this area was evidenced by the fact that 109 papers
were presented and some 220 scientists and engineers were in attendance.
These appeared as Volumes 5 and 6 of Materials Science Forum.
For example, it now seems to be well established that the minimum intrinsic optical loss in fluorozirconates is about 0.02 dB/km at 2.5 µm, roughly an order of magnitude lower than that in high silica glasses.Likewise.marked advances have been made since the Third Symposium in understanding the crystallization and nucleation process and the sources of extrinsic scattering in fluorozirconate glasses.
In the meantime, we hope that these two volumes will give the reader a state-of-the-art picture of halide glass science and engineering.
These appeared as Volumes 5 and 6 of Materials Science Forum.
For example, it now seems to be well established that the minimum intrinsic optical loss in fluorozirconates is about 0.02 dB/km at 2.5 µm, roughly an order of magnitude lower than that in high silica glasses.Likewise.marked advances have been made since the Third Symposium in understanding the crystallization and nucleation process and the sources of extrinsic scattering in fluorozirconate glasses.
In the meantime, we hope that these two volumes will give the reader a state-of-the-art picture of halide glass science and engineering.
Online since: October 2014
Authors: Hong Kyu Kwon, Boong Joo Lee
Simulation Analysis of HPDC Process with Automobile part by CAE
Hong-Kyu Kwona†, Boong-Joo Leeb*,
a Dept. of industrial & Management Engineering, Namseoul University, Chonan, South Korea
b Dept. of Electronic Engineering, Namseoul University, Chonan, South
a hongkyuk@nsu.ac.kr; bbjlee@nsu.ac.kr
* Corresponding author
Keywords: CAE simulation, Oil Pan, Solidification, Casting design, MFA
Abstract.
Computer-aided engineering (CAE) simulation technology helps practitioners generate, verify, validate and optimize the design solutions.
In this research, Computer Aided Engineering (CAE) was performed by using the simulation software (AnyCasting) in order to optimize casting design of an automobile part (Upper Oil Pan on figure 1).
References [1] Hongkyu Kwon: Advanced Material Research, Vol.658 (2013), p.281
[2] Hongkyu Kwon: Materials Science Forum, Vol.761 (2013), p.79
Computer-aided engineering (CAE) simulation technology helps practitioners generate, verify, validate and optimize the design solutions.
In this research, Computer Aided Engineering (CAE) was performed by using the simulation software (AnyCasting) in order to optimize casting design of an automobile part (Upper Oil Pan on figure 1).
References [1] Hongkyu Kwon: Advanced Material Research, Vol.658 (2013), p.281
[2] Hongkyu Kwon: Materials Science Forum, Vol.761 (2013), p.79
Online since: April 2006
Authors: Akio Kobayashi, Yukichi Umakoshi, Toshio Yamamoto, Takuya Ishimoto, Kunio Takaoka, Takayoshi Nakano, Hiroyoshi Iwaki, Jee Wook Lee, Yasuhiko Tabata, Mariko Kawai, Masaya Yamamoto
a
nakano@mat.eng.osaka-u.ac.jp, b
takuya.ishimoto@mat.eng.osaka-u.ac.jp,
c
leejw@mat.eng.osaka-u.ac.jp, dumakoshi@mat.eng.osaka-u.ac.jp,
e
masaya@frontier.kyoto-u.ac.jp, fyasuhiko@frontier.kyoto-u.ac.jp, gak@med.osaka-cu.ac.jp,
h
h-iwaki@med.osaka-cu.ac.jp, itakaokak@med.osaka-cu.ac.jp, jmarikoka@md.okayama-u.ac.jp,
kytoshio@md.okayama-u.ac.jp
Keywords: bone, biological apatite, crystal orientation, microbeam X-ray diffraction, bone
regeneration, pathological hard tissue, tissue engineering, rBMP-2, osteoarthritis, osteopetrosis,
osteoporosis
Abstract.
Acknowledgements This work was supported by funds from "Priority Assistance of the Formation of Worldwide Renowned Centers of Research - The 21st Century COE Program (Project: Center of Excellence for Advanced Structural and Functional Materials Design)" from the Ministry of Education, Culture, Sports, Science and Technology of Japan and also by the Research for the Future Program of the Japan Society for the Promotion of Science (JSPS) (Project: Biological Tissue Engineering) (JSPS-RFTF98I00201).
Umakoshi: Tissue Engineering for Therapeutic Use 6, Edited by Y.
Forum (2005), in press
Forum (2005), in press.
Acknowledgements This work was supported by funds from "Priority Assistance of the Formation of Worldwide Renowned Centers of Research - The 21st Century COE Program (Project: Center of Excellence for Advanced Structural and Functional Materials Design)" from the Ministry of Education, Culture, Sports, Science and Technology of Japan and also by the Research for the Future Program of the Japan Society for the Promotion of Science (JSPS) (Project: Biological Tissue Engineering) (JSPS-RFTF98I00201).
Umakoshi: Tissue Engineering for Therapeutic Use 6, Edited by Y.
Forum (2005), in press
Forum (2005), in press.
Online since: May 2007
Authors: Ki Bae Kim, Ha Young Kim, Dock Young Lee, Suk Won Kang
Microstructural Evolution and Crystal Orientation of Electromagnetically
Stirred Al Alloy in the Semi-Solid State
Dock-Young Lee1, Suk-Won Kang
1, Ha-young Kim
2 Ki-Bae Kim
1
1Division of Materials, Korea Institute of Science and Technology, P.O.Box 131, Cheongryang,
Seoul 130-650, Korea
2
Dept of Applied Materials Engineering, Hanbat National University, Daejeon 305-719, Korea
ldy@kist.re.kr, kibaekim@kist.re.kr
Keywords: texture, fragmentation, electromagnetic stirring, crystal orientation, pole figure, Al alloy
Abstract.
But with the increase of the EM stirring strength, <100>//ND and <111>//ND texture were more strongly advanced.
Also the orientations to lead <001>//ND and <111>//ND texture were more strongly advanced.
But with the increase of the EM stirring strength, <100>//ND and <111>//ND texture were more strongly advanced.
Kim: Materials Science Forum, 486(2005) 550
But with the increase of the EM stirring strength, <100>//ND and <111>//ND texture were more strongly advanced.
Also the orientations to lead <001>//ND and <111>//ND texture were more strongly advanced.
But with the increase of the EM stirring strength, <100>//ND and <111>//ND texture were more strongly advanced.
Kim: Materials Science Forum, 486(2005) 550
Online since: August 2014
Guoqiang Yin, Zhongkai University of Agriculture and Engineering,China
Prof.
Guoqiang Yin, Zhongkai University of Agriculture and Engineering,China Prof.
Liewen Liao, Zhongkai University of Agriculture and Engineering,China Prof.
Liewen Liao, Zhongkai University of Agriculture and Engineering,China Prof.
Guoqiang Yin, Zhongkai University of Agriculture and Engineering,China Prof.
Guoqiang Yin, Zhongkai University of Agriculture and Engineering,China Prof.
Liewen Liao, Zhongkai University of Agriculture and Engineering,China Prof.
Liewen Liao, Zhongkai University of Agriculture and Engineering,China Prof.
Guoqiang Yin, Zhongkai University of Agriculture and Engineering,China Prof.
Online since: July 2007
Authors: Leo A.I. Kestens, J.J.L. Mulders, Jin Ho Bae, Yvan Houbaert, Roumen H. Petrov, Ana Carmen C. Reis, Orlando León García
Kestens 5,1, f and Y.Houbaert
1,g
1
Ghent University, Department of Metallurgy and Materials Science, Technologiepark 903, Ghent
9052, Belgium
2
Netherlands Institute for Metals Research (NIMR), Mekelweg 2, 2628 CD Delft The Netherlands
3
FEI Electron Optics, Building AAE, PO 80066, 5600 KA, Eindhoven, The Netherlands
4
Technical Research Laboratories, POSCO, Jeonnam, 545-090, South Korea
5
TU Delft, Materials Science and Engineering Dept., Mekelweg 2, 2628 CD Delft The Netherlands
a
Roumen.Petrov@ugent.be, bo.leongarcia@nimr.nl , cjjm@feico.nl.com, dAna.Reis@ugent.be,
e
jhbae@posco.co.kr, fL.A.I.Kestens@tnw.tudelft.nl, g
Yvan.Houbaert@ugent.be
Keywords: 3D EBSD, microstructure, texture anisotropy, Charpy toughness anisotropy
Abstract.
Houbaert: Materials Science Forum, Vols.495-497(2005), p.1499
Kang: in proc. of International Conference on processing and manufacturing of advanced materials, THERMEC 2006.
Materials Science Forum. © Trans Tech Publications, Switzerland, in print
[6] J.J.L.Mulders and A.Day, Materials Science Forum, Vols.495-497 (2005), p.237.
Houbaert: Materials Science Forum, Vols.495-497(2005), p.1499
Kang: in proc. of International Conference on processing and manufacturing of advanced materials, THERMEC 2006.
Materials Science Forum. © Trans Tech Publications, Switzerland, in print
[6] J.J.L.Mulders and A.Day, Materials Science Forum, Vols.495-497 (2005), p.237.
Online since: April 2024
Authors: Ari Legowo, Agus Geter Edy Sutjipto
Series: Materials Science and Engineering 290, 012043, 2018
Procedia Engineering (Elsevier), Vol. 170, pp. 88-92, 2017
Advanced Materials Research, 576. pp. 203-207, 2012
Key Engineering Materials, 181-182, p.231, 2000
Advanced Materials Research, 264-265, pp 748-753, 2011
Procedia Engineering (Elsevier), Vol. 170, pp. 88-92, 2017
Advanced Materials Research, 576. pp. 203-207, 2012
Key Engineering Materials, 181-182, p.231, 2000
Advanced Materials Research, 264-265, pp 748-753, 2011
Online since: June 2011
Authors: Zhong Dong Duan, Qiu Yi Li, Tie Jun Zhao, Jian Lin Luo
Effect of Compressive Strain on Electrical Resistivity of Carbon Nanotube Cement-based Composites
Jianlin Luo1, a, Zhongdong Duan2, b, Tiejun Zhao1, c, Qiuyi LiP1,d
1, School of Civil Engineering, Qingdao Technological University, Qingdao, Shandong Province, CHINA
2,School of Civil Engineering, Harbin Institute of Technology, Harbin, Heilongjiang Province, CHINA
alawjanelim@qtech.edu.cn , bduanzd@hit.edu.cn, cztjgp@qtech.edu.cn, dlqyyxn@163.com
Key words: Carbon nanotube, Advanced cement material, Piezoresistivity property
Abstract.
Duan, in: World Forum on Smart Materials and Smart Structures Technology, edited by B.
Duan, in: World Forum on Smart Materials and Smart Structures Technology, edited by B.
Online since: October 2014
Authors: Stuart Hampshire, Faheemuddin Patel, Tahar Laoui, Moath Mohammad Al-Malki, Sadaqat Ali, Akolade Idris Bakare, Raja Muhammad Awais Khan, Abbas Hakeem
The development of SiAlON-based ceramics has shown great impact in the cutting/drilling tool industry and for other engineering applications.
These materials have several engineering applications, such as in turbine blades and cutting tools.
Esmaeilzadeh, Silicate Glasses with Unprecedented High Nitrogen and Electropositive Metal Contents Obtained by Using Metals as Precursors, Advanced Materials, 17 (2005) 2214-2216
Esmaeilzadeh, Superplastic deformation of nitrogen-rich Ca-α-sialon ceramics, Materials Science and Engineering: A, 475 (2008) 81-86
Cao, Consolidation/synthesis of materials by electric current activated/assisted sintering, Materials Science Engineering Research 63 (2009) 127-287
These materials have several engineering applications, such as in turbine blades and cutting tools.
Esmaeilzadeh, Silicate Glasses with Unprecedented High Nitrogen and Electropositive Metal Contents Obtained by Using Metals as Precursors, Advanced Materials, 17 (2005) 2214-2216
Esmaeilzadeh, Superplastic deformation of nitrogen-rich Ca-α-sialon ceramics, Materials Science and Engineering: A, 475 (2008) 81-86
Cao, Consolidation/synthesis of materials by electric current activated/assisted sintering, Materials Science Engineering Research 63 (2009) 127-287