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Online since: December 2011
Authors: Yu Mei Dai, Yong Qing Ma, Yu Jie Dai
Theoretical Account for the Bimetallic Bonding of the Copper Clad Aluminum Wire by Clad-Drawing at Room Temperature
Yumei Dai1,a, Yongqing Ma2,b, Yujie Dai3,c
1College of Science, Shenyang University, Shenyang 110044, China
2College of Electromechanics and Material Engineering, Dalian Maritime University, Dalian 116026, China
3Information technology college, Eastern Liaoning University, Dandong 118001, China
adaiyumei66@126.com, bmyq_dlmu@163.com, cldxydyj@126.com
Keywords: Clad drawing; Copper clad aluminum; Bimetallic bonding; Theoretical account
Abstract.
References [1] BAY N.: Welding Journal Vol. 2 (1983), p. 137 [2] BAY N.: Metal Construction Vol. 6 (1986), p. 369 [3] BAY N.: Metal Construction Vol. 8 (1986), p. 486 [4] ZANG W, BAY N: CIRP Annals Vol. 41(1992), p. 293 [5] SENRI J, SAKAE S, KATHUHIKO S: J Mater.
Process Tech Vol. 45 (1994), p. 395 [6] LIU Yanxia, WANG Xun, MA Yongqing: Computational Materials Science Vol. 44 (2008), p. 641 [7] DAI Yumei, WANG Xun, DAI Yujie, MA Yongqing: Journal of Computational and Theoretical Nanoscience Vol. 5 (2008), p. 1665 [8] KITTEL C.: Introduction to Solid State Physics (Science Press, Beijing 1979)
[10] MA Weijing, SHI Ziyuan, GAO Hongtao: Journal of functional materials Vol. 28 (1997), p. 80 [11] Andrew R.
References [1] BAY N.: Welding Journal Vol. 2 (1983), p. 137 [2] BAY N.: Metal Construction Vol. 6 (1986), p. 369 [3] BAY N.: Metal Construction Vol. 8 (1986), p. 486 [4] ZANG W, BAY N: CIRP Annals Vol. 41(1992), p. 293 [5] SENRI J, SAKAE S, KATHUHIKO S: J Mater.
Process Tech Vol. 45 (1994), p. 395 [6] LIU Yanxia, WANG Xun, MA Yongqing: Computational Materials Science Vol. 44 (2008), p. 641 [7] DAI Yumei, WANG Xun, DAI Yujie, MA Yongqing: Journal of Computational and Theoretical Nanoscience Vol. 5 (2008), p. 1665 [8] KITTEL C.: Introduction to Solid State Physics (Science Press, Beijing 1979)
[10] MA Weijing, SHI Ziyuan, GAO Hongtao: Journal of functional materials Vol. 28 (1997), p. 80 [11] Andrew R.
Online since: May 2011
Authors: Gui Feng Li, Qing Hua Liu, Chuan Sheng Li, Ai Guo Zhu, Xue Wang, Yan Shi, Bin Ma
Materials: Fresh porcine brains were purchased from the meat processing factory of Jinan, Shangdong, China.
(in Chinese) [2] Luoyi Gao, Kuanren Yu, Duchao Zeng: Chinese Journal of Biochemistry and Molecular Biology, 2001, 17(4): 411.
(in Chinese) [7] Qin Liu, Jianwei Xie: Chinese Journal of New Drugs, 2003, 12(12):1024.
(in Chinese) [10] Jiangang Duan, Tao Xiang, Hong Chen, Ming Liu: Journal of Sichuan University (Medical Science Edition), 2007, 38(2):260.
(in Chinese) [13] Zhibing Hu, Xuefen Lu: Journal of Guangzhou Medical College, 1999, 27(1):79.
(in Chinese) [2] Luoyi Gao, Kuanren Yu, Duchao Zeng: Chinese Journal of Biochemistry and Molecular Biology, 2001, 17(4): 411.
(in Chinese) [7] Qin Liu, Jianwei Xie: Chinese Journal of New Drugs, 2003, 12(12):1024.
(in Chinese) [10] Jiangang Duan, Tao Xiang, Hong Chen, Ming Liu: Journal of Sichuan University (Medical Science Edition), 2007, 38(2):260.
(in Chinese) [13] Zhibing Hu, Xuefen Lu: Journal of Guangzhou Medical College, 1999, 27(1):79.
Online since: March 2004
Authors: B.F. Feng, Quan Fang Gai, Guang Qi Cai
It need very high input of
energy per unit volume of material removed in grinding process.
Feng: Key Engineering Materials Vols. 202-203 (2001), p. 41 [2] A.S.
Journal of Engineering for Industry Vol. 110 (1988), p. 1 [3] W.B.
Cai: Transaction of the ASME: Journal of Manufacturing Science and Engineering Vol. 123 (2001), p. 185 [5] W.B.
Jaeger: Conduction of Heat in Solids (Oxford Science Publications, Oxford University Press, England 1959).
Feng: Key Engineering Materials Vols. 202-203 (2001), p. 41 [2] A.S.
Journal of Engineering for Industry Vol. 110 (1988), p. 1 [3] W.B.
Cai: Transaction of the ASME: Journal of Manufacturing Science and Engineering Vol. 123 (2001), p. 185 [5] W.B.
Jaeger: Conduction of Heat in Solids (Oxford Science Publications, Oxford University Press, England 1959).
Online since: August 2013
Authors: Hong Hui Huang, Ling Yun Wang
The rapid design system of stamping process based on KBE
Huang Honghui1,a, Wang Lingyun2,b
1,2Department of Manufacture Engineering and Technology, Shanghai University of Engineering Science, P.R.
Automatically extracting sheet-metal features from solid model, JOURNAL OF ZHEJIANG UNIVERSITY(SCIENCE),2004,5(11) [4] Zhao Zhen,Peng Yinghong.
Journal of Zhejiang University,2004,5(11):p1456-1465 [7] Lingyun Wang, Honghui Huang.
Advanced Materials Research ,2012,402:p775-779
Application of intelligent design support system for multi-step deep drawing process, Journal of Materials Processing Technology, 2002, (130-131):p76~88
Automatically extracting sheet-metal features from solid model, JOURNAL OF ZHEJIANG UNIVERSITY(SCIENCE),2004,5(11) [4] Zhao Zhen,Peng Yinghong.
Journal of Zhejiang University,2004,5(11):p1456-1465 [7] Lingyun Wang, Honghui Huang.
Advanced Materials Research ,2012,402:p775-779
Application of intelligent design support system for multi-step deep drawing process, Journal of Materials Processing Technology, 2002, (130-131):p76~88
Online since: November 2014
Authors: Su Shiung Lam, Shahrul Ismail, Mohd Zamri Ibrahim, R. Mat, M. Shahrir M. Zahari
Mat2, e
1Department of Engineering Science, Faculty of Science and Technology,
Universiti Malaysia Terengganu, 21030 Kuala Terengganu, Terengganu, Malaysia
2Department of Chemical Engineering, Faculty of Chemical Engineering
Universiti Teknologi Malaysia, 81310 Johor Bahru, Johor, Malaysia
ashahrir@umt.edu.my, bshahrul.ismail@umt.edu.my, czam@umt.edu.my, dlam@umt.edu.my,
eramli@cheme.utm.my
Keywords: Biodiesel; jatropha; reactive extraction; transesterification; ultrasonication
Abstract.
Materials and Methods Materials.
Garg, Parametric study of jatropha seeds for biodiesel production by reactive extraction, Journal of the American Oil Chemists' Society, 87 (2010) 903-908
Salimon, Comparative evaluation of physicochemical properties of jatropha seed oil from Malaysia, Indonesia and Thailand, Journal of the American Oil Chemists' Society 87 (2010) 689-695
Harvey, Influence of various parameters on reactive extraction of Jatropha curcas L. for biodiesel production, Chemical Engineering Journal 171 (2011) 1373-1378
Materials and Methods Materials.
Garg, Parametric study of jatropha seeds for biodiesel production by reactive extraction, Journal of the American Oil Chemists' Society, 87 (2010) 903-908
Salimon, Comparative evaluation of physicochemical properties of jatropha seed oil from Malaysia, Indonesia and Thailand, Journal of the American Oil Chemists' Society 87 (2010) 689-695
Harvey, Influence of various parameters on reactive extraction of Jatropha curcas L. for biodiesel production, Chemical Engineering Journal 171 (2011) 1373-1378
Online since: July 2014
Authors: Zhong Ping Tang, Yong Peng Luo, Jun Li Xie, Fang Lin Huang
The initial material parameters are shown as Table 1.
Acknowledgements This work was financially supported by Project (51378504) of the National Science Foundation of China.
Journal of Bridge Engineering, 2010, 15(5): 553-564Mottershead J E, Friswell M I.
Journal of Sound and Vibration, 1993, 167(2): 347-375
Journal of Engineering Mechanics, 2011, 137(4): 248-257
Acknowledgements This work was financially supported by Project (51378504) of the National Science Foundation of China.
Journal of Bridge Engineering, 2010, 15(5): 553-564Mottershead J E, Friswell M I.
Journal of Sound and Vibration, 1993, 167(2): 347-375
Journal of Engineering Mechanics, 2011, 137(4): 248-257
Online since: November 2012
Authors: A. Shterenlikht, Peter E.J. Flewitt, S. Mahalingam
For specimen S3 the notch was positioned in the finer grain size material, Figure 1(b) and for specimen S4 it is vice versa.
Petch: Journal of the Iron and Steel Institute 174(1953), p25
[4]M.J.N.VPrasad, S.Suwas, and A.H.Chokshi: Materials Science and Engineering a-Structural Materials Properties, Microstructure and Processing 503(2009), p86
Materials Science and Technology 26(2010), p591
Flewitt, and D.J.Smith: Materials Science and Engineering A-Structural Materials Properties, Microstructure and Processing 527(2010), p7387.
Petch: Journal of the Iron and Steel Institute 174(1953), p25
[4]M.J.N.VPrasad, S.Suwas, and A.H.Chokshi: Materials Science and Engineering a-Structural Materials Properties, Microstructure and Processing 503(2009), p86
Materials Science and Technology 26(2010), p591
Flewitt, and D.J.Smith: Materials Science and Engineering A-Structural Materials Properties, Microstructure and Processing 527(2010), p7387.
Online since: May 2017
Authors: Ryan Brow, Hannah Robinson, Michael Cromar, Bart van Zeghbroeck, Philip Hens
No distinct shoulders or secondary peaks, which would indicate the presence of heavily tilted domains, can be found in the HFCVD grown material.
The material produced in our process shows a clean Raman spectrum with sharp lines for cubic silicon carbide.
Komiyama et al., “Stress reduction in epitaxial GaN films on Si using cubic SiC as intermediate layers,” Journal of Applied Physics 100, 033519 (2006) [3] J.
Zhang et al., “Epitaxial monocrystalline SiC films grown on Si by HFCVD at 780°C,” Materials Science and Engineering B75 (2000) 177179 [6] K.
Yasui et al., “LowTemperature Heteroepitaxial Growth of SiC on (100) Si Using Hot-Mesh Chemical Vapor Deposition,” Japanese Journal of Applied Physics Vol. 44, No. 3 (2005), 1361–1364 [7] J.
The material produced in our process shows a clean Raman spectrum with sharp lines for cubic silicon carbide.
Komiyama et al., “Stress reduction in epitaxial GaN films on Si using cubic SiC as intermediate layers,” Journal of Applied Physics 100, 033519 (2006) [3] J.
Zhang et al., “Epitaxial monocrystalline SiC films grown on Si by HFCVD at 780°C,” Materials Science and Engineering B75 (2000) 177179 [6] K.
Yasui et al., “LowTemperature Heteroepitaxial Growth of SiC on (100) Si Using Hot-Mesh Chemical Vapor Deposition,” Japanese Journal of Applied Physics Vol. 44, No. 3 (2005), 1361–1364 [7] J.
Online since: December 2013
Authors: Jian Xing Ren, Dong Mei Ji, De Xian Wang
All these methods in practical application have their own advantages, shortcomings and have shown their validity on different materials and loading conditions.
International Journal of Damage Mechanics,21(2012), 1076-1099
International Journal of Fracture, 2013, under review
International Journal of Fatigue, Volume 29, Issue 4, April 2007, 615-619
TMS The Minerals, Metals & Materials Society; 1993
International Journal of Damage Mechanics,21(2012), 1076-1099
International Journal of Fracture, 2013, under review
International Journal of Fatigue, Volume 29, Issue 4, April 2007, 615-619
TMS The Minerals, Metals & Materials Society; 1993
Online since: October 2007
Authors: Roland E. Logé, Mihaela Teodorescu, Patrice Lasne
Metal
Science, 187-194
Journal of Materials Processing Technology 125-126, 63-71
Journal of Materials Processing and Technology, 45:69(1994)
Journal of Materials Processing Technology 123, 155166
Materials Science and Engineering A 339, 1-9.
Journal of Materials Processing Technology 125-126, 63-71
Journal of Materials Processing and Technology, 45:69(1994)
Journal of Materials Processing Technology 123, 155166
Materials Science and Engineering A 339, 1-9.