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Online since: May 2005
Authors: Wook Bahng, K.Y. Cheong, Nam Kyun Kim
Kim
2, c
1
School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia,
Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia.
2
Power Semiconductor Research Group, Korea Electrotechnology Research Institute (KERI),
P.O.
Han: Recent Major Advances in SiC (Taylor & Francis, New York, 2003) pp. 377-391
Forum.
Forum.
Arai : Recent Major Advances in SiC (Taylor & Francis, New York, 2003) pp. 651-670
Han: Recent Major Advances in SiC (Taylor & Francis, New York, 2003) pp. 377-391
Forum.
Forum.
Arai : Recent Major Advances in SiC (Taylor & Francis, New York, 2003) pp. 651-670
Online since: February 2014
Authors: Kai Gong, Guo Qing Xu, Zong Jun Tian
Preparation and characterization of bulk porous nickel fabricated by novel scanning jet electrodeposition
Kai Gong1, a *, Guoqing Xu1,b,Zongjun Tian2, c
1Shenzhen Institutes of Advanced Technology,Shenzhen ,China,518055 & The Chinese University of Hongkong, HongKong
2Nanjing University of Aeronautics and Astronautics, Nanjing China, 210016
akai.gong@siat.ac.cn, bgqxu@mae.cuhk.edu.hk, ctianzj@nuaa.edu.cn
Keywords: jet electrodeposition, dendritic crystals, porous metals
Abstract.
[5] Ashby M F, Evans A G, Fleck N A, et al: Metal Foams: A Design Guide.( Butterworth-Heinermann Press, Oxford 2000), [6] Chen Jin-Song,Huang Yin-Hui,Tian Zhong-Jun,et al: China Mechanical Engineering.
Forum Vol. 17 (2006),p. 1408
Manufacturing Science and Engineering, 1993, 64: 693-699
China Mechanical Engineering, 2006, 17( 13): 1408-1410.
[5] Ashby M F, Evans A G, Fleck N A, et al: Metal Foams: A Design Guide.( Butterworth-Heinermann Press, Oxford 2000), [6] Chen Jin-Song,Huang Yin-Hui,Tian Zhong-Jun,et al: China Mechanical Engineering.
Forum Vol. 17 (2006),p. 1408
Manufacturing Science and Engineering, 1993, 64: 693-699
China Mechanical Engineering, 2006, 17( 13): 1408-1410.
Online since: December 2016
Authors: Yi Dong Bao, Wen Liang Chen, Yong Cai Liu
[2] D.Marcum, F.Alauzet, Aligned Metric-based Anisotropic Solution Adaptive Mesh Generation, Procedia Engineering, 2014, 82:428-444
[3] P.Persson, Mesh size functions for implicit geometries and PDE-based gradient limiting, Engineering with Computers, 2006, 22(2):95-109
Computer methods in applied mechanics and engineering, 2007, 196(17):2187-2196
Computer Graphics Forum, 2008, 27(5):1495–1504
Stephenson, Paving: A new approach to automated quadrilateral mesh generation, International Journal for Numerical Methods in Engineering, 1991, 32(4):811-847
[3] P.Persson, Mesh size functions for implicit geometries and PDE-based gradient limiting, Engineering with Computers, 2006, 22(2):95-109
Computer methods in applied mechanics and engineering, 2007, 196(17):2187-2196
Computer Graphics Forum, 2008, 27(5):1495–1504
Stephenson, Paving: A new approach to automated quadrilateral mesh generation, International Journal for Numerical Methods in Engineering, 1991, 32(4):811-847
Online since: June 2013
Authors: Tie Jun Wu, Long Gen Li, Hui Yuan Cao
Guo: China Mechanical Engineering Magazine Vol.19 (2008), p.379
[4] K.
Jiang: Mechanical and Electrical Engineering Magazine Vol.26 (2009), p.25 [5] H.
Lou: Advanced Science Letter, Vol.4 (2011), p.3088 [10] T.J.
Man: Key Engineering Materials, Vol.458 (2011), p.48 [11] G.H.
Lu: Advanced Science Letters Vol.4 (2011), p.3067
Jiang: Mechanical and Electrical Engineering Magazine Vol.26 (2009), p.25 [5] H.
Lou: Advanced Science Letter, Vol.4 (2011), p.3088 [10] T.J.
Man: Key Engineering Materials, Vol.458 (2011), p.48 [11] G.H.
Lu: Advanced Science Letters Vol.4 (2011), p.3067
Online since: March 2010
Authors: W.F. Fan, J.H. Li, 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
3College of Information & Business, Zhongyuan University of technology
ZhengZhou,450007, P.R.
Wierzbicki: Journal of Engineering Materials and Technology, 2004, 126 (3): 314-324 [3] W.F.
Li: Materials Science & Engineering A, 2008, 499 (1): 248-251 [4] J.H.
Fan: Materials Science & Engineering A, 2008, 499 (1): 200-203 [6] H.
Ding: Materials Science Forum, Vols.575-578 (2009), p.316-321
Wierzbicki: Journal of Engineering Materials and Technology, 2004, 126 (3): 314-324 [3] W.F.
Li: Materials Science & Engineering A, 2008, 499 (1): 248-251 [4] J.H.
Fan: Materials Science & Engineering A, 2008, 499 (1): 200-203 [6] H.
Ding: Materials Science Forum, Vols.575-578 (2009), p.316-321
Online since: March 2008
Authors: Zhong Li, Sen Ge, Li Chen, Hui Liang Ding, Guo Zhi Lv
Residual
strength of stiffened panels with widespread fatigue damage was evaluated by an engineering
approach and a finite element method respectively.
The predictions are in good agreement with the experiment results and it is shown the methods could be used in an engineering practice for the residual strength evaluation with the acceptable accuracy.
Introduction The damage tolerance design concept has been widely used in the advanced aircraft structure design.
So it is very important to develop an efficient engineering method to predict the stress intensity factor for widespread fatigue damage.
Swift:Widespread Fatigue Damage Monitoring Issues and Concerns, FAA/NASA International Symposium on Advanced Structural Integrity Methods for Airframe Durability and Damage Tolerance.
The predictions are in good agreement with the experiment results and it is shown the methods could be used in an engineering practice for the residual strength evaluation with the acceptable accuracy.
Introduction The damage tolerance design concept has been widely used in the advanced aircraft structure design.
So it is very important to develop an efficient engineering method to predict the stress intensity factor for widespread fatigue damage.
Swift:Widespread Fatigue Damage Monitoring Issues and Concerns, FAA/NASA International Symposium on Advanced Structural Integrity Methods for Airframe Durability and Damage Tolerance.
Online since: December 2013
Authors: Hsiu Chen Tang, Long Chang Hsieh
The Meshing Efficiency Analysis of Coupled Planetary Gear Reducer
Long-Chang Hsieh 1,a, Hsiu-Chen Tang 2,b
1Dept. of Power Mechanical Engineering, National Formosa University
64 Wun Hua Rd., Huwei, Yunlin 63208, Taiwan
2 Institute of Mechanical & Electro- Mechanical Engineering
64 Wun Hua Rd., Huwei, Yunlin 63208, Taiwan
alochsieh@nfu.edu.tw, bjohn91487@hotmail.com
Keywords: Kinematic analysis, latent power theorem, train value equation, coupled type planetary gear reducer.
Chen: Materials Science Forum, Vol. 505-507, (2006), pp. 1003-1008 [5] C.G.
Tang: submitted to Journal Advanced Materials Research (2013)
Chen: Advanced Materials Research, Vols.317-319, (2011), pp.2226-2229 [9] L.C.
Chen: Journal of Advanced Science Letters, Vol. 12, (2012), pp34-39 [10] Y.
Chen: Materials Science Forum, Vol. 505-507, (2006), pp. 1003-1008 [5] C.G.
Tang: submitted to Journal Advanced Materials Research (2013)
Chen: Advanced Materials Research, Vols.317-319, (2011), pp.2226-2229 [9] L.C.
Chen: Journal of Advanced Science Letters, Vol. 12, (2012), pp34-39 [10] Y.
Online since: December 2007
Authors: B. Liu, T.J. Jin, Y.L. Ma
Ma
1,a
1
School of Mechatronic, Harbin Institute of Technology, Harbin 150001, China
a
liubo418@126.com
Keywords: Project management, System of production management, Concurrent engineering,
Agile manufacturing
Abstract.
In the light of project management, concurrent engineering and agile manufacturing, in relation to the characteristics of the concurrence of developing and batch manufacturing, this text studies the hierarchical information technology of the production management system based on project driving.
Introduction Developing process of astronautical model products is a complicated system engineering, accomplished by teamwork of relative enterprises such as research institute, production factory, experiment centre.
In mid of 1990s, American government advanced "TEAM" [4] plan and "NGM" [5] plan to improving competitive power of manufacturing industry, leading to a new productive model.
[5] Agility Forum.
In the light of project management, concurrent engineering and agile manufacturing, in relation to the characteristics of the concurrence of developing and batch manufacturing, this text studies the hierarchical information technology of the production management system based on project driving.
Introduction Developing process of astronautical model products is a complicated system engineering, accomplished by teamwork of relative enterprises such as research institute, production factory, experiment centre.
In mid of 1990s, American government advanced "TEAM" [4] plan and "NGM" [5] plan to improving competitive power of manufacturing industry, leading to a new productive model.
[5] Agility Forum.
Online since: January 2004
Authors: Masataka Mizuno, Hideki Araki, Yasuharu Shirai, Toshinobu Chiba, Takashi Akahane, Jinya Katsuyama
Shirai3
1
Department of Materials Science and Engineering, Osaka University,
Yamada-oka 2-1, Suita, Osaka 565-0871, JAPAN
2
Advanced Materials Laboratory, National Institute for Materials Science,
Namiki 1-1, Tsukuba, Ibaraki 305-0044, JAPAN
3
Science and Technology Center for Atoms, Molecules and Ions Control, Osaka University,
Yamada-oka 2-1, Suita, Osaka 565-0871, JAPAN
Keywords: NiTi, pre-martensitic phenomena, electronic structure, positron lifetime, 2D-ACAR
Abstract.
Acknowledgements This research has been carried out at the Strategic Research Base, Handai Frontier Research Center, (Graduate School of Engineering,) Osaka University, supported by the Japanese Government's Special Coordination Fund for Promoting Scienece and Technology.
Forum 327-328 (2000), 437
Shirai: Advances in Quantum Chemistry 42 (2003), 109.
Advanced Mater. 1 (2000), 63.
Acknowledgements This research has been carried out at the Strategic Research Base, Handai Frontier Research Center, (Graduate School of Engineering,) Osaka University, supported by the Japanese Government's Special Coordination Fund for Promoting Scienece and Technology.
Forum 327-328 (2000), 437
Shirai: Advances in Quantum Chemistry 42 (2003), 109.
Advanced Mater. 1 (2000), 63.
Online since: February 2012
Authors: Li Na Bing, Helen Lai Wah Chan, Wan Ping Chen, Dan Su, Yu Wang
Dielectric Properties of Barium Titanate Ceramics Modified by Cuo in Different Methods
Zhenjiang Shen1, a, Yu Wang2,b, Wanping Chen2,c, Helen Lai Wah Chan2,d
and Lina Bing1, e
1 College of Physics and Electronic Engineering, Hainan Normal University, Hainan 571158, China.
2Department of Applied Physics and Materials Research Center, The Hong Kong Polytechnic
azjshenmail@163.com, bwangyu-hk@163.com, cchenwanping_whu@163.com, dhlwchan@163.com, ebinglina121@126.com
Keywords: Barium titanate ceramics, dielectric property, CuO, BaO, SiO2, doping.
The structure and morphology of the fours samples were characterized by X-ray diffraction (BRUKER axs D8 ADVANCE), field-emission scanning electron microscopy (FESEM, JEOL JSM-6700F).
Forum Vol. 94-96 (1992), p. 885 [4] J.S.
Forum Vol. 124-126 (2007), p. 811 [5] T.
Forum Vol. 687 (2011), p. 287 [16] Z.J.
The structure and morphology of the fours samples were characterized by X-ray diffraction (BRUKER axs D8 ADVANCE), field-emission scanning electron microscopy (FESEM, JEOL JSM-6700F).
Forum Vol. 94-96 (1992), p. 885 [4] J.S.
Forum Vol. 124-126 (2007), p. 811 [5] T.
Forum Vol. 687 (2011), p. 287 [16] Z.J.