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Online since: December 2012
Authors: Wen Yi Wu, Xiao Hong Lu, Peng Zhuo Han
Science in China Series E: Technological Sciences, Jul. 2009, vol. 52, no. 7, 1849-1857
Advanced Materials Research, v 181-182, p 161-165, 2011, Advanced Materials Science and Technology
Harbin Gongye Daxue Xuebao/ Journal of Harbin Institute of Technology, v 43, n 3, p 85-89, March 2011
Beijing Gongye Daxue Xuebao/ Journal of Beijing University of Technology, v 37, n 3, p 321-329, March 2011
Key Engineering Materials, v 464, p 374-378, 2011
Advanced Materials Research, v 181-182, p 161-165, 2011, Advanced Materials Science and Technology
Harbin Gongye Daxue Xuebao/ Journal of Harbin Institute of Technology, v 43, n 3, p 85-89, March 2011
Beijing Gongye Daxue Xuebao/ Journal of Beijing University of Technology, v 37, n 3, p 321-329, March 2011
Key Engineering Materials, v 464, p 374-378, 2011
Online since: August 2013
Authors: Rui Zhang
Fig 1 The frame of CETS
Architecture design
Construction design
Mechanical Analysis
… …
Extended Functions
Inertial Inviroment
建筑工程虚拟教学系统
Virtual Space
Outer Inviroment
Building Components
Building Accessories
Reinforcements
virtual tour
Behavior control
Instructions for use
Theoretical Materials
Sound Commentary
Virtual
Building
Virtual Character
Learning Modules
Evaluation
System
CETS
Core Function of CETS.
Fig 2 3D Model and Detailed Structures Rendering 3D Model and Show of Section. 3D MAX is more suitable for simulating building materials than ProE, although ProE is more accurate.
[4] Mingjun LIAO, Liyuan CHANG, Journal of Beihua University, vol. 7, pp. 567-569(2006),in Chinese
[9] Jian CHEN, Lanfeng SUN, Journal of Tianjin Institute of Textile Science and Technology, vol. 4, pp.93-98(1998) ,in Chinese
[10] Chen FU, Qunsheng PENG, Journal of Computers, vol. 9, pp.793-799(1998) ,in Chinese
Fig 2 3D Model and Detailed Structures Rendering 3D Model and Show of Section. 3D MAX is more suitable for simulating building materials than ProE, although ProE is more accurate.
[4] Mingjun LIAO, Liyuan CHANG, Journal of Beihua University, vol. 7, pp. 567-569(2006),in Chinese
[9] Jian CHEN, Lanfeng SUN, Journal of Tianjin Institute of Textile Science and Technology, vol. 4, pp.93-98(1998) ,in Chinese
[10] Chen FU, Qunsheng PENG, Journal of Computers, vol. 9, pp.793-799(1998) ,in Chinese
Online since: August 2014
Authors: Jin Mei Lin, Mao Dong Li, Jun Ming Zhao, Ai Zhi Yu, Shi Ping Li, Bo Yang, Hui Zhang
Introduction
Organic compounds in the make-up water for Power plant boiler decompose some acidic materials, which cause mental corrosion of the boiler and steam turbine, and then the pH value of boiler water decreases, leading to scaling and corrosion of waterwall tubes, and causing the accidents such as boiler tube explosion, and so on, under high temperature and high pressure.
Applied Surface Science Vol.253 (2007) p. 7029-7035 [3] D.G.
Journal of Central South University of Technology.
Journal of Hazardous Materials Vol.133 (2006) p.226–232 [9] D.G.
Journal of Photochemistry and Photobiology A: Chemistry Vol.148 (2002) p.129–135
Applied Surface Science Vol.253 (2007) p. 7029-7035 [3] D.G.
Journal of Central South University of Technology.
Journal of Hazardous Materials Vol.133 (2006) p.226–232 [9] D.G.
Journal of Photochemistry and Photobiology A: Chemistry Vol.148 (2002) p.129–135
Online since: January 2013
Authors: Zhao Jun Yang, Xue Cheng Zhang, Zhao Bin Hong, Bai Chao Wang
Journal of Materials Processing Technology, 2002,122: 160-172
Journal of Mechanical Design, 2002, 124 (3) : 524-532
JOURNAL OF BEIJING UNIVERSITY OF TECHNOLOGY, 2011,37(4): 487-493
JOURNAL OF COMPUTER EMULATION,2009,26(1): 280-283
Computer-aided manufacturing of spiral bevel and hypoid gears by applying optimization techniques[J], Journal of Materials Processing Technology, 2001, 114(1): 22-35
Journal of Mechanical Design, 2002, 124 (3) : 524-532
JOURNAL OF BEIJING UNIVERSITY OF TECHNOLOGY, 2011,37(4): 487-493
JOURNAL OF COMPUTER EMULATION,2009,26(1): 280-283
Computer-aided manufacturing of spiral bevel and hypoid gears by applying optimization techniques[J], Journal of Materials Processing Technology, 2001, 114(1): 22-35
Online since: May 2014
Authors: Jian Jun Lin, Yang Sun, Xiao Jun Zheng
The system is running according to Timetable settings of materials.
Material attribute is a nested table.
A0920110024, A0920131001), and National Natural Science Foundation of China (No. 61304206) Reference [1] H.
Journal of Intelligent and Robotic Systems: Theory and Applications, (2013), p. 1-21
European Journal of Operational Research, Vol. 171 (2006), p. 1-23
Material attribute is a nested table.
A0920110024, A0920131001), and National Natural Science Foundation of China (No. 61304206) Reference [1] H.
Journal of Intelligent and Robotic Systems: Theory and Applications, (2013), p. 1-21
European Journal of Operational Research, Vol. 171 (2006), p. 1-23
Online since: April 2014
Authors: Li Tian, Xiao Wei Liu, Xiao Wei Han, Shang Yu Liu, He Zhang
As traditional materials of microelectronics, glass and silicon were used in multi-layer devices at first [4-5].
The composite method is that the multi-layer microfluidic devices were composed by at least two materials.
In addition to PMMA, the other substrate materials usually include flexible polymers, such as PDMS or SU-8 [13-15].
Inhibitory effect of common microfluidic materials on PCR outcome.
Journal of Materials Processing Technology 209 (2009) 5487-5493 [11] Yang-Wei Lin, Huan-Tsung Chang.
The composite method is that the multi-layer microfluidic devices were composed by at least two materials.
In addition to PMMA, the other substrate materials usually include flexible polymers, such as PDMS or SU-8 [13-15].
Inhibitory effect of common microfluidic materials on PCR outcome.
Journal of Materials Processing Technology 209 (2009) 5487-5493 [11] Yang-Wei Lin, Huan-Tsung Chang.
Online since: October 2013
Authors: M. Azharul Karim, Cheng Yan, Prasad K.D.V. Yarlagadda, Jaya Suteja The
The approach first generates several combinations of primary processes and materials.
The system consists of the member-level primary, secondary, and tertiary manufacturing processes databases, which are viable for various materials, production volumes, main shapes, common shapes of raw material, additional features, size tolerance, surface roughness, material properties, and surface finish.
Materials & design, 1998. 19(5): p. 217-230
Materials & design, 1998. 19(5): p. 205-215
Journal of manufacturing systems, 2003. 22(1): p. 28-45
The system consists of the member-level primary, secondary, and tertiary manufacturing processes databases, which are viable for various materials, production volumes, main shapes, common shapes of raw material, additional features, size tolerance, surface roughness, material properties, and surface finish.
Materials & design, 1998. 19(5): p. 217-230
Materials & design, 1998. 19(5): p. 205-215
Journal of manufacturing systems, 2003. 22(1): p. 28-45
Online since: March 2008
Authors: Fan Xiao, Akiyoshi Osaka, Ren Guo Song
Materials & Methods
A clear and stable 0.03M titanium sulfate (TiOSO4) solution was prepared at room temperature by
dissolving reagent grade TiOSO4 in 0.03M hydrogen peroxide solution (H2O2).
Osaka: Journal of Materials Science: Materials in Medicine Vol. 14 (2003), p1 [5] F.
Osaka: Key Engineering Materials, Vol. 240-2 (2003), p537 [6] F.
Osaka: Key Engineering Materials, Vol. 330-332 (2007), p667 [8] F.
Osaka: Journal of Materials Science, Vol. 42 (2007), p6339 [9] G V Jere, C C Patel.: J.
Osaka: Journal of Materials Science: Materials in Medicine Vol. 14 (2003), p1 [5] F.
Osaka: Key Engineering Materials, Vol. 240-2 (2003), p537 [6] F.
Osaka: Key Engineering Materials, Vol. 330-332 (2007), p667 [8] F.
Osaka: Journal of Materials Science, Vol. 42 (2007), p6339 [9] G V Jere, C C Patel.: J.
Online since: June 2014
Authors: R.N. Farahana, Pei Leng Teh, A.G. Supri
Teh1,c
1School of Materials Engineering, Universiti Malaysia Perlis (UniMAP),
02600 Jejawi, Perlis, Malaysia.
Experimental Materials. rHDPE with a melt flow index of 0.7 g/10min (190°C) and a density of 939.9 kg/m3 was used.
Madi: Materials and Design, Vol. 46 (2013), p. 435-441
H., Kong, Q., Zhao, J., Zhao, D., Fan, Q., Xi, Y.: Materials Letters, Vol. 58 (2004), p. 3613–3617
[8] Abdullah, A.H.; Rusel, D.S., Abdulwahab, A.S.: Journal of Basrah Researches (Sciences), Vol. 37 (2011), p. 36-42
Experimental Materials. rHDPE with a melt flow index of 0.7 g/10min (190°C) and a density of 939.9 kg/m3 was used.
Madi: Materials and Design, Vol. 46 (2013), p. 435-441
H., Kong, Q., Zhao, J., Zhao, D., Fan, Q., Xi, Y.: Materials Letters, Vol. 58 (2004), p. 3613–3617
[8] Abdullah, A.H.; Rusel, D.S., Abdulwahab, A.S.: Journal of Basrah Researches (Sciences), Vol. 37 (2011), p. 36-42
Online since: August 2011
Authors: Xi Feng Qin, Shuang Li, Yi Liang, Hong Zhen Li, Feng Xiang Wang
The rare-earth (RE) doping of Si and Si-related materials [1-7] in the last years has been extensively studied for the development of light-emitting devices in the Si-based optoelectronics initiated by the reports on the photoluminescence (PL) and electroluminescence (EL) centered at around 1.54 μm of Er3+ (4I13/2→4I15/2) in Si [8].
As for RE doped materials, much attention has been paid to the Er doped silicon and Si-related materials, because its characteristic emission at 1.54 μm is occurring in the minimum absorption of optical fibers.
So it is very important to investigate the range distribution of Nd ions implanted in Si-related materials.
XN070109) and the National Natural Science Foundation of China (Grant No. 51042002).
Zhao: Journal of Shandong Jianzhu University Vol. 24 (3) (2009), p. 212 [6] Ennen, G.
As for RE doped materials, much attention has been paid to the Er doped silicon and Si-related materials, because its characteristic emission at 1.54 μm is occurring in the minimum absorption of optical fibers.
So it is very important to investigate the range distribution of Nd ions implanted in Si-related materials.
XN070109) and the National Natural Science Foundation of China (Grant No. 51042002).
Zhao: Journal of Shandong Jianzhu University Vol. 24 (3) (2009), p. 212 [6] Ennen, G.