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Online since: May 2011
Authors: Zhi Guo Zhang
In the programme, risk information flow is implied, inconspicuous, lack of apparent feature, rarely leave for exercised the trace. programme on information from various risks, such as historical material, managers and the personal experience and his report, the sources of information materials and other ways, sometimes it is not valid and cannot fully reflect the programme of all possible risks, risks of the programme of information dispersion and incomplete.
International Journal of Project Management,Vol 17, No.l, 1999
Information Science Vol. 10 (2007), p. 1575-1578,In Chinese
International Journal of Project ManagementVol. 22(2004), p. 289-299,In Chinese
Journal of Beijing Technology and Business University(Social Science) Vol. 3 (2006), p. 70-74,in Chinese.
International Journal of Project Management,Vol 17, No.l, 1999
Information Science Vol. 10 (2007), p. 1575-1578,In Chinese
International Journal of Project ManagementVol. 22(2004), p. 289-299,In Chinese
Journal of Beijing Technology and Business University(Social Science) Vol. 3 (2006), p. 70-74,in Chinese.
Online since: July 2011
Authors: Shi Chen, Bo Rong Wu, Yong Huan Ren, Chun Wei Yang, Cun Zhong Zhang, Feng Wu
Novel low-temperature electrolyte for Li-ion Battery
Yong Huan Ren1,2,a, Chun Wei Yang1,2,b, Bo Rong Wu1,2,c,
Cun Zhong Zhang1,2,d, Shi Chen1,2,e, Feng Wu1,2,f
1Beijing Higher Institution Engineering Research Center of Power Battery and Chemical Energy Materials, Beijing 100081 China;
2School of Chemical Engineering and Environment Science, Beijing Institute of Technology, Beijing 100081 China;
arenyonghuan163.com@163.com,byangchunweihit@sina.com,cwubr2528@sina.com,dczzhangchem@bit.edu.cn,ecsbit@bit.edu.cn,fwufeng863@vip.sina.com
Keywords: Li-ion batteries, fluoroethylene carbonate, low temperature, LiCo1/3Ni1/3Mn1/3O2, electrolyte
Abstract.
Acknowledgements This project was financially supported by the Beijing Higher Institution Engineering Research Center of Power Battery and Chemical Energy Materials open sustentation Fund (No: 3100012250902) and The Major Project of Chinese National Programs for Fundamental Research and Development (973 Program) Fund (No: 2009CB22010) References [1] D.P.
Jansen: Journal of The Electrochemical Society Vol. 155(1) (2008),p.
Henriksen: Journal of Power Sources Vol. 119-121 (2003), p. 343-348 [6] Jiang Fan: Journal of Power Sources Vol. 117 (2003), p. 170-178 [7] S.
Yamaguchi: Journal of the Electrochemical Society Vol. 151 (2004), p.
Acknowledgements This project was financially supported by the Beijing Higher Institution Engineering Research Center of Power Battery and Chemical Energy Materials open sustentation Fund (No: 3100012250902) and The Major Project of Chinese National Programs for Fundamental Research and Development (973 Program) Fund (No: 2009CB22010) References [1] D.P.
Jansen: Journal of The Electrochemical Society Vol. 155(1) (2008),p.
Henriksen: Journal of Power Sources Vol. 119-121 (2003), p. 343-348 [6] Jiang Fan: Journal of Power Sources Vol. 117 (2003), p. 170-178 [7] S.
Yamaguchi: Journal of the Electrochemical Society Vol. 151 (2004), p.
Online since: September 2011
Authors: Yun Yi Wang, Jun Li, Ying Ke
Table 1 Main measurements of the experimental fabric
Fibrous material
Thickness
[mm]
Surface density
[g/m2]
Weave
Thermal resistance
[m2·k/W]
cotton
0.24
100.21
plain
9.243*10-3
MATLAB PDE Toolbox[11]is used to compute the temperature and heat flux distribution in microclimate.
Acknowledgment The authors of this paper greatly appreciate support from National Natural Science Foundation, China (project 50876019) and Natural Science Foundation of Science and Technology Commission of Shanghai Municipality, China (project 08ZR1400100).
D:Textile Research Journal.
[7] G Song:Journal of Industrial Textiles.
[8] II Young Kim C L P L: Fire and Materials.
Acknowledgment The authors of this paper greatly appreciate support from National Natural Science Foundation, China (project 50876019) and Natural Science Foundation of Science and Technology Commission of Shanghai Municipality, China (project 08ZR1400100).
D:Textile Research Journal.
[7] G Song:Journal of Industrial Textiles.
[8] II Young Kim C L P L: Fire and Materials.
Online since: January 2014
Authors: Jiang Da He, Hong Qiang Xie, Qing Xu, Ming Li Xiao, Jian Feng Liu
The essence of this phenomenon is due to a local non- rock materials even destruction, that is caused by the prefabricated structural surface .With 19.4MPa rock samples of constant stress long-term continuous role, its internal damage phenomenon emerged .
Although this injury is not very serious, but for a long time, rock materials’ weak locals such as structural surface are unable to withstand the long-term accumulation of tiny flaws, local emergence of non-uniform damage.
International Journal of Rock Mechanics and Mining Sciences and Geomechanics Abstracts, 1995, 32(4): 325- 335
Creep behavior of a weak rock: experimental characterization [J] International Journal of Rock Mechanics and Mining Sciences, 1999, 36(1): 127- 138
Mechanics of Materials, 2001, 33(5):283-293
Although this injury is not very serious, but for a long time, rock materials’ weak locals such as structural surface are unable to withstand the long-term accumulation of tiny flaws, local emergence of non-uniform damage.
International Journal of Rock Mechanics and Mining Sciences and Geomechanics Abstracts, 1995, 32(4): 325- 335
Creep behavior of a weak rock: experimental characterization [J] International Journal of Rock Mechanics and Mining Sciences, 1999, 36(1): 127- 138
Mechanics of Materials, 2001, 33(5):283-293
Online since: March 2010
Authors: X.B. Ze, Y.B. Qu, W. Zhang, Y. Fu
The database server layer is used to store manufacturing resource data of windows products, such
as profile materials data, design data, process data and equipment data.
Fan: Journal of Wuhan University of Technology, Vol.3 (2006), p.913
Ding: Advances in Materials Manufacturing Science and Technology, Materials Science Forum, Vol. 9 (2004), p.278
Wang: Journal of Mechanical Engineer, Vol. 1 (2006), p.65
Peng: Journal of Machine Design, Vol. 24 (4) (2007), p.45
Fan: Journal of Wuhan University of Technology, Vol.3 (2006), p.913
Ding: Advances in Materials Manufacturing Science and Technology, Materials Science Forum, Vol. 9 (2004), p.278
Wang: Journal of Mechanical Engineer, Vol. 1 (2006), p.65
Peng: Journal of Machine Design, Vol. 24 (4) (2007), p.45
Online since: February 2011
Authors: Qumrul Ahsan, Mansur Ahmed, Md. Saiful Islam, Md. Mainul Islam
Among all the natural reinforcing fibrous materials, silk appears to be a promising fibre due to its high toughness and aspect ratio in comparison with other natural reinforcements [5, 6].
Materials and Methodology Collection of silk fibre and polypropylene resin.
Mosallam: Journal of Composite Materials, Vol. 43 (2009), p. 2521-2531
Azhari: International Journal of Engineering Science and Technology, Vol. 2 (2010), p. 128-140
Verpost: Composite Science and Technology, Vol. 63 (2003), p. 1259-1264.
Materials and Methodology Collection of silk fibre and polypropylene resin.
Mosallam: Journal of Composite Materials, Vol. 43 (2009), p. 2521-2531
Azhari: International Journal of Engineering Science and Technology, Vol. 2 (2010), p. 128-140
Verpost: Composite Science and Technology, Vol. 63 (2003), p. 1259-1264.
Online since: October 2010
Authors: Guray Kaya, Bekir Karasu, Selvin Yesilay Kaya, Erkul Karacaoğlu
Introduction
The phosphor systems, which can radiate long afterglow, are classified as energy-storing materials that can absorb the visible light and UV beams, store the photon energy and release the energy as visible light slowly.
Conclusions Long afterglow pigment Sr4Al14O25:Eu,Dy was synthesized by a solid-state reaction method with appropriate starting materials.
[3] X., Luo, W., Caoa, Z., Xiao, Journal of Alloys and Compounds, 416, 2006, 250–255
[4] C., Chang, Z., Yuan, D., Mao, Journal of Alloys and Compounds, 415, 2006, 220–224
[6] N., Suriyamurthy and B., Panigrahi, Indian Journal of Engineering & Material Science, Vol. 16, 2003, 178-180
Conclusions Long afterglow pigment Sr4Al14O25:Eu,Dy was synthesized by a solid-state reaction method with appropriate starting materials.
[3] X., Luo, W., Caoa, Z., Xiao, Journal of Alloys and Compounds, 416, 2006, 250–255
[4] C., Chang, Z., Yuan, D., Mao, Journal of Alloys and Compounds, 415, 2006, 220–224
[6] N., Suriyamurthy and B., Panigrahi, Indian Journal of Engineering & Material Science, Vol. 16, 2003, 178-180
Online since: June 2008
Authors: Seiyed Ali Asghar Akbari Mousavi, Pezhman Farhadi Sartangi
Experimental Investigations on explosive cladding of cp-Titanium / AISI
304 Stainless Steel
Pezhman Farhadi Sartangi
1, a
,Seyed Ali Asghar Akbari Mousavi 2,b
1,2
School of Metallurgy and Materials Engineering, University College of Engineering, University of
Tehran , Tehran, Iran, P.O.
This is a process in which the controlled energy of explosives is used to create a metallic bond between two similar or dissimilar materials.
(10) where ρa and ρb are the densities of the materials, Ha and Hb are their Vickers hardnesses.
SEM-BSE micrographs (see Fig. 5a-e), show that the interface was outlined by sharp transition between the two materials.
Thesis), University of Manchester Institute of Science and Technology (UMIST), Manchester, UK (2001) [3] S.A.A.Akbari Mousavi, S.J.Burely, S.T.S.Al-Hassani: International Journal of Imapct Engineering Vol.31 (2005), p. 719 [4] A.Pocalyko: Welding Journal Vol.
This is a process in which the controlled energy of explosives is used to create a metallic bond between two similar or dissimilar materials.
(10) where ρa and ρb are the densities of the materials, Ha and Hb are their Vickers hardnesses.
SEM-BSE micrographs (see Fig. 5a-e), show that the interface was outlined by sharp transition between the two materials.
Thesis), University of Manchester Institute of Science and Technology (UMIST), Manchester, UK (2001) [3] S.A.A.Akbari Mousavi, S.J.Burely, S.T.S.Al-Hassani: International Journal of Imapct Engineering Vol.31 (2005), p. 719 [4] A.Pocalyko: Welding Journal Vol.
Online since: September 2018
Authors: Anton V. Visnap, Lyubov Morgun, Vladimir Morgun
Efficiency of application of reinforcing construction made of composite materials includes not only increased corrosion resistance, but also better compatibility of materials in strength and deformation properties.
Visnap, The Use of Reinforcing Rod in the Products of Fiber Foam Concrete, Construction materials. 7 (2015) 52-54
Thesis for a Candidate Degree in Technological Sciences.
Mechanical Properties of Fiberglass Reinforcement with Concrete Cohesion Bond, Mechanics of composite materials. 4 (2014) 641 - 654
[9] Md Azree Othuman My din, Sara Soleimanzadeh, "Effect of Polypropylene Fiber Content on Flexural Strength of Lightweight Foamed Concrete at Ambient andelevated Temperatures", Advances in Applied Science Research Journal, Pelagia Research Library. 3 (2012) 2837-2846
Visnap, The Use of Reinforcing Rod in the Products of Fiber Foam Concrete, Construction materials. 7 (2015) 52-54
Thesis for a Candidate Degree in Technological Sciences.
Mechanical Properties of Fiberglass Reinforcement with Concrete Cohesion Bond, Mechanics of composite materials. 4 (2014) 641 - 654
[9] Md Azree Othuman My din, Sara Soleimanzadeh, "Effect of Polypropylene Fiber Content on Flexural Strength of Lightweight Foamed Concrete at Ambient andelevated Temperatures", Advances in Applied Science Research Journal, Pelagia Research Library. 3 (2012) 2837-2846
Online since: September 2014
Authors: Qing Li, Yi Wei Xu, Peng Hu, Nan Ying Shentu, Quan Yuan Peng
Shsrilye and hmapton (1978) introduce the piezoelectric ceramic materials into geotechnical test first, the principle of the method is simple, clear, which is applied in tri-axial apparatus, consolidation apparatus, resonant column, direct shear apparatus, plane strain gauge.
[4] Mingzhu.Guo: Northwest Seismology Journal, vol.33, p. 21-23, 2011, In Chinese
[6]Yugui.Tao: Journal of Anhui Normal University (Natural Science Edition), Vol.5, P.443-446, 2008, In Chinese
Wu: Chinese Journal of Geotechnical Engineering, Vol. 6, P.33-41, 1985, In Chinese
Yan, Jinying, Wang: Building Science, Vol.5, P.20-22, 1998, In Chinese
[4] Mingzhu.Guo: Northwest Seismology Journal, vol.33, p. 21-23, 2011, In Chinese
[6]Yugui.Tao: Journal of Anhui Normal University (Natural Science Edition), Vol.5, P.443-446, 2008, In Chinese
Wu: Chinese Journal of Geotechnical Engineering, Vol. 6, P.33-41, 1985, In Chinese
Yan, Jinying, Wang: Building Science, Vol.5, P.20-22, 1998, In Chinese