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Online since: October 2010
Authors: Qi Guang Cao, Lin Hu, Jian Yu Cui, Xiao Hui Zhang
Experimantal
Materials.
The Chinese Journal of Nonferrous Metals,2005, 15(5): 817- 822.
(In Chinese) [3] Hu Juan,Deng Jiangang,He Shuiyang, et al.Materials Science and Engineering,2001,19(4):71-74.
Materials Protection,2002,35(11):6-8.
Chemical Materials for Construction,2004,3:8-11.
The Chinese Journal of Nonferrous Metals,2005, 15(5): 817- 822.
(In Chinese) [3] Hu Juan,Deng Jiangang,He Shuiyang, et al.Materials Science and Engineering,2001,19(4):71-74.
Materials Protection,2002,35(11):6-8.
Chemical Materials for Construction,2004,3:8-11.
Online since: September 2013
Authors: Xin Li, Wei Guang Li, Guang Zhi Wang
The oils can be used as fuels or raw materials of the petrochemical products after proper treatment [8].
Materials and Methods Materials.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (51008106).
Ogada: submitted to Journal of Progress in Energy and Combustion Science (1999) [5] A.
Zhang: submitted to Journal of Fuel (2003) [7] M.
Materials and Methods Materials.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (51008106).
Ogada: submitted to Journal of Progress in Energy and Combustion Science (1999) [5] A.
Zhang: submitted to Journal of Fuel (2003) [7] M.
Online since: March 2018
Authors: Chih Ling Huang, I Hao Chen, Ching Ming Chien, Chun Ting Wang, Chih Kuang Wang, Yur Ren Kuo
Chitosan and gelatin are potential wound dressing materials.
Chitosan and gelatin can be promising wound dressing raw materials in future.
As a result, lysozyme does improve materials decompose as small molecules.
Chitosan and gelatin can be promising wound dressing raw materials in future.
Cheng, et al., "A gelatin composite scaffold strengthened by drug-loaded halloysite nanotubes," Materials Science and Engineering: C, vol. 78, pp. 362-369, 2017/09/01/ 2017
Chitosan and gelatin can be promising wound dressing raw materials in future.
As a result, lysozyme does improve materials decompose as small molecules.
Chitosan and gelatin can be promising wound dressing raw materials in future.
Cheng, et al., "A gelatin composite scaffold strengthened by drug-loaded halloysite nanotubes," Materials Science and Engineering: C, vol. 78, pp. 362-369, 2017/09/01/ 2017
Online since: July 2008
Authors: Jun Li Li, Ming Chen, Qing Long An
Fig. 2 Boundary conditions and material flow: (a) form-milling, (b) rolling
Material Model.
Acknowledgement This research is supported by the National Natural Science Foundation of China (No.50675134).
References [1] Ming Chen, Guoliang Liu and Fanghong Sun: Investigation on chip formation mechanism and surface integrity in high speed milling titanium alloy, Key Engineering Materials, Vols. 233-236 (2003), p. 489-495 [2] T.
Deng: Journal of Materials Processing Technology, Vol 105 (2000), p. 95-109 [7] G.
Hakem: Journal of Mechanical Engineering Science, Vol. 212 (1998) (5), p. 331-341
Acknowledgement This research is supported by the National Natural Science Foundation of China (No.50675134).
References [1] Ming Chen, Guoliang Liu and Fanghong Sun: Investigation on chip formation mechanism and surface integrity in high speed milling titanium alloy, Key Engineering Materials, Vols. 233-236 (2003), p. 489-495 [2] T.
Deng: Journal of Materials Processing Technology, Vol 105 (2000), p. 95-109 [7] G.
Hakem: Journal of Mechanical Engineering Science, Vol. 212 (1998) (5), p. 331-341
Online since: July 2012
Authors: Chun Ying He, Zhi Min Chen, Xi Ran Wei, Wei Na Song, Jun Zhang, Yi Xiao Yang, Yi Qun Wu, Bin Wang
Pcs have high thermal and chemical stability, and therefore many potential applications such as oxidation catalysts, solar cell functional materials, gas sensors, antimycotic materials, and corrosion inhibitors are expected for Pcs [1].
MPcs have also attracted much more attention as optical limiting materials because of their large optical nonlinearities, ultrafast response times, ease of processing into optical components and lower cost [2].
It is shown that ZnPc(OC5H11)4 hold promise as third order nonlinear materials and optical limiting materials.
Acknowledgements This work was financially supported by Foundation of Education Department of Heilongjiang Province of China References (12521399, 12511377, 12511384), National Natural Science Foundation of China (51002046), Overseas Science Foundation (LC08C06) of Heilongjiang Province, and Open Fund of Key Laboratory of Functional Inorganic Material Chemistry (Heilongjiang University).
Bayrak et al. / Journal of Organometallic Chemistry 696 (2011) 3807-3815 [6] D.
MPcs have also attracted much more attention as optical limiting materials because of their large optical nonlinearities, ultrafast response times, ease of processing into optical components and lower cost [2].
It is shown that ZnPc(OC5H11)4 hold promise as third order nonlinear materials and optical limiting materials.
Acknowledgements This work was financially supported by Foundation of Education Department of Heilongjiang Province of China References (12521399, 12511377, 12511384), National Natural Science Foundation of China (51002046), Overseas Science Foundation (LC08C06) of Heilongjiang Province, and Open Fund of Key Laboratory of Functional Inorganic Material Chemistry (Heilongjiang University).
Bayrak et al. / Journal of Organometallic Chemistry 696 (2011) 3807-3815 [6] D.
Online since: July 2017
Authors: Gilberto Carvalho Coelho, Lucas Ferreira, Alfeu Saraiva Ramos, Stephania Capellari Rezende, Gael Yves Poirier, Antonio Augusto Araújo Pinto da Silva
In this sense, the Ni3Nb compound can enhance the creep and oxidation resistances of these materials 4,5.
Lee: Materials Chemistry and Physics Vol. 104 (2–3) (2007), p. 293
Semiatin: Materials Science and Engineering A 586 (2013), p. 350
Turan: Materials & Design Vol. 42 (2012), p. 495
Ramos: Materials Science Forum Vol. 717 (2012), p. 222
Lee: Materials Chemistry and Physics Vol. 104 (2–3) (2007), p. 293
Semiatin: Materials Science and Engineering A 586 (2013), p. 350
Turan: Materials & Design Vol. 42 (2012), p. 495
Ramos: Materials Science Forum Vol. 717 (2012), p. 222
Online since: June 2012
Authors: Jing Liu, Yong Jun Zhang, Hui Feng Wang, Jing Tao Han
High productive, adequate quality and saving materials are the common advantages of rolling and extension.
Based on the design (including fabrication) of equipments, materials selection and experimental design experiment research is developed.
So in the following research higher surface quality of the materials should be provided.
Journal of net-shape forming engineering.
Fafard, Journal of Materials Processing Technology, Vol.211 (2011), P:578-589.
Based on the design (including fabrication) of equipments, materials selection and experimental design experiment research is developed.
So in the following research higher surface quality of the materials should be provided.
Journal of net-shape forming engineering.
Fafard, Journal of Materials Processing Technology, Vol.211 (2011), P:578-589.
Analysis of Stress Deformation Characteristics of Composite Geomembrane Rock-Fill Dam with Core Wall
Online since: December 2013
Authors: Dong Yan Ding, Jian Min Ren
Table 1 Physics parameters of Materials
Dam partition
Modulus of elasticity
Poisson's ratio
Friction angle
Cohesion
Dam gravel material
21
0.3
38
24
Composite geomembrane
12
0.26
22
/
Transition material
24
0.22
32
15
Cushion material
30
0.22
31
17
Bedrock
23
0.3
36
23
Analysis calculations dam,and foundation mainly uses hexahedral elements , there are also a number of five-sided unit and tetrahedral elements.Composite geomembrane uses quadrilateral membrane element.Figure 1 is the Chengzigou hydropower station dam structure calculation mesh. the number of dam finite difference dividing unit is 680,foundation is 230 and composite geomembrane is divided into 32 geogrid unit.
[2] Su Yi ming, Gu Ganchen.Geotechnical film central impervious earth-rockfill dam finite element calculation [J].Journal of Hohai university (natural science edition), 1988.16: 79-92
Building science, 2009,25 (1): 100 - 105
Journal of water conservancy, 2005
Journal of geotechnical engineering, 1983.
[2] Su Yi ming, Gu Ganchen.Geotechnical film central impervious earth-rockfill dam finite element calculation [J].Journal of Hohai university (natural science edition), 1988.16: 79-92
Building science, 2009,25 (1): 100 - 105
Journal of water conservancy, 2005
Journal of geotechnical engineering, 1983.
Online since: September 2014
Authors: Lei Qin, Yue Hua Shi, Hong Wei Ren, En Rong Wang, Qi Qin, Zheng Xiao Hua, Kai Ge Tian
The emergence of the concept, Smart Materials and Structures, provides a new idea for the health monitoring of civil engineering structures [4].
At present, a variety of different monitoring methods with distinctive features have been formed via combined intelligent materials.
The electrical impedance signal of piezoelectric materials contains the information of structural damages.
[4] Jinping Ou: Functional Materials Information Vol. 2(5) (2005), p. 12-22
Rogers: Journal of Intelligent Material Systems and Structures Vol. 5(1) (1994), p. 12-20.
At present, a variety of different monitoring methods with distinctive features have been formed via combined intelligent materials.
The electrical impedance signal of piezoelectric materials contains the information of structural damages.
[4] Jinping Ou: Functional Materials Information Vol. 2(5) (2005), p. 12-22
Rogers: Journal of Intelligent Material Systems and Structures Vol. 5(1) (1994), p. 12-20.
Online since: April 2011
Authors: Chi Tsao, Shih Han Wang
Compared to Al based materials, Mg based materials offer the possibility of saving up to 30% in weight.
Ebert, "Magnesium - Properties - applications - potential", Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2001, Vol.302(1), pp. 37-45
Grant, "Spray Deposition of Metals - A Review ", Materials Science and Engineering, 1988, Vol.98, pp. 381-394
Grant, "Spray Forming", Progress in Materials Science, 1995, Vol.39(4-5), pp. 497-545
Tsao, "Spray forming of silicon added AZ91 magnesium alloy and its workability", Materials Science and Engineering: A, 2004, Vol.1(383), pp. 21-29
Ebert, "Magnesium - Properties - applications - potential", Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 2001, Vol.302(1), pp. 37-45
Grant, "Spray Deposition of Metals - A Review ", Materials Science and Engineering, 1988, Vol.98, pp. 381-394
Grant, "Spray Forming", Progress in Materials Science, 1995, Vol.39(4-5), pp. 497-545
Tsao, "Spray forming of silicon added AZ91 magnesium alloy and its workability", Materials Science and Engineering: A, 2004, Vol.1(383), pp. 21-29