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Online since: July 2014
Authors: Qi Dan Chen, Jing Zeng, Jing Yan Guo, Ting Xia, Jian Kang Wang
Methods
Equipment and materials.
However the method of ultrasonic extraction is easy to operate, and efficient. materials were extracted in a confined environment.
[5] Zhu ZF: submitted to Journal of chemical industry and engineering (2010)
[7] Lu S: submitted to Journal of Gene (2014)
[8] Surapaneni KM, Jainu M: submitted to Journal of Pharmacognosy Res(2014).
However the method of ultrasonic extraction is easy to operate, and efficient. materials were extracted in a confined environment.
[5] Zhu ZF: submitted to Journal of chemical industry and engineering (2010)
[7] Lu S: submitted to Journal of Gene (2014)
[8] Surapaneni KM, Jainu M: submitted to Journal of Pharmacognosy Res(2014).
Online since: November 2013
Authors: Zhi Man Zhao, Song Han, Yu Cheng Liu, Si Cheng Quan
Test Materials and Test Method
1.
Test Materials.
[7] Zhu Beibei, Yang Quanbing: Study on Surface Thermal Activation of Coal-Gangue, Journal of Building Materials, 9(4), (2006), p 484-487
[9] Guo Wei, Li Dongxu, Chen Jianhua, et al: Changes in Minerial Composition and Structure of Coal Gangue During Heat Activation, Joural of Materials Science and Engineering, 26(2), (2008), p 204-207
[14]Peelamedu R D, Roy R, Agrawal D K: Anisothermal Reaction Synthesis of Garnets, Ferrites and Spinels in Microwave Field [J], Materials Research Buletin,36 (2001), p2723-2739
Test Materials.
[7] Zhu Beibei, Yang Quanbing: Study on Surface Thermal Activation of Coal-Gangue, Journal of Building Materials, 9(4), (2006), p 484-487
[9] Guo Wei, Li Dongxu, Chen Jianhua, et al: Changes in Minerial Composition and Structure of Coal Gangue During Heat Activation, Joural of Materials Science and Engineering, 26(2), (2008), p 204-207
[14]Peelamedu R D, Roy R, Agrawal D K: Anisothermal Reaction Synthesis of Garnets, Ferrites and Spinels in Microwave Field [J], Materials Research Buletin,36 (2001), p2723-2739
Online since: May 2004
Authors: Giovanni Baldi, A. Barzanti, V. Faso
New Glass-Ceramic Materials for Ceramic Industry
G.
Glass ceramic pigments An innovative application of glass ceramic materials is the "in-situ" synthesis of pigments.
Strnad, Volume and surface crystallization during formation of glass ceramic materials, Glass Ceramics Materials, ed.
[3] G.Baldi, E.Generali, C.Leonelli,T.Manfredini, G.C.Pellacani, C.Siligardi, Journal of Material Science, 30 (1995), p.3251
Strnad, Glass Ceramic Materials, ed.
Glass ceramic pigments An innovative application of glass ceramic materials is the "in-situ" synthesis of pigments.
Strnad, Volume and surface crystallization during formation of glass ceramic materials, Glass Ceramics Materials, ed.
[3] G.Baldi, E.Generali, C.Leonelli,T.Manfredini, G.C.Pellacani, C.Siligardi, Journal of Material Science, 30 (1995), p.3251
Strnad, Glass Ceramic Materials, ed.
Online since: August 2016
Authors: Igor Kostolný, Roman Koleňák, Pavol Šebo
Kim: Advanced Packaging Materials: Processes, Properties and Interfaces, 2005, pp. 33-38
[2] A.
Kim, Materials and Design 52, 2013,pp. 740–747 [5] J.
Gancarz, Journal of Materials Engineering and Performance, Volume 21, Issue 5, 2012, pp. 606-613 [6] J.
Ishida, Journal of Electronic Materials, Volume 28, Issue 11, 1999, pp. 1172-1175 [10] Y.
Ishida, Journal of Electronic Materials, Volume 37, Issue 3, 2008, pp. 314-323 [11] A.
Kim, Materials and Design 52, 2013,pp. 740–747 [5] J.
Gancarz, Journal of Materials Engineering and Performance, Volume 21, Issue 5, 2012, pp. 606-613 [6] J.
Ishida, Journal of Electronic Materials, Volume 28, Issue 11, 1999, pp. 1172-1175 [10] Y.
Ishida, Journal of Electronic Materials, Volume 37, Issue 3, 2008, pp. 314-323 [11] A.
Online since: September 2013
Authors: Ze Bao Lang, Zhong Wei Yin, Jin Liang Shi, Feng Zhao
The result revealed that Ti3Al based alloy prepared by powder metallurgy can replace nickel based alloy to be a candidate materials for high temperature structures.
%Nb, Materials Science Engineering A. 192/193 (1995) 597-603
Hu, The characteristic and crystallinic morphology of a Ti3Al-based powder prepared by gas atomizing, Chinese journal of materials research. 9(1993) 228-232
Zhang, Study on the powder properties of Ti3Al based alloys by rapid solidification, Rare metal materials and engineering. 21(1992) 40-44
Banerjee, The effect of heat treatment and niobium content on the room temperature tensile properties and microstructure of Ti3Al-Nb alloys, Materials Science and Engineering A. 159(1992) 73 -86.
%Nb, Materials Science Engineering A. 192/193 (1995) 597-603
Hu, The characteristic and crystallinic morphology of a Ti3Al-based powder prepared by gas atomizing, Chinese journal of materials research. 9(1993) 228-232
Zhang, Study on the powder properties of Ti3Al based alloys by rapid solidification, Rare metal materials and engineering. 21(1992) 40-44
Banerjee, The effect of heat treatment and niobium content on the room temperature tensile properties and microstructure of Ti3Al-Nb alloys, Materials Science and Engineering A. 159(1992) 73 -86.
Online since: April 2012
Authors: Yao Nan Cheng, Xian Li Liu, Fu Gang Yan, Zhen Jia Li, Xian Zhou Wang
WENG: Journal of Wuhan University of Technology- Materials Science Edition, 2007, vol. 22 (1), p. 1-6
Li: Advanced Materials Research, 2011, Vol. 188, p. 450-453
[3] Cheng Yaonan, Liu Xianli, Yan Fugang, Li Yufu, Li Zhenjia: Solid State Phenomena: Application of Diamond and Related Materials, 2010, Vol. 175, p. 300-304
[5] Sun Yujing, Tan Guangyu, Sun Baojun: Journal of Harbin University of Science and Technology, 2005, Vol. 10(6), p. 88-91
V RANADE: Journal of Materials Science, 1997, Vol. 32 (10), p. 2559-2564
Li: Advanced Materials Research, 2011, Vol. 188, p. 450-453
[3] Cheng Yaonan, Liu Xianli, Yan Fugang, Li Yufu, Li Zhenjia: Solid State Phenomena: Application of Diamond and Related Materials, 2010, Vol. 175, p. 300-304
[5] Sun Yujing, Tan Guangyu, Sun Baojun: Journal of Harbin University of Science and Technology, 2005, Vol. 10(6), p. 88-91
V RANADE: Journal of Materials Science, 1997, Vol. 32 (10), p. 2559-2564
Immobilization of Albumin and Heparin on the Surface of Ti-O Films for Improving Blood Compatibility
Online since: June 2005
Authors: H. Sun, Yong Xiang Leng, Jun Ying Chen, Feng Juan Jing, Nan Huang
This
investigation showed that the surface of bio-inert inorganic materials immobilized with biological
molecules is feasible and effective for improving the blood compatibility.
We show the silane coupling APTE can link the inorganic and organic materials through chemical bonds.
Possibly albumin does not contain the RGD sequence involved in many proteins of extracellular matrix, meanwhile the albumin may block some binding site between materials and EC.
J: Biomed.Mater.Res Vol 44(1999), p. 330 [3] Wiebe D: Surgery Vol 104(1988), p. 26 [4] Si-Nae Park, Jong-Chul Park: Biomaterials Vol 23 (2002), p. 1205 [5] Yang, Hongyi: Journal of Materials Science and Technology, Vol 17 (2001), p. 495 [6] Jaffe EA: J Clin Invest 1973; Vol 52 (1996), p. 2745 [7] S.J.
XIAO: Journal of materials science: Materials in Medicine Vol 8(1997), p. 867 [8] Briggs d: New York: John Wiley & sons, Inc, Graham Beamson (1992), p. 598 [9] M.C.
We show the silane coupling APTE can link the inorganic and organic materials through chemical bonds.
Possibly albumin does not contain the RGD sequence involved in many proteins of extracellular matrix, meanwhile the albumin may block some binding site between materials and EC.
J: Biomed.Mater.Res Vol 44(1999), p. 330 [3] Wiebe D: Surgery Vol 104(1988), p. 26 [4] Si-Nae Park, Jong-Chul Park: Biomaterials Vol 23 (2002), p. 1205 [5] Yang, Hongyi: Journal of Materials Science and Technology, Vol 17 (2001), p. 495 [6] Jaffe EA: J Clin Invest 1973; Vol 52 (1996), p. 2745 [7] S.J.
XIAO: Journal of materials science: Materials in Medicine Vol 8(1997), p. 867 [8] Briggs d: New York: John Wiley & sons, Inc, Graham Beamson (1992), p. 598 [9] M.C.
Online since: August 2011
Authors: Yang He, Fang Yi Li, Chun Hu Wu, Shi Lei Ma
Acknowledgment
This work was financially supported by the Natural Science Foundation of Shandong Province, China(No.ZR2010EM007),and Shandong Provincial Science and Technology Development Plan, China(No. 2010GGX10402)。
Reference [1] Qiaofang Zhang and Hong Jia: Journal of Mechanical Strength.
Eyercioglu M A K N: Journal of Materials Processing Technology.
Wang: Materials and Design.
Vol. 31(2010), p. 4155 [4] Fei Zeng, Guangxiong Chen and Zhongrong Zhou: Journal of Mechanical Engineering.
Reference [1] Qiaofang Zhang and Hong Jia: Journal of Mechanical Strength.
Eyercioglu M A K N: Journal of Materials Processing Technology.
Wang: Materials and Design.
Vol. 31(2010), p. 4155 [4] Fei Zeng, Guangxiong Chen and Zhongrong Zhou: Journal of Mechanical Engineering.
Online since: December 2014
Authors: Shu Jun Chen, Zhong De Shan, Su Feng Hao, Chao Jiang
In order to achieve reducing car weight, all car manufacturers adopted some methods, which mainly focused on car body structure optimization and using lightweight materials.
Journal of Chinese Society of Power Engineering[J], 2010,(01), (in chinese) [3] Xin Sun, E.
Journal of Manufacturing Science and Engineering, 2006, vol128:287-298
Study of lightweight car body materials spot welding technology[D].
Metallurgical and Materials Transactions B,1971, 2(7):1979~1983.
Journal of Chinese Society of Power Engineering[J], 2010,(01), (in chinese) [3] Xin Sun, E.
Journal of Manufacturing Science and Engineering, 2006, vol128:287-298
Study of lightweight car body materials spot welding technology[D].
Metallurgical and Materials Transactions B,1971, 2(7):1979~1983.