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Online since: July 2016
Authors: Jirasak Tharajak, Noppakun Sanpo
., Siam Cement Group (SCG), 271 Sukhumvit Road, Muang District, Rayong, Thailand 2 Division of Industrial Materials Science, Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon, Bangkok, Thailand Noppakuns@hotmail.com and Jirasak.t@rmutp.ac.th* Keywords: Cold spray, Biocompatibility, Hydroxyapatite, Silver, Titanium ABSTRACT.
METHODS AND PROCEDURES Materials Silver nitrate, phosphoric acid, and calcium hydroxide were purchased from Sigma-Aldrich, Germany.
The commercially available titanium powder (-45 mesh) was used as an initial material.
Cold spray parameters of HA-Ag/Ti powders The cold spray system was obtained from the Russian Academy of Science, Siberia and co-developed with ST Kinetics (Singapore).
Khor, Antibacterial Property of Cold-Sprayed HA-Ag/PEEK Coating, Journal of Thermal Spray Technology, 18(1) (2009) 10-15.
Online since: August 2010
Authors: Rui Wang, Wan Shou, Yong Liu, Ru Dong Chen, Liang Dong
Using orthogonal design in optimizing parameters for bubble electrospinning of polyvinyl alcohol (PVA) nanofibers Liang Dong1, 2, a , Wan Shou1, 2 , Yong Liu1, 2, b , Rui Wang1, 2 and Ru-dong Chen3 1 Tianjin and Ministry of Education Key Laboratory of Advanced Textile Composite Materials, Tianjin Polytechnic University, Tianjin 300160, China 2 School of Textiles, Tianjin Polytechnic University, 63 Chenglin Road, Hedong District, Tianjin, 300160, China 3 School of Science, Tianjin Polytechnic University, 63 Chenglin Road, Hedong District, Tianjin, 300160, China a dl101130@126.com, b liuyong@tjpu.edu.cn Keywords: bubble electrospinning, nanofibers, orthogonal design, morphology Abstract.
Materials and Methods Materials.
Acknowledgements The present work is supported by National Science Foundation of Tianjin No.10JCYBJC02200, Key Project of Chinese Ministry of Education No.210006, Tianjin Universities Science and Technology Development Fund Project No.20080322.
Yu, Journal of Physics: Conference Series: Vol. 96 (2008), p.012001
Online since: July 2014
Authors: Qing Hua Xu, Wei Gong Li
Some studies[2, 3] have shown that dialdehydecellulose(DAC) was successfully synthesized by sodium periodate oxidation using microcrystalline cellulose (MCC) and cotton fiber as raw materials.
Due to the wide application of bio-medical and chemical industry forDAC,periodate oxidized from lignocellulosic materials, theperiodateoxidation of NCC has attracted great attention.
Experimental Material.Bleached hardwood kraftpulp (BHKP) was provided byAsia-Pacific Forest Fair APP Co., Ltd.
Acknowledgements The authors would like to thankthe funding of Shandong provincial Science and Technology Development Project (Grant No. 13fz02).
Journal of Anhui Agricultural University.
Online since: March 2015
Authors: Ke Hui Qiu, Si Zhu Chen, Guo Yin Yan, Ce Zhao
Effects of Sr2+ Doping on the Luminescent Properties of CaTiO3: Pr3+ Guoyin Yan1, 2, a, Kehui Qiu1, 2, b*, Sizhu Chen1, 2, c, Ce Zhao1, 2, d 1Institute of Materials Science and Technology, Chengdu University of Technology, Chengdu 610059, China 2College of Materials and Chemistry & Chemical Engineering, Chengdu University of Technology, Chengdu 610059, China ayanguoyin_1989@126.com, b*qkh2188@163.com, cchensizhu90@163.com, d15708455475@163.com Keywords: CaTiO3: Pr3+, Luminescence, Combustion method.
Ca(NO3)2·4H2O, Pr2O3, Ti(OC4H9)4, and C6H8O7 were used as the starting materials.
Acknowledgements This work was supported by Science and Technology Planning Project of Sichuan Province.
Cheng Du University of Tecnology ( Science & Technology Edition) Vol. 36 (2009), p. 221
Journal of the SID. 6/1. (1998), p. 77.
Online since: December 2014
Authors: Jin Wang, Min Li, Jin Shu Cheng, Guang Lin Zhi, Xiang Ping Shu, Xian Chun Lou
Research On Process Of Drawing Flexible Glass Jin-shu Cheng 1, 2, Xiang-ping Shu 1, 2, a, Xian-chun Lou 1, 2, Jin Wang 1, 2, Guang-lin Zhi2, 3, Min Li 2 1State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430000, China; 2Hebei Shahe Glass and Technology Research Institute. 3Hebei Engineering Technical Center of Construction and Glass Industry.
Acknowledgements This work was supported by National Science and Technology Support Program (2012BAA10B03), Research and development of science and technology plan projects in Hubei Province (2011BA041) and Hubei Provincial Science and Technology Department (2012BAA1001).
Österbacka: Advanced Materials, Vol. 23 (2011) No.17, p.1935 [9] M.
Nogueira: Journal De physique IV, Vol. 3 (1993) No.C7, p.1357 [12] W.
Planas: Fracture and Size Effect in Concrete And Other Quasibrittle Materials (CRC Press, United States 1988)
Online since: August 2009
Authors: Zhen Qiao, Qing Zhou Sun, Pu Qing Zhang, Chang Long Li, Zhong Kui Zhao, Gui Qing Wang
Effect of Li on Al-Si Alloys Structure and Properties ZHAO Zhongkui1, a , QIAO Zhen 1,b , LI Chang-long1,c , SUN Qing-zhou1,d , ZHANG Pu-qing1,e, and WANG Gui-qing1,f 1 School of Materials Science and Engineering, Shandong Jianzhu University, Jinan 250101, China a jorezhk@sdjzu.edu.cn, bqiaozhen111@126.com, clichanglong@sdjzu.edu.cn, b qingzhou@sdjzu.edu.cn, ezhangpuqing777@sina.com, fwangguiqing@sdjzu.edu.cn Keywords: lithium, Al-Si alloys, microstructure, properties Abstract.
Altintas: Journal of Materials Science Vol.27(1992), p. 1255 [5] Z.W.
White: Materials Science and Technology vol.9(1993), p. 967 [6] B.
Online since: November 2012
Authors: Chao Jin, Xiao Yang Jiang, Yi Zhong Li, Tian Xia
The AGV Controller System Design Based on CPAC Tian Xia, Chao Jin, Yi-zhong Li, Xiao-yang Jiang College of Mechanical and Electrical Shaanxi University of Science and Technology, Xi’an 710021,China Institute No.202 of China Arms Industry Goup Corporation, Xianyang, China 492487352@qq.com,jin1987chao@126.com,4lyzxa@163.com Keyword: AGV; Motion Controller; VC++ Abstract.
According to the material handling AGV in accurate,timely and flexible requirements, proposed based on Googol GE-400SV motion controller AGV control system.
Acknowledgements The topic is from Shaanxi Province Natural Science Foundation research project, the number of the project: S2009JC2102.
Wang: Journal of Hebei Academy of Science, Vol 21(2004)No.4,p.221
Online since: December 2013
Authors: Hui Min Wang, Liang Cao, Shan Guang Qian, Jian Feng Huang
However, in practical engineering, geotechnical sampling and experimental procedure are inevitably affected by the impact of human factors’ disturbance, thus there is a certain deviation between experimental mechanical parameters of rock and soil materials with the actual situation.
It is necessary for analysis on different slope stability with various mechanical parameters of geotechnical materials, analyze significant degree of mechanical parameters on slope stability, fide out the most significant influence factors, and specify the direction of the focus for slope survey engineering.
Based on the verified accuracy of simplified Bishop Method, for the main mechanical parameters of slope geotechnical materials, by constructing orthogonal test [2], the slope stability is analyzed by Bishop Method.
Science Technology and Engineering,2009,16(9):4693-4697
China Journal of Highway,2012,25(4):42-47
Online since: October 2006
Authors: Leonard C. Feldman, John R. Williams, Tamara Isaacs-Smith, Sokrates T. Pantelides, S. Dhar, S.R. Wang, Ayayi Claude Ahyi
Therefore, it is evident that the field effect mobility (measured for p-type material) scales qualitatively with the results of the trap density measurements (measured in n-type material) .
Palmour: Materials Science Forum, 389-393, (2002), p.985 [5] R.
Williams: Journal of Applied Physics, 97, (2005), p.1 [13] C.
Williams: Journal of Applied Physics, 97, (2005), p.1 [17] S.
Arai: Materials Science Forum, 389-393, (2002), p.1061
Online since: December 2010
Authors: Hsi Hsun Tsai, Hui Ping Feng, Chun Der Cheng
Because of the basic equation of materials strength of , the shrinkage can be rearranged as .
K., and Wang, H., J. of Composite Materials, 33(20), 1860~1881(1999) [3]Degamber, B. and Fernando, G.
F., Materials Bulletin, 27(5), 370~380(2002) [4]Dewynter-Marty, V. et al., J. of Intelligent Material Systems and Structures, .9(10), 785~787(1998) [5]Giordano, M. et al., Polymer Composites, 21(4), 523~530(2000) [6]Houlihan, F., et al., J. of Photopolymer Science and Technology, 15(3), 497~515(2002) [7]Ishida, H. and Allen, D.
G., Smart Materials & Structures, 12(1), 29~35(2003) [9]Kang, H.
G., Smart Materials & Structures, 11(2), (2002) [10]Kang, H.