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Online since: August 2011
Authors: Bao Xue Zhou, Jin Hua Li, Wei Min Cai, Jing Bai
Enhanced Photoelectrocatalytic degradation of azo-dye pollutants using transparent titania nanotube arrays glass electrode Jing bai, Baoxue Zhou, Jinghua Li, Weimin Cai School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, China jing.bai.1982@gmail.com Keywords: Transparent; titania nanotube arrays; conductive glass; Acid-orange 7; photoelectrocatalytic; Abstract.
Among the semiconducting materials, a renewed interest in this material has been shown in the synthesis of self-organized TiO2 nanotube array from Ti foil by potentiostatic anodization [2-4].
Therefore, it limits the application of this materials architecture.
Acknowledgements This work was supported by Shanghai science and technology commission (0952 nm01800) and the National Foundation (No.20677039).Thanks for support of FE-SEM lab in Instrumental Analysis Center of SJTU.
Huang: Journal of The Electrochemical Society Vol.156 (2009), p.65 [7] I.
Online since: August 2010
Authors: Amar Singh Singha, Raj K. Rana, Ashvinder Rana
The advantages of natural fibres over traditional reinforcing materials such as glass fibre, carbon fibre etc are their specific strength properties, easy availability, lightweight, ease of separation, enhanced energy recovery, high toughness, non-corrosive nature, low density, low cost, good thermal properties, reduced tool wear, reduced dermal and respiratory irritation, less abrasion to processing equipment, renewability and biodegradability[4-7].The natural fibre exhibits a high hdrophilicity due to attraction or interaction between the hydroxyl group of fibre components and water molecules.The hydropholicty of the fiber can be reduced by chemical modification of the fibers such as acetylation,methylation,cyanoethylation,benzoylation,permanganate treatment,acrylation etc[8-11].The use of natural fibre as a reinforcing filler has shown many benefits , mainly in the improvement of mechanical properties and reduction in the cost of the material[12].
Experimental Materials.
[11] A.Ashori and A.Nourbakhsh: Journal of Applied Polymer Science.Vol 111(2009) ,p. 1684
Erdmann: Composites Science and Technology Vol 70 (2010) ,p.854.
Online since: June 2015
Authors: Wei Cheng Lien, Shi Qian Shao, Ayden Maralani, Jim C. Cheng, Kristen L. Dorsey, Albert P. Pisano
The difference could come from the defects of the 4H-SiC material and the fabrication processes.
Cheng, et al, IEEE Sensors Journal, vol. 9, no. 11, 1472, 2009
Pisano, Pacific Rim Meeting on Electrochemical and Solid-State Science, 2012
Maralani, et al., Material Science Forum, vols. 778-780, pp. 1126, 2014
Nakatsuka, et al, Materials Sci. and Eng., B98, 286, 2003.
Online since: October 2010
Authors: Bo Gao, Hai Ming Zhang, Xiao Jie Li, Guo Feng Hu, Yu Jie Li, Yan Jun Zhu
Introduction It has been known that ZnO is a considerable material for semiconductor due to its wide band gap (3.37 eV) and its high excitation binding energy (60 meV) at room temperature[1].
The sol-gel method has recently evolved as a powerful approach for preparing inorganic materials.
Acknowledgement This work is supported by the Natural Science Foundation of Tianjin (09JCYBJC04400).
Vasyssieres, Advanced Materials.
Duan: Chinese Journal of Inorganic Chemistry.
Online since: February 2011
Authors: Shu Qing Xing, Hui Qin Li, Zheng Zong Chen, Yong Lin Ma
The Experimental Study on the Microstructure of SS400 Steel with Traveling Magnetic Induced Rapid Tempering Process Huiqin Li1, a, Zhengzong Chen1,b, Yonglin Ma1,c and Shuqing Xing1, d 1School of Materials and metallurgy, Inner Mongolia University of Science and Technology, Baotou, Inner Mongolia, China, 014010 alihuiqin42@163.com, bczz1223@126.com, cmalin@imust.cn, dxingshuqing312@163.com Keywords: SS400; Traveling Magnetic; Induced Rapid Tempering; Microstructure And Properties Abstract.
Experimental And Methodology Experimental material.An industrial SS400 steel in the as-hot rolled condition has been employed in the present study.
Acknowledgements The author would like to thank her collaborators from and support of the Natural Science Foundation of Inner Mongolia (Grant No.2009MS0811).
Vol.24(2007),p.3 [9] Zhongqi Cui: submitted to Journal of Materials Research (2006)
Online since: July 2011
Authors: Jing Kun Yu, Rui Lin, Tao Liu, Zheng Guo Yan
Water Modelling on the Effect of Trapezoidal Nozzle on Vortex during Teeming in Ladle LIN Rui1, a, YAN Zheng-guo1, LIU Tao1 and YU Jing-kun1,b 1School of Materials Science and Metallurgy, Northeastern University, Shenyang 110819, Liaoning, China alinrui20080730@126.com, bjingkunyu@yahoo.com Keywords: nozzle shape; ladle; vortex; hydraulics simulation Abstract.
The main apparatus is mainly made of organic glass instead of refractory material, water is used instead of steel liquid.
Acknowledgements This research work was financially supported by the National Natural Science Foundation of China (Grant No. 50904016).
Garcia-Demedices: Metallurgical and Materials Trans.
Liu, et al: The Chinese Journal of Process Engineering, 8(2010), P. 654 (in Chinese)
Online since: May 2011
Authors: Wei Hong Zhou, Yun Shui Yu, Jun Min Chen, Liang Peng
Modulus of Elasticity Test and Numerical Fitting of Plybamboo Form Weihong Zhou1,a , Liang Peng2,b, Junmin Chen3,c, Yunshui Yu1,d 1 Department of Materials Science and Engineering, Central South University of Forestry & Technology, Changsha 410004, P.R.China 2 Hunan Academy of Forestry, Changsha 410004, P.R.China 3 Dongfeng Visteon (Shiyan) Automotive Trim Systems Co., Ltd, Shiyan 442012, P.R.China azhouweihong2005@163.com, bpengliang10@sina.cn, cchenjunmin@dfl.com.cn, demail:yuyunshui@sina.com Keywords: modulus of elastic; plybamboo form; moisture content; numerical fitting; regression equation Abstract.
Experimental Material.
Li: New Construction Material In Chinese.11(2000), p.11-13 [4] J.P.
Yang: Forestry Science & Technology In Chinese. 33(2008), p. 47-50 [9] Zh.H.
Jin: Journal of Bamboo Research In Chinese. 15(1996), p. 45-52
Online since: July 2015
Authors: Zbigniew Dąbrowski, Piotr Deuszkiewicz
Comparative experiments for shafts of the typically applied materials (mainly steel) under equal conditions of external loads at similar stiffness parameters, seems to be necessary.
Rheological models applied to composite descriptions Rheological models describe the materials behaviour depending on working conditions.
Mechatronic Systems, Mechanics and Materials.
[9] Folęga P., FEM analysis of the options of using composite materials in flexsplines, Archives of Materials Science and Engineering, 51(1) (2011) 55-60
[10] Folęga P., Siwiec G., Numerical analysis of selected materials for flexsplines, Archives of Metallurgy and Materials, 57(1) (2012) 185-191
Online since: August 2011
Authors: Qun Lu, Lian Hai Shan, Zhi Bin Zhang
The research on the preparation of Sodium-Poly-methyl-acrylic and Sodium-Alginate blend-micro-spheres and its form Lianhai Shan 1, a, Zhibin Zhang 2,b , Qun Lu 3,c 1School of Life Science and Engineering, Southwest Jiaotong University, Chengdu, 610031, China amas3330@163.com, bzzb183@163.com, cluqun1125@126.com Keywords: Condensation-Phase-Separation; Sodium-Poly-methyl-acrylic Sodium-Alginate blend-micro-spheres; the volume ratio.
Experimental Materials Meth-acrylic acid (Bodi Chemical Co., Ltd., Tianjin, China), Sodium-Alginate (Kelong Chemical Co., Ltd., Chengdu, China), CaCl2(Huaxing science and technology Co., Ltd., Chengdu, China), potassium persulfate (Bodi Chemical Co., Ltd., Tianjin, China).
All the chemicals and materials were commercially available as guaranteed-grade reagents and used without further purification and treatment.
Acknowledgements This work was financially supported by the national natural science foundation (No. 50573061) and the Fundamental Research Funds for the Central Universities (SWJTU09BR219, SWJTU10ZT09).
Hydroxyapatite filled chitosan-poly-acrylic acid polyelectrolyte complexes [J].Journal of Materials Science, 2003: 38(17):3653-3662
Online since: June 2014
Authors: Li Feng Miao, Xia Yi Xu, Ting Chen, Jian Min Liu, Wei Hui Jiang, Xiao Jun Zhang
Preparation of C@ZrSiO4 Inclusion Pigment using Compound Colorants via Non-hydrolytic Sol-gel Method Xia yi XU1,a, Wei hui JIANG1,2,b *, Ting CHEN1,c, Jian min LIU1, Li feng MIAO1, and Xiao jun ZHANG1 1 School of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen 333001, Jiangxi, China 2Jiangxi Key Laboratory of Advanced Materials, Jingdezhen 333001, Jiangxi, China axuxiayi6085@163.com, bjwhjiang@163.com, cchenting12@gmail.com Keywords: C@ZrSiO4 inclusion pigment, compound colorants, non-hydrolytic sol-gel process.
Introduction The black ceramic pigment is an important decorating material in ceramic industry.
Acknowledgements The work was financially supported by National Natural Science Foundation of China (NO.50962006, NO.51162013), Science and Technology Supporting Plan Project of Jiangxi Province (NO.20111BBE50018), major discipline academic and technical leader training plan project of Jiangxi province (NO.20113BCB22009), Natural Science Foundation of Jiangxi Province ( NO.2010GZC0103, NO.20114BAB206024).
[12] H Zhao, M Deng, Effects of the synthetic ways of sulfonated-phenol-formaldehyde (SPF) polymers on application properties of cementitious materials, Polym-Plast.
[14] XJ Yang, MZ Qiu, LQ Hu, B Wu, Effects of nanometer carbon powder on the ablative and heat protection properties of phenolic resin (In Chinese), Journal of solid rocket technology. 27(2004) 2.