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Online since: January 2013
Authors: Wei Liang, Yu Feng Liu, Nai Bin Yang
Introduction Composite material is an artificial multiphase material that made up of two or more kinds of materials with different physical and chemical properties.
More and more advanced composite materials have been used in aeronautic and astronautic fields due to their mechanical properties such as high specific strength, high specific modulus, characteristic-designable, good performance on anti vibration fatigue and corrosion resisting, etc [1].
[2] J.N.Reddy: Journal of Applied Mechanics, December 1984, Vol. 51,P.745-752
[3] Saravanos D A, Hopkins D A: Journal of Sound and Vibration, 1996, 192(5):977
[5] Adrian G.Radu: International Journal of Solids and Structures 39(2002), P.1949-1965
Online since: September 2011
Authors: Ping Hu, Qi Shao, Qian Nie, Wei Dong Li
The adherend materials were steel DC01 and aluminum alloy 6016.
In the experiments, five types of T-joints were made with a combination different materials and thickness of adherend to make three kinds of balanced joints and two kinds of imbalanced joints.
London: Applied Science Publishers; 1984
Adams: International Journal of Adhesion & Adhesives 22 (2002) 311-315
Ashcroft: International Journal of Fatigue 32 (2010) 1146-1158.
Online since: September 2014
Authors: Suriati Sufian, Abrar Inayat, Sujan Chowdhury, Abdul Aziz Omar, Nor Hazwani Amir Hamzah
Moreover, ionic liquids have proved to be environmental friendly solvents for synthesizing inorganic materials.
Until now, lots of materials have been synthesized in RTIL.
For characterization of the obtained materials, field emission scanning electron microscopy (FE–SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and Brunauer–Emmett–Teller (BET) have been used.
Structures of the solid phase and crystallinities were carried out by XRD with a scan rate of 4 ° (2θ) min-1 (MAC Science, MXP18).
Arpaç, Photocatalytic performance of pure anatase nanocrystallite TiO2 synthesized under low temperature hydrothermal conditions, Materials Research Bulletin, 41 (2006) 2276 – 2285
Online since: November 2012
Authors: Xiang Hua Zhang, Bang Biao Huang, Ji Zhen Zhu
According the "Twelve-Five" planning of building materials industry of China, it advocates that to devoting major efforts to develop energy-saving materials.
Vacuum mixing raw materials by the machine.
Turn the raw materials into the mud.
Journal of Environmental Engineering, 6 (1987) 278-284
Cui, Synthesis of nucleated glass-ceramics using oil shale fly ash, Journal of Hazardous Materials, 173 (2010) 427–432.
Online since: July 2012
Authors: Mei Li, Hang Xu, Ai Rong Xu, Zhi Qiang Liang
Treatment of Four Dyes Wastewater Using Fenton Reagent and Dynamical Research Mei Li1,a, Hang Xu1,b,*, Airong Xu1,c, Zhiqiang Liang2,d 1.Chemical Engineering and Pharmaceutics School, Henan University of Science and Technology, Luoyang 471003, China 2.State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012,China ahagdali@126.com; bxuhang09@tsinghua.org.cn; cairongxu@126.com; dliangzq@jlu.edu.cn Keywords: Fenton; wastewater; kinetic model; dye Abstract: Fenton’s reagent was employed to treat four modeling compound of textile wastewater.
Experimental Materials The Chemical structure of Reactive Brilliant Blue X-BR (RBB X-BR), Reactive Black SRE (RB SRE), Reactive Red SBE (RR SBE), and Methylene Blue (MB) are shown in Tab.1.
Fig.1 The relationship of [H2O2]o/kap and dye concentration Acknowledgement This work is supported by the National Nature Science Foundation of China (No: 21006057), China Postdoctoral Science Foundation (No: 20100470351) and State Key laboratory of Inorganic Synthesis and Preparative Chemistry Opening Topic Foundation (No: 2012-24).
A., Rodriguez J.: Journal of Hazardous Materials, Vol.143(2007), p.128 [4] Ipek G., Gulerman A.S.
,Filiz B.D.: Journal of Hazardous Materials, Vol.136(2006),p.763 [5] Xu.H., Zhang D.X., Xu W.G.: Journal of Hazardous Materials, Vol.158(2008),p.445
Online since: January 2008
Authors: Junichi Matsushita, Yuki Igarashi
Fabrication of Porous β-Tricalcium Phosphate with Collagen Composite Materials.
Yuki Igarashia and Jun-ichi Matsushitab Department of Materials Science, Tokai University 1117 Kitakaname, Hiratsuka 259-1292, Japan a 6aazm004@keyaki.cc.u-tokai.ac.jp, bjmatsu@keyaki.cc.u-tokai.ac.jp Keywords: Bioceramics, Tricalcium phosphate, Collagen Abstract.
The materials which it is done an implant, and replace it with the living body, are imposed on severe conditions such as reaction for the organization, the surface oxidation, the deterioration of materials, the fatigue damage, surface friction.
Conclusions Porous β-tricalcium phosphate with collagen composite materials fabricated to investigated its bio compatibility and bioactivity.
Journal Vol. 25 (2006), p. 138
Online since: June 2025
Authors: Ken Aldren S. Usman, Yasmin D.G. Edañol, Rogie I. Bautista, Mark Ely A. Namoro, Princess Vinia Putulin, Aces Joseph L. San Pedro
Methodology Materials and Methods.
Materials Today: Proceedings
Philippine Journal of Science, 150
Journal of Materials Science & Technology, 76, 1–10
Journal of Materials Science: Materials in Electronics, 31(7), 5324–5335
Online since: August 2018
Authors: Shu Wang Duo, Ling Fang Qiu, Zhi Wei Zhou, Xiao Bin Qiu
Experimental Materials.
Acknowledgements Financial supports from National Natural Science Foundation of China (No. 51363007), National Natural Science Foundation of China (No. 41763020), Natural Science Foundation of Jiangxi Province (No. 20171BAB206008), the Doctoral Scientific Research Foundation of Jiangxi Science and Technology Normal University (No. 2017BSQD003) and Project of Sci-Tech Innovative Team for Nano Functional Materials of Jiangxi Science and Technology Normal University (NO.
Li, Self-powered, visible-light photodetector based on thermally reduced graphene oxide–ZnO (rGO–ZnO) hybrid nanostructure, Journal of Materials Chemistry, 22 (2012) 2589-2595
Sun, High quality graphene oxide–CdS–Pt nanocomposites for efficient photocatalytic hydrogen evolution, Journal of Materials Chemistry, 22 (2012) 2292-2298
Zhao, Graphene oxide modified g-C3N4 hybrid with enhanced photocatalytic capability under visible light irradiation, Journal of Materials Chemistry, 22 (2012) 2721-2726
Online since: June 2014
Authors: Xuan Cang Wang, Gui Hua Hu, Xiao Wei Chen
Based on theory of fractal dimension:AC-13 dense gradation asphalt mixed material should have been the most dense in theory, but the set material and asphalt can not reach that dense state as mixed material internal exists micro-gap, micro-crack.
It shows fine material and asphalt mixed material will fill the gap more effective as D value increases.
This further proves fractal theory can apply for asphalt mixed material successful and the theory is expected to become a guide material design of quantitative indicators.
[Thesis for master degree of Changsha University Of Science &Technology].Changsha:Changsha.University.Of.Science&Technology,2008.06 [2] Ministry Of Communications Of The People’s Republic Of China.
Beijing:People’s communications Publishing House,2004 [5] YanQiang,HuanPeng Fractal Characteristic Of Asphalt Mixture Void Journal Of Tongji University 2004.01 [6] LiGuoqiang,DengXuejun On Fractal Gradation Of Aggregates Journal Of Chongqing Jiaotong Institute 1995.06 [7] YangRuihua,LongBin Fractal Characteristic Of Grading Of Asphalt Mixture WESTERN China Communications Science&Technology 2010.6 [8] HuGuihua,ChenXiaowei,LiuHongfu,HuangYunyong Based On Skeleton Type Surface Layer Of Asphalt Mixture Gradation Range Of Continuous Journal Of Foreign Highway 2010.06 [9] HuangYunyong,LiuHongfu, HuGuihua AC-13Asphalt Mixture Gradation Optimization Dseign Research Journal Of Foreign Highway 2008.06 [10] YangRuihua,XuZhihong,ZhangChao,LiMing Fractal Gradation Theory Of Asphalt Mixture Journal Of Tongji University 2008.12
Online since: January 2020
Authors: Yi Liu, Na Meng, Shu Chang Wang, Zhi Chun Ni, Qing Zhu Wei, Yu Shen Liu, Yu Long Ma, De Bao Zhang, Xi Feng Yang, Ya Wei Kuang
Silicon thin film solar cell is a promising way to reduce materials cost, but the thinner absorber leads to transmission losses especially for long wavelength light [1-2].
Solar Energy Materials & Solar Cells, 2013, 117(10):645-651
Solar Energy Materials & Solar Cells, 2013, 117(10):645-651
ACS Applied Materials & Interfaces, 2017: acsami.7b06620
Journal of Materials Chemistry A, 2013, 1(22):6593-6601