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Online since: April 2011
Authors: Xiao Bo Liu, Yong Xue Li
Acknowledgments This study was principally supported by Natural Science Foundation of Jiangxi Province (2008GZC0032).
Jiangxi Provincial Department of Education Science and Technology Fund Project(GJJ10522).
Northwestern Polytechnical University Press, Xi’an (2002) (in Chinese) [2] Badri, Natarajan, Snyder: Metallurgy and Materials Processing Science,Vol.36(2005),p.335 [3] Jun Zhou,Zhuo Zhang: Mechanical Science and Technology,Vol.27(2008),p.1220 (in Chinese) [4] YunPeng Ren,TianXia Zhang,XiHong Chen:Engineering Design Journal,Vol.15(2008),p.101(in Chinese) [5] Qiang Li,ZhouFu Li,XiaoRong Gao: Mechanical Design,Vol.25(2008),p.29(in Chinese) [6] MSC.ADAMS Products[M].ADAMS/Hydraulics Component Referenc.2003
Online since: October 2012
Authors: Mu Xi Lei, Zheng Bao Lei, Run Al, Zhu Chen
Research on Safety Technology for Initiative Anti-collision of Bridge Zhengbao LEI 1, a , Zhu CHEN 2, b, Muxi LEI 3, c, Run AI 1, d 1Key Laboratory for Highway Engineering of Ministry of Education, Changsha University of Science and Technology, Changsha 410004, P.R.China 2Engineering Research Center of the Road Disaster Prevent & Mitigation and Transportation Safety, Ministry of Education, Changsha 410004, P.R.China 3School of Civil Engineering and Architecture, Changsha University of Science and Technology, Hunan Changsha 410004 P.R.China.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (51175050), Beijing-Zhuhai double-line Changsha to Xiangtan Highway Resource-saving and Environment-friendly Technology Demonstration Projects (CXKJSF0107 and CXKJSF0108-4).
Science and Technology of Overseas Building Materials( 2007)
Journal of Dalian Maritime University. (2001).
Online since: October 2012
Authors: Xu Zhang, Tao Liang, Yan Mei Tang, Xue Chang Zhang
China 2College of Mechanical and Energy Engineering, Shanghai University of Engineering Science, Shanghai 201620, P.R.
Acknowledgment This work was financially supported by the National Natural Science Foundation of China (No: 51075362), the Natural Science Foundation of Zhejiang (No: Y1100073) and the Ningbo Natural Science Foundation Project (Grant NO. 2010A610136).
Gao: Applied mechanics and materials, Vol. 101-102 (2012), pp232-235
Yan: International Journal of Advanced Manufacturing Technology, Vol. 30 (2006), pp70-75
Online since: October 2012
Authors: Ismail Lyly Nyl, Mohamad Rusop Mahmood, N.N. Hafizah, M.Z. Musa
Rusop4,d 1,4NANO-SciTech Centre (NST); Institute of Science (IOS), Universiti Teknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia 1Faculty of Applied Sciences, Universiti Teknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia 2,3,4NANO-ElecTronic Centre (NET), Faculty of Electrical Engineering; Universiti Teknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia an.noor_hafizah@yahoo.com, blyly2909@gmail.com, cmusa948@gmail.com, drusop@salam.uitm.edu.my Keywords: PMMA/TiO2 nanocomposited thin film, sonication, spin coating.
PMMA/TiO2 composites can be used in various applications such as additives, ultra fast optical nonlinearity measurements, optical waveguide, photovoltaic application, semiconductor materials and for biomedical applications [5-6].
Messersmith, L.C Brinson, Effects of dispersion and interfacial modification on the macroscale properties of TiO2 polymer–matrix nanocomposites, Composite Science and Technology. 69 (2009) 1880–1886
[11] Li Sen, Wang Kuan, Zhang Zhi Ren, Song Chun Lian, Cheng Jiang, Yang Zhuo Ru, Wen Xiu Fang, Pi Pi Hui, Preparation and characterization of porous titania-grafted poly(styrene-divinylbenzene)/maleic anhydride nanocomposite microspheres, Science China Chemistry. 53 (2010) 605–611
Agnihotry, The effect of nanosized TiO2 addition on PMMA based polymer electrolytes, Journal of power sources. 159(2006) 205-209.
Online since: June 2014
Authors: Xing Han, Chang Li, Bing Chen Wang, Shuang Yi Zhang
A Method Used for Mechanism’s motion Accuracy Reliability Analysis Li Chang1, a, Wang Bingchen1,b, Han Xing1,c and Zhang Shuangyi1,d 1 School of Mechanical Engineering & Automation, University of Science and Technology Liaoning, Anshan 114051, China.
Where, Length was a design parameter, A was a dimension’s mean value, and a was a main parameter of the function MYRAND( ) in order to mark different pseudo-random errors.The materials of the balls, the inner and outer rings were bearing steels, density was 7.801×10-6kg/mm3, elastic modulus was 2.07×105N/mm2, and poisson’s ratio was 0.29; the materail of the cage was brass, density was 8.545×10-6kg/mm3, elastic modulus was 1.06×105N/mm2, and poisson’s ratio was 0.324[4,5].
Acknowledgements This work is financially supported by National Nature Science Foundation of China (E050402/51105187), Doctor Activate Fund of Liaoning (20111059), Program for Liaoning Excellent Talents in University (LJQ2012025), and Foundation of University of Science and Technology Liaoning(2011zx03).
Journal of mechanical strength, 2006,28(1):46-50
Reliability design method of practical mechanism[M], Beijing: Science press, 2003: 215-225
Online since: February 2013
Authors: Xia Wu, Qin Yue, Yan Wang
Wang Kaiyun (2007) imposed restriction on the scale of the ecological carrying capacity , it was thought that the ecological carrying capacity refered to that regional ecological system can bearing population scale and its corresponding economic mode in the condition that ensured the rational development and utilization of the resources and the ecological environment benign circulation and certain material exchange scale in different scale area and in a certain period of time.
Acknowledgements This work was financially supported by the Liaoning Social Science Planning Project (L11BJY028).
References [1] KaiyunWang:Ecological carrying capacity composite model system and application,Beijing: science press (2007),p.6-10.
(In Chinese) [4] Shilong Miao, Jie Cheng, Jie Liu and Tingning Zhao: Tianjin ecological carrying capacity analysis, Journal of Chinese ecological agriculture, 2008,16(6): 1546. 1551.
(In Chinese) [5] Linbo Zhang: Urban ecological carrying capacity theory and method research - in shenzhen as an example, Beijing :China environmental science press (2009) (In Chinese)
Online since: May 2013
Authors: Hong Su, Guo Qing Xiao, Ji Hong Chen, Bai Ling Jiang, Jian Ping Liang, Jing Liu, Shu Yang Wang, Xiang Yang Zhang, Wen Jiang Li
The assessment of sweet sorghum straw bio-feed fermentated by the Compound Microbial Agent in bags and cellar pits Shuyang Wang1,3a,GuoqingXiao1,WenjiangLi1,JihongChen1, Jian-ping Liang1,Jing Liu1,Xiangyang Zhang2,Hong Su2, Bailing Jiang1 1 Department of biology Physics, Institute ofModern Physics,Chinese Academy of Sciences, Lan zhou 730000, China; 2Gansu Agricultural University, Lanzhou 730070, China; 3Lanzhou University, Lanzhou 730070, China; a wangsy@impcas.ac.cn Keywords: Compound Microbial Agent; sweet sorghum straw; ferment; Assessment; Evaluation of milk ; Abstract: The results indicated that the sweet sorghum straw bio-feed fermented in bags and cellar pits by the Compound Microbial Agent both could increase the content of the crude protein(CP)and reduce the content of the fibrinogen(FIB) compared with control group.
In addition, the straw of sweet sorghum is an abundant and low-cost lingo cellulosic material that can be synthetically used as a raw material for ethanol production with some by product with high additional value. [2] The experiment is aimed at evaluating the sweet sorghum straw bio-feed fermented by the Compound Microbial Agent in bags and cellar pits prepared by the Chinese Academy of Sciences Institute of Modern Physics, and assessing the milk quality after feeding the cows with it.
Acknowledgement This study was financially supported by Western Action of the Chinese Academy of Sciences (KZCXZ-XB3-05) References [1] Ch.N.Economou ,A.Makri ,G.Aggelis ,S.Pavlou ,D.V.Vayenas.Semi-solid state fermentation of sweet sorghum for the biotechnological production of single cell oil.
FOOD SCIENCE AND TECHNOLOGY2009,34(9):111-116 [4] M.
Passoth.Effect of starter culture inoculation on feed hygiene and microbial population development in fermented pig feed composed of a cereal grain mix with wet wheat distillers’ grain[J].Journal of Applied Microbiology. 108(1): 129–138
Online since: August 2019
Authors: Dzhul’etta A. Beeva, Aues A. Beev, S.Yu. Khashirova, V.Z. Aloev, M.U. Shokumova
The work was performed with the financial support of the Ministry of Education and Science of the Russian Federation under contract 14.577.21.0240 dated September 26, 2017.
"The development of science and technology: problems and prospects of development. (2017) 331
Beeva, Aromatic copolyarylene ethers based on hydroquinone and phenolphthalein, New polymer composite materials - Collection of Articles of XIII Intern. scientific practical conf. memory of merit scientist of the Russian Federation and the KBR Mikitaev A.K. (2017) 22
Shaposhnikova, Synthesis of polyarylene ether ketones with a given set of valuable properties, - Diss. for the degree of Doctor of chemical sciences.
Kazancheva, Synthesis and some properties of new hydroxyl-containing aromatic monomers and polyethers based on them, Electronic journal "Investigated in Russia". 207 (2006) 1962
Online since: October 2011
Authors: Yong Qing Wang, Shi Yuan Wang, Lei Zhang, Jing Feng Xiong, Na Chong
Acknowledgements This work was financially supported by the Natural Science Foundation of Hebei Province (F2011201045) and the Hebei Science and Technology Research and Development Program (11213910D) Funding.
China Environmental Science,2008,28(10):877-881
RARE METAL MATERIALS AND ENGINEERING,2009,38(suppl2):722-725
JOURNAL OF TSINGHUA UNIVERSITY(SCIENCE AND TECHNOLOGY),1999.39(9): 26-28
Online since: December 2012
Authors: Xin Miao Li, Tao Tao Qiang, Xue Chuan Wang
Study on properties of sulfonate hyperbranched polymer surfactant WANG Xue-chuan1,a, LI Xin-miao1,b and QIANG Tao-tao1,c 1Shaanxi University of Science and Technology light chemical additives chemical and technology of Education Ministry Key Laborator, xi’an 710021, China aemail:wangxc@sust.edu.cn, bemail:lixinmiao215@163.com (corresponding author), Cemail:qiangtt515@163.com Keywords: Hyperbranched polymer; Anionic and nonionic surfactant; Salt-tolerant characteristic; CMC (critical micelle concentration) Abstract.
Experiment Materials and apparatus.
QBZY series automatic surface tension instrument (Fangrun Apparatus Factory). 722N visible-infrared spectrometer (Shanghai Science precise Apparatus Factory) Methods Measure of surface tension.
Acknowledgements This work was financially supported by National Nature Science Fund (21076120), Shaanxi 13115 science and technology innovation engineering major technology special items (2010ZDKG-61) References [1] Xiaoyang Yu.
Journal of Molecular Liquids, 2008, 137(1):152-158.