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Online since: July 2011
Authors: Jin Qian, Chun Hua Hu
Bridge Deck Pavement Model and Material Parameter Mechanics model of the bridge deck pavement structure.
Acknowledgment This research was supported by the Science Foundation of Hubei Provincial Department of Education (Project No.
:Q200714008), the Natural Science Foundation of Hubei Province (Project No.:2010CDB05801), and Department of Housing and Urban-Rural Development of Hubei Province, the People’s Republic of China.
Journal of Tongji University, 1997, 25 (6) : 617-621
Journal of Tongji University (Natural Edition), 2006, 34 (1) : 64 - 68.
Online since: June 2014
Authors: Kai Zhi Ling, Jia Wen Luo, Hong Wei Sun
Materials and methods Materials.
Acknowledgements This work was financially supported by the Science Foundation of Zhongkai university of Agriculture and engineering (G3072933) References [1] H.
Journal of Environmental Science and Health Part A-Toxic/Hazradous Substances and Environmental Engineering. 49 (3), 327-337. (2014) [4] M.
Chinese Journal of Catalysis. 32(6), 904-916. (2011)
Online since: September 2017
Authors: Zhi Jing Zhang, Xin Jin, Bing Yin Zhang, Ting Hai Qin
Acknowledgments This work is supported by the National Natural Science Foundation of China (No.51127004) and High-Quality CNC Machine Tools & Basic Manufacturing Equipment (No. 2012ZX04010-061).
Altintas, Virtual cutting and optimization of three-axis milling processes, International Journal of Machine Tools & Manufacture, 48 (2008) 1063-1071
Mahamani, Influence of Process Parameters on Cutting Force and Surface Roughness during Turning of AA2219-TiB2/ZrB2 In-situ Metal Matrix Composites, 3rd International Conference on Materials Processing and Characterisation, 6 (2014) 1178-1186
Lin, A three-component strain gage dynamometer for grinding and polishing force measurement, Journal of Materials Engineering and Performance, 14 (2005) 173-178
Kim, The design of a six-component force/moment sensor and evaluation of its uncertainty, Measurement science and technology, 12 (2001) 1445-1455
Online since: November 2011
Authors: Yuan Lan Wang, Xin Jian He, Yu Wei
To explore the κ-Carrageenan and Konjac gum mixed gel properties and their colloidal interactions. 2 Experimental 2.1 Materials and Methods Material are κ-Carrageenan and Konjac power (food-grade), were supplied by Hunan Bureau of Food Quality and Technical Supervision.
The Latest Advances of the Konjac Glucomannan in Blending with Other Material [J].
Food Science and Technology, 2007, 190(8): 39−41.
Journal of Central South University of Technology, 2006, 13(1): 1−5.
Journal of Central South University of Technology, 2004, 11(1): 75−79.
Online since: November 2011
Authors: Xin Xi Liu, Xue Zhi Wang
(1) Physical and Mechanical Parameters in Overburden The overburden belong to elastic-plastic geological material, the plastic flow will appear even if the stress reaches its yield limit.
In addition, tension failure will occur when tensile stress exceeds the material’s tensile strength.
Acknowledgement The study is supported by the National Natural Science Foundation (No: 50774058, No: 50974024).
Chinese Journal of Rock Mechanics and Engineering, 1999,18(4):397-401 [3] Lang Kun, XU Jialin, ZHU Weibing, et al.
Mine Surveying, 2005, 12(4):51- 54 [4] JGUO Zeng Zhang, Xie Heping, Wang Jinzhuang, The relationship of the coal pillar width and the mining width with the surface deformation caused by strip extraction. journal of Xiangtan mining institute,2003,18(2):13-17 [5] Zhao Yangfeng, Zhang Huaxing, Pan Yishan.
Online since: December 2006
Authors: Guang Zhang, Guang Hua Tang, Jing Xi Chen, Ai Fang Zhou
The distortion characteristics of discontinuity Goodman had proposed the following experience formula of the normal distortion of the discontinuity based on a great deal of experimental materials: ii tt t σσ σ + ∆− ∆ = 0 (7) here, σis the normal stress of the discontinuity, iσ is original stress, 0t is the largest close difference, t∆ is close value.
According to Griffith-Orowan' theory [4] , if the materials of a few plastic strain is gotten when the rock mass is destructed, the energy that is consumed because of the plastic distortion will be added between the elastic strain energy and the plane energy that is emitted because of the new surface.
Acknowledgement Project Supported by National Natural Science Foundation of China (40472148) References [1] X.H.Wang, ZH.X.Jia,etc: Application of Rock Variations of Discontinuities Net Simulate in Research Jointed Rock Mass.
Water Conservancy & Electric Power Technology. vol.29, No.10(1998),pp.43~46 [2] R.Q.Huang, M.Xiu,etc: Fine Description to Complex Rock Mass with Application�Science Press�Beijing,China. (1998), pp.3~5
Chinese Journal of Rock Mechanics and Engineering, vol.24,No.2(2005),pp.246~247 [6] J.W.Jing,W.M.Yang.etc.
Online since: February 2011
Authors: Shu Sen Liu, Rui Wang, Hong Xiao Xiao
Design and Compare of the Three Cabin Air Fiber Filter Testing Methods for Removal of PM2.5 Shusen Liu1. a, Rui Wang2, b and Hongxiao Xiao3, C 1Department of Building Environment and Technology, School of Textiles, Tianjin Polytechnic University, Tianjin, China 2Non-woven materials and engineering, School of Textiles, Tianjin Polytechnic University, Tianjin, China 3School of Textiles, Tianjin Polytechnic University, Tianjin, China aliushusen@tjpu.edu.cn, bbleachwr@sina.com, chongyujie1234@163.com Keywords: EN1822, ISO 11155, on Road Tests, Cabin Air Filter, Efficiency, PM2.5 Abstract.
In order to select the right filter from many kind filter materials, it is necessary to have an adequate and realistic test method.
[3] Jae Hong Park, Ki Yong Yoon, Kwang Chul Noh, Jeong Hoon Byeon, Jungho Hwang, Removal of PM2.5 entering through the ventilation duct in an automobile using a carbon fibre ionizer-assisted cabin air filter, Journal of Aerosol Science 41 (2010), p935-943
Journal of Exposure Science and Environmental Epidemiology, Vol.8 (1998),p65-78
Online since: February 2011
Authors: Li Gen Wu, Lin Lu Jia, Xiu Ling Li, Yu Dan Sun, Xiang Ying Xu, An Na Wang, Jie Wang, Chao Wang, Yuan Yuan Zhang, Qin Qin Fu
Encapsulation of Glycoprotein Extracted from Kiwifruit in Chitosan-based Microspheres Anna Wang1, a, Ligen Wu1, b, Linlu Jia1, c, Yudan Sun1, d, Xiuling Li1, e, Xiangying Xu1, f, Jie Wang1, g, Chao Wang1, h, Yuanyuan Zhang1, i, and Qinqin Fu1, j 1College of Food Science and Technology, Henan University of Technology, Zhengzhou, Henan, 450053, China awanganna2006@yahoo.com.cn, bwuligen68@yahoo.com.cn, cgililu2000707@yahoo.com.cn, dsunyudan85@163.com, exiuling0829@126.com, fxuxiangying456@sina.com, gwangjie.0602@163.com, hwangchao11044@126.com, izhangyuan06216@163.com, j1117fqq@163.com Key words: Encapsulate, Controlled Release, Chitosan, Glycoprotein, Kiwifruit.
Materials and Methods Materials.Glycoprotein in kiwifruit was extracted as follows: Fresh kiwifruit purchased from market in Zhengzhou were crushed and extracted with 20% ethanol solution, the exaction was subjected to 70% ammonium sulphate precipitation and isoelectric precipitation at pH4, white glycoprotein was obtained after dialysis and freeze-dried; Sodium alginate (280cps for a 2% solution at 25℃), chitosan (M.W.~2.3×106, D.D 80%) and Coomassie Brilliant Blue was purchased from Shanghai Chemistry Agent Company (Shanghai, China);calcium chloride was purchased from Suzhou Chemical Reagent Factory (Anhui, China).
European Journal of Pharmaceutical Sciences Vol.37 (2009), p. 347 [4] Meera George, T.
Journal of Controlled Release Vol. 114 (2006), p. 1 [5] Lim, Y.
Online since: August 2013
Authors: Yun Hua Yu, Hui Ling, Li Li Wang, Hua Hao, Hong Jie Sun, Xiao Ping Yang, Ling Cong Li
Study of surface characteristics of T700 carbon fibers and interfacial properties of their reinforced epoxy composites Lingcong Li1, Lili Wang1, Hua Hao1, Hui Ling2, Hongjie Sun 2, Yunhua Yu1,*, Xiaoping Yang1 1State Key Laboratory of Organic-inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China; 2Aerospace Research Institute of Materials & Processing Technology, Beijing 100076,China 1,*email: yuyh@mail.buct.edu.cn Keywords: carbon fiber;surface characteristics;interfacial properties;composites Abstract: The purpose of this paper is to comparatively study the surface characteristics of domestic and Toray T700 carbon fibers (T700-CFs) and the interfacial properties of their reinforced epoxy composites.
The purpose of this research is to provide some scientific and useful guidance for the application of T700-CF reinforced resin composites. 1 Experimental 1.1 Materials Commercially available T700-CFs (made in China) and Toray T700-CFs (made in Japan) were used as reinforcement in the work.
[11] Ashida M., Noguchi T.: Journal of Applied Polymer Science. 30(1985),1011-1021 [12] Luis I, David P.: Journal of Applied Polymer Science. 67(1998),1819-1826
Online since: February 2011
Authors: Yi Xin Zhu, Li Hong Qiao
Introduction Statistical materials showed [1] that the workload of mechanical and electrical products assembly is 30% to 70% of total workload in modern manufacturing industry, therefore the quality of assembly process has a critical influence on the final product and the representation of assembly process information is the basis of assembly process planning, analysis, simulation and subsequent production arrangements.
Acknowledgements This work was supported by the National Natural Science Foundation of China (51075022), Beijing Municipal Education Commission (Build a Project) and the postgraduate innovation funding of Beihang University.
[2] QIAO Lihong, ZHANG Jin: Key Engineering Materials, Vol. 407/408 (2009), p. 298-302
[8] Wei Zhiqiang, Wang Xiankui, Wu Dan: Journal of Tsinghua University(Science and Technology), Vol. 42(2002), p. 802-805.
In Chinese [9] Huang Xuewen, Fan Yushun: Chinese Journal of Mechanical Engineering, Vol. 41(2005), p. 97-102.