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Online since: October 2011
Authors: Sheng Gan Zhu, Li Ping Wu, Dian Mo Zheng
Experiment
Materials and instruments:The materials used in this study were purchased from the following companies: PAC,Industrial;Hydrochloric acid, Sodium hydroxide,AR,Tianjin Chemical Reagent Factory of Big Mao;Kaolin, AR, Shanghai Chemical Reagent Co.Ltd.
Study on Flocculation of Kaolin Beneficiation Wastewater by Chitosan.Journal of Anhui Agricultural Sciences. 2009,37(31):15352-15353
Journal of Northeastern University (Natural Science), 2010, 31(12), 1005-3026
Journal of Hazardous Materials, 2009, 162(2-3), 804-811
Synthesis of poly(acrylamide)-starch and hydrolyzed starch graft copolymers as a size base material for cotton textiles[J].Polymer Degradation and Stability,1997,55:125-130
Study on Flocculation of Kaolin Beneficiation Wastewater by Chitosan.Journal of Anhui Agricultural Sciences. 2009,37(31):15352-15353
Journal of Northeastern University (Natural Science), 2010, 31(12), 1005-3026
Journal of Hazardous Materials, 2009, 162(2-3), 804-811
Synthesis of poly(acrylamide)-starch and hydrolyzed starch graft copolymers as a size base material for cotton textiles[J].Polymer Degradation and Stability,1997,55:125-130
Online since: February 2014
Authors: Jian Guo Cui, Zhe Guo, Gang Wei
Introduction
Coal is an important basic energy and raw materials.
The main component of the suspended substance of mine water is coal and rock powder[10], That is, different degrees of undissolved solid impurities, trace metals, non-metallic elements are suspended in the water, such impurities and other elements make the mine water belong to non-insulated material which has a certain electrical conductivity, so mine water can be magnetization of different degrees.
Materials and Method Materials Instrument: CAMTEL Surface tension meter (German theta instrument); DDB-11A conductivity instrument (Shanghai Precision Scientific Instrument Co., Ltd.); MY3000-6 intelligent stirring apparatus (Qianjiang MeiYu instrument co., LTD); WGZ-100 photoelectric turbidity meter (Shanghai Jingke Wuguang factory); CTS24 type hall effect digital magnetometer (Shanghai mm precision instruments co., LTD).
Zele: Int J Miner Process, Vol.68 (2003), 17-36 [10] Jing Yang, Fuqin Li: Journal of Liaoning Technical University (Natural Science), Vol.27 (2008), 458-460(In Chinese) [11] Yuhang Ren, Zhuan Xu,et al: Journal of Zhejiang University (Natural Science),Vol.3 (1997) (In Chinese) [12] Juan Du, Ruiyu Feng,et al: Hebei Chemical Industry, Vol.29 (2006), 21-24(In Chinese) [13] Wei Ma, Jin Xiao, et al: Journal of Dalian Railway Institute, Vol.19 (1998), 5-7(In Chinese)
The main component of the suspended substance of mine water is coal and rock powder[10], That is, different degrees of undissolved solid impurities, trace metals, non-metallic elements are suspended in the water, such impurities and other elements make the mine water belong to non-insulated material which has a certain electrical conductivity, so mine water can be magnetization of different degrees.
Materials and Method Materials Instrument: CAMTEL Surface tension meter (German theta instrument); DDB-11A conductivity instrument (Shanghai Precision Scientific Instrument Co., Ltd.); MY3000-6 intelligent stirring apparatus (Qianjiang MeiYu instrument co., LTD); WGZ-100 photoelectric turbidity meter (Shanghai Jingke Wuguang factory); CTS24 type hall effect digital magnetometer (Shanghai mm precision instruments co., LTD).
Zele: Int J Miner Process, Vol.68 (2003), 17-36 [10] Jing Yang, Fuqin Li: Journal of Liaoning Technical University (Natural Science), Vol.27 (2008), 458-460(In Chinese) [11] Yuhang Ren, Zhuan Xu,et al: Journal of Zhejiang University (Natural Science),Vol.3 (1997) (In Chinese) [12] Juan Du, Ruiyu Feng,et al: Hebei Chemical Industry, Vol.29 (2006), 21-24(In Chinese) [13] Wei Ma, Jin Xiao, et al: Journal of Dalian Railway Institute, Vol.19 (1998), 5-7(In Chinese)
Online since: January 2013
Authors: Sheng Qi Xi, Yang Nan Xing, Fei Hu Shang, Lin Li
Preparation and Photocatalytic Activity of Yellow Titania
Lin Lia, Shengqi Xib,*, Yangnan Xingc and Feihu Shangd
State Key Laboratory for Mechanical Behavior of Materials, School of Materials Science and Engineering, Xi’an Jiaotong University, Xi'an, 710049, China
all343584889@163.com, b,*xishq@mail.xjtu.edu.cn, cxingyangnan1988@163.com, dshxuyan@126.com
Keywords:Titania, Oxygen vacancy, Photocatalysis, Methyl orange.
Introduction Titania has been studied extensively as a semi-conductor materials which has many advantages such as high efficiency, energy savings, pollution free , low price and easy recycling[1,2].Enlarging the visible optical absorption region becomes an essential thing.
“Progress in mechanism and kinesics of the heterogeneous photocatalytic oxidation of organic contaminants on semicongductors”, Advances in Environmental Science.4 (1996) 1-15(in Chinese)
Effect of heat decomposition process and thermal for TiO2Xerogel powder on surface organic functional groups, Chinese Journal of Inorganic Chemistry.27 (2011) 659-665.
Preparation, photocatalytic activity and mechanism of Si-doped Titaniamaterial.Journal of the Chinese Ceramic Society.39(2011) 204-9(in Chinese).
Introduction Titania has been studied extensively as a semi-conductor materials which has many advantages such as high efficiency, energy savings, pollution free , low price and easy recycling[1,2].Enlarging the visible optical absorption region becomes an essential thing.
“Progress in mechanism and kinesics of the heterogeneous photocatalytic oxidation of organic contaminants on semicongductors”, Advances in Environmental Science.4 (1996) 1-15(in Chinese)
Effect of heat decomposition process and thermal for TiO2Xerogel powder on surface organic functional groups, Chinese Journal of Inorganic Chemistry.27 (2011) 659-665.
Preparation, photocatalytic activity and mechanism of Si-doped Titaniamaterial.Journal of the Chinese Ceramic Society.39(2011) 204-9(in Chinese).
Online since: January 2012
Authors: Bing Deng, Cheng Xuan Ma, Xiao Min Zhou
Discussion on Structure Design of Shaft Lining Built in Porous Rocky Aquifer with High Water Pressure
Xiao-min Zhou1,a,Bing Deng1,b, Cheng-xuan Ma1,c
1.Civil and Environment School, University of Science and Technology Beijing, Beijing 100083,China
agroundfreezing@gmail.com, bdengbin198871@163.com>, cmcxxy@126.com
Keywords:shaft, shaft lining structure, shaft lining thickness design, porous rock aquifer, water tight concrete, water pressure.
Thirdly, the principals of interaction among high pressure water, lining and surrounding rock are revealed by figure and discuss on inequality inequation; With a newly application example, the practical usage are introduced and newly viewpoints are opened to designers with material promotion, arrangement of re-bar or bolt, structure optimumetc.
It fit to decrease the thickness of the shaft lining if the shear modulus of lining is close to the enclosure rock. 5) Optimumdesign of the shaft lining The load of the exterior margin in “Baoshen” is much different from Lame’s in substance, in former contain more factors, not only relate to the water pressure and seepage field, but also to the dimension of the lining, the matching properties between lining and the surrounding rock’s material.
After Formula (5) reveals the principle intuitively. 4) From the formula (5), to reduce the thickness of shaft, the high grade concrete is not the only way else to solve this kind problem, it may improve the shear modulus of concrete, develop new material to close the shear modulus of enclosure rocks, or to use the high performance concrete.
Journal of ChinaCoal Society, Vol.34(9)(2009),P.1174~1178 (in Chinese).
Thirdly, the principals of interaction among high pressure water, lining and surrounding rock are revealed by figure and discuss on inequality inequation; With a newly application example, the practical usage are introduced and newly viewpoints are opened to designers with material promotion, arrangement of re-bar or bolt, structure optimumetc.
It fit to decrease the thickness of the shaft lining if the shear modulus of lining is close to the enclosure rock. 5) Optimumdesign of the shaft lining The load of the exterior margin in “Baoshen” is much different from Lame’s in substance, in former contain more factors, not only relate to the water pressure and seepage field, but also to the dimension of the lining, the matching properties between lining and the surrounding rock’s material.
After Formula (5) reveals the principle intuitively. 4) From the formula (5), to reduce the thickness of shaft, the high grade concrete is not the only way else to solve this kind problem, it may improve the shear modulus of concrete, develop new material to close the shear modulus of enclosure rocks, or to use the high performance concrete.
Journal of ChinaCoal Society, Vol.34(9)(2009),P.1174~1178 (in Chinese).
Online since: December 2012
Authors: Hua Dong Zhao, Guo Ning Liu, Li Xin Wang, Sheng Gang Ma, Qian Qian Guo
Introduction
The field of composite materials has progressed greatly over the last several decades, and the widespread use of composite materials can be found in the fields where lightweight is a major concern for the design of engineering structures [1].
These “components” may act as the part(s) in the composite materials or structures for either functional or mechanical purposes.
Thus the application of organic polymeric materials is greatly expanded in engineering.
An aluminum statue of 1893: Gilbert’s Eros, Journal of Institute of Metals, Vol. 60, (1938) 67-74
Handbook of Materials Selection, John Wiley & Sons (2002)
These “components” may act as the part(s) in the composite materials or structures for either functional or mechanical purposes.
Thus the application of organic polymeric materials is greatly expanded in engineering.
An aluminum statue of 1893: Gilbert’s Eros, Journal of Institute of Metals, Vol. 60, (1938) 67-74
Handbook of Materials Selection, John Wiley & Sons (2002)
Online since: March 2015
Authors: Shu Tang, Rong Rong Cai
Empirical Study on Intelligent Systems Coordination
—A Case Study of Intelligent Tourism
RONG-rong Cai 1, a, SHU Tang1,2, b
1 Faculty of Humanities & Social Sciences, Jinling Institute of Technology, Nanjing, China, 210038
2 School of Geographic and Oceanographic Sciences, Nanjing University, Nanjing, China, 210093
acarolcai66@jit.edu.cn, bts@jit.edu.cn
Keywords: Intelligent tourism; Tourist satisfaction; SEM; Nanjing
Abstract.
With the data collected in Nanjing, statistic materials suggest that two variables, Perceived Quality of the Intelligent Tourism and Intelligent City, play the most important roles in tourist satisfaction of intelligent tourism.
Acknowledgement This research was financially supported by the Colleges Philosophy and Social Science Research Foundation of Jiangsu, China (2012SJD790031); Humanity and Social Science foundation of Ministry of Education of China(14YJC790171) References [1]Ling-yun Zhang: Tourism Tribune, Vol.5 (2012), p.66-73(In Chinese) [2]Peng Du: Technology Management Research, Vol.23 (2013), p.44-49(In Chinese) [3]Li-ning Liu: Technology Management Research, Vol.6 (2013), p.67-71(In Chinese) [4]Brecka J: Quality Progress, Vol. 10(1994), p.41-44 [5]Gregory S., George N: Wireless Personal Communications, Vol.49 (2009), p.445-463 [6]Claes F., Michael D.
Anderson: Journal of Marketing, Vol.60 (1996), p.7 [7]Mazurskyd: Annals of Tourism Research, Vol.3 (1989), p.6 [8]V.
Zeithaml: Journal of Marketing, Vol. 52 (1988), p.2–22 [9]C.
With the data collected in Nanjing, statistic materials suggest that two variables, Perceived Quality of the Intelligent Tourism and Intelligent City, play the most important roles in tourist satisfaction of intelligent tourism.
Acknowledgement This research was financially supported by the Colleges Philosophy and Social Science Research Foundation of Jiangsu, China (2012SJD790031); Humanity and Social Science foundation of Ministry of Education of China(14YJC790171) References [1]Ling-yun Zhang: Tourism Tribune, Vol.5 (2012), p.66-73(In Chinese) [2]Peng Du: Technology Management Research, Vol.23 (2013), p.44-49(In Chinese) [3]Li-ning Liu: Technology Management Research, Vol.6 (2013), p.67-71(In Chinese) [4]Brecka J: Quality Progress, Vol. 10(1994), p.41-44 [5]Gregory S., George N: Wireless Personal Communications, Vol.49 (2009), p.445-463 [6]Claes F., Michael D.
Anderson: Journal of Marketing, Vol.60 (1996), p.7 [7]Mazurskyd: Annals of Tourism Research, Vol.3 (1989), p.6 [8]V.
Zeithaml: Journal of Marketing, Vol. 52 (1988), p.2–22 [9]C.
Online since: March 2019
Authors: Chang Yu Zhou, Le Chang, Tian Hao Ma
[4] Wang H, et al, LCF behavior and deformation substructure of Ti–2Al–2.5 Zr alloy at 298 and 673 K, Materials Science and Engineering A. 527.15 (2010) 3493-3500
Gu, Tensile and LCF behavior of commercially pure titanium and Ti–5Al–2.5Sn alloy at 293 and 77 K, Materials Science & Engineering A. 316.1 (2001) 80-86
Tan, LCF behaviors of commercial-purity titanium, Materials Science & Engineering A. 252.1 (1998) 85-92
Kusukawa, LCF behavior of commercially pure titanium, Materials Science & Engineering A. 213.1 (1996) 81-85
[10] Lin X, et al, Orientation dependence of cyclic deformation behavior and dislocation structure in Ti–5at.% Al single crystals, Materials Science & Engineering A. 339.1 (2003) 63-72
Gu, Tensile and LCF behavior of commercially pure titanium and Ti–5Al–2.5Sn alloy at 293 and 77 K, Materials Science & Engineering A. 316.1 (2001) 80-86
Tan, LCF behaviors of commercial-purity titanium, Materials Science & Engineering A. 252.1 (1998) 85-92
Kusukawa, LCF behavior of commercially pure titanium, Materials Science & Engineering A. 213.1 (1996) 81-85
[10] Lin X, et al, Orientation dependence of cyclic deformation behavior and dislocation structure in Ti–5at.% Al single crystals, Materials Science & Engineering A. 339.1 (2003) 63-72
Online since: February 2011
Authors: Yu Xia Zhao, De Wen Gao, Jie Jian Di
Therefore, it is with higher requirements for the material of integrated impeller and mechanical process technique[1,2,3].
Kamps: The International Journal of Advanced Manufacturing Technology, Vol. 23 (2004), p. 233-239
Rautenberg: The International Journal of Advanced Manufacturing Technology, Vol. 46 (2010), p. 1171-1177
Young: The International Journal of Advanced Manufacturing Technology, Vol. 34 (2007), p. 1062-1071
[6] Pyo Lim: The International Journal of Advanced Manufacturing Technology, Vol.45 (2009), p. 821-829
Kamps: The International Journal of Advanced Manufacturing Technology, Vol. 23 (2004), p. 233-239
Rautenberg: The International Journal of Advanced Manufacturing Technology, Vol. 46 (2010), p. 1171-1177
Young: The International Journal of Advanced Manufacturing Technology, Vol. 34 (2007), p. 1062-1071
[6] Pyo Lim: The International Journal of Advanced Manufacturing Technology, Vol.45 (2009), p. 821-829
Online since: December 2012
Authors: Yi Shan Pan, Chen Guang Guo, Li Guo Bai, Bao Long Zheng
Namely, the maximum stress of Von Mises is 0.84318Mpa, which is far below the yield limit of the spindle material.
Journal of Manufacturing Processes. 9 (2007) 94–108
Journal of Manufacturing Systems. 2 (2011) 1-8
International Journal of Machine Tools and Manufacture. 50 (2010) 741-746
Journal of Northeastern University: Natural Science, 10 (2008) 1474-1477 (In Chinese).
Journal of Manufacturing Processes. 9 (2007) 94–108
Journal of Manufacturing Systems. 2 (2011) 1-8
International Journal of Machine Tools and Manufacture. 50 (2010) 741-746
Journal of Northeastern University: Natural Science, 10 (2008) 1474-1477 (In Chinese).
Online since: July 2014
Authors: Yong Hong Lu, Ji Hua Dou, Xing Bao Yang, Chuan Wei Zhu
Should authors use tables or figures from other Publications, they must ask the corresponding publishers to grant them the right to publish this material in their paper.
Journal of Projectiles, Rockets, Missiles and Guidance, Vol.21, 31(2001)
Jia, Journal of Modern Defence Technology, Vol.33, 22(2005)
Han, Journal of Modern Defence Technology, Vol.32, 11(2004)
Huang, Journal of Yangtze University, Natural Science Edition, Vol.1, 17(2004)
Journal of Projectiles, Rockets, Missiles and Guidance, Vol.21, 31(2001)
Jia, Journal of Modern Defence Technology, Vol.33, 22(2005)
Han, Journal of Modern Defence Technology, Vol.32, 11(2004)
Huang, Journal of Yangtze University, Natural Science Edition, Vol.1, 17(2004)