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Online since: May 2011
Authors: Xiao Xia Lin, De Gang Fu
Among them, hollow spheres have attracted tremendous interest as a special class of materials compared to the solid counterparts, due to their lower density, higher specific surface area, better permeation and greater light-harvesting capacity [10].
Acknowledgements This work is financially supported from the National Science Foundation of China (No. 30670522), the Hi-Tech Research and Development Program (863 Program) of China (No. 2006AA10Z436) and Social Developing Program of Jiangsu Province (BE2008643).
Science Vol. 293 (2001) p. 269-271
Ingler, Science Vol. 297 (2002) p. 2243-2245
Taga, Japanse Journal of Applied Physics Part 2-Letters, Vol. 40 (2001) p.561-563
Acknowledgements This work is financially supported from the National Science Foundation of China (No. 30670522), the Hi-Tech Research and Development Program (863 Program) of China (No. 2006AA10Z436) and Social Developing Program of Jiangsu Province (BE2008643).
Science Vol. 293 (2001) p. 269-271
Ingler, Science Vol. 297 (2002) p. 2243-2245
Taga, Japanse Journal of Applied Physics Part 2-Letters, Vol. 40 (2001) p.561-563
Online since: September 2011
Authors: Xiao Ping Fan, Qiu Yun Zheng, Yong Zhou Li
China
2Hunan University of Arts and Science, Changde, Hunan Province 41500, P.R.
Seok[7] et al. described a multiscale model for material removal during CMP.
The magnetic fluid, or alternatively called ferrofluid, is a kind of man-made material, which is a colloidal suspension system of nano-sized ferro- or ferri-magnetic particles stably dispersed in a carrier (or base) liquid.
References [1] Chaohui Zhang, Yongping Du and Jianbin Luo: Chinese Science Bulletin, Vol. 51 (2006), No. 16, pp. 1961-1965
Gill: Journal of The Electrochemical Society, Vol. 146 (1999), No.2, pp761-766
Seok[7] et al. described a multiscale model for material removal during CMP.
The magnetic fluid, or alternatively called ferrofluid, is a kind of man-made material, which is a colloidal suspension system of nano-sized ferro- or ferri-magnetic particles stably dispersed in a carrier (or base) liquid.
References [1] Chaohui Zhang, Yongping Du and Jianbin Luo: Chinese Science Bulletin, Vol. 51 (2006), No. 16, pp. 1961-1965
Gill: Journal of The Electrochemical Society, Vol. 146 (1999), No.2, pp761-766
Online since: January 2013
Authors: Xiang Dong Liu, Jun Li Qu
Optimization Research on the Geometrical Parameters of PDC Core Bits Based on ANSYS
Junli QU1,a , Xiangdong Liu2,b
1College of Science, Xi’an University of science & technology, Xi’an 710054, China
2School of Aeronautics, Northwestern Polytechnical University, Xi'an 710072, China
aqjl58@xust.edu.cn, bi134687904770@163.com
Keywords: PDC core bits; Geometrical Parameters; Optimization; ANSYS
Abstract.
It is a new type of super-hard composite cutting material, which has both the characteristics of high abrasion resistance of the diamond and the advantages of strong impact resistance of tungsten carbide.
Optimization analysis After defining element type, material properties, meshing element, applying load, and performing the finite element calculation, ANSYS assigned the result to the corresponding parameters.
Journal of China University of Petroleum(Edition of Natural Science), 2006.4(2):45-47, 58 [3] Yang Ying-xin.
It is a new type of super-hard composite cutting material, which has both the characteristics of high abrasion resistance of the diamond and the advantages of strong impact resistance of tungsten carbide.
Optimization analysis After defining element type, material properties, meshing element, applying load, and performing the finite element calculation, ANSYS assigned the result to the corresponding parameters.
Journal of China University of Petroleum(Edition of Natural Science), 2006.4(2):45-47, 58 [3] Yang Ying-xin.
Online since: January 2011
Authors: Hua Wei Ji, Yong Qing Wen
A monolithic flexure hinge is usually obtained by machining one or two cutouts in a blank material.
(7) Model of a Micro-displacement Platform Driven by Piezoelectric Actuator Use the mechanism mentioned above, we design a platform as shown in figure 3, the constant-valued material and geometric data is: l=20[mm], R=2[mm], t=1[mm], E=110109[Nm2].
Figure.5. experiment stage Figure.6. the input and output of platform Acknowledgment This paper is supported by national natural science foundation of china (50805042) and Zhejiang natural science foundation (Y10808055).
Gordon and Breach Science Publisher, 2000
Journal of Sound and Vibration, 2005. 283(3-5): p. 943-956.
(7) Model of a Micro-displacement Platform Driven by Piezoelectric Actuator Use the mechanism mentioned above, we design a platform as shown in figure 3, the constant-valued material and geometric data is: l=20[mm], R=2[mm], t=1[mm], E=110109[Nm2].
Figure.5. experiment stage Figure.6. the input and output of platform Acknowledgment This paper is supported by national natural science foundation of china (50805042) and Zhejiang natural science foundation (Y10808055).
Gordon and Breach Science Publisher, 2000
Journal of Sound and Vibration, 2005. 283(3-5): p. 943-956.
Online since: May 2014
Authors: Fei Wu Meng, Zhen Zhen Sun, Ya Lin Hu
Application of pre-mixed abrasive water jet to quit Anchor underground
Feiwu Menga, Zhenzhen Sunb, Yalin Huc
School of Mechanical Engineering, Anhui University of Science and Technology,
Huainan, China
aaustmengfeiwu@163.com, bsun_zhenz@163.com,cahyalin@163.com
Keywords: pre-mixed abrasive water jet ; anchor back ; cutting
Abstract.
Introduction High-pressure water jet technology is developed a high-tech in recent decades, wide range of applications.The technology has been used in coal, petroleum, metallurgy, aviation, construction, transportation, chemicals, machinery, building materials, municipal engineering, military, water and light industrial sectors.
References: [1] B.Y.Li, Development of Safe Cutting Device in Inflammable and Explosive Place, Fluid Machinery,China,2005 (02) [2] Q.Y.Zang, Y.M.Wang, Y.Z.Chen, P.C.Ruan,TMQ15-300/60 Down Anchors on Design, Coal Mine Machinery,China, 2006 (12) [3] P.Liu,D.S.Zhang,Z.Li, Research on cutting experiments of small abrasive water Jet, Journal of Anhui University of Science and Technology(Natural Science),China,2004(01) [4] X.B.Ye,D.S.Zhang,G.R.Zhang, Design and Application of Cutting Device of Portable Abrasive Water Jet,Coal Mine Machinery,China,2009 (11) [5] H.C.Yu,Y.Liu, Mechanism study of cutting metal casing by abrasive jet, Special Oil & Gas Reservoirs,China,2007(04)
Introduction High-pressure water jet technology is developed a high-tech in recent decades, wide range of applications.The technology has been used in coal, petroleum, metallurgy, aviation, construction, transportation, chemicals, machinery, building materials, municipal engineering, military, water and light industrial sectors.
References: [1] B.Y.Li, Development of Safe Cutting Device in Inflammable and Explosive Place, Fluid Machinery,China,2005 (02) [2] Q.Y.Zang, Y.M.Wang, Y.Z.Chen, P.C.Ruan,TMQ15-300/60 Down Anchors on Design, Coal Mine Machinery,China, 2006 (12) [3] P.Liu,D.S.Zhang,Z.Li, Research on cutting experiments of small abrasive water Jet, Journal of Anhui University of Science and Technology(Natural Science),China,2004(01) [4] X.B.Ye,D.S.Zhang,G.R.Zhang, Design and Application of Cutting Device of Portable Abrasive Water Jet,Coal Mine Machinery,China,2009 (11) [5] H.C.Yu,Y.Liu, Mechanism study of cutting metal casing by abrasive jet, Special Oil & Gas Reservoirs,China,2007(04)
Online since: January 2013
Authors: Jing Xie, Yi Tang, Hong Jian Zhou, Chen Miao, Yue Zhao
Study on Optimization of Evaporative Condenser Nozzle with CFD Method
Zhao Yue1,a, Zhou Hong Jian2,b, Xie Jing1,c, Tang Yi1,d, Miao Chen1,e
1College of food science and technology, Shanghai Ocean University, Shanghai Engineering Research Center of Aquatic-Product Processing & Preservation, Shanghai, 201306, China
2Shanghai Baofeng Machine Manutacturing Co.
In the properties of material in FLUENT, the water parameter was set up, the air was defined to be the first phase and was the second phase.
Acknowledgements This research was funded by grand aid under National Agricultural Achievements into Capital Projects in 2012 (2012GB2C000146) and Shanghai Science & Technology Engineering Center Construction (11DZ2280300) and Leading Academic Discipline Project of Shanghai Municipal Education Commission (Project Number:J50704) .
Wuhan: The Huazhong University of Science and Technology Press, 2004
International Journal of Refrigeration, 2008, 8(31): 1 426-1 436
In the properties of material in FLUENT, the water parameter was set up, the air was defined to be the first phase and was the second phase.
Acknowledgements This research was funded by grand aid under National Agricultural Achievements into Capital Projects in 2012 (2012GB2C000146) and Shanghai Science & Technology Engineering Center Construction (11DZ2280300) and Leading Academic Discipline Project of Shanghai Municipal Education Commission (Project Number:J50704) .
Wuhan: The Huazhong University of Science and Technology Press, 2004
International Journal of Refrigeration, 2008, 8(31): 1 426-1 436
Online since: August 2013
Authors: Qun Zhao, Feng Liu, Hong Fa Ma
Design and Application for Heller System Radiator Built-in
Automatic Cleaning Device
Feng Liu1,a, Qun Zhao1,a, Hongfa Ma1,a
1Shenyang Academy of Instrumentation Science Co., Ltd.
Acknowledgements This work was financially supported by the Shenyang Science and Technology Innovation Foundation (132220) and China National Machinery Industry Corporation Development Foundation.
[4] Qun Zhao, Feng Liu, Zhen Sun: Advanced Materials Research Vols. 694-697 (2013) p.3016-3019
[12] Junbo Lu, Jie Chen: China Satety Science Journal Vol.14 No.12 (2004), p. 67-70
Acknowledgements This work was financially supported by the Shenyang Science and Technology Innovation Foundation (132220) and China National Machinery Industry Corporation Development Foundation.
[4] Qun Zhao, Feng Liu, Zhen Sun: Advanced Materials Research Vols. 694-697 (2013) p.3016-3019
[12] Junbo Lu, Jie Chen: China Satety Science Journal Vol.14 No.12 (2004), p. 67-70
Online since: September 2014
Authors: Pongthep Suwanwaree, Thongplew Kongjun, Netnapa Pongpetch, Chatpet Yossapol, Songkot Dasananda
Sediment and Nutrient Load Environmental Factors of
Lam Takong River Basin, Thailand
Netnapa Pongpetch1,a, Pongthep Suwanwaree1,b * , Chatpet Yossapol2,c, Songkot Dasananda3,d and Thongplew Kongjun4,e
1School of Biology, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima, Thailand
2School of Environmental Engineering, Institute of Engineering, Suranaree University of Technology, Nakhon Ratchasima, Thailand
3School of Remote Sensing, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima, Thailand
4Office of Water Management and Hydrology, Royal Irrigation Department, Ministry of Agriculture and Cooperatives, Thailand
anetnapa_sut@hotmail.co.th, bpongthep@sut.ac.th, cchatpet@sut.ac.th, dsongkot@sut.ac.th, etkongjun3535@gmail.com
Keywords: SWAT, soil erosion, simulation, watershed.
Materials and methods Study Area Lam Takong River basin is a part of the Moon watershed, in Northeastern region of Thailand (Fig. 1).
Journal of Hydrology.
Science of the Total Environment.
Materials and methods Study Area Lam Takong River basin is a part of the Moon watershed, in Northeastern region of Thailand (Fig. 1).
Journal of Hydrology.
Science of the Total Environment.
Online since: June 2012
Authors: Wen Yan Jiang, Hong Guang Sun, Kai Li
The Standard Parameters Research in Digital Printing by G7 Technology
LI Kai1,a, SUN Hongguang2,b, JIANG Wenyan1,c
1School of Light Industry, Zhejiang University of Science and Technology, Hangzhou 310023, China
2School of Printing and Packaging, Wuhan University, Wuhan 430079, China
apeoplestar@126.com, bsunhg99@163.com, chzjiang001@163.com
Key Words: G7 technology; neutral gray balance; neutral print density curve; digital printing
Abstract.
A B C Fig.1 Digital Printing Plate Experimental Materials.
Acknowledgement The authors are grateful for the financial supported by the Project of Zhejiang University of Science and Technology (NO.
[6] GRACoL Guidelines for Realistically Applying Color Management.(2007 07) [7] Li Kai, Sun Hongguang, Li Guoneng: Journal of Zhejiang University of Science and Technology.
A B C Fig.1 Digital Printing Plate Experimental Materials.
Acknowledgement The authors are grateful for the financial supported by the Project of Zhejiang University of Science and Technology (NO.
[6] GRACoL Guidelines for Realistically Applying Color Management.(2007 07) [7] Li Kai, Sun Hongguang, Li Guoneng: Journal of Zhejiang University of Science and Technology.