Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: September 2011
Authors: Quan Xiao Liu, Wen Cai Xu, Yu Bin Lv
Study on graft modification of waste newspaper pulp fiber
Xu Wencai, Liu Quanxiao* and Lv Yubin
Beijing Key Laboratory of Printing & Packaging Materials and Technology,
Beijing Institute of Graphic Communication Beijing, 102600, China
*Email: drllqx@163.com
Keywords: waste newspaper pulp, graft modification, properties
Abstract: It is study that graft modification of waste newspaper pulp fiber.
Introduction Waste paper has become an important part of papermaking raw materials because of the lack of resources for papermaking.
Experiment Raw materials Waste newsprint pulp, deinked pulp, gray black.
Acknowledgements This work was financially supported by Funding Project for Academic Human Resources Development in Institutions of Higher Learning under the Jurisdiction of Beijing Municipality (PHR-IHLB)) (2010), Cooperation Project of College and Enterprise of Industrialization and Achievement Transfer of Beijing Municipal Education Commission (04190111001@2011), Plan Project of Science and Technology of Beijing Municipal Education Commission (KM201110015006).
Journal of Macromolecular Science, Pure and Applied Chemistry, 2003, 40(2): 155 [5] MA Yong-sheng; QIU Hua-yu.
Introduction Waste paper has become an important part of papermaking raw materials because of the lack of resources for papermaking.
Experiment Raw materials Waste newsprint pulp, deinked pulp, gray black.
Acknowledgements This work was financially supported by Funding Project for Academic Human Resources Development in Institutions of Higher Learning under the Jurisdiction of Beijing Municipality (PHR-IHLB)) (2010), Cooperation Project of College and Enterprise of Industrialization and Achievement Transfer of Beijing Municipal Education Commission (04190111001@2011), Plan Project of Science and Technology of Beijing Municipal Education Commission (KM201110015006).
Journal of Macromolecular Science, Pure and Applied Chemistry, 2003, 40(2): 155 [5] MA Yong-sheng; QIU Hua-yu.
Online since: July 2005
Authors: Pei Dao Ding, Ding Fei Zhang, Jian Peng, Xiang Yu, Fu Sheng Pan
Dynamic Analysis on Thermal Deformed AZ61B Magnesium Alloy
Jian Peng
1, a
, Dingfei Zhang
2, b, Peidao Ding
2, c, Fusheng Pan
1, d
, Xiang Yu
1, e
1
College of Materials Science and Engineering, Chongqing University,
Chongqing400044, P.
Experimental Procedure Experimental materials was homemade AZ61B magnesium alloy ingot with 130mm diameter, chemical composition of which was in Table 1.
Langdon: Materials Science & Engineering Vol.A300(2001), p.142-147 [2] J.C.Tan, M.J.Tan: Scripta Materialia Vol.47(2002), p.101-106 [3] H.Takuda: J.of Mate.Proc.Tech Vol. 80-81(1998), p.513-516 [4] Suresh S.
[6] Shen Jian: The Chinese Journal of Nonferrous Metals Vol.11(2001), p.593-597
Experimental Procedure Experimental materials was homemade AZ61B magnesium alloy ingot with 130mm diameter, chemical composition of which was in Table 1.
Langdon: Materials Science & Engineering Vol.A300(2001), p.142-147 [2] J.C.Tan, M.J.Tan: Scripta Materialia Vol.47(2002), p.101-106 [3] H.Takuda: J.of Mate.Proc.Tech Vol. 80-81(1998), p.513-516 [4] Suresh S.
[6] Shen Jian: The Chinese Journal of Nonferrous Metals Vol.11(2001), p.593-597
Online since: February 2015
Authors: János Lukács, Ádám Dobosy
High cycle fatigue tests on base materials
In the interest of the welded joints of the S690QL steels resistance against the cyclic loading, we made experiments on the base material and there welded joints.
We performed high cycle fatigue (HCF) experiments on the base material with MTS 810 electro-hydraulic materials testing equipment, at room temperature and on laboratory environment.
Results of high cycle fatigue (HCF) tests on base materials.
So, we also used MTS 810 electro-hydraulic materials testing equipment, at room temperature and on laboratory environment.
Bathias, Fatigue life assessment of high-strength, low-alloy steel at high frequency, The Arabian Journal for Science and Engineering. 33 (2008) No. 1B 237-247
We performed high cycle fatigue (HCF) experiments on the base material with MTS 810 electro-hydraulic materials testing equipment, at room temperature and on laboratory environment.
Results of high cycle fatigue (HCF) tests on base materials.
So, we also used MTS 810 electro-hydraulic materials testing equipment, at room temperature and on laboratory environment.
Bathias, Fatigue life assessment of high-strength, low-alloy steel at high frequency, The Arabian Journal for Science and Engineering. 33 (2008) No. 1B 237-247
Online since: August 2012
Authors: Yi Ping Yuan, Xiao Juan Li, Rui Yan Liu, Shu Guang Tian
Acknowledgements
This work was financially supported by National Natural Science Foundation Project (51065028), the Xinjiang Natural Science Foundation (2010211A11), China post doctor Science Foundation (20090451428), China Postdoctoral Science Foundation funded project(201104701).
References [1] Stefan Minner and Multiple: International Journal of Production Economics, Vol. 81 (2003), pp.265–279
[2] Hrvoje Podnar: European Journal of Operational Research, Vol. 137 (2002), pp.510–520
Zhao: Southeast University, Philosophy and Social Sciences, Vol. 9 (2007), pp.27–29 (In Chinese)
Li: Natural Science, Vol. 28 (2009), pp.1131–1134 (In Chinese)
References [1] Stefan Minner and Multiple: International Journal of Production Economics, Vol. 81 (2003), pp.265–279
[2] Hrvoje Podnar: European Journal of Operational Research, Vol. 137 (2002), pp.510–520
Zhao: Southeast University, Philosophy and Social Sciences, Vol. 9 (2007), pp.27–29 (In Chinese)
Li: Natural Science, Vol. 28 (2009), pp.1131–1134 (In Chinese)
Online since: August 2011
Authors: Yu Hou Wu, Ke Zhang, Nan Xiao, Yan Liu
In order to construct the model of technique and system, refining and researching bottleneck technique, bottleneck raw material and bottleneck process is conducted in the initial stage of design.
Acknowledgements This work was financially supported by the “Eleventh Five-Year” National Science and Technology Support Program (2006BAJ12B07), Ministry of Construction Science research projects (2009-k8-4) 2010Research Fund of SIE (LGTD-1008) References [1]Li Huang, Baoguang Bai: Journal of Inner Mongolia University of Technology(Natural Science) Vol. 27 (2008), P. 1, In Chinese [2]Daozhi ZHAO, Min WANG, Aibing YU: Journal of Machine Design Vol. 25 (2008), P. 1, In Chinese [3] Zhengyu Tan, Jianghong Zhao, Shouqian Sun: China Mechanical Engineering Vol. 17 (2006), P. 5, In Chinese [4]Zhigeng Fan: Mechanical Research & Application Vol. 21 (2008), P. 4, In Chinese [5]Wei Wang, Qing Zhao: Machinery Vol. 23 (2006), P.
S1, In Chinese [6]Yanhui Ma, Zheng He: Modular Machine Tool & Automatic Manufacturing Technique ( 2007), P. 1, In Chinese [7]Harbin Institute of Technology, Tianjin University,“Machenical Design Drawing“ Shanghai Science and Technology Press, 1995, In Chinese [8]B.Zhu,C.Guo,Sunder, L.and S.Malkin.Energy Partition to the Work-piece for Grinding of Ceramics.
Annals of the CIRP , Vol.44/1:267~271,1995 [9]Cserand T.Toth Computer-aided Technological Process Planning.Elsevier Science Publishers B.V.,1986 [10] Martin J.Haigh.
An introduction to computer-aided design and Manufacture.Blackwell Scientific Publication, 1985 [11]Chanjuan Chen, 《Design of NC lathe》Chemical Industry Press, 2005, In Chinese [12]STEP-NC-New data interface for NC programming (EB/OL).newsletter,issue 1,April 2000 [13]Cserand T.Toth Computer-aided Technological Process Planning.Elsevier Science
Acknowledgements This work was financially supported by the “Eleventh Five-Year” National Science and Technology Support Program (2006BAJ12B07), Ministry of Construction Science research projects (2009-k8-4) 2010Research Fund of SIE (LGTD-1008) References [1]Li Huang, Baoguang Bai: Journal of Inner Mongolia University of Technology(Natural Science) Vol. 27 (2008), P. 1, In Chinese [2]Daozhi ZHAO, Min WANG, Aibing YU: Journal of Machine Design Vol. 25 (2008), P. 1, In Chinese [3] Zhengyu Tan, Jianghong Zhao, Shouqian Sun: China Mechanical Engineering Vol. 17 (2006), P. 5, In Chinese [4]Zhigeng Fan: Mechanical Research & Application Vol. 21 (2008), P. 4, In Chinese [5]Wei Wang, Qing Zhao: Machinery Vol. 23 (2006), P.
S1, In Chinese [6]Yanhui Ma, Zheng He: Modular Machine Tool & Automatic Manufacturing Technique ( 2007), P. 1, In Chinese [7]Harbin Institute of Technology, Tianjin University,“Machenical Design Drawing“ Shanghai Science and Technology Press, 1995, In Chinese [8]B.Zhu,C.Guo,Sunder, L.and S.Malkin.Energy Partition to the Work-piece for Grinding of Ceramics.
Annals of the CIRP , Vol.44/1:267~271,1995 [9]Cserand T.Toth Computer-aided Technological Process Planning.Elsevier Science Publishers B.V.,1986 [10] Martin J.Haigh.
An introduction to computer-aided design and Manufacture.Blackwell Scientific Publication, 1985 [11]Chanjuan Chen, 《Design of NC lathe》Chemical Industry Press, 2005, In Chinese [12]STEP-NC-New data interface for NC programming (EB/OL).newsletter,issue 1,April 2000 [13]Cserand T.Toth Computer-aided Technological Process Planning.Elsevier Science
Online since: February 2011
Authors: Wen Li, Lin Song Yan, De Yuan Zhang
Table 1 Turning slender rod experiment condition
Workpiece
Material
LY21
Diameter
ф5mm
Length
64mm
Tool
Material
PCD
Nose radius
0.4mm
Cutting condition
Depth of cut
0.01mm
Feed rate
0.02mm/rev
Fig.5 Experiment equipment
The surface of the cutting is measured by the Taylor Hobson three-dimensional surface measurement, which is each machined by conventional cutting, ultrasonic elliptical vibration cutting and high-frequency elliptical vibration cutting.
Ultrasonic Elliptical Vibration Cutting for Weak Rigidity Workpiece[J].Journal of Nanjing University of Aeronautics & Astronautics, 2005,37:121-12 In Chinese
[2] Zhang Deyuan.The Mechanism of Precision Cutting in Vibration Cutting[J].Journal of Beij-ing University of Aeronautics and Astronautics,1993,19 (4): 61~ 67.In Chinese
Silberschmidt, Ultrasonically assisted turning of aviation materials: simulations and experimental study, Ultrasonics 42 (2004):81–86
Mitrofanov, et al., Finite element simulations of ultrasonicallyassisted turning, C-omputational Materials Science 28(2003):645–653.[22].
Ultrasonic Elliptical Vibration Cutting for Weak Rigidity Workpiece[J].Journal of Nanjing University of Aeronautics & Astronautics, 2005,37:121-12 In Chinese
[2] Zhang Deyuan.The Mechanism of Precision Cutting in Vibration Cutting[J].Journal of Beij-ing University of Aeronautics and Astronautics,1993,19 (4): 61~ 67.In Chinese
Silberschmidt, Ultrasonically assisted turning of aviation materials: simulations and experimental study, Ultrasonics 42 (2004):81–86
Mitrofanov, et al., Finite element simulations of ultrasonicallyassisted turning, C-omputational Materials Science 28(2003):645–653.[22].
Online since: February 2014
Authors: Gui Liang Zhou, Yan Ru Zhu, Li Na Mao
Recent years, the science and technology develop fast and the update speed of electronic product accelerates.
One is to test and maintain the electronic waste; put the product could be used into the second-hand market directly and send the materials couldn’t be used directly to the disposal factory to be crushed, selected, purified, etc.
The products and parts could be used still after testing and maintaining would be put into the second-hand market directly, and those couldn’t be used would be put into the second-hand material market to realize recycling if they can be recycled and utilized directly after disassembly.
Journal of Hazardous Materials, 2003, pp.243–263
[5] FANG Shao-qiang and WEI Ke, “Modeling and Simulation of Flight Support Process of Airfield Station” Journal of System Simulation , vol. 246, Dec. 2008, PP.700-704 [6] JEFFREY MARTIN, The container terminal community.
One is to test and maintain the electronic waste; put the product could be used into the second-hand market directly and send the materials couldn’t be used directly to the disposal factory to be crushed, selected, purified, etc.
The products and parts could be used still after testing and maintaining would be put into the second-hand market directly, and those couldn’t be used would be put into the second-hand material market to realize recycling if they can be recycled and utilized directly after disassembly.
Journal of Hazardous Materials, 2003, pp.243–263
[5] FANG Shao-qiang and WEI Ke, “Modeling and Simulation of Flight Support Process of Airfield Station” Journal of System Simulation , vol. 246, Dec. 2008, PP.700-704 [6] JEFFREY MARTIN, The container terminal community.
Online since: August 2010
Authors: Sheng Mei Ma, Xin Chun Shang
As vascular stent has complexity in geometrical, more accuracy
analysis results can be achieved when cylindrical lattice shell is considered as an orthogonally
anisotropic material by homogenization.
From these parameters, the proposed formula can be proven to well follow the orthogonally anisotropic material relation equation zz z EE [6].
Robertson: The mechanics of two-dimension cellular materials.
Journal of Sound and Vibration, 312 (2008) 125-139
International Journal of Solids and Structures, 45 (2008) 2897-2915
From these parameters, the proposed formula can be proven to well follow the orthogonally anisotropic material relation equation zz z EE [6].
Robertson: The mechanics of two-dimension cellular materials.
Journal of Sound and Vibration, 312 (2008) 125-139
International Journal of Solids and Structures, 45 (2008) 2897-2915
Online since: February 2014
Authors: Gong Luo, Ping Chen, Li Hua Liang, Jian Min Zeng
., LTD, Nanning 530031
2Key Lab. of Nonferrous Materials and New Processing Technology
Guangxi University,
azjmg2008@gmail.com
Keywords: Casting; Al-Si-Mg alloys; ageing; electrochemistry; corrosion
Abstract.
Luchinger: Journal of Light Metals Vol. 2 (2002), p. 263 [3] W.F.
Cui: Rare Metal Materials and Engineering Vol. 24 (1995), p. 40 [4] K.T.
Murali and K.S.Raman: Materials Sci.
Takeuchi: Journal of Japan Institute of Light metals Vol. 48 (1998), p. 465
Luchinger: Journal of Light Metals Vol. 2 (2002), p. 263 [3] W.F.
Cui: Rare Metal Materials and Engineering Vol. 24 (1995), p. 40 [4] K.T.
Murali and K.S.Raman: Materials Sci.
Takeuchi: Journal of Japan Institute of Light metals Vol. 48 (1998), p. 465
Online since: September 2013
Authors: Fu Yin Gao, Xing Hua Li, Ji Chong
PLA University of Science and Technology, Nanjing 210007, China;
2.
Material Model and Parameters.
The cylindrical shell material selected Johnson-Cook material model.
International Journal of Impact Engineering, 2008, 32(3):2000-2016
Journal of Chemical Industry and Engineering (China), 2008, 59(3):798-801
Material Model and Parameters.
The cylindrical shell material selected Johnson-Cook material model.
International Journal of Impact Engineering, 2008, 32(3):2000-2016
Journal of Chemical Industry and Engineering (China), 2008, 59(3):798-801