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Online since: May 2014
Authors: Shu Liang Song, Yun Shan Wang, Ai Guo Ji, Hao Liang, Wei Wang, Xiao Chen Wang
The study of the relationship between active materials from the fresh sea cucumber (or other sea creatures) and nerve cells is a new approach to further develop the use of sea cucumber (or other sea creatures) to prevent and repair hypoxic brain injury.
Materials and Methods Materials and reagents Stichopus japonicas fucoidan (Molecular weight 179000 Dal; sulfate radical content 29.75%; saccharides content 57.18%) provided by SDU Weihai International Biotechnology R&D Center.
European Journal of Pharmacology, 648, 146–152
Journal of Bioscience and Bioengineering, 209, 67-72
Journal of Bioscience and Bioengineering, 110, 479–486
Materials and Methods Materials and reagents Stichopus japonicas fucoidan (Molecular weight 179000 Dal; sulfate radical content 29.75%; saccharides content 57.18%) provided by SDU Weihai International Biotechnology R&D Center.
European Journal of Pharmacology, 648, 146–152
Journal of Bioscience and Bioengineering, 209, 67-72
Journal of Bioscience and Bioengineering, 110, 479–486
Online since: June 2013
Authors: Claudio Giardini, Luca Giorleo, Elisabetta Ceretti
References
[1] Lin H., Zhi Z.Z., The extremum parameters in ring rolling, Journal of Materials Processing Technology. 69 (1997) 273-276
Journal of Material Processing Technologies. 210 (2010) 1364-1377
[6] Guo L., Yang H., Towards a steady forming condition for radial-axial ring rolling, International Journal of Mechanical Sciences. 53 (2011) 286-299
[7] Davey K., Ward M.J., A practical method for finite element ring rolling simulation using the ALE flow formulation, International Journal of Mechanical Sciences. 44 (2002) 165–190
[8] Ceretti E., Giardini C., Giorleo L., 3D Validation of hot ring rolling industrial process 3D simulation, International Journal of Material Forming.
Journal of Material Processing Technologies. 210 (2010) 1364-1377
[6] Guo L., Yang H., Towards a steady forming condition for radial-axial ring rolling, International Journal of Mechanical Sciences. 53 (2011) 286-299
[7] Davey K., Ward M.J., A practical method for finite element ring rolling simulation using the ALE flow formulation, International Journal of Mechanical Sciences. 44 (2002) 165–190
[8] Ceretti E., Giardini C., Giorleo L., 3D Validation of hot ring rolling industrial process 3D simulation, International Journal of Material Forming.
Online since: January 2016
Authors: Xi Bin Wang, Pei Yan, Zhi Qiang Liang, Tian Feng Zhou, Su Yan Zhang, Si Yi Xue
Ehmann, Helical micro-drill point design and grinding, Journal of Manufacturing Science and Engineering 117 (1995) 277-287
Yang, Burr minimizing scheme in drilling, Journal of Materials Processing Technology 140 (2003) 237-242
Lauderbaugh, Analysis of the effects of process parameters on exit burrs in drilling using a combined simulation and experimental approach, Journal of materials processing technology 209 (2009) 1909-1919
Taguchi optimization in drilling of AISI 316L stainless steel to minimize burr size using multi-performance objective based on membership function, Journal of materials processing technology 202 (2008) 374-379
A 5-Axis coordinated CNC grinding method for the flank of a non-coaxial helical micro-drill with the cylinder grinding wheel, Advanced Materials Research 1017 (2014) 654-659.
Yang, Burr minimizing scheme in drilling, Journal of Materials Processing Technology 140 (2003) 237-242
Lauderbaugh, Analysis of the effects of process parameters on exit burrs in drilling using a combined simulation and experimental approach, Journal of materials processing technology 209 (2009) 1909-1919
Taguchi optimization in drilling of AISI 316L stainless steel to minimize burr size using multi-performance objective based on membership function, Journal of materials processing technology 202 (2008) 374-379
A 5-Axis coordinated CNC grinding method for the flank of a non-coaxial helical micro-drill with the cylinder grinding wheel, Advanced Materials Research 1017 (2014) 654-659.
Online since: August 2018
Authors: Masayuki Arai, Shoichi Kuroda, Kiyohiro Ito
Transfer Matrix Analysis for Curved Beam Structure
Shoichi Kuroda1,a, Masayuki Arai2,b and Kiyohiro Ito2,c
1Graduate School of Mechanical Engineering, Tokyo University of Science, Tokyo, Japan
2Department of Mechanical Engineering, Tokyo University of Science, Tokyo, Japan
a4517615@ed.tus.ac.jp, bmarai@rs.tus.ac.jp, ckiyohiro@rs.tus.ac.jp
Keywords: Infrastructure Facilities, Curved Pipe, Transfer Matrix Analysis, Pipe Bend Factor
Abstract.
When information about piping shape, material and boundary condition such as external force, moment, displacement and rotation angle is input by keyboard, the reaction force and moment at fixed point and displacement and rotation angle at the other point can be directly calculated.
Jin: Journal of Materials Processing Technology 201 (2008), p189-192 [2] M.
Murata: Journal of Materials Processing Technology 162-163 (2005), p492-497 [3] Andrew Robertson, Hongjun Li and Donald Mackenzie: International Journal of Pressure Vessels and Piping Vol. 82 (2005), p407-416 [4] Hashem M.
Younan: Journal of Pressure Vessel Technology Vol. 124 (2002), p32-37
When information about piping shape, material and boundary condition such as external force, moment, displacement and rotation angle is input by keyboard, the reaction force and moment at fixed point and displacement and rotation angle at the other point can be directly calculated.
Jin: Journal of Materials Processing Technology 201 (2008), p189-192 [2] M.
Murata: Journal of Materials Processing Technology 162-163 (2005), p492-497 [3] Andrew Robertson, Hongjun Li and Donald Mackenzie: International Journal of Pressure Vessels and Piping Vol. 82 (2005), p407-416 [4] Hashem M.
Younan: Journal of Pressure Vessel Technology Vol. 124 (2002), p32-37
Online since: February 2011
Authors: Ming Yang, Yu Jing Nie
Experimental section
All manipulations including air-or moisture-sensitive materials were performed under an argon atmosphere with standard Schlenk techniques.
Materials Toluene, THF, diethyl ether, and hexane were freshly distilled under argon from purple sodium/benzophenone ketyl solutions.
Kaminsky: Journal of Polymer Science Part A: Polymer Chemistry Vol.42(2004), p.3911-3921
Uozumi: Journal of Molecular Catalysis A: Chemical Vol.128(1998), p.273-278
Kim, et al.: Journal of Polymer Science Part A: Polymer Chemistry Vol.35(1997), p.3717-3728
Materials Toluene, THF, diethyl ether, and hexane were freshly distilled under argon from purple sodium/benzophenone ketyl solutions.
Kaminsky: Journal of Polymer Science Part A: Polymer Chemistry Vol.42(2004), p.3911-3921
Uozumi: Journal of Molecular Catalysis A: Chemical Vol.128(1998), p.273-278
Kim, et al.: Journal of Polymer Science Part A: Polymer Chemistry Vol.35(1997), p.3717-3728
Online since: June 2014
Authors: Hai Yan Bie, Meng Zhu Yang
Journal of Wuhan University of technology 2006; 28(21): 6-10.
Materials for hydrogen storage [J].
Materials Today, 2003(6): 24~33
International Journal of Hydrogen Energy. 2008, 33(11): 2738-2746
International Journal of Hydrogen Energy, 2010, 35(7): 2633-2636
Materials for hydrogen storage [J].
Materials Today, 2003(6): 24~33
International Journal of Hydrogen Energy. 2008, 33(11): 2738-2746
International Journal of Hydrogen Energy, 2010, 35(7): 2633-2636
Online since: September 2017
Authors: O.A. Abegunrin, Isaac Lare Animasaun
Williamson fluid is a typical example of visco-inelastic fluids (i.e the material undergoes unrecoverable deformations when a load level is reached); see Williamson [33].
Murphy, Some effects of surface curvature on laminar Boundary-Layer Flow, Journal of the Aeronautical Sciences, 20(5), 338–344, (1953)
Analysis of boundary layer formed on an upper horizontal surface of a paraboloid of revolution within nanofluid flow in the presence of thermophoresis and Brownian motion of 29nm CuO, International Journal of Mechanical Sciences, 124, 22-36
Williamson, The flow of pseudoplastic materials, Industrial and Engineering Chemistry, 21(11), 1108-1111, (1929)
Scarpi, Perturbation solution for pulsatile flow of a non-Newtonian Williamson fluid in a rock fracture, International Journal of Rock Mechanics & Mining Sciences, 44, 271–278, (2007). doi:10.1016/j.ijrmms.2006.07.003 [37].
Murphy, Some effects of surface curvature on laminar Boundary-Layer Flow, Journal of the Aeronautical Sciences, 20(5), 338–344, (1953)
Analysis of boundary layer formed on an upper horizontal surface of a paraboloid of revolution within nanofluid flow in the presence of thermophoresis and Brownian motion of 29nm CuO, International Journal of Mechanical Sciences, 124, 22-36
Williamson, The flow of pseudoplastic materials, Industrial and Engineering Chemistry, 21(11), 1108-1111, (1929)
Scarpi, Perturbation solution for pulsatile flow of a non-Newtonian Williamson fluid in a rock fracture, International Journal of Rock Mechanics & Mining Sciences, 44, 271–278, (2007). doi:10.1016/j.ijrmms.2006.07.003 [37].
Online since: December 2011
Authors: Qing Jun Zhu, Kai Wang
Corrosion properties of cold spray Zn-25Al coating in marine environment
Qingjun Zhu1, a, Kai Wang2,b
1Institute of Oceanology, Chinese Academy of Sciences, Qingdao
2School of Materials Science and Engineering, Shandong University, Jinan
azhuqingjun@qdio.ac.cn, bkangwen.abc@126.com
Keywords: corrosion; cold spray; coating; marine
Abstract.
For this reason, this method is usually to spray materials with good plastic properties, such as pure metal, plastic and composite materials.
We can consider this is the original potentials of these materials and there are no corrosion occurred in both of the materials.
Timofeeva: Applied Surface Science Vol. 253 (2007), p. 4295 [2] Adem Kurt, Ilyas Uygur and Eren Cete: Journal of Materials Processing Technology Vol. 211 (2011), p.313 [3] M.
Prakash: Materials & Design Vol. 31 (2010), p. 244 [7] K.
For this reason, this method is usually to spray materials with good plastic properties, such as pure metal, plastic and composite materials.
We can consider this is the original potentials of these materials and there are no corrosion occurred in both of the materials.
Timofeeva: Applied Surface Science Vol. 253 (2007), p. 4295 [2] Adem Kurt, Ilyas Uygur and Eren Cete: Journal of Materials Processing Technology Vol. 211 (2011), p.313 [3] M.
Prakash: Materials & Design Vol. 31 (2010), p. 244 [7] K.
Online since: November 2011
Authors: Hui Ping Ren, Zong Chang Liu, Hai Yan Wang
Ageing precipitate strengthening of Cu-containing structural steels
Haiyan Wang1, 2 a, Huiping Ren1, b, Zongchang Liu1, c
1 School of Material and Metallurgy, Inner Mongolia University of Science and Technology, Baotou, Inner Mongolia, 014010, China
2 Department of materials, University of Science and Technology Beijing, Beijing 100083, China
awindflower126@163.com,brenhp555@yahoo.com, clzchang75@163.com
Keywords: Fe-1.18%Cu, metastable phase, strengthening.
Dunstetter: Journal of Nuclear Materials Vol. 245(1997), p.224
(in Chinese) [8] H.P.Ren, W.M.Mao: Journal of University of Science and Technology Beijing Vol.9 (2002), p.186
[9] K.Osamura, H.Okuda and M.Takashima: Materials Transactions JIM Vol. 34(1993), p.305
[14] M.E.Fine,D.Isheim: Scripta Materials Vol. 53(2005), p.115.
Dunstetter: Journal of Nuclear Materials Vol. 245(1997), p.224
(in Chinese) [8] H.P.Ren, W.M.Mao: Journal of University of Science and Technology Beijing Vol.9 (2002), p.186
[9] K.Osamura, H.Okuda and M.Takashima: Materials Transactions JIM Vol. 34(1993), p.305
[14] M.E.Fine,D.Isheim: Scripta Materials Vol. 53(2005), p.115.
Online since: October 2010
Authors: Quan Guo Zhang, Ting Zhou Lei, Zhi Wei Wang, Jian Jun Hu
Finally, the materials were sealed with black plastic bag according to different moisture ratio.
A Rheological Model for the Compassion of Fibrous Agricultural Materials[J].Agric.Engng.Res.1989,42(1):165-178
Theoretical analysis of the compression of fibrous agricultural materials.
Journal of Zhejiang Agricultural University (Agriculture and Life Sciences ), 2003,28(2): 139-142.
Journal of agriculture engineering research,1984,29(l):61-72
A Rheological Model for the Compassion of Fibrous Agricultural Materials[J].Agric.Engng.Res.1989,42(1):165-178
Theoretical analysis of the compression of fibrous agricultural materials.
Journal of Zhejiang Agricultural University (Agriculture and Life Sciences ), 2003,28(2): 139-142.
Journal of agriculture engineering research,1984,29(l):61-72