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Correlation of Magnetic Barkhausen Noise with Microstructure in the In-Depth Direction of a Railhead
Online since: April 2014
Authors: Charalampos Sokos
Hristoforou for the helpful discussions and advice on the subject of magnetism, magnetic materials and miss X.Vourna for the valuable contribution.
The authors would like to thank Institute of Materials Science (IMS) of the National Center for Scientific Research "Demokritos“ for their support with experiments and theoretical questions.
Hristoforou, Non-destructive evaluation of magnetic metallic materials using Hall sensors, Journal of Materials Processing technology, 161, p. 359-362, 2005 [6] K.
Ktena, Magnetostriction and magnetostrictive materials for sensing applications, J.
Hristoforou, Investigation of magnetic, mechanical and microfailure behavior of ARMCO - type low carbon steel corroded in 3.5% NaCl - aqueous solution, Materials Science and Engineering A, MSEA-D-13-00774, accepted 2013 [14] L.
The authors would like to thank Institute of Materials Science (IMS) of the National Center for Scientific Research "Demokritos“ for their support with experiments and theoretical questions.
Hristoforou, Non-destructive evaluation of magnetic metallic materials using Hall sensors, Journal of Materials Processing technology, 161, p. 359-362, 2005 [6] K.
Ktena, Magnetostriction and magnetostrictive materials for sensing applications, J.
Hristoforou, Investigation of magnetic, mechanical and microfailure behavior of ARMCO - type low carbon steel corroded in 3.5% NaCl - aqueous solution, Materials Science and Engineering A, MSEA-D-13-00774, accepted 2013 [14] L.
Online since: September 2013
Authors: Wisnu Ari Adi, Azwar Manaf
Microstructure and Phase Analysis of La0.8Ba0.2TixMn(1-x)O3 system for Microwave Absorber Material (x = 0 – 0.7)
Wisnu Ari Adi1, Azwar Manaf2
1Post graduate for materials science, University of Indonesia
1Center for Technology of Nuclear Industry Materials
National Nuclear Energy Agency, South Tangerang, Banten, Indonesia, 15314
Tel : (021) 7560922 Fax : (021) 7560926
2Dept of Physics, Faculty of Mathematics and Natural Sciences
University of Indonesia, Depok, Indonesia, 16424
Tel : (021) 7872610 Fax : (021) 7872610
1dwisnuaa@batan.go.id, 2azwar@ui.ac.id
Keywords: microwave absorber, magnetic, manganite, crystal structure, and microstructure.
Absorber materials are being developed at this time is the modification of ferrite-based magnetic materials because it has a high permeability relatively [1-3].
This magnetic material is prepared by oxide materials, namely BaCO3, Fe2O3, MnCO3, TiO2 and La2O3.
Sun, Electromagnetic and microwave absorption properties of carbonyliron/La0.6Sr0.4MnO3 composites, Journal of Magnetism and Magnetic Materials, Vol. 322, (2010), pp. 97–101
Vincent, Structure, magnetic and electrical behaviour of La0.7Sr0.3Mn1-xTixO3 with 0< x < 0.3, Journal of Magnetism and Magnetic Materials, 261, (2003), pp. 56–65
Absorber materials are being developed at this time is the modification of ferrite-based magnetic materials because it has a high permeability relatively [1-3].
This magnetic material is prepared by oxide materials, namely BaCO3, Fe2O3, MnCO3, TiO2 and La2O3.
Sun, Electromagnetic and microwave absorption properties of carbonyliron/La0.6Sr0.4MnO3 composites, Journal of Magnetism and Magnetic Materials, Vol. 322, (2010), pp. 97–101
Vincent, Structure, magnetic and electrical behaviour of La0.7Sr0.3Mn1-xTixO3 with 0< x < 0.3, Journal of Magnetism and Magnetic Materials, 261, (2003), pp. 56–65
Online since: November 2015
Authors: Shu Jie Zhang, Rui Wang, Xu Han, Kai Luo, Xiang Ping Si
Pipeline repair with composite materials including fiber grid model and resin system.
Journal of industrial textiles, 2007.2, 10-13
Journal of textile journal, 2007 (6) : 70-74
Journal of nonwovens, 2010 (01) : 25 - 27
Journal of composite materials, 2008, 25 (2) : 161-165
Journal of industrial textiles, 2007.2, 10-13
Journal of textile journal, 2007 (6) : 70-74
Journal of nonwovens, 2010 (01) : 25 - 27
Journal of composite materials, 2008, 25 (2) : 161-165
Online since: May 2014
Authors: Jean Philippe Ponthot, Chantal Bouffioux, Anne Marie Habraken, Romain Boman, Nicolas Caillet, Nicolas Rich
Ponthot: Numerical simulation of springback using enhanced assumed strain elements, Journal of Materials Processing Technology 153-154 (2004), 314-318
Ponthot, Continuous Roll Forming Simulation using Arbitrary Lagrangian Eulerian Formalism, Key Engineering Materials 473 (2011) 564-571
Habraken, Identification of material parameters to predict Single Point Incremental Forming forces, International Journal of Material Forming (2008) [6].
Fischer, Residual stress formation during the roller straightening of railway rails, International Journal of Mechanical Sciences 43 (2001) 2281-2295
Habraken, Experimental and numerical study of an AlMgSc sheet formed by an incremental process, Journal of Materials Processing Technology 211 (2011) 1684-1693
Ponthot, Continuous Roll Forming Simulation using Arbitrary Lagrangian Eulerian Formalism, Key Engineering Materials 473 (2011) 564-571
Habraken, Identification of material parameters to predict Single Point Incremental Forming forces, International Journal of Material Forming (2008) [6].
Fischer, Residual stress formation during the roller straightening of railway rails, International Journal of Mechanical Sciences 43 (2001) 2281-2295
Habraken, Experimental and numerical study of an AlMgSc sheet formed by an incremental process, Journal of Materials Processing Technology 211 (2011) 1684-1693
Online since: May 2011
Authors: Dan Dan Li, Xiao Yan Li, Xing Huang, Yu Xiang Wang, Ya Juan Zhao
Synthesis and Characterization of a Kind of Superparamagnetic Material
Dandan Li a, Xiaoyan Li b, Xing Huang c, Yuxiang Wang d, Yajuan Zhao e
Chemistry and materials engineering institute, Wenzhou university Wenzhou 325000, P.R.
Introduction Magnetic material is a kind of functional materials, which is applied to category of various, and advancing with The Times [1].
In recent years, the magnetic materials have developed rapidly along with the continual emergence of new magnetic materials especially.
Function Materials,2009,40(6):926-929 [3] Xiaoping Zhao, Shaowen Li, Xiangdong Ding.
Science in China,2003,33(5): 434-440 [8] Peng Xi, Lianjun Wang , Xiangan Huang.
Introduction Magnetic material is a kind of functional materials, which is applied to category of various, and advancing with The Times [1].
In recent years, the magnetic materials have developed rapidly along with the continual emergence of new magnetic materials especially.
Function Materials,2009,40(6):926-929 [3] Xiaoping Zhao, Shaowen Li, Xiangdong Ding.
Science in China,2003,33(5): 434-440 [8] Peng Xi, Lianjun Wang , Xiangan Huang.
Online since: September 2017
Authors: I.R. Kuzeev, E.V. Poyarkova
Thus, the extension of available results to the structurally heterogeneous materials and especially to the welded joints of such materials turned out to be a very difficult task.
Introduction Materials and study methodology.
Bunin, Synergetics and fractals in materials science, Moscow, (1994) [6] V.S.
Pimenov, Fractal parametrization of structures in radiation materials science.
Bunin, Introduction to the multifractal parametrization of materials structures.
Introduction Materials and study methodology.
Bunin, Synergetics and fractals in materials science, Moscow, (1994) [6] V.S.
Pimenov, Fractal parametrization of structures in radiation materials science.
Bunin, Introduction to the multifractal parametrization of materials structures.
Online since: November 2010
Authors: Chao Cheng Chang, Wu Lu Kuo
Ni: Materials Science & Engineering A Vol. 526 (2009), p. 93
[4] U.
Eckstein: Journal of Materials Processing Tech.
Wang: Journal of Materials Processing Tech.
Segal: Materials science & engineering.
Davies: Journal of Materials Science Vol. 42 (2007), p. 9097 [12] Y.
Eckstein: Journal of Materials Processing Tech.
Wang: Journal of Materials Processing Tech.
Segal: Materials science & engineering.
Davies: Journal of Materials Science Vol. 42 (2007), p. 9097 [12] Y.
Online since: March 2015
Authors: Kang Bi Luo, Hu Ping Li, Hui Hui Qiu
Reinforcing composite materials.
Friction materials filler.
Yuan: Mineral Materials (Science Press, Beijing 2006)
Zhang: Composite Materials Science (Chemical Industry Press, Beijing 2011) [8] M.H.
Jiang: Journal of Shenyang Normal University (Natrual Science) Vol. 30 (2012), p. 270
Friction materials filler.
Yuan: Mineral Materials (Science Press, Beijing 2006)
Zhang: Composite Materials Science (Chemical Industry Press, Beijing 2011) [8] M.H.
Jiang: Journal of Shenyang Normal University (Natrual Science) Vol. 30 (2012), p. 270
Online since: September 2013
Authors: Senthil Kumar Kandasamy, Deebankarthikeyan Sivalingam, Hemalatha Elangovan, Manikandan Subramanian, Murugesan Govindasamy
There are several materials are used as electrode material in supercapacitor.
Synthesis Materials Used.
Timonov, “Adsorption-Electrochemical Modification of Nanoporous Carbon Materials by Nickel Complexes with Schiff Bases”, Russian Journal of Applied Chemistry, Vol. 85, No. 6, pp. 914−920, 2012
Singh, “Investigations on copper chloride doped polyaniline composites as efficient electrode materials for supercapacitor applications”, Journal of Materials Science: Materials in Electronics, 2012
[16] Liang QingQin, Li YueMing and Li JingHong, “Low temperature synthesis of NiO/Co3O4 composite nanosheets as high performance Li-ion battery anode materials”, Chinese Science Bulletin, 2012
Synthesis Materials Used.
Timonov, “Adsorption-Electrochemical Modification of Nanoporous Carbon Materials by Nickel Complexes with Schiff Bases”, Russian Journal of Applied Chemistry, Vol. 85, No. 6, pp. 914−920, 2012
Singh, “Investigations on copper chloride doped polyaniline composites as efficient electrode materials for supercapacitor applications”, Journal of Materials Science: Materials in Electronics, 2012
[16] Liang QingQin, Li YueMing and Li JingHong, “Low temperature synthesis of NiO/Co3O4 composite nanosheets as high performance Li-ion battery anode materials”, Chinese Science Bulletin, 2012
Online since: February 2012
Authors: Joseba Mendiguren, Eneko Sáenz de Argandoña, E. Silvestre, Lander Galdos
Materials and test procedures
In this section the analysed materials and both tensile test and v-bending test are described.
Materials.
Two materials are analysed in this work.
Wagoner, Simulation of springback, International Journal of Mechanical Sciences. 44 (2002) 103-122
Lee, A model of one-surface cyclic plasticity and its application to springback prediction, International Journal of Mechanical Sciences. 53 (2011) 425-435
Materials.
Two materials are analysed in this work.
Wagoner, Simulation of springback, International Journal of Mechanical Sciences. 44 (2002) 103-122
Lee, A model of one-surface cyclic plasticity and its application to springback prediction, International Journal of Mechanical Sciences. 53 (2011) 425-435