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Anisotropic Behavior of Different Three-Dimensional Structures Materials under Thermal Stress Effect
Online since: September 2019
Authors: Nacer HEBBIR, Sihem Bouzid, Yamina Harnane
Labbe, Analytical solution of unsteady heat conduction in a two-layered material in imperfect contact subjected to a moving heat source, International Journal of Thermal Sciences, 49 (2010) 311–318
Zhang, Study on Performance of Anisotropic Materials of Thermal Conductivity, The Open Civil Engineering Journal, 5 (2011) 168-172
Echegut, Modeling heat transfer within porous multiconstituent materials, Journal of Physics: Conference Series, 369 (2012) 012001
Hadjes Fandiari, On the symmetric character of the thermal conductivity tensor, International Journal of Materials and Structural Integrity, 8(4), 209, 2014
Abdelaziz, Numerical Solution of Unsteady Conduction Heat Transfer in Anisotropic Cylinders, Journal of Thermal Science and Engineering Applications, 8(3), 031013, 2016
Zhang, Study on Performance of Anisotropic Materials of Thermal Conductivity, The Open Civil Engineering Journal, 5 (2011) 168-172
Echegut, Modeling heat transfer within porous multiconstituent materials, Journal of Physics: Conference Series, 369 (2012) 012001
Hadjes Fandiari, On the symmetric character of the thermal conductivity tensor, International Journal of Materials and Structural Integrity, 8(4), 209, 2014
Abdelaziz, Numerical Solution of Unsteady Conduction Heat Transfer in Anisotropic Cylinders, Journal of Thermal Science and Engineering Applications, 8(3), 031013, 2016
Online since: January 2012
Authors: Xiao Wei Li, Xin Zheng Li, Wei Dong Lai, Bing Bai
Experiment sample preparation and raw material
Raw materials
The raw materials: isocyanine (IPDI); prepolymer monomer trimethylol propane triacrylate (TMPTA); photoinitiator: 2-methyl-1-[4-(methylthio)phenyl]-2-(4-morpholinyl)-1-propanone (907), 1-hydroxycyclohexyl phenyl ketone (184); dye precursor 2-anilino-3-methyl-6-dibutylaminofluorane (ODB-2); dispersant (PVA224, PVA217); deionized water; Tetraethylenepentamine; developer 4-hydroxy-4'-isoproxydiphenylsulfone(D-8).
References [1] E N Brown, S R White, N R Sottos, “Microcapsule induced toughening in a self-healing polymer composite,” Journal of Materials Science, vol. 39, no. 5, pp. 1703-1710, March 2004
[2] X W Li, X L Jiang, W D Lai, et al, “Investigation of a Light-thermal Sensitive Imaging System Based on the Microcapsule Technique,” Journal of Imaging Science and Technology, Vol. 51, no. 2, pp. 122-126, February 2007
[4] X Wang, G Q Li, J Wei, W W Guan, “A novel method to control microcapsule release behavior via photo-crosslink polyurethane acrylate shells,” Journal of Applied Polymer Science, vol. 113, no. 2, pp. 1008-1016, July 2009
[6] T Xu, W Yuan, S J Wang, “Synthesis of polyurethane modified bismaleimide(UBMI) and polyurethane-imide elastomer,” Chinese Journal of Polymer Science, vol. 26, no. 1, pp. 117-119, January 2008
References [1] E N Brown, S R White, N R Sottos, “Microcapsule induced toughening in a self-healing polymer composite,” Journal of Materials Science, vol. 39, no. 5, pp. 1703-1710, March 2004
[2] X W Li, X L Jiang, W D Lai, et al, “Investigation of a Light-thermal Sensitive Imaging System Based on the Microcapsule Technique,” Journal of Imaging Science and Technology, Vol. 51, no. 2, pp. 122-126, February 2007
[4] X Wang, G Q Li, J Wei, W W Guan, “A novel method to control microcapsule release behavior via photo-crosslink polyurethane acrylate shells,” Journal of Applied Polymer Science, vol. 113, no. 2, pp. 1008-1016, July 2009
[6] T Xu, W Yuan, S J Wang, “Synthesis of polyurethane modified bismaleimide(UBMI) and polyurethane-imide elastomer,” Chinese Journal of Polymer Science, vol. 26, no. 1, pp. 117-119, January 2008
Online since: July 2014
Authors: Hong Wen Ma, Mei Tang Liu, Xiao Juan Liu, Tian Lei Wang
Sun, Journal of Hazardous Materials, 169, (2009), 958
Kamath, Journal of Colloid and Interface Science, 304, (2006), 292
Bettahar, Journal of Hazardous Materials, 165, (2009), 206
Jiao, Bulletin of material science, 31, (2008), 831
Xu, Journal of Materials Chemistry, 18, (2008), 2112
Kamath, Journal of Colloid and Interface Science, 304, (2006), 292
Bettahar, Journal of Hazardous Materials, 165, (2009), 206
Jiao, Bulletin of material science, 31, (2008), 831
Xu, Journal of Materials Chemistry, 18, (2008), 2112
Online since: July 2011
Authors: Quan Hua Wang, Dao Gang Wang, Guo Gang Qiao, Da Jun Yuan
The type and properties of the grouting materials contribute great impact on the grouting effect.
Maintaining the materials ratio unchanged, test was carried out by changing the amount of water reducer for comparison.
By testing different materials, the material requirements of the new grout were determined and the results are showed in Table4.
Wuhan: Huazhong University of Science and Technology Press (1999), p. 48-50 (in Chinese) [6] Y.
Xu: Chinese Journal of Rock Mechanics and Engineering Vol.21 No.3 (2002), p. 88-92 (in Chinese) [7] J.
Maintaining the materials ratio unchanged, test was carried out by changing the amount of water reducer for comparison.
By testing different materials, the material requirements of the new grout were determined and the results are showed in Table4.
Wuhan: Huazhong University of Science and Technology Press (1999), p. 48-50 (in Chinese) [6] Y.
Xu: Chinese Journal of Rock Mechanics and Engineering Vol.21 No.3 (2002), p. 88-92 (in Chinese) [7] J.
Online since: July 2019
Authors: Deana Wahyuningrum, Cyntia Stiani Anggraini, Anita Alni
Poly (p-phenylene vinylene) or PPV and its derivatives are common polymers used as PLED materials.
Their fluorescence emission was measured to study their potential as PLED materials [8].
Dechun, Chemical and Photophysical Properties of Materials for OLEDs, Woodhead Publishing Series in Electronic and Optical Materials 1 (2013) 114-142 [4] X.
List, Phosphorecent Organic Light-Emitting Device: Working Principle and Iridium Based Emitter Materials, Journal of Molecular Science 9 (2008)1527-1547 [9] H.
Kido, Development of High Performance OLEDs for General Lighting, Journal of Material Chemistry 1 (2013)1699 [10] R.
Their fluorescence emission was measured to study their potential as PLED materials [8].
Dechun, Chemical and Photophysical Properties of Materials for OLEDs, Woodhead Publishing Series in Electronic and Optical Materials 1 (2013) 114-142 [4] X.
List, Phosphorecent Organic Light-Emitting Device: Working Principle and Iridium Based Emitter Materials, Journal of Molecular Science 9 (2008)1527-1547 [9] H.
Kido, Development of High Performance OLEDs for General Lighting, Journal of Material Chemistry 1 (2013)1699 [10] R.
Online since: May 2020
Authors: E.Yu. Balalayeva, Eduard S. Klimov, S.M. Chernenko, Volodymyr V. Kukhar
Correlation of Barreling Effect with Boundary Friction Coefficient during Upsetting of Various Materials Workpieces under
Processing Conditions
V.V.
Series: Materials Science and Engineering. 330 (2018) 012072
Kotrbacek, Strains behavior of steels in mushy state, Materials and Design. 22 (2001) 83-92
Chiba, Friction Coefficient in Hot Compression of Cylindrical Sample, Materials Transactions. 51(7) (2010) 1210-1215
Schey, Metal Strains Processes: Friction and Lubrication, Monographs and Textbooks in Material Science, Marcel Dekker Inc, New York, 1970, 821 p
Series: Materials Science and Engineering. 330 (2018) 012072
Kotrbacek, Strains behavior of steels in mushy state, Materials and Design. 22 (2001) 83-92
Chiba, Friction Coefficient in Hot Compression of Cylindrical Sample, Materials Transactions. 51(7) (2010) 1210-1215
Schey, Metal Strains Processes: Friction and Lubrication, Monographs and Textbooks in Material Science, Marcel Dekker Inc, New York, 1970, 821 p
Online since: September 2013
Authors: Run Bo Ma, Shi Meng Xu, Jian Hua Du
Research on the Simulation of Friction Material Surface Topography
Run Bo Ma 1,a, Shi Meng Xu 1 and Jian Hua Du 2
1Section of Mathematics, Academy of Armored Force Engineering, Beijing 100072, P.R.China
2Department of Equipment maintenance and Remanufacturing, Academy of Armored Force Engineering, Beijing 100072,P.R.China
a13810470589@139.com
Key words: composite materials; fractal interpolation; asperity; non-parametric hypothesis test
Abstract.
Through analysis and research on the surface topography of reinforced copper matrix composite materials, taking advantage of fractal statistical method to discuss distribution law about characteristics parameter which symbolizes the asperity, combining Monte-Carlo method with fractal theory to set up mathematics model of characteristics parameter which symbolizes size of asperity , talking about the construction of iterated function system in fractal interpolated theory, a easy realizable friction materials surface topography simulation algorithm was put forward.
Let friction material plane is a square with bound length L, noting and as maximum diameter and minimum diameter respectively, and is number of asperity.
In conclusion, friction material surface topography simulation map was given in figure 1.
Journal of Tribology (ASME), 1991, 113: 1–11
Through analysis and research on the surface topography of reinforced copper matrix composite materials, taking advantage of fractal statistical method to discuss distribution law about characteristics parameter which symbolizes the asperity, combining Monte-Carlo method with fractal theory to set up mathematics model of characteristics parameter which symbolizes size of asperity , talking about the construction of iterated function system in fractal interpolated theory, a easy realizable friction materials surface topography simulation algorithm was put forward.
Let friction material plane is a square with bound length L, noting and as maximum diameter and minimum diameter respectively, and is number of asperity.
In conclusion, friction material surface topography simulation map was given in figure 1.
Journal of Tribology (ASME), 1991, 113: 1–11
Online since: December 2014
Authors: Jatinder Kumar, Ravinder Kataria
[7] G.S Upadhyaya, Material Science of Cemented carbide-an overview, Material and Design 22 2001 483-489
Mahdavinejad, ED machining of WC–Co, Journal of Materials Processing Technology 162–163 2005 637–643
Tsai, Micro-hole machining of carbide by electrical discharge machining, Journals of Materials Processing Technology 87 1999 139–145
Husain, Machining of cemented tungsten carbide using EDM, journal of applied sciences 11(10) 2011 1784-1790
Lal, Grinding of cemented carbide with electrical spark assistance, Journal of materials processing technology 72 1997 61-68
Mahdavinejad, ED machining of WC–Co, Journal of Materials Processing Technology 162–163 2005 637–643
Tsai, Micro-hole machining of carbide by electrical discharge machining, Journals of Materials Processing Technology 87 1999 139–145
Husain, Machining of cemented tungsten carbide using EDM, journal of applied sciences 11(10) 2011 1784-1790
Lal, Grinding of cemented carbide with electrical spark assistance, Journal of materials processing technology 72 1997 61-68
Online since: May 2025
Authors: Oladimeji Temitayo, Olayemi Odunlami, Muyiwa Fajobi, Uchenna Nnaji, Uriah Abigail, Tomisin Gawati, Hassan Adisa
Journal of Materials Engineering and Performance, 29, (2020) pp.1400-1409
Journal of Materials Science & Technology, 62, (2021) pp.254-267
Journal of Materials Science & Technology, 64, (2021) pp.187-194
Journal of Composite Materials, 54(22), (2020) pp.3189-3203
Journal of Materials Science & Technology, 62, (2021) pp.254-267
Journal of Materials Science & Technology, 62, (2021) pp.254-267
Journal of Materials Science & Technology, 64, (2021) pp.187-194
Journal of Composite Materials, 54(22), (2020) pp.3189-3203
Journal of Materials Science & Technology, 62, (2021) pp.254-267
Online since: October 2015
Authors: Rafaqat Hussain, Tuty Asma Abu Bakar, Nor Akmal Fadil, C.Y. Chong
Magnesium and its alloys are potential biodegradable implant materials.
Coating materials such as hydroxyapatite (HA) are potential biodegradable coating materials, also helping to accelerate the bone growth [10].
[3] Hazibullah Waizy, Jan-Marten Seitz, Janin Reifenrath, Andreas Weizbauer, Friedrich-Wilhelm Bach, Andrea Meyer-Lindenberg, Berend Denkena, and Henning Windhagen, Biodegradable Magnesium Implants for Orthopedic Applications, Journal of Materials Science, 48 (2013), 39-50
Haung, Electrophoretic Deposition and Its Use to Synthesize Zro2/Al2o3 Micro-Laminate Ceramic/Ceramic Composites, Journal of Materials Science, 28 (1993), 6274-78
Evans, Electrophoretic Deposition of Hydroxyapatite Coatings on Metal Substrates: A Nanoparticulate Dual-Coating Approach, Journal of Sol-Gel Science and Technology, 21 (2001), 39-48
Coating materials such as hydroxyapatite (HA) are potential biodegradable coating materials, also helping to accelerate the bone growth [10].
[3] Hazibullah Waizy, Jan-Marten Seitz, Janin Reifenrath, Andreas Weizbauer, Friedrich-Wilhelm Bach, Andrea Meyer-Lindenberg, Berend Denkena, and Henning Windhagen, Biodegradable Magnesium Implants for Orthopedic Applications, Journal of Materials Science, 48 (2013), 39-50
Haung, Electrophoretic Deposition and Its Use to Synthesize Zro2/Al2o3 Micro-Laminate Ceramic/Ceramic Composites, Journal of Materials Science, 28 (1993), 6274-78
Evans, Electrophoretic Deposition of Hydroxyapatite Coatings on Metal Substrates: A Nanoparticulate Dual-Coating Approach, Journal of Sol-Gel Science and Technology, 21 (2001), 39-48