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Online since: April 2022
Authors: Lesego M. Mohlala, Olusola Akinbami, Michael Bodunrin, Desmond Klenam, Josias van der Merwe
Vincent, Materials Science and Engineering: A 375 (2004) 213–218
Chiba, Materials Science and Engineering: A 759 (2019) 380–390
Mourad, Advances in Materials Science and Engineering 2019 (2019) e2157592
Oke, Journal of Materials Research and Technology 5 (2016) 384–393
Machaka, Computational Materials Science 188 (2021) 110244
Chiba, Materials Science and Engineering: A 759 (2019) 380–390
Mourad, Advances in Materials Science and Engineering 2019 (2019) e2157592
Oke, Journal of Materials Research and Technology 5 (2016) 384–393
Machaka, Computational Materials Science 188 (2021) 110244
Online since: May 2014
Authors: Scott William Sloan, Andrei V. Lyamin, Kristian Krabbenhoft, J. Huang, D.V. Griffiths
The mechanical properties of natural materials such as rocks and soils vary spatially.
"Analysis of Composite-Materials - a Survey."
Journal of Engineering Mechanics-Asce 2009.135(4): 276-284
Journal of Computational Physics 2008.227(18): 8448-8471
Journal of Computational Physics 2004.194(2): 773-794.
"Analysis of Composite-Materials - a Survey."
Journal of Engineering Mechanics-Asce 2009.135(4): 276-284
Journal of Computational Physics 2008.227(18): 8448-8471
Journal of Computational Physics 2004.194(2): 773-794.
Online since: September 2013
Authors: Lie Liu, Ruo Peng Liu, Xue Long Yang, Zhi Ya Zhao, Xi Geng Miao
Acknowledgments
This research was supported by grants of Shenzhen Key Laboratory of Ultrahigh Refractive Structural Materials, Guangdong Science and Technology Plan (No. 2011A091103003), and Shenzhen Innovative R&D Team Program (Peacock Plan) (No.
Yu: Journal of Tianjin Normal University, Natural Sciences Vol. 27[2] (2007), p. 15 (in Chinese)
Shi: Journal of Functional Materials and Devices Vol. 13[1] (2007), p. 54 (in Chinese)
Ma: Materials Engineering Vol. 2 (2008), p. 54 (in Chinese)
Huang: Chinese Journal of Radio Science Vol. 24[6] (2009), p. 1104.
Yu: Journal of Tianjin Normal University, Natural Sciences Vol. 27[2] (2007), p. 15 (in Chinese)
Shi: Journal of Functional Materials and Devices Vol. 13[1] (2007), p. 54 (in Chinese)
Ma: Materials Engineering Vol. 2 (2008), p. 54 (in Chinese)
Huang: Chinese Journal of Radio Science Vol. 24[6] (2009), p. 1104.
Online since: January 2022
Authors: Natalia Antonova
The main obstacle in the operation of such coatings is the ability of these materials to dissolve in water.
An urgent task is obtaining new functional materials based on environmentally friendly biopolymers of plant origin, made from renewable natural raw materials.
Kierzek, Influence of binder adhesion ability on the performance of silicion/carbon composite as Li-ion baterry anode, Journal of Materials Engineering and Performance, 25(6) (2016) 2326-2330
Soldatov, Properties of vibro-abrasive treatment by combination the kinds and granulometric characteristics of the medium, Materials Science Forum, 1037 (2021) 589-594, DOI: 10.4028/www.scientific.net/MSF.1037.589
Antonova, Forming of Porous Composites with Ti Powder by Self-Assembly of Particles in Polymer Suspensions for Creating Functional Materials, Materials Today: Proceedings 11(1) (2019) 290-294, DOI: 10.1016/j.matpr.2018.12.146
An urgent task is obtaining new functional materials based on environmentally friendly biopolymers of plant origin, made from renewable natural raw materials.
Kierzek, Influence of binder adhesion ability on the performance of silicion/carbon composite as Li-ion baterry anode, Journal of Materials Engineering and Performance, 25(6) (2016) 2326-2330
Soldatov, Properties of vibro-abrasive treatment by combination the kinds and granulometric characteristics of the medium, Materials Science Forum, 1037 (2021) 589-594, DOI: 10.4028/www.scientific.net/MSF.1037.589
Antonova, Forming of Porous Composites with Ti Powder by Self-Assembly of Particles in Polymer Suspensions for Creating Functional Materials, Materials Today: Proceedings 11(1) (2019) 290-294, DOI: 10.1016/j.matpr.2018.12.146
Online since: November 2011
Authors: Xiao Yan Li, Zhi Fen Cen, Yan Yan Wu
Discharging process; Storage tank; Phase change material; Air-Conditioning.
Acknowledgment The authors acknowledge the support provided by the Provincial Science (E200822) and the Natural Science and Harbin University of Commerce.
[4] Webb B W , Moallemi M K and Viskanta R., “Experiments of melting unfixed ice in a horizontal cylindrical capsule,” Journal of Heat Transfer, vol. 109, 1987, pp. 454-459., [5] X.
Balcon, “Phase Change Thermal Energy Storage Using Spherical Capsules: Performance of a Test Plant,” International Journal of Refrigeration, vol. 19, 1996, pp. 187–196
“Experimental Study of Contact Melting Inside Horizontal Rectangular Capsule,” Journal of Naval University of Engineering., vol. 14, 2002, pp. 1-4 [10] Xiaoyan Li., “Research on Cold-storage Characteristics of New High Temperature Phase-change Materials in Cold Storage Ball,” Energy Conservation Technology, vol. 22, 2004, pp. 9-11
Acknowledgment The authors acknowledge the support provided by the Provincial Science (E200822) and the Natural Science and Harbin University of Commerce.
[4] Webb B W , Moallemi M K and Viskanta R., “Experiments of melting unfixed ice in a horizontal cylindrical capsule,” Journal of Heat Transfer, vol. 109, 1987, pp. 454-459., [5] X.
Balcon, “Phase Change Thermal Energy Storage Using Spherical Capsules: Performance of a Test Plant,” International Journal of Refrigeration, vol. 19, 1996, pp. 187–196
“Experimental Study of Contact Melting Inside Horizontal Rectangular Capsule,” Journal of Naval University of Engineering., vol. 14, 2002, pp. 1-4 [10] Xiaoyan Li., “Research on Cold-storage Characteristics of New High Temperature Phase-change Materials in Cold Storage Ball,” Energy Conservation Technology, vol. 22, 2004, pp. 9-11
Online since: July 2022
Authors: Saniye Rabia Dal, Haluk Darendeliler
Dixit, Determination of optimum process parameters for wrinkle free products in deep drawing process, Journal of Materials Processing Technology 191 (2007) 51-54
Ketabchi, Investigation into wall wrinkling in deep drawing process of conical cups, Journal of Materials Processing Technology 211 (2011) 1783-1795
Ferran, Experimental and numerical analysis of the cup drawing test for orthotropic metal sheets, Journal of materials processing technology 108 (2000) 78-86
Tabourot, Analysis of a criterion of deep drawing operation capability for thin orthotropic sheets, Journal of Materials Processing Technology 78 (1998) 190-197
International Journal of Mechanical Sciences 115 (2016) 516-531
Ketabchi, Investigation into wall wrinkling in deep drawing process of conical cups, Journal of Materials Processing Technology 211 (2011) 1783-1795
Ferran, Experimental and numerical analysis of the cup drawing test for orthotropic metal sheets, Journal of materials processing technology 108 (2000) 78-86
Tabourot, Analysis of a criterion of deep drawing operation capability for thin orthotropic sheets, Journal of Materials Processing Technology 78 (1998) 190-197
International Journal of Mechanical Sciences 115 (2016) 516-531
Online since: October 2011
Authors: Farzadnia Nima, Abang Abdullah Abang Ali, Ramazan Demirboga
Isaia: Waste Materials in Construction (2000), p 344-354
Xun: Journal of Building Materials,Vol. 5(2006)
Kuo-Ming and H.Tien-Chin: Journal of Material Science Vol. 42 (2007), p7478
Riahi: Materials Science and Engineering A. (2010) in press
Pore: Construction and Building Materials (2010), in press
Xun: Journal of Building Materials,Vol. 5(2006)
Kuo-Ming and H.Tien-Chin: Journal of Material Science Vol. 42 (2007), p7478
Riahi: Materials Science and Engineering A. (2010) in press
Pore: Construction and Building Materials (2010), in press
Online since: September 2016
Authors: Gap Yong Kim, Mina M.H. Bastwros
Weinkamer, Nature’s hierarchical materials, Progress in Materials Science, 52 (2007) 1263-1334
Seki, Biological materials: Structure and mechanical properties, Progress in Materials Science, 53 (2008) 1-206
Wielage, Nanocrystalline Al–Al2O3p and SiCp composites produced by high-energy ball milling, Journal of Materials Processing Technology, 205 (2008) 111-118
Ito, Processing of carbon nanotube reinforced aluminum composite, Journal of Materials Research, 13 (1998) 2445-2449
Kim, Carbon nanotube reinforced aluminum composite fabricated by semi-solid powder processing, Journal of Materials Processing Technology, 211 (2011) 1341-1347
Seki, Biological materials: Structure and mechanical properties, Progress in Materials Science, 53 (2008) 1-206
Wielage, Nanocrystalline Al–Al2O3p and SiCp composites produced by high-energy ball milling, Journal of Materials Processing Technology, 205 (2008) 111-118
Ito, Processing of carbon nanotube reinforced aluminum composite, Journal of Materials Research, 13 (1998) 2445-2449
Kim, Carbon nanotube reinforced aluminum composite fabricated by semi-solid powder processing, Journal of Materials Processing Technology, 211 (2011) 1341-1347
Online since: February 2018
Authors: Lian Cai, Li Min Zhao
Chinese Journal of Materials Science. 22(1990)79-88
Materials Science and Technology. 19(2003)1737-1745
Materials and Design. 92(2016)450-461
Materials Science and Engineering: A. 611(2014)370-382
Materials Science and Engineering: A. 665(2016)76-85.
Materials Science and Technology. 19(2003)1737-1745
Materials and Design. 92(2016)450-461
Materials Science and Engineering: A. 611(2014)370-382
Materials Science and Engineering: A. 665(2016)76-85.
Online since: January 2005
Authors: L.M. Liu, Wei Chen, M.G. Zhu, L.Y. Nie, Ai Jun Li, J.J. Hu
Exchange-coupling Interaction and Effective Anisotropyin Two-phase
Nanocomposite Permanent Magnetic Materials
L.
The low coercivity is the key factor impeding the application of nanocomposite permanent magnetic materials.
Feng: Chinese Science Bulletin Vol. 47 (2002), p. 1166 [4] G.
Gao: Science in China(G) Vol. 46(4), (2003) p. 398 [5] W.
Chen: Chinese Journal Of Materials Research Vol. 17 (2003), p. 151 [6] Y.
The low coercivity is the key factor impeding the application of nanocomposite permanent magnetic materials.
Feng: Chinese Science Bulletin Vol. 47 (2002), p. 1166 [4] G.
Gao: Science in China(G) Vol. 46(4), (2003) p. 398 [5] W.
Chen: Chinese Journal Of Materials Research Vol. 17 (2003), p. 151 [6] Y.