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Online since: November 2010
Authors: Xiu Long Chen, Huai Bo Shan, Xi Hua Liu, Gui Lian Wang
Altan: Journal of Materials Processing Technology Vol 120 (2002), p. 348
Hossein: Advanced Materials Research Vol 83-86 (2010), p. 1113
Kinzel: Journal of Materials Processing Technology Vol 108 (2001), p. 369
Zhou: Advanced Materials Research Vol 97-101 (2010), p. 250
Ahkami and M.Ettehad: Materials and design Vol 31 (2010), p. 4174.
Hossein: Advanced Materials Research Vol 83-86 (2010), p. 1113
Kinzel: Journal of Materials Processing Technology Vol 108 (2001), p. 369
Zhou: Advanced Materials Research Vol 97-101 (2010), p. 250
Ahkami and M.Ettehad: Materials and design Vol 31 (2010), p. 4174.
Online since: July 2021
Authors: Hosen Ri, Andrey S. Zhivetyev, Michail A. Ermakov, E.D. Kim, Ernst H. Ri
Introduction
It is impossible to imagine the development of modern materials science without creating new composite materials.
Fabrication of metal matrix composites by friction stir processing with different particles and processing parameters //Materials Science and Engineering: A. – 2015. – Т. 626. – С. 505-513
Novel aluminum-graphene and aluminum-graphite metallic composite materials: Synthesis and properties //Journal of alloys and compounds. – 2016. – Т. 663. – С. 449-459
Microstructure and mechanical properties of an in-situ TiB2/Al-Zn-Mg-Cu-Zr composite fabricated by Melt-SHS process //Materials Science and Engineering: A. – 2018. – Т. 720. – С. 60-68
Centrifugal SHS-Metallurgy of Composite Materials Mo–Si–B //Russian Journal of Physical Chemistry B. – 2020. – Т. 14. – С. 261-265. 10.1134/S1990793120020025 [17] Fan X. et al.
Fabrication of metal matrix composites by friction stir processing with different particles and processing parameters //Materials Science and Engineering: A. – 2015. – Т. 626. – С. 505-513
Novel aluminum-graphene and aluminum-graphite metallic composite materials: Synthesis and properties //Journal of alloys and compounds. – 2016. – Т. 663. – С. 449-459
Microstructure and mechanical properties of an in-situ TiB2/Al-Zn-Mg-Cu-Zr composite fabricated by Melt-SHS process //Materials Science and Engineering: A. – 2018. – Т. 720. – С. 60-68
Centrifugal SHS-Metallurgy of Composite Materials Mo–Si–B //Russian Journal of Physical Chemistry B. – 2020. – Т. 14. – С. 261-265. 10.1134/S1990793120020025 [17] Fan X. et al.
Online since: February 2022
Authors: Vlad Turyanskiy, Tatyana Chayka, V.M. Gavrish, G.A. Baranov
However, these raw materials have a number of disadvantages: the presence of difficult to separate components, the cost of raw materials and their specificity, the high cost of reagents.
Dahil, Article Investigation of the penetration behavior of silicon dioxide epoxy hybrid nanocomposites, Journal of Composite Materials. 55 (2020) 1-11. 10.1177/0021998320973746
Momot, Effect of Colloidal Silicon Dioxide on the Properties of Building Ceramics, Materials Science Forum. 992 (2020) 173-177. 10.4028/www.scientific.net/MSF.992.173
Kometiani Research on Obtaining Silica Xerogels from Nepheline and Study of some of their Physical and Chemical Properties / Materials Science Forum, 989 (2019) 121-126, doi:10.4028/www.scientific.net/MSF.989.121 [13] X.
Purwono, Synthesis and characterization of mesoporous silica from beach sands as silica source, IOP Conference Series: Materials Science and Engineering. (2021) 1053. 012027. 10.1088/1757-899X/1053/1/012027
Dahil, Article Investigation of the penetration behavior of silicon dioxide epoxy hybrid nanocomposites, Journal of Composite Materials. 55 (2020) 1-11. 10.1177/0021998320973746
Momot, Effect of Colloidal Silicon Dioxide on the Properties of Building Ceramics, Materials Science Forum. 992 (2020) 173-177. 10.4028/www.scientific.net/MSF.992.173
Kometiani Research on Obtaining Silica Xerogels from Nepheline and Study of some of their Physical and Chemical Properties / Materials Science Forum, 989 (2019) 121-126, doi:10.4028/www.scientific.net/MSF.989.121 [13] X.
Purwono, Synthesis and characterization of mesoporous silica from beach sands as silica source, IOP Conference Series: Materials Science and Engineering. (2021) 1053. 012027. 10.1088/1757-899X/1053/1/012027
Online since: June 2013
Authors: Hong Gu, Hai Yan Hu, Xiao Xiao Feng, Fu Bing Jiang, Xiao Wei Cai, Jin Cheng Ni
It can be known from the knowledge of cantilever beam's bending deformation in the book called ‘Strength of Materials’ that:
According to the knowledge of the book called ‘Strength of Materials’, it is known that the moment of inertia of the equivalent model I is relative to its outer diameter D and its wall thickness.
Fig.7 Cross section of bending model Combined with the flexible characteristic of robot's snake-like body and compared with engineering materials commonly used, the material of mechanical model can be assumed as silica gel, the elastic modulus value E of which is 2.14MPa.
Xie, S, Yan: World Journal of Gastroenterology.
Guturu: World Journal of Gastroenterology.
According to the knowledge of the book called ‘Strength of Materials’, it is known that the moment of inertia of the equivalent model I is relative to its outer diameter D and its wall thickness.
Fig.7 Cross section of bending model Combined with the flexible characteristic of robot's snake-like body and compared with engineering materials commonly used, the material of mechanical model can be assumed as silica gel, the elastic modulus value E of which is 2.14MPa.
Xie, S, Yan: World Journal of Gastroenterology.
Guturu: World Journal of Gastroenterology.
Online since: October 2015
Authors: Noor Azlina Rejab, S. Hassan, M.I. Maksud, M.N. Nodin, Mohd Sallehuddin Yusof
The material has high thermal conductivity too and because it is a two-dimensional material that is almost transparent, it interacts in other interesting and useful ways with light and with other materials.
These experiments establish graphene as the strongest material ever measured, and show that atomically perfect nanoscale materials can be mechanically tested to deformations well beyond the linear regime [12].
Rejab, "An Investigation on Printability of Carbon Nanotube (CNTs) Inks by Flexographic onto Various Substrates," International Journal of Materials Science and Engineering, vol.
Huskens, "Microcontact printing: limitations and achievements," Advanced Materials, vol. 21, pp. 2257-2268, 2009
Maksud, "Exploration of fine lines profile effects in flexographic printing," Applied Mechanics and Materials, vol. 315, pp. 458-462, 2013
These experiments establish graphene as the strongest material ever measured, and show that atomically perfect nanoscale materials can be mechanically tested to deformations well beyond the linear regime [12].
Rejab, "An Investigation on Printability of Carbon Nanotube (CNTs) Inks by Flexographic onto Various Substrates," International Journal of Materials Science and Engineering, vol.
Huskens, "Microcontact printing: limitations and achievements," Advanced Materials, vol. 21, pp. 2257-2268, 2009
Maksud, "Exploration of fine lines profile effects in flexographic printing," Applied Mechanics and Materials, vol. 315, pp. 458-462, 2013
Online since: July 2016
Authors: Ashraf A. Mubarak, Yehia M.S. El Shazly, Mohamed H. El Nemr, Mohamed H. Zaki
Journal of Composite Materials, 2005. 39(8): p. 663-684
Procedia Materials Science, 2014. 6(0): p. 551-556
Materials & Design, 2013. 46(0): p. 264-269
Journal of Applied Polymer Science, 2006. 100(4): p. 3131-3140
Materials & Design, 2014. 63(0): p. 641-649
Procedia Materials Science, 2014. 6(0): p. 551-556
Materials & Design, 2013. 46(0): p. 264-269
Journal of Applied Polymer Science, 2006. 100(4): p. 3131-3140
Materials & Design, 2014. 63(0): p. 641-649
Online since: June 2014
Authors: Jun Yang, Shi Yue Fang
[2]Yang Wei-min, WuShu-ren: Earth Science Frontiers,Vol.14(6)(2007), P.197-204
[3] Li Yan-fu, Wang Zhao-yin: Journal of Sediment Research, Vol. 2(2011), P.1 ~ 7
[6]Xu Gang: Journal of Natural Disasters , Vol.14 (2) (2005),P.70 ~ 74
[8]Wang Shi-ge: Chinese Journal of Geological Hazard and Control, Vol. 10(3)(1999), P.45 ~ 50
[11]Zeng Fan-wei: Geographical Sciences, Vol. 25(2) (2005), P.48 ~ 50.
[3] Li Yan-fu, Wang Zhao-yin: Journal of Sediment Research, Vol. 2(2011), P.1 ~ 7
[6]Xu Gang: Journal of Natural Disasters , Vol.14 (2) (2005),P.70 ~ 74
[8]Wang Shi-ge: Chinese Journal of Geological Hazard and Control, Vol. 10(3)(1999), P.45 ~ 50
[11]Zeng Fan-wei: Geographical Sciences, Vol. 25(2) (2005), P.48 ~ 50.
Online since: June 2012
Authors: Yang Cao, Ning Gu, Ri Ya Jin, Jing Lin Zhang, Shuang Qi Hu
[7] Baochang Zhang, Man Xi, Dewen Zhang, Huixuan Zhang, Baoyan Zhang, Construction and Building Materials, 2009, 23:3112
Lagaly, Applied Clay Science, 2001, 18: 285
[11] Seok Kim a, Soo-Jin Park, Journal of Colloid and Interface Science, 2009, 332:145
[12] Youyi Sun, Xing Zhou, Yaqing Liu, Guizhe Zhao, Yong Jiang , Materials Research Bulletin, 2010, 45:878
Rangari, Shaik Jeelani, Journal of Materials Processing Technology, 2007, 191:347
Lagaly, Applied Clay Science, 2001, 18: 285
[11] Seok Kim a, Soo-Jin Park, Journal of Colloid and Interface Science, 2009, 332:145
[12] Youyi Sun, Xing Zhou, Yaqing Liu, Guizhe Zhao, Yong Jiang , Materials Research Bulletin, 2010, 45:878
Rangari, Shaik Jeelani, Journal of Materials Processing Technology, 2007, 191:347
Online since: April 2011
Authors: Qian Wu, Mei Ling Fu, Juan Yang, Nian Fen Wu, Song Jiang Ma, Fang Wen Li, Hai Wu Jia
Materials and methods
Materials.Crude sepiolites (These were bought in Hunan Among Sepiolite Technology Co.
WangFig.6 waste oil concentration on the effect of adsorption : Journal of Hazardous Materials.
Beall: Applied clay science.
Rajakovic: Journal of Hazardous Materials.
[12] Bo Yuan, Liping Wang, Sulan Hua and Changying Guo: Jiangsu Environmental Science and Technology.
WangFig.6 waste oil concentration on the effect of adsorption : Journal of Hazardous Materials.
Beall: Applied clay science.
Rajakovic: Journal of Hazardous Materials.
[12] Bo Yuan, Liping Wang, Sulan Hua and Changying Guo: Jiangsu Environmental Science and Technology.
Online since: April 2016
Authors: Mohammad Ali Mosaberpanah, Ozgur Eren
Journal of King Saud University-Engineering Sciences, 25(2), 105-112
Journal of Materials in Civil Engineering, 13(6), 427-433
Materials & Design, 52, 957-965
ARPN Journal of Engineering and Applied Sciences, 6(5), 95-109
Asian Journal of Materials Science, 2(1), 1-12
Journal of Materials in Civil Engineering, 13(6), 427-433
Materials & Design, 52, 957-965
ARPN Journal of Engineering and Applied Sciences, 6(5), 95-109
Asian Journal of Materials Science, 2(1), 1-12