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Online since: April 2021
Authors: Ning Bo Liao, Wei Wei, Ke Xu
Computational Method
The whole of calculations have been performed within the CASTEP [14] module in Materials Studio 8.0.
Takeuchi, Chemistry of Materials, 2018, 30, 7535-7544
Jin, ACS applied materials & interfaces, 2018, 10, 28627-28634
Chen, Advanced Engineering Materials, 2019, 1900947
Payne, Zeitschrift für Kristallographie-Crystalline Materials, 2005, 220, 567-570
Takeuchi, Chemistry of Materials, 2018, 30, 7535-7544
Jin, ACS applied materials & interfaces, 2018, 10, 28627-28634
Chen, Advanced Engineering Materials, 2019, 1900947
Payne, Zeitschrift für Kristallographie-Crystalline Materials, 2005, 220, 567-570
Online since: August 2018
Authors: Agus Subagio, Achmad Subhan, Alfin Darari, Istajib Sulton Hakim, Priyono Priyono, Pardoyo Pardoyo
Experimental Method
The materials used in this study were SS foil substrates (MTI, Malaysia), Zinc Acetat Tetrahydrate (Merck, Australia) as electrode material.
Galvanostatic charge discharge curve of (a) CNT/GT, (b) CNT/GT/ZnO-300, (c) CNT/GT/ZnO-350 and (d) CNT/GT/ZnO-400 electrode materials.
Gogotsi, Materials for electrochemical capacitors, Nat.
Seal, Synthesis and characterization of plasma spray formed carbon nanotube reinforced aluminum composite, Journal of Materials Science and Engineering 381 (2004) 249-258
Taer, AC-MnO2-CNT composites for electrodes of electrochemical supercapacitors, Materials Science Forum 827 (2015) 113-118
Galvanostatic charge discharge curve of (a) CNT/GT, (b) CNT/GT/ZnO-300, (c) CNT/GT/ZnO-350 and (d) CNT/GT/ZnO-400 electrode materials.
Gogotsi, Materials for electrochemical capacitors, Nat.
Seal, Synthesis and characterization of plasma spray formed carbon nanotube reinforced aluminum composite, Journal of Materials Science and Engineering 381 (2004) 249-258
Taer, AC-MnO2-CNT composites for electrodes of electrochemical supercapacitors, Materials Science Forum 827 (2015) 113-118
Online since: August 2013
Authors: Hong Zhen Wang, Dong Geng Fu
As a building material should have a certain strength and good durability, at the same time to adapt to the requirements of large-scale industrial production.In the premise of ensuring good thermal resistance, the strength of concrete products of polystyrene foam particles can reach about 0.5Mpa, good compressive impact cracking resistance, low shrinkage, low water absorption, fire retardancy.But also through the composite product formation and other materials to achieve the higher request.
2 Test
2.1 The main raw materials
The raw materials used in the experiment:
(1) The cement: the Shandong jinlucheng cement plant for the production of R?
Research on the optimum proportion and properties of new type building material foam -EPS thermal insulation mortar of 2005.12 [2] Wang Zhengquan, Gong Yanfeng EPS thermal insulation mortar mix proportion test analysis of Journal of building materials eighth volume second 2005 April [3] Peng family benefits, Han Shun, Zhang Jianxin, et al.
Journal of Chongqing Jianzhu University, 2008, 30 (2): 135 - 137 [4] Yin Zhonghai of polystyrene particle and composite silicate insulation materials development and application of [D].
Wuhan: School of materials science and engineering, Wuhan University of Technology, 2001 [5] Zhou Guangsheng spent PS cement mortar performance and application of [J]. architecture technology, 1999, 30 (10):705706
Journal of Henan University of Technology, 2006, 31 (3)
Research on the optimum proportion and properties of new type building material foam -EPS thermal insulation mortar of 2005.12 [2] Wang Zhengquan, Gong Yanfeng EPS thermal insulation mortar mix proportion test analysis of Journal of building materials eighth volume second 2005 April [3] Peng family benefits, Han Shun, Zhang Jianxin, et al.
Journal of Chongqing Jianzhu University, 2008, 30 (2): 135 - 137 [4] Yin Zhonghai of polystyrene particle and composite silicate insulation materials development and application of [D].
Wuhan: School of materials science and engineering, Wuhan University of Technology, 2001 [5] Zhou Guangsheng spent PS cement mortar performance and application of [J]. architecture technology, 1999, 30 (10):705706
Journal of Henan University of Technology, 2006, 31 (3)
Online since: December 2012
Authors: Qing Qiang He, Jun You Zhao, Li Jian Xu, Jia Sun, Cui Cui Li
Journal of Materials Processing Technology, 1996, 56:897-907
Journal of Materials Processing Technology, 1996, 56:908-917
Journal of Materials Processing Technology, 1996, 60:27-33
Journal of Materials Processing Technology, 2005, 167:354-362
Shape rolling of steel rods Computational Materials Science, 2005, 34:377-388
Journal of Materials Processing Technology, 1996, 56:908-917
Journal of Materials Processing Technology, 1996, 60:27-33
Journal of Materials Processing Technology, 2005, 167:354-362
Shape rolling of steel rods Computational Materials Science, 2005, 34:377-388
Online since: August 2016
Authors: Jitka Baďurová, Oldřich Šuba Jr., Soňa Rusnáková, Ladislav Fojtl, Libuše Sýkorová, Oldřich Šuba
Generally, face sheet materials can be divided into two groups; metallic materials - thin plates particularly made of aluminum, steel, and metal alloys, and non-metallic materials - fiber composites (glass, carbon, etc.) with different matrix (polyester, phenol, epoxy, etc.), HPL sheets, plywood and currently extensively used pre-impregnated materials (prepregs).
Conversely, core materials used in sandwich applications can be divided into four main groups, namely metallic and polymer foams, metallic and non-metallic honeycombs, corrugated cores and natural core materials as cork and balsa.
Vinson, The Behavior of Sandwich Structures of Isotropic and Composite Materials, first ed., CRC Press, New York, 1999
Manes, Numerical investigation of a three point bending test on sandwich panels with aluminum skins and Nomex™ honeycomb core, Computational Materials Science. 56 (2012) 69-78
Part I: analytical models and minimum weight design, International Journal of Mechanical Sciences. 46 (2004) 561-583
Conversely, core materials used in sandwich applications can be divided into four main groups, namely metallic and polymer foams, metallic and non-metallic honeycombs, corrugated cores and natural core materials as cork and balsa.
Vinson, The Behavior of Sandwich Structures of Isotropic and Composite Materials, first ed., CRC Press, New York, 1999
Manes, Numerical investigation of a three point bending test on sandwich panels with aluminum skins and Nomex™ honeycomb core, Computational Materials Science. 56 (2012) 69-78
Part I: analytical models and minimum weight design, International Journal of Mechanical Sciences. 46 (2004) 561-583
Online since: December 2012
Authors: Ou Yang Qi, Ou Yang Tao, Wen Sheng Liu
Along with the arrival of the comprehensive cultural age in which natural science is mutually colliding with humanism science, technology and art, thinking in images, and rational thinking, etc.
Concepts of Modern Ceramic Art and Outdoor Environment In essence, modern ceramic art is inheritance, development and innovation of the traditional ceramic art, or creation media which focuses on the ceramic materials.
In comparison with metals, plastics, concrete and other cold materials, soil makes it easier for people to generate a feeling of close relationship.
Moreover, the natural beauty of the texture of soil can never be replaced by any other materials.
Modeling subjective evaluation for fuzzy group decision making, European Journal of Operational Research. 194 (2009) 464–473.
Concepts of Modern Ceramic Art and Outdoor Environment In essence, modern ceramic art is inheritance, development and innovation of the traditional ceramic art, or creation media which focuses on the ceramic materials.
In comparison with metals, plastics, concrete and other cold materials, soil makes it easier for people to generate a feeling of close relationship.
Moreover, the natural beauty of the texture of soil can never be replaced by any other materials.
Modeling subjective evaluation for fuzzy group decision making, European Journal of Operational Research. 194 (2009) 464–473.
Online since: January 2022
Authors: Jayaprakash Murugesan, Hemant Borkar, Arindom Baruah
[18] Mandal S, Rice J, Elmustafa AA, Experimental and numerical investigation of the plunge stage in friction stir welding, 2008, Journal of Materials Processing Technology,203, 411-19
[20] Schmidt H, Hattel JH and Wert J, An analytical model for the heat generation in friction stir welding, 2003, Modelling and Simulation in Materials Science and Engineering ,12 , 143
[25] Mirzae MH, Asadi P, Fazli A, Effect of Tool Pin Profile on Material Flow in Double Shoulder Friction Stir Welding of AZ91 Magnesium Alloy, 2020, International Journal of Mechanical Sciences,183
[29] Darras BM, Khraisheh MK, Abu Farha FK and Omar MA, Friction stir processing of commercial AZ31 magnesium alloy, 2007, Journal of Materials Processing Technology ,191, 77-81
[32] Safari M and Jalal J, Coupled Eulerian-Lagrangian (CEL) Modeling of Material Flow in Dissimilar Friction Stir Welding of Aluminum Alloys, oct 2019, Iranian Journal of Materials Forming, 6, 10-9
[20] Schmidt H, Hattel JH and Wert J, An analytical model for the heat generation in friction stir welding, 2003, Modelling and Simulation in Materials Science and Engineering ,12 , 143
[25] Mirzae MH, Asadi P, Fazli A, Effect of Tool Pin Profile on Material Flow in Double Shoulder Friction Stir Welding of AZ91 Magnesium Alloy, 2020, International Journal of Mechanical Sciences,183
[29] Darras BM, Khraisheh MK, Abu Farha FK and Omar MA, Friction stir processing of commercial AZ31 magnesium alloy, 2007, Journal of Materials Processing Technology ,191, 77-81
[32] Safari M and Jalal J, Coupled Eulerian-Lagrangian (CEL) Modeling of Material Flow in Dissimilar Friction Stir Welding of Aluminum Alloys, oct 2019, Iranian Journal of Materials Forming, 6, 10-9
Online since: October 2002
Authors: N. Marques, J. Paulo Davim
Composite materials have been proposed for biomedical applications [5].
Experimental Materials.
Stone: Journal of Materials Science: Materials in Medecine vol. 11:3 (2000), p. 163
Amstutz, Journal of Biomedical Materials Research, vol. 12 (1978), p. 895
Galante, Journal of Biomedical Materials Research, vol. 12 (1978), p. 317.
Experimental Materials.
Stone: Journal of Materials Science: Materials in Medecine vol. 11:3 (2000), p. 163
Amstutz, Journal of Biomedical Materials Research, vol. 12 (1978), p. 895
Galante, Journal of Biomedical Materials Research, vol. 12 (1978), p. 317.
Online since: January 2024
Authors: S Radhika, C.M. Padma, S. Stefy Silvia Rani
Song, (2008), Journal of Magnetism and Magnetic Materials, 320(21)
Gedanken, (2016), Journal of Materials Science: Materials in Electronics, 27(6)
Naoe, (2001), Journal of Magnetism and Magnetic Materials, 235(1–3)
Morkoc, (2009), In Journal of Materials Science: Materials in Electronics (Vol. 20, Issue 9)
Satyapal, (2020), Journal of Materials Science: Materials in Electronics. doi:10.1007/s10854-020-03454-z [33] R.
Gedanken, (2016), Journal of Materials Science: Materials in Electronics, 27(6)
Naoe, (2001), Journal of Magnetism and Magnetic Materials, 235(1–3)
Morkoc, (2009), In Journal of Materials Science: Materials in Electronics (Vol. 20, Issue 9)
Satyapal, (2020), Journal of Materials Science: Materials in Electronics. doi:10.1007/s10854-020-03454-z [33] R.
Online since: January 2011
Authors: Ling Feng Zhang, Feng Zhang Ren, Yi Xiong, Tian Tian He, Fang Yu Zhang
The microstructure can improve the mechanical properties of materials, such as strength and hardness.
Yu: Journal of Engineering Materials and Technology Vol. 122(2000), p. 104
Lu: Chinese Journal of Materials Research Vol. 20(2006), p. 492
Zhou: Journal of Functional Materials Vol. 11(2006), pp. 1781 [7] Y.K.
Xu: Chinese Journal of Materials Research Vol. 19(2005), p. 561.
Yu: Journal of Engineering Materials and Technology Vol. 122(2000), p. 104
Lu: Chinese Journal of Materials Research Vol. 20(2006), p. 492
Zhou: Journal of Functional Materials Vol. 11(2006), pp. 1781 [7] Y.K.
Xu: Chinese Journal of Materials Research Vol. 19(2005), p. 561.