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Online since: October 2012
Authors: Ping Zhu, Zhao Liu, Qing Hui Ji, Jin Meng
Quasi-static tensile experiments were executed according to GB/T 228-2002 to acquire the materials’ property and results were shown in Table. 1.
Stearns: Materials Science and Engineering A, Vol. 366 (2004) No.2, pp.262–268
Sherwood: Journal of Aircraft, Vol. 32 (1995) No.5, pp.921-928
Mooney: Journal of Applied Physics, Vol. 11 (1940) No.9, pp.582-592
Cui: Journal of Mechanical Strength, Vol. 30 (2008) No.6, pp.998-1002
Stearns: Materials Science and Engineering A, Vol. 366 (2004) No.2, pp.262–268
Sherwood: Journal of Aircraft, Vol. 32 (1995) No.5, pp.921-928
Mooney: Journal of Applied Physics, Vol. 11 (1940) No.9, pp.582-592
Cui: Journal of Mechanical Strength, Vol. 30 (2008) No.6, pp.998-1002
Online since: July 2017
Authors: Bernd-Arno Behrens, Anas Bouguecha, Martin Bonhage, Christian Bonk, Anna Chugreeva, Tim Matthias
In conventional forging production processes, mono-materials are used as semi-finished parts.
Deposition welding is used to deposit materials to resist different loads on the billet.
Figure 5 shows the flow curves of the materials C22 and 41Cr4 at 1200 °C.
Sims, Welded preforms for forging, Journal of Materials Processing Technology 171 (2006) 141-149
Kosch, Development of the heating and forming strategy in compound forging of hybrid steel-aluminium parts, Materials Science and Engineering Technology 42 (2011) 973-978
Deposition welding is used to deposit materials to resist different loads on the billet.
Figure 5 shows the flow curves of the materials C22 and 41Cr4 at 1200 °C.
Sims, Welded preforms for forging, Journal of Materials Processing Technology 171 (2006) 141-149
Kosch, Development of the heating and forming strategy in compound forging of hybrid steel-aluminium parts, Materials Science and Engineering Technology 42 (2011) 973-978
Online since: October 2014
Authors: Tatacipta Dirgantara, Leonardo Gunawan, Ichsan Setya Putra, Agustinus Dimas, Annisa Jusuf
Material Property
Mild steel St37, a strain rate sensitive material, was chosen as material in this study with Young’s Modulus (E) = 200 GPa, Yield Stress (σys) = 0.25 GPa, Poisson’s ratio (ν) = 0.30, Density (ρ) = 7.83x10-6 kg/mm3, and Power Law Exponent (n) = 0.12.
Putra, Low Velocity Impact Analyses of Primatic Columns using Finite Element Method, Key Engineering Materials, 462-463:1308-1313, 2011
Putra, Experimental Study on Axial Impact Loading of Foam Filled Aluminum Columns, Journal of KONES Power Train and Transport, 20(2):150-157, 2013
White and Norman Jones, Experimental Quasi-static Axial Crushing of Top-hat and Double-hat Thin-walled Sections, International Journal of Mechanical Sciences, 41:179-208, 1999
International Journal of Solids and Structures, 45:6205-6219, 2008
Putra, Low Velocity Impact Analyses of Primatic Columns using Finite Element Method, Key Engineering Materials, 462-463:1308-1313, 2011
Putra, Experimental Study on Axial Impact Loading of Foam Filled Aluminum Columns, Journal of KONES Power Train and Transport, 20(2):150-157, 2013
White and Norman Jones, Experimental Quasi-static Axial Crushing of Top-hat and Double-hat Thin-walled Sections, International Journal of Mechanical Sciences, 41:179-208, 1999
International Journal of Solids and Structures, 45:6205-6219, 2008
Online since: February 2011
Authors: Jun Bo Liu, Li Mei Wang, Jun Sheng Jiang
Chromium powder, iron powder, colloid graphite powders were selected as the submerged-arc Welding powder materials.
In situ: Journal of Materials Processing Technology.
Wei, et al: Rare Metal Materials and Engineering, Vol. 36(3) (2007), p. 688 [7] S.L.
Li: Applied Surface Science, Vol. 255 (2009), p. 4921 [9] X.
Hayashi, N.Ohno:Journal of Nuclear Materials, Vol.10. (1998), p.961 [13] Ni X.H., Q.H.
In situ: Journal of Materials Processing Technology.
Wei, et al: Rare Metal Materials and Engineering, Vol. 36(3) (2007), p. 688 [7] S.L.
Li: Applied Surface Science, Vol. 255 (2009), p. 4921 [9] X.
Hayashi, N.Ohno:Journal of Nuclear Materials, Vol.10. (1998), p.961 [13] Ni X.H., Q.H.
Online since: August 2006
Authors: Guan Jun Qiao, Zhi Hao Jin, Jun Min Qian
The microstructure and
characteristics for this series of materials were determined and compared.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 233 [4] G.J.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 175 [6] T.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 197 [7] K.
Okabe, et al.: Journal of Porous Materials, Vol. 6(1999), p. 255 [9] T.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 233 [4] G.J.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 175 [6] T.
Okabe, et al.: Journal of Porous Materials, Vol.6(1999), p. 197 [7] K.
Okabe, et al.: Journal of Porous Materials, Vol. 6(1999), p. 255 [9] T.
Online since: October 2011
Authors: Zheng Chen, Lu Feng Yang, Qing Ge Feng, Qin Gao, Yi Wang
Experimental
Materials.
These materials were used to prepare concrete (water/binder ratio: 32.5%; fly ash replacement ratio: 0, 30, 50 and 70%; sand ratio: 40%), and the mix proportions of concrete are presented in Table 2.
Zhang: Journal of the Chinese Ceramic Society Vol. 35 (2007), p. 801 (in Chinese) [7] C.
Hazrati: Advanced Cement Based Materials Vol. 6 (1997), p. 28 [9] L.
Chen: Journal of the Chinese Ceramic Society Vol. 34 (2006), p. 47 (in Chinese) [12] Z.
These materials were used to prepare concrete (water/binder ratio: 32.5%; fly ash replacement ratio: 0, 30, 50 and 70%; sand ratio: 40%), and the mix proportions of concrete are presented in Table 2.
Zhang: Journal of the Chinese Ceramic Society Vol. 35 (2007), p. 801 (in Chinese) [7] C.
Hazrati: Advanced Cement Based Materials Vol. 6 (1997), p. 28 [9] L.
Chen: Journal of the Chinese Ceramic Society Vol. 34 (2006), p. 47 (in Chinese) [12] Z.
Online since: November 2010
Authors: Yi Min Deng, Li Yong Hu, Di Zheng, Jian Ming Zhan
With the appearance of smart materials, the electrorheological fluids (ERF) which possess field-dependent Bingham characteristics have been employed in the tension control system.
Fu: Chinese Journal of Scientific Instrument, Vol. 21 (2000) No. 4, pp. 407-408 (In Chinese)
Huang: Xi'an University of Science & Technology Journal, Vol. 19 (1999) No. 2, pp. 173-175 (In Chinese)
Guo: Materials Science and Engineering A, Vol. 371 (2004), pp. 9-15
Guo: A Master Degree Thesis of Huazhong University of Science and Technology (China 2004).
Fu: Chinese Journal of Scientific Instrument, Vol. 21 (2000) No. 4, pp. 407-408 (In Chinese)
Huang: Xi'an University of Science & Technology Journal, Vol. 19 (1999) No. 2, pp. 173-175 (In Chinese)
Guo: Materials Science and Engineering A, Vol. 371 (2004), pp. 9-15
Guo: A Master Degree Thesis of Huazhong University of Science and Technology (China 2004).
Online since: October 2011
Authors: Yan Fang Hou, Wei Bing Hu
Features and parameters selection of historic timber structures
Features of timber and structure.Wood and brick are the main materials of chinese ancient buildings,which using wood frame as the main mode and having a complete system of wood components.Unlike concrete,steel and other materials,wood as a non-homogeneous, anisotropic natural polymer organic material,it is very different from other materials on the mechanical properties.For example, the mechanical properties of wood having a great degree change due to different moisture content and species.In the course of thousands years,the surrounding environment including biological, physical,chemical and other external factors,causing the physical properties of wood to decay and the changes in each mechanical properties are vary for different species[6].
(Natural Science Edition), Vol.41 No.4 Aug.2009,p.512-571.In Chinese
[3] Zhichun Yang,Xiaojuan Dang,Guanghui Tan:Journal of Vibration and Shock,Vol.27 No.11 2008, p: 17-21.In Chinese
[4] Zhefeng Yu,Zhichun Yang:Mechanical Science and Technology,Vol.25 No.1 January 2006, p:24-27.In Chinese
[5] Zhefeng Yu,Zhichun Yang:Journal of Vibration and Shock.Vol.25 No.3 2006,p:77-120.In Chinese
(Natural Science Edition), Vol.41 No.4 Aug.2009,p.512-571.In Chinese
[3] Zhichun Yang,Xiaojuan Dang,Guanghui Tan:Journal of Vibration and Shock,Vol.27 No.11 2008, p: 17-21.In Chinese
[4] Zhefeng Yu,Zhichun Yang:Mechanical Science and Technology,Vol.25 No.1 January 2006, p:24-27.In Chinese
[5] Zhefeng Yu,Zhichun Yang:Journal of Vibration and Shock.Vol.25 No.3 2006,p:77-120.In Chinese
Online since: October 2023
Authors: Gracia M. Bruscas-Bellido, Sergio Benavent-Nácher, Jose V. Abellán-Nebot, Julio Serrano, Pedro Rosado-Castellano
As a continuation of the work carried out, the authors plan to extend the work to the evaluation of prior knowledge in the field of physics and materials science, which are also required in the teaching of manufacturing engineering subjects.
Experience gained within the framework of the Wikifabricación project In Materials Science Forum. 759 (2013) 73-82.
In IOP Conference Series: Materials Science and Engineering, 1193 (2021) 012118.
Research in Science Teaching. 46(2009) 357-383
Key Engineering Materials. 615 (2014) 183-188
Experience gained within the framework of the Wikifabricación project In Materials Science Forum. 759 (2013) 73-82.
In IOP Conference Series: Materials Science and Engineering, 1193 (2021) 012118.
Research in Science Teaching. 46(2009) 357-383
Key Engineering Materials. 615 (2014) 183-188
Online since: February 2016
Authors: Sergey A. Shanin, Olga N. Kryukova, Anna G. Knyazeva
Introduction
Carbide and nitride compounds and corresponding solid solutions attract the attention as promising materials for optoelectronics, microwave, high temperature and high-energy electronics.
Aluminum nitride is one of the promising coating materials, because it is dielectric and has low dielectric loss tangent and a thermal expansion coefficient equal to that of silicon [1].
Zhu TiN coating of tool steels: a review Journal of Materials Processing Technology, 39 (1993), p. 165
Zhao Friction and wear properties of TiN, TiAlN, AlTiN and CrAlN PVD nitride coatings International Journal of Refractory Metals and Hard Materials, 31 (2012), p. 82
Psakhie Thermodynamics of the activated state of materials, Journal of Applied Mechanics and Technical Physics. 50/1 (2009) 118–126.
Aluminum nitride is one of the promising coating materials, because it is dielectric and has low dielectric loss tangent and a thermal expansion coefficient equal to that of silicon [1].
Zhu TiN coating of tool steels: a review Journal of Materials Processing Technology, 39 (1993), p. 165
Zhao Friction and wear properties of TiN, TiAlN, AlTiN and CrAlN PVD nitride coatings International Journal of Refractory Metals and Hard Materials, 31 (2012), p. 82
Psakhie Thermodynamics of the activated state of materials, Journal of Applied Mechanics and Technical Physics. 50/1 (2009) 118–126.