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Online since: September 2013
Authors: Guang Chun Yao, Hua Shen, He Liang, Wei Dong Yang, Chuan Sheng Wang
S., Recent development in aluminium alloys for aerospace applications, Materials Science and Engineering A, 2000, 280: 102-107 [2]Miller W.
De., Haszler A., and Vieregge A., Recent development in aluminium alloys for the automotive industry, Materials Science and Engineering A, 2000, 280:37-49 [3]Kaibyshev R., Musin F., Lesuer D.
G., and Katgerman L., Fracture behavior and mechanical properties of high strength aluminum alloys in the as-cast condition , Materials Science and Engineering A ,2008, 497:186-194 [12]Okamoto H., Al-Re(Aluminum-Rhenium), Journal of Phase Equilibria and Diffusion, 2009,30:208-209 [13]Huang W., and Chang Y.
A., A Thermodynamic Analysis of the Al-Re System, Journal of Phase Equilibria,1998,19(4):361-366 [14]Zou H.H., Zeng X.Q., Zhai C.Q., and Ding W.J., The effects of yttrium element on microstructure and mechanical properties of Mg–5wt.% Zn–2wt.% Al alloy, Materials Science and Engineering A ,2005,402:142-148 [15]Zeng X.Q., Zou H.H., Zhai C.Q., and Ding W.J., Research on dynamic precipitation behavior of pre-solution treated Mg–5wt.% Zn–2wt.% Al(–2wt.
%Y) alloy during creep, Materials Science and Engineering A , 2006, 424:40-46
Online since: June 2010
Authors: Yue Sun, Sheng Ling Xiao, Li Li Yang
References [1] Zhao-Dan, Ma Chunyan: Wood composite materials.
Shanghai building materials (2002)
[2] Hao Yua kai, Xiao Jiayu:High-performance composite materials science.
[6] Ouyang Guoen, Ou Guorong:Composite Materials Testing Technology.
Journal of Composite Materials(2001).
Online since: September 2003
Authors: Yi Wang Bao, L. Sun
Fracture Behavior of Brittle Materials under Complex Loads L.
Bao 2 1 Beijing University of Technology, Beijing 100024,China 2 China Building Materials Academy, Beijing 100024, China Keywords: Inclined crack, Complex stress, Fracture, Brittle materials Abstract.
When the angle is greater than 20 degree, the equivalent method would overestimate the fracture resistance of materials.
Garcia: International Journal of Fracture, Vol. 80 (1996), p. 165
Mencik: Strength and Fracture of Glass and Ceramics (Elsevier Science Publishing, 1992).
Online since: February 2014
Authors: Song Li Liu, Jun Yi Xiang
It can be directly used as welding-rod coatings, a raw materials for chlorination process to produce titanium dioxide pigments or sponge materials, and so on.
This process enjoys more favourable economics and consume small amounts of reagents, but only use high grade ores as a raw materials can manufacture high quality synthetic rutile.
Becher process presently enjoys more favourable economics and generates less waste materials.
Acknowledgements This work was financially supported by the SiChuan province Natural Science Foundation (2010JY0112), Innovation Program of Panzhihua Municipal Science Technology Commission (2010CY-G-9).
[16] WANG Yun-hua: Materials Review.
Online since: May 2019
Authors: Esther Kiruba Jebakumar, Neelima Gubba
In India egg was used as binding, strengthening as well as finishing materials.
This mixture is used on materials like wood, stone and even metal.
It proves that the eggshell is suitable to use as the stabilizing materials and it also can improve the strength of the soil.
References [1] Traditional Construction for a Sustainable Future:Carole Ryan 1st Edition ISBN-13: 978-0415467575 [2] “Effect of common salt on some engineering properties of eggshell stabilized Laterite soil”, APRN Journal of Engineering and applied sciences.
Duggal: Building Materials, ISBN-13: 978-8122433791 [12] Percy Brown: Indian Architecture (Islamic Period), ISBN-13: 978-1446509364 [13] Kushala Satyanarayana: Mix Eggs, lime, herbs and voila!
Online since: July 2011
Authors: Karl Micallef, Arash Soleiman-Fallah, Paul T. Curtis, Daniel J. Pope, Luke A. Louca
Introduction The use of composite materials is widely increasing in applications due to a number of advantages over other materials.
References [1] Jones, R., 1999, Mechanics of composite materials, Taylor & Francis Inc
G. , 2004, "Strain rate effects on the mechanical properties of polymer composite materials," Journal of Applied Polymer Science, 94, pp. 296–301
J., 2007, "Investigation of strain-rate effects in self-reinforced polypropylene composites," Journal of Composite Materials, 41(20), pp. 2457-2470
-M., Werner, B.T., Fenner, J.S., "Mechanical behaviour and failure criteria of comosite materials under static and dynamic loading," Proc. 50th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference.
Online since: July 2010
Erb received his M.A.Sc. (1978) and Ph.D. (1980) in Materials Science from the University of the Saarland (Germany).
He currently is Professor in the Department of Materials Science and Engineering at the University of Toronto.
Presently Advisor/Consultant in Materials Science.
He is currently working as an associate professor at School of Materials Science and Engineering, The University of New South Wales.
Presently, he is working as an Assistant Professor in Materials Research Centre, Indian Institute of Science, India.
Online since: May 2020
Authors: Fedor Vashkevich, Vladimir Zhuravel, Dmytro Laukhin, Mykhailo Spilnyk, Alexey Zagorodni
Scientific works Construction, materials science, mechanical engineering, (58), 351-352
Science and Technology of Zirconia, (3), 25
Construction, materials science, engineering.
Journal, (4)
Aviation materials and technologies, 3(52). 22-26
Online since: January 2013
Authors: Milan Brandt, Qian Chu Liu, Shou Jin Sun, Martin Leary, S. Feih, Joe Elambasseril
Kruth, Micro-CT-based improvement of geometrical and mechanical controllability of selective laser melted Ti6Al4V porous structures, Materials Science and Engineering.
Leyens, Morphology, microstructure, and hardness of titanium (Ti-6Al-4V) blocks deposited by wire-feed additive layer manufacturing (ALM), Materials Science and Engineering.
Fraser, Effects of process variables and size-scale on solidification microstructure in beam-based fabrication of bulky 3D structures, Materials Science and Engineering.
Semiatin, Microstructure and texture evolution during solidification processing of Ti–6Al–4V, Journal of Materials Processing Technology. 135 (2003) 330-339
Smith, An investigation into the compressive properties of stainless steel micro-lattice structures, Journal of Sandwich Structures and Materials. 13 (2011) 303-329
Online since: November 2011
Authors: Jun Wang
Test materials are the commonly used Q125, V140, V150 high grade casing in deep wells in the western oil fields deep.
Test equipments that are needed in studying the high temperature strength and deformation of metal materials should include the loading system, heating and temperature control systems, data measurement and recording systems.
References [1] Gao Baokui, and Gao Deli, “Calculation Method and its Application of Testing Pipe Axial Force under High Temperature and Pressure”, Journal of University of Petroleum (Nautral Science), vol 26, pp. 39–41, October 2002
[5] Lu Lijun, Feng Shaobo and Zhang Bo, “Casing Strength Design Study of Heavy Oil Thermal Recovery Well”, Oil and Gas Journal (Journal of Jianghan Petroleum Institute), vol 31, pp. 364–366, May 2009
“New time-independent formulation for creep damage in polycrystalline metals and its specialisation to high alloy steel for high-temperature applications”, Materials Science and Engineering, vol 510, pp.214-218, June 2009
Showing 7641 to 7650 of 97193 items