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Online since: December 2014
Authors: Yuan Zhang, Jian Wang, Li Li Zhou, Chang Zhen Fan
[5] N.G.Cui, P.Wang: Journal of Astronautics, Vol. 28 (2007), pp. 49-53
[6] Y.Ma: China Academy of Sciences Center for space science and applied research, 2006, pp. 25-32
Chong and Y.Ming: Applied Mechanics and Materials,2013, pp. 490-493 [8] R.Z.Zhu, H.F.Wang and Y.J.Xu: Manned Spaceflight, Vol. 20 (2012), pp. 8-17
[9] Z.Y.Qin: Journal of Dynamics and Control, Vol. 4 (2006), pp. 294-298
[10] C.L.Zhang: Journal of Changchun University of Science and Technology(Natural Science Edition), Vol. 35 (2012), pp. 31-32.
Online since: August 2013
Authors: Hui Jie Liu, Li Zhou
Zielinski: Journal of Materials Processing Technology Vol. 109 (2001), p. 206 [5] O.N.
Olson: Materials Science and Engineering A Vol. 289 (2000), p. 41 [8] D.
Froes: Materials Science and Engineering A Vol. 280 (2000), p. 220 [9] F.H.
Li: Materials Science and Engineering A Vol. 500 (2009), p. 1 [11] T.K.
Froes: Materials Science and Engineering A Vol. 359 (2003), p. 137 [14] H.
Online since: December 2015
Authors: Mohamad Hafiz Mohd Wahid, Rozana Mohd Dahan, Muhamad Naiman Sarip, Adillah Nurashikin Arshad, Mohamad Rusop Mahmood
Materials and Method Materials.
Advanced Materials Research, 2013. 626: p. 311-316
Journal of Membrane Science, 2009. 345(1-2): p. 13-20
Journal of Polymer Science Part B: Polymer Physics, 1994. 32(5): p. 859-870
Journal of Applied Polymer Science, 2006. 100(4): p. 3272-3279
Online since: August 2013
Authors: Kun Tian, Qi Bin Liang, Yun Gen Liu
Materials and methods Materials.
Honeycomb cinder is one kind of porous materials after coal combustion in high temperature furnace, which indicates higher specific surface area and excellent adsorption capacity.
Zheng and Zh.Zhang: Journal of Yunnan University (Natural Sciences), Vol. 20(1998), p. 589-592 (in Chinese) [2] L.P.
Lou: Journal of Hazardous Materials, Volume 168(2009), p. 331-337 [8] S.
Liao: Journal of Hazardous Materials, Vol. 190 (2011), p. 553-558 [11] Chinese EPA: Methods for Water and Wastewater Analysis, third ed.
Online since: July 2014
Authors: S.A. Kori, V. Auradi, Madev Nagaral
Materials and Design, Vol.17, No.2 (1996), 63-67
Materials and Design 50 (2013), 597-605
Satish: Graphite particles reinforced ZA-27 alloy composite materials for journal bearing applications.
Materials and Design 31 (2010), 1200-1207
Materials and Design, Vol.17, No.1, (1996), 27-32
Online since: May 2014
Authors: Xiong Zhu Bu, Chao Xiang, Jing Yu, Ke Yu Qi
Most materials of projectile are the ferromagnetic material.
When projectile exists in geomagnetic field, these ferromagnetic materials are magnetized by geomagnetic.
Magnetization characteristic of ferromagnetic materials is shown in Fig.1.
Journal of Astronautic, 2009, 30(4): 1314-1319
Journal of Nanjing University of Science and Technology (Natural Science), 2010, 34(5): 608-612.
Online since: June 2012
Authors: Zhou Chen, Lin Lin Xiang, Nian Ping Li, Xue Wen Chen
Experimental Method The production of experimental test materials.
Journal of Safety and Environment. 2008, Vol.8, No.6
Building Science. 2005, Vol.21, No.4
Heat and mass transfer in porous building materials: a review , HV&AC. 2004, Vol.34, No.11
Review on Study for Capillary Absorption of Porous Building Materials, Journal of Water Resources and Architectural Engineering. 2010, Vol.8, No.6
Online since: February 2014
Authors: Zhe Shi, Ying Dong Yang, Lei Gao, Gui Fang Zhang
Experiments on Effect of Red Mud-based Slag on Distribution of Sulfur in Liquid Iron Guifang Zhang 1,a,Yingdong Yang 2,b, Zhe Shi 1,c,Lei Gao1,d 1 Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology, Kunming, China, 650093 2 Department of Materials Science and Engineering, University of Toronto,Toronto,Ontario,Canada,M5S 3E4 azgf@kmust.edu.cn, b yd.yang@utoronto.ca, czheshi5@hotmail.com, Keywords: Red Mud-based Slag, Distribution of Sulfur , Steelmaking refining agent Abstract.
Having a basic flux is more ideal desulfurization from red mud materials.
Wang:The Open Materials Science Journal Vol .5( 2011), p. 9 [2] Y., Yang, I.D.
:Science of the Total Environment Vol.(2012), p. 253 [5] X.
Wang: The Open Materials Science Journal Vol. 5(2011), p. 9 [6] S.
Online since: November 2012
Authors: Bai Xi Liu, Tao Gong
It not only can apply for vibration compaction work between various different materials, but also realize the same material’s compaction at different compaction stages.
Acknowledgements This project is supported by National Natural Science Foundation of China (Grant No. 50905151) and Hunan Provincial Natural Science Foundation of China(Grant No. 08C869).
References [1] S.A.Billing:Journal of Sound and Vibration,Vol. 323 (2009),p.352
(In Chinese) [3] Z.W.Sun, X.L.Wei and Q.Wang: China Journal of Highway and Transport,Vol.2 (1998),p.117.
Lin : Chinese Journal of Mechanical Engineering, Vol. 9(2007),p.30.
Online since: December 2011
Authors: Satish Kumar Shekhawat, Indradev Samajdar, Partha Biswas, P.S. Kannaki, V. Deshmukh, S.S. Sahay, Eric M. Johnson, Mohamad El-Zein
References [1] Osamu Umezawa and Kotobu Nagai ,Deformation Structure and Subsurface Fatigue crack,Generation in Austenitic Steels at Low Temperature, metallurgical and materials transactions a, volume 29a, march 1998—809 [2] H.
Ghanem,Effect of Near-Surface Residual Stress and Microstructure Modification From Machining on the Fatigue Endurance of a Tool Steel, Journal of Materials Engineering and Performance, Volume 11(6) December 2002—631 [6] K.
Shiozawa,Effect of Non-Metallic Inclusion Size and Residual Stresses on Gigacycle Fatigue Properties in High Strength Steel , Advanced Materials Research Vols. 44-46 (2008) pp 33-42 [7] C.
Kanchanomai ,Effect of Residual Stress on Fatigue Failure of Carbonitrided Low-Carbon Steel, MEPEG (2008) 17:879–887 [8] Duyi Ye,Effects of low-cycle fatigue on static mechanical properties, microstructures and fracture behavior of 304 stainless steel, Materials Science and Engineering A 527 (2010) 4092–4102 [9]Kenan Genel, Effect of case depth on fatigue performance of AISI 8620 carburized steel, International Journal of Fatigue 21 (1999) 207–212 [10]B.A.
Limtrakarn, Effect of Residual Stress on Fatigue Failure of Carbonitrided Low-Carbon Steel, Journal of Materials Engineering and Performance, Volume 17(6) December 2008—879 [12] A.
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