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Online since: July 2012
Authors: Wei Ye, Yu Bin Tang, Fang Yan Chen
Experimental Materials and Method Materials.
Denizli: Journal of Hazardous Materials, Vol. 106, Issue 6(2004), p. 93 [3] J.
Wang: Journal of Environmental Science, Vol. 22, Issue 4(2010), p. 486 [8] Y.Bulut, G.
Serhatli: Journal of Hazardous Materials, Vol. 171, Issue 6 (2009), p. 717 [9] W.S.
Aydın: Journal of Hazardous Material, Vol. 144, Issue 1-2(2007), p. 300
Online since: April 2023
Authors: Chang Ning LI, Shao Hua Yin
Materials Science Forum, 1991, 34:421-425
Journal of Materials Science, 1985, 20 (11):3976-3982
Materials Science & Technology, 2007 (3):366-369
Computational Materials Science, 2012, 53: 251-257
Journal of Materials Engineering,1999(3)
Online since: January 2017
Authors: Ji Gang Wang, Yong Zhi Yu
Fabrication of g-C3N4 Microspheres without Template via Microwave Heating Method Yong-zhi Yu1, Ji-gang Wang1,2,a* 1Jiangsu Key Laboratory of Advanced Metallic Materials, School of Materials Science and Engineering, Southeast University, Nanjing, 211189, P.
Journal of Materials Chemistry, 2008, 18(41): 4893-4908
Nature materials, 2009, 8(1): 76-80
Materials Science and Engineering: B, 2010, 175(2): 95-99
Journal of Materials Chemistry C, 2014, 2(39): 8212-8215
Online since: December 2012
Authors: Hai Ping Yu, Chun Feng Li, Zhi Dan Xu, Jun Jia Cui
An Investigation of the Mechanical Properties of Materials Very High Rates of Loading.
Journal of Materials Processing Technology, 2005, (12):385-391
Journal of Materials Processing Technology, 2004, 26(15):1889-1892
M., and Liu, G., A modified Johnson-Cook model for tensile behaviors of typical high-strength alloy steel, Materials Science and Engineering, 2010, 527: 6980-6986
Journal of Materials Processing Technology, 2008: 301-305
Online since: May 2011
Authors: Hai Yan Sun, Ai Min Gong, Yu Lin Peng
Experimental Materials.
Marks: Nanoscale characterization of cementitious materials, ACI Materials Journal, March-April(2008), p 174-180
Karabelas: Effect of roughness on energy of repulsion between colloidal surfaces, Journal of Colloid and Interface Science, 171(1995), p 187-199
Papadopoulos: A method for modeling the interactions of parallel flat plates systems with surface feature, Journal of Colloid and Interface Science, 142(1991), p 331-342
Spalla: Adhesion between colloidal silica as seen with direct force measurement, Journal of Colloid and Interface Science, 188 (1997), p 234-237
Online since: July 2012
Authors: Che Mohd Ruzaidi Ghazali, H. Kamarudin, A.M. Mustafa Al Bakri, Luqman Musa, C.Y. Heah, Y.M. Liew, Ismail Khairul Nizar, M. Binhussain
Australian Journal of Basic and Applied Sciences, 2011. 5(7): p. 1026-1035
Australian Journal of Basic and Applied Sciences, 2011. 5(9): p. 441-449
Journal of Materials Science, 2007. 42(3): p. 729-746
Journal of materials reseach, 2003. 18(No. 11)
Journal of Material Sciences, 2007. 42: p. 2934-2943
Online since: August 2017
Authors: De Hong Huo, Amin Dadgari, David Swailes
Journal of Materials Processing Technology, 1996. 62(4): p. 327-330
Journal of materials processing technology, 1995. 49(3): p. 387-398
Materials and Manufacturing Processes, 2010. 25(10): p. 1115-1119
Journal of Manufacturing Science and Engineering, 2015. 138(5): p. 051010-051010
International Journal of Mechanical Sciences, 2009. 51(7): p. 541-546.
Online since: September 2015
Authors: Akira Ueno, Tatsuo Sakai, Akiyoshi Sakaida, Yan Bin Zhang, Shoichi Kikuchi, Yoshihiko Yokoyama
Masumoto, The deformation of amorphous palladium-20at.% silicon, Materials Science and Engineering, 9 (1972) 153-162
Pampillo, Flaw and fracture in amorphous alloys, Journal of the Materials Science, Vol.10 (1975), 194-227
Ito, A study on tensile strength distribution and its temperature dependence for amorphous alloy ribbons, Journal of the Society of Materials Science, Japan, 47 (1998) 1210-1215
Masumoto, Production of Al-based amorphous steels with large thickness by a supper cooled liquid-quenching method, Journal of Materials Science Letters, 10 (1991) 289-291
Nakai et al., Strength and Fracture of Materials, Chapter 4, the Society of Materials Science, Japan, Kyoto, 2005
Online since: August 2012
Authors: Lian Xi Chen, Jie Li, Cai Bin Jiao, Zhong Ming Zhang
This work was also partly supported by Center for Material Research and Analysis of Wuhan University of Technology.
Materials Research Bulletin, vol.46, 2011, pp.2064-2069
Journal of Colloid and Interface Science, vol. 26, 1968, pp. 62-69
Journal of Colloid and Interface Science, vol.142, 1991, pp.1-18
Journal of sol-gel science and thchnology, vol. 2, 2002, pp.183-189 [7] JW Yoo, DS Yun, HJ Kim, Influence of reaction parameters on size and shape of silica nanoparticles.
Online since: September 2018
Authors: Kamel Fedaoui, RACHID BENBOUTA, Karim Arar, Salah Mansouri
Materials and Experimental Procedures The physical properties of materials used in this investigation are presented in Table 1.
Sample Composition %wt %wt Sn %wt Co 1 Cu-5 % Sn 5 - 2 Cu-10 % Sn 10 - 3 Cu-12 % Sn 12 - 4 Cu-5 % Co - 5 5 Cu-10 % Co - 10 6 Cu-12 % Co - 12 Three materials are used in the manufacture of samples: copper, tin and cobalt (Fig.1).
Acharya, Effect of probe pressure during dilatometric studies on sintering of copper-tin bronzes, Journal of metals science letters, 18, 9, 681- 683, 1999
Angel, Effect of copper on the mechanical properties of alloys formed by powder metallurgy, Materials and Design, 58, 12-18, 2014
M.A.: The sintering temperature effect on the shrinkage behavior of cobalt chromium alloy, American Journal of Applied Sciences, 7, 1443-1448, 2010.
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