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Online since: April 2016
Authors: Xiao Dong Kong, Xue Rong Qian
Cheng: China Materials Development, Vol. 33 (2014) No.2, p.106.
Saidman: Materials Chemistry and Physics, (2012), p.103
Shi: Journal of Material Heat Treatment, Vol. 31 (2010) No.8, p.30.
Scantlebury: Materials Science Forum, Vols. 192-194 (1995), p.623
Chen: Journal of Materials and Metallurgy, Vol. 11 (2012) No.2, p.123.
Online since: November 2012
Authors: Zhen Yu Wang, Jin Fan Zhang, Jian Qun Jiang
, it has surpassed over conventional constructional materials and widely spread as mainstreams in many fields of constructional engineering[2] W.J.
Li: Journal of Constructional Steel Research, Vol. 46 (1998) No.1–3, p.400. .
Tan: Journal of Constructional Steel Research, Vol. 70 (2012) p.1. 5].
All of those material properties were taken from test data reported by the authors[18] Y.J.
Acknowledgements The work described in this paper was supported by the grants from the National Natural Science Foundation of China (Project No.51179171, No.51079127).
Online since: July 2017
Authors: Luiz Gustavo Martins Vieira, Marcos A.S. Barrozo, Yanne Novais Kyriakidis, S.M. Gonçalves
Barrozo: Canadian Journal of Chemical Engineering Vol. 89 (2011), p. 655
Damasceno: Materials Science Forum Vol. 416 (2003), p. 317
Barrozo: Materials Science Forum Vols. 591–593 (2008), p. 341
Barrozo: Brazilian Journal of Chemical Engineering Vol. 26 (2009), p. 575
Barrozo: Materials Science Forum Vols 660-661 (2010), p. 525
Online since: January 2012
Authors: You Qian Huang, Wan Zhen Wang, Ke Ting Tong, Wei Tao Wang
According to test results of materials, the following material properties are adopted for steel: , ; , , , .
Acknowledgements This research was sponsored by Chinese Natural Science Foundation (Grant No. 50808098), Ningbo Natural Science Foundation (Grant No. 2010A610082) and Ningbo University Science Foundation.
Murty, in: Journal of engineering mechanics.
[3] Li Liming, Chen Yiyi, Li Ning, Cai Yuchun, Journal of Jilin University.
Wang, Fatigue & Fracture of Engineering Materials & Structures.
Online since: March 2013
Authors: Ze Kun Feng, Zhong Yan Chen, Yuan Zhou, Fu Chen
Proper use of SiO2 as a sintering aid improves the materials properties of the M-type ferrites [8] had been studied intensively, and simultaneous addition of CaO and SiO2 was shown to be very beneficial in tailoring a dense microstructure with relatively small grains [9].
The high-purity reagent grade raw materials SrCO3, Fe2O3, La2O3 and Co3O4 were weighed in the composition ratio of Sr: La: Co: Fe=1-x: x: x: 2n-x, where n=5.8 and the substituted amount x varied from 0 to 0.4 in increments of 0.1.
Mixtures of these materials were wet-mixed by a planetary ball mill in water for 0.5 hour.
Journal of Magnetism and Magnetic Materials. (2004), 272–276 [8] Tsang.
Shiau, The role of silica in sintering barium ferrite, Journal Of Materials Science Letters.(1989), 8:1386-1388 [9] J.
Online since: January 2012
Authors: Shi Jie Dong, Ping Luo, Zhang Qiang Mei, Zhi Xiong Xie
Zhou, Materials Science & Technology, (2005), p59 [2] Z.S.
Shan, Ordnance Material Science and Engineering, Vol.25 (2002) No.6, p.29 (in Chinese) [6] C.K.
Xie, Journal of Hubei Automotive Industries Vol.18 (2004) No.2, p.30 (in Chinese) [7] C.
Chrysanthou: Journal of the European Ceramic Society, 28 (2008), p.1697 [9] Z.
J. of Materials and Product Tech, Vol. 2(1987) No.1, p.64 [12] S.
Online since: December 2011
Authors: Guo Shun Jiang, Chang Fei Zhu, Da Chen Wang, Qin Yang Du, Wei Feng Liu, Xin Yi Li
Growth of Cu2ZnSnS4 thin films by sulfurization of co-sputtered metallic precursors Xinyi LI, Dacheng WANG, Qinyang DU, Weifeng LIU, Guoshun JIANG, Changfei ZHU* CAS Key Laboratory of Materials for Energy Conversion, Chinese Academy of Sciences, Hefei, Anhui 230026, P.
Department of Materials Science and Engineering, University of Science and Technology of China, Hefei, Anhui 230026, P.
Jimbo, et al., "Cu2ZnSnS4-type thin film solar cells using abundant materials," Thin Solid Films, vol. 515, pp. 5997-5999, May 31 2007
Kumar, et al., "Effect of copper salt and thiourea concentrations on the formation of Cu2ZnSnS4 thin films by spray pyrolysis," Physica Status Solidi a-Applications and Materials Science, vol. 207, pp. 149-156, Jan 2010
Todorov, et al., "High-Efficiency Solar Cell with Earth-Abundant Liquid-Processed Absorber," Advanced Materials, vol. 22, pp.
Online since: April 2014
Authors: Hai Bin Pan, Jian Ning Ding, Guang Gui Cheng, Bao Guo Cao
Introduction Sheet resistance and resistivity are the most important electrical characteristics of thin films, and they are widely used to characterize materials made by semiconductor doping, metal deposition, resistive paste printing, and glass coating.
Acknowledgment This work was partly supported by the National Natural Science Foundation of China (51005103/E0505), and the Science & Technology Support Program of Jiangsu Province’s Science and Technology Office (BE2009123).
Geerts , A laboratory on the four-point probe technique, American Journal of Physics (2004) 149-153
Van Langenhove, The Van Der Pauw method for sheet resistance measurements of polypyrrole coated woven fabrics, Journal of Applied Polymer Science 117 (2010) 2553-2558
Perloff, Four-Point Probe Correction Factors for Use in Measuring Large Diameter Doped Semiconductor Wafers, Journal of the Electrochemical Society: Solid-State Science and Technology (1976) 1745-1748
Online since: September 2016
Authors: Arnaud Castel, Mahdi Babaee
Industrial waste materials such as fly ash and blast furnace slag are commonly used as the source of aluminosilicate for the manufacture of GPC due to the low cost and wide availability of these materials.
Journal of Materials in Civil Engineering, 22(5):525-532
Conf. on Sustainable Construction Materials and Technologies, pp.1493-1504
Corrosion Science, 52(9):2878-2890
Construction and Building Materials, 10(5): 315–328
Online since: December 2018
Authors: Naren Vivekanandan, M. Ganesh, D. Srinivasan
Journal of Materials Research and Technology, 4(4), 434-445
Procedia Materials Science, 5, 908-917
(eds) Aerospace Materials and Material Technologies.
Journal of Materials Processing Technology, 142(3), 738-743
Materials & Design, 47, 456-464