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Online since: January 2012
Authors: Yang Luo, Man Li, Zhi Yong Jia, Yang Fei Zhang, Shu-Lin Bai
Besides, the Transmitted Polarization Microscope (TPM, Olympus BX51) was used to observe the microstructure of the materials.
Koning, Advanced Materials, , Vol.16 (2004), p. 248-251 [10] T.
Yumura, Advanced Materials, Vol. 14 (2002), p. 1380-1383 [11] Y.
PKuhn, Journal of Polymer Science, Part B: Polymer Physics, Vol.35 (1997), p. 2219-2231 [12] T.
Trivedi, Journal of Applied Polymer Science, Vol. 112 (2009), p. 2073–2086
Online since: September 2003
Authors: Lian Meng Zhang, X.M. Cheng, Xia Wan Wu, T.Q. Chen
Experimental The experimental materials were SiO2 (vitreous silica) and industrial-pure aluminum with a purity of 0.99.
References [1] Noboru Y, Atsushi K and Shoji T: Materials Transactions, JIM, Vol. 41 No.3 (2000), p. 399
[2] William C and Harrigan J: Materials Science and Engineering, A 244 (1998), p. 75
Shen: Chinese Journal of Materials Research, Vol. 9 No.5 (1995), p. 473
Huang: Materials Science & Engineering, Vol. 15 No.1 (1997), p. 6
Online since: July 2011
Authors: Rui Vilar, Edson Costa Santos
Materials Science and Engineering, 1970. 6(4): p. 213-247
Metallurgical and Materials Transactions A-Physical Metallurgy and Materials Science, 2000. 31(11): p. 2877-2886
Journal of Materials Science, 1993. 28: p. 4775-4780
Materials Science Forum, 2004. 455: p. 132-136
Journal of Materials Science, 2002. 37: p. 3521-3532.
Online since: May 2015
Authors: Shun Fa Hwang, Yi Lung Lin, Yuder Chen
Introduction Composite materials have the characteristics of high modulus/weight and strength/weight ratios, excellent fatigue properties, and noncorroding behavior.
These advantages encourage the extensive application of composite materials, for example, in sports and aerospace.
In addition, the complex mechanical behavior of composite materials makes their design problem more difficulty.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Clem: submitted to Journal of Materials Research (2003) [36] I.K.
Online since: January 2014
Authors: Maria Virginia Gelfuso, André Silva Chaves, Daniel Thomazini, Thalita Gonçalves Berti, Olívia de Andrade Raponi
Thermoelectric materials are able to generate an electric potential when subjected to a temperature gradient.
Thermoelectric materials are those which when subjected to a temperature gradient, can generate an electric potential (DDP).
Wang: Journal of Materials Science Vol. 46 (2011), p. 5278
Singh: Nature Materials Vol. 11 (2012), p. 233
Lin: Journal of Materials Research Vol. 10 (1995), p. 2052
Online since: September 2016
Authors: Evgeniy V. Ageev, A.Y. Altukhov, S.S. Gulidin
Materials and methods For producing a powder from a solid alloy wastes by the electroerosion dispersing unit for EED of conductive materials, developed by the authors [10 – 11], and the ball-bearing steel wastes are used.
Bibik, Forecasting of hard-alloyed cutting tool resistance based on thermal diffusivity, Materials Science Forum. 762 (2013) 777-781
Murty, Nanocomposites and an extremely hard nanocrystalline intermetallic of al-fe alloys prepared by mechanical alloying, Materials Science and Engineering: A. 527 (2010) 2370-2378
Horyakova, Preparation of Copper Electroerosion Nanopowders from Waste of Aquatic Medium and its Validation by Physicochemical Methods, Applied Mechanics and Materials. 770 (2015) 23-27
Novikov, Electroerosive Powder Obtained from Alloy VK8 Waste into Butanol, Journal of nano- and electronic physics. 7 (2015) 04080(3).
Online since: July 2015
Authors: Hui Juan Yang, Yun Hua Luo, Laura Targownik, Andrew Goertzen, William D. Leslie
Materials and Methods The ability of an engineering beam to withstand loadingis generally described by the bending stiffness (Kb), axial stiffness (Ka), shear stiffness (Ks), and torsional stiffness (Kt).
Journal of Biomechanics, 40:1745 – 1753, 2007
Journal of Biomechanics, 31(2):125 – 133, 1997
Journal of Biomechanics, 33:1325 – 1330, 2000
Journal of Biomechanics, 27:1159–1168, 1994
Online since: February 2011
Authors: Xiao Feng Yang, Xing Ping Wen
The UHI phenomenon is generally considered as being caused by a reduction in latent heat flux and an increase in sensible heat in urban areas as vegetated and evaporating soil surfaces are replaced by relatively impervious low albedo paving and building materials [4].
Materials and methods The Study Area.
Acknowledgment This study was jointly supported by the NSFC of Yunnan province, China (KKSA200921019), Scientific Research Foundation of Kunming University of Science and Technology (KKZ3200821048), China Postdoctoral Science Foundation (20100471687) and the innovation team of ore-forming dynamics and prediction of concealed deposits, Kunming University of Science and Technology, Kunming, China.
Manley: On the frequency of snowfall in metropolitan England, Quarterly Journal of the Royal Meteorological Society, vol. 84 (1958), pp. 70-72
Streutker: A remote sensing study of the urban heat island of Houston, Texas, International Journal of Remote Sensing, vol. 23 (2002), pp. 2595-2608
Online since: July 2014
Authors: K.R. Kiron, K. Kannan
The other reason includes non-availability of sufficient raw materials and the problems faced while importing the raw materials.
Also the supply of raw material should be streamlined.
”, Journal of South Asian Development, Vol 5:1, pp 1-13 (2010) [4] F.
”, Journal of South Asian Development, Vol 8:3, pp 385-408 (2013) [8] V.V.
Bhattacharya, “Internationalisation of R&D and Global nature of innovation: Emerging trends in India” , Science, Technology and Society, Vol. 17:2, pp 165-199 (2012) [9] J.
Online since: December 2013
Authors: Jaafar Hidayani
Dielectric materials and the size of resonator can give a great impact to the f.
High purity of raw materials BaCO3, ZnO and Ta2O5 were weighted and mixed stoichiometrically with zirconia ball for 3 hours and calcined at 1150°C for 1 hour.
Even though the coarse grain materials generally give the result in porous bodies, too fine grain materials are also expected to show a similar result.
Sebastian (2008) Dielectric Materials for Wireless Communication.
Journal Material Science. 10.1007/s10854-009-9995 (2009) [10] M.