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Online since: August 2019
Authors: N. Maniselvam, R. Sasikumar, P. Murugesan, Chandru Manivannan, M.S. Santhosh
Introduction Space engineering needs lightweight materials, such as carbon fiber composites aluminium and titanium alloys in order to reduce weight and fuel consumption.
Such materials may be used independently or in combined, i.e. as hybrid materials.
S, Sasikumar R, Influences of Aluminium / E-Glass Volume Fraction on Flexural and Impact Behaviour of GLARE Hybrid Composites, Journal of Engineering Sciences, Volume 6, Issue 1, 2019.
Journal of Minerals & Materials Characterization & Engineering, 2010, Vol. 9, No.7, pp.643-652
Tensile and Flexure Behavior, Composite Science and Technology, 1999, Vol.59, 1331–1339
Online since: December 2011
Authors: Yong Ying Du, Yu Guo, Yu Ning Wang, Ming Ang Yin
References [1] Steel materials and heat treatment process.
[3] Y.Y.Du, Ch.H.Li, Y.P.Ma, Journal of Agricultural Mechanization Research. (3):120-123,(2006)
Journal of Agricultural Engineering Research. 32(2):185-193 (2003)
[6] Rezaee,A; Najafizadeh,A; kermanpur,A; Moallemi,M; Materials&design,32(9):4437-4442 (2011)
Indian journal of engineering and materials sciences 18:125-136 (2011)
Online since: March 2017
Authors: Adrian Alexandru Şerbănoiu, Costel Cadere, Catalina Mihaela Helepciuc, Marinela Barbuta
The wastes are investigated as materials for obtaining new concretes with different applications.
A lot of types of wastes resulted as by-products, such as silica fume [1,2,3], fly ash [4,5,6], ground granulated blast furnace [7,8] , slag [9] or resulted from natural rocks (quarry wastes) [10,11] are used in building material industry for obtaining new materials or for improving the characteristics of the existing ones.
Materials The polymer concrete was obtained with epoxy resin type Ropoxid, a Romanian product which in combination with hardener type Romamid was the binder of the aggregates.
Bucur-Agroecology, Chapter 3, Wastes in Building Materials Industry, INTECH, Croatia, ISBN 978-953-51-2130-5 (2015) 81-99
Venkata Reddy, Mix Design of High Performance Concrete Using Silica Fume and Superplasticizer, International Journal of Innovative Research in Science, Engineering and Technology 3(3) (2014) 10735–10743
Online since: March 2014
Authors: Cheng Li Dong, Hui Chen Yu, Ying Li
Smith, International Journal of Mechanical Sciences, 40 (1998)937-948
Yuan, Materials Science and Engineering A, 560 (2013)47-53
Hu, Materials Science and Engineering A, (527)2010 5383-5390
Sahm, Materials Science and Engineering A, 178 (1994) 299-303
Yue, Materials Science and Engineering A, 492 (2008) 413-418
Online since: September 2019
Authors: Anatoly P. Surzhikov, Alexander S. Bagdasaryan, Alexander I. Yurin, Alexey F. Belyanin, Sergey A. Bagdasaryan
O’Dwyer, Artificial opal photonic crystals and inverse opal structures – fundamentals and applications from optics to energy storage, Journal of materials chemistry C 3(24) (2015) 6109-6143, DOI: 10.1039/c5tc01083g
Kuznetsov, Three-dimensional nanocomposite metal dielectric materials on the basis of opal matrices, Russian journal of general chemistry 83(11) (2013) 2148-2158, DOI: 10.1134/S1070363213110340
Bagdasaryan, Nanostructures carbon materials in emission electronics, Russian Technological Journal 5(3) (2017) 22‒40 (in Russian)
Sanchez-Dehesa, Face centered cubic photonic bandgap materials based on opal-semiconductor composites, Journal of lightwave technology 17(11) (1999) 1975-1981, DOI: 10.1109/50.802983
Osipov, Development of an acoustoelectric method for determining the porosity of dielectric materials, Russian Journal of Nondestructive Testing 43(2) (2007) 95-99, doi: 10.1134/S1061830907020040
Online since: October 2013
Authors: Xiang Gou, Wen Yong Liu, Lian Sheng Liu, Zi Fang Wang, Guang Yang, Jin Xiang Wu, En Yu Wang, Kai Zhang
Carbon catalyst, using carbon materials as support, is widely used due to its high specific surface area, good chemical stability, high thermal conductivity, and high ability of adsorption.
Si: Progress in Natural Science: Materials International, Vol.22(2012), p265 [9] Y.J.
Fu: Journal of Colloid and Interface Science, Vol.368 (2012), p406 [12] A.
Qiu: Journal of Hazardous Materials, Vol.192(2011), p915 [29] S.L.
Zhu: New Chemical Materials, Vol.37 (2009), p23 (In Chinese) [31] J.
Online since: February 2011
Authors: Chang He Li, Ling Yun Qi, Hua Yang Zhao
Thus, it can achieve high-performance machining on brittle materials and materials difficult to machine; (4).Low abrasive force and high machining precision.
ASME Journal of Manufacturing Science and Engineering, Vol.123(2001), p. 185~190 [3] H.H.Zhao, B.F.Feng, G.Q.Cai.
Key Engineering Materials, Vols.259-260 (2004), p.302-306 [4] Huang H, Liu T C.
International Journal of Machine Tools & Manufacture, Vol.43 (2003), p. 811-823 [5] C.
Xiu: Key Engineering Materials Vols.375-376(2008), p. 449-453
Online since: July 2014
Authors: Mohd Halim Irwan Ibrahim, M. Ibrahim, Nasuha Sa'ude, N.M.A. Isa
Experimental Methods Materials ABS material density was 1.03 g/cm3 and melting temperature 266 ºC.
Bohn, FDM Systems and local adaptive slicing, J.of Materials and Design, 20, 1999, 77-82
Song, Development of new metal/polymer materials for Rapid Tooling using Fused Deposition Modeling, J.of Materials and Design, 25, 2004, 587-594
Ibrahim, Mechanical Properties of Highly Filled Iron-ABS Composites in Injection Molding for FDM wire Filament, Materials Science Forum Vols. 773-774 (2014) pp 456-461
Science 1950; 5: 514
Online since: August 2012
Authors: Severino Jackson Guedes de Lima, Tibério Andrade Passos, Fernando Luís Vieira de Sousa, Pedro Cordeiro Romio
Because of this, these materials have been object of study of many researchers in the last few years.
The main properties of quasicrystalline materials are low friction, high wear resistance and high hardness.
This is because these materials present an unusual combination of physical properties.
Dubois: Materials Science and Engineering Vol. 294-296 (2000), p. 4
France: EDP Sciences. (1998).
Online since: April 2014
Authors: Xiao Lan Cai, Lei Zhou, Feng Yi, Zheng Li, Ming Jun Yu, Cui Hu
Computational Materials Science, 2010, 49: S239–S241 ].
Journal of Materials Science: Materials in Electronics, 2011, 22 (3): 315-322. ].
Recently, CNTs/Cu composite became a kind of good functional materials with high application potential.
Materials Science and Engineering: A, 2006, 430(1): 27-33. ].
Progress in materials science, 2001, 46 (1): 1-184. ], plasma atomization[[] Tsantrizos P G, Entezarian M.