Application of Composite Materials in Modern Constructions

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The paper presents the general review of application of composite materials including the distinction of their specific features. Also short overview of history of composite materials is conducted. The major subject is the explanation, what is advantage of the composites over traditional materials. Additionally, a lot of examples demonstrate in which areas of current industry they are applied.

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119-129

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February 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Herakovich C.T., Mechanics of composites: A historical review, Mechanics Research Communications 41 (2012) 1– 20.

Google Scholar

[2] Chawla N., Chawla K.K., Metal Matrix Composites. Springer Science and Business Media, USA (2006).

Google Scholar

[3] Evans A., Marchi C.S., Mortensen A., Metal Matrix Composites in Industry, Kluwer Academic Publishers, Dordrecht, (2003).

Google Scholar

[4] Kainer K.U. (Eds. ), Metal Matrix Composites. Custom-made Materials for Automotive and Aerospace Engineering, WILEY-VCH Verlag, Weinheim, (2006).

DOI: 10.1080/10426910701884301

Google Scholar

[5] Rawal S.P., Metal-matrix composites for space applications, JOM Journal of The Minerals, Metals, and Materials Society, vol. 53, № 4 (2001), 14-17.

Google Scholar

[6] Cantor B., Dunne F., Stone I. (Eds. ), Metal and Ceramic Matrix Composites, IOP Publishing Ltd (2004).

Google Scholar

[7] Edwards K.L., An overview of the technology of fibre-reinforced plastics for design purposes, J. Materials and Design 19 (1998), 1-10.

DOI: 10.1016/s0261-3069(98)00007-7

Google Scholar

[8] Information on http: /petroiran. blogfa. com.

Google Scholar

[9] Information on http: /www. ret-monitor. com.

Google Scholar

[10] Koczak M. J, Khatri S.C., Allison J.E., Bader M., Metal-Matrix Composites for Ground Vehicle, Aerospace, and Industrial Applications, in: S. Suresh, A. Mortensen, A. Needleman (Eds. ), Fundamentals of Metal Matrix Composites, Butterworth-Heinemann, Stoneham, USA, (1993).

DOI: 10.1016/b978-0-08-052371-2.50020-1

Google Scholar

[11] Evans A., March C., Mortensen A., Metal Matrix Composites in industry, Kluwer Academic Publishers, USA, (2003).

Google Scholar

[12] Kainer K.U. (Ed. ), Metal Matrix Composites. Custom-made Materials for Automotive and Aerospace Engineering, Viley-Vch Verlag GmbH&Co., Germany (2006).

DOI: 10.1080/10426910701884301

Google Scholar

[13] Cantor B., Dune F., Stone I. (Eds. ), Metal and Ceramic Matrix Composites, Institute of Physics Publishing Bristol and Philadelphia, (2004).

Google Scholar

[14] Krenkel W. (Edt), Ceramic Matrix Composites: Fiber Reinforced Ceramics and their Applications, Wiley, John & Sons, Germany (2008).

Google Scholar

[15] Richerson D.W. Industrial Applications of Ceramic Matrix Composites, in: A. Kelly and C. Zweben (Eds. ), Comprehensive Composite Materials, Elsevier, 2000, vol. 6, p.549–570.

DOI: 10.1016/b0-08-042993-9/00133-9

Google Scholar

[16] Schmidta S., Beyera S., Knabeb H., Immicha H., Meistringc R., Gesslerc A., Advanced ceramic matrix composite materials for current and future propulsion technology applications, Acta Astronautica 55 (2004) 409 – 420.

DOI: 10.1016/j.actaastro.2004.05.052

Google Scholar

[17] Sommers A., Wang Q., Han X., T'Joen C., Parkd Y., Jacobi A., Ceramics and ceramic matrix composites for heat exchangers in advanced thermal systems: A review, Applied Thermal Engineering 30 (2010) 1277-1291.

DOI: 10.1016/j.applthermaleng.2010.02.018

Google Scholar

[18] Wang Z., Donga S., Hea P., Gaoa L., Zhoua H., Yang J., Jiang D., Fabrication of carbon fiber reinforced ceramic matrix composites with improved oxidation resistance using boron as active filler, Journal of the European Ceramic Society 30 (2010).

DOI: 10.1016/j.jeurceramsoc.2009.09.015

Google Scholar

[19] Kaya H., The application of ceramic-matrix composites to the automotive ceramic gas turbine, Composites Science and Technology 59 (1999) 861-872.

DOI: 10.1016/s0266-3538(99)00016-0

Google Scholar

[20] Glass D. E., Ceramic Matrix Composite (CMC) Thermal Protection Systems (TPS) and Hot Structures for Hypersonic Vehicles, 15th AIAA Space Planes and Hypersonic Systems and Technologies Conference, Dayton, USA, (2008).

DOI: 10.2514/6.2008-2682

Google Scholar

[21] Information on http: /cs. astrium. eads. net.

Google Scholar

[22] Information on http: /www. sae. org.

Google Scholar

[23] Summerscales J., Dissanayake N.P.J., Virk A.S., Hall W., A review of bast fibres and their composites. Part 1 – Fibres as reinforcements, Composites: Part A 41 (2010) 1329–1335.

DOI: 10.1016/j.compositesa.2010.06.001

Google Scholar

[24] Summerscales J., Dissanayake N.P.J., Virk A.S., Hall W., A review of bast fibres and their composites. Part 2 – Composites, Composites: Part A 41 (2010) 1336–1344.

DOI: 10.1016/j.compositesa.2010.05.020

Google Scholar

[25] Ku H., Wang H., Pattarachaiyakoop N., Trada M., A review on the tensile properties of natural fiber reinforced polymer composites, Composites: Part B 42 (2011) 856–873.

DOI: 10.1016/j.compositesb.2011.01.010

Google Scholar

[26] Li Yan, Mai Yiu-Wing, Ye Lin, Sisal fibre and its composites: a review of recent developments, Composites Science and Technology 60 (2000) 2037-(2055).

DOI: 10.1016/s0266-3538(00)00101-9

Google Scholar

[27] Bledzki A.K., Gassan J., Composites reinforced with cellulose based fibres. Progress in Polymer Scicience 24 (1999) 221–274.

DOI: 10.1016/s0079-6700(98)00018-5

Google Scholar

[28] Windhorst T., Blount G., Carbon-carbon composites: a summary of recent developments and applications, Materials and Design, Vol. 18, № 1 (1997) pp.11-15.

DOI: 10.1016/s0261-3069(97)00024-1

Google Scholar

[29] Sogabe T., Nakajima K., Inagaki M., Effect of boron-doping on structure and some properties of carbon-carbon composite, Journal of Material Science Volume 31, № 24 (1996) 6469-6476.

DOI: 10.1007/bf00356250

Google Scholar

[30] Lackey W.J., Encyclopedia of Materials: Science and Technology, Carbon–Carbon Composites, Georgia Institute of Technology, Atlanta, Georgia USA (2001) 952–966.

DOI: 10.1016/b0-08-043152-6/00180-7

Google Scholar

[31] Jeong E., Kim J., Cho S.H., Kim J., Han I.S., Lee Y.S., New application of layered silicates for carbon fiber reinforced carbon composites, Journal of Industrial and Engineering Chemistry 17 (2011) 191–197.

DOI: 10.1016/j.jiec.2011.02.032

Google Scholar

[32] Manocha L.M., High performance carbon–carbon composites. Sadhana Vol. 28, Parts 1 & 2, February/April (2003) 349–358.

DOI: 10.1007/bf02717143

Google Scholar

[33] Walker J.D., Grosch D.J., SwRI ballistics tests help investigators determine the cause of Columbia loss, Southwest Research Institute, the Fall 2003 issue of Technology Today.

Google Scholar

[34] Information on http: /www. boeing. com.

Google Scholar