Vibration Damping Properties of Nanotube-Reinforced Materials

Article Preview

Abstract:

Energy dissipation (damping) in structures/materials at the nanoscale level, the damping/ dynamics of materials require investigations before they will come to advanced engineering applications. By invoking the properties of nanostructures, it may be possible to enhance the energy dissipation. The paper therefore presents some preliminary results on the topic providing route map to the nanotechnology-based vibration damping solutions and comparison of some experimental damping behavior of nanoparticle-reinforced polymeric structures.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

31-36

Citation:

Online since:

October 2006

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2006 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] T.R. Chung: Journal of Materials Science Vol. 36 (2001), p.5733.

Google Scholar

[2] C.E. Harris, M.J. Shuart, and R. Hugh: Survey of Emerging Materials for Revolutionary Aerospace Vehicle Structures (NASA Langley Res. Center, USA 2002).

Google Scholar

[3] R. DeBatist, J. de Physique (Paris), Colloque C9 Vol. 44(12) (1983), p.39.

Google Scholar

[4] A. Kelly, Proceedings of the UK Royal Society A Vol. 344 (1970), p.287.

Google Scholar

[5] C. Ru: Encyclopedia of nanoscience and nanotechnology (Amer. Scientif. Publ., USA, 2003).

Google Scholar

[6] P.F. Harris: Carbon Nanotubes and Structures (Cambridge Univ. Press, Cambridge, 1999).

Google Scholar

[7] T. Talay: Systems Analysis of Nanotube Technology (NASA, Wash., D.C., USA 2000). 0 1 2 3 4 5 6 7 vol. % dUU K.

Google Scholar

[8] N. Koratkar, B. Wei, P.M. Ajayan, Compos. Sci. Technol. Vol. 63 (2003), p.1525.

Google Scholar

[9] N. Koratkar, Ajayan P.M. Adv. Mater. Vol. 14(13-14) (2002), p.997.

Google Scholar

[10] J. Suhr, L. Schadler, P. Ajayan and N. Koratkar, in Proc. of 46th AIAA/ASME/ASCE/ AHS/ ASC Struct., Dynamics & Materials Conf., 18 - 21 April 2005, Austin, Texas, USA.

DOI: 10.2514/6.2005-1925

Google Scholar

[11] N. Koratkar, B.Q. Wei and P.M. Ajayan, in Proceedings of 43rd AIAA/ASME/ASCE/ AHS/ ASC Struct., Dynamics and Materials Conf., 22-25 April 2002, Denver, Colorado, USA.

DOI: 10.2514/6.2002-1519

Google Scholar

[12] C.A. Coopera: Compos. Sci. and Technol. Vol. 62 (2002), p.1105.

Google Scholar

[13] P.M. Ajayan, L.S. Schadler, C. Giannaris: Adv. Mater. Vol. 12(10) (2000), p.750.

Google Scholar

[14] Z. Zhang, B. Wei, G. Ramanath, P.M. Ajayan: Appl. Phys. Letters Vol. 77 (2000), p.3764.

Google Scholar

[15] B. Wei, Z. Zhang, G. Ramanath, P.M. Ajayan: Appl. Phys. Letters Vol. 77 (2000), p.2985.

Google Scholar

[16] X. Zhou, E. Shin, K.W. Wang, C.E. Bakis: Compos. Sci. Technol. Vol. 71 (2004), p.1825.

Google Scholar

[17] S. Peeterbroeck: Compos. Sci. Technol. Vol. 68 (2004), p.1627.

Google Scholar

[18] F.H. Gojny: Chemical Physics Letters Vol. 370 (2003), p.820.

Google Scholar

[19] F.H. Gojny: Compos. Sci. and Technol. Vol. 64 (2004), p.2363.

Google Scholar

[20] E.C. Botelhoa: Comp. Sci. and Technol. Vol. 63 (2003), p.1843.

Google Scholar

[21] S.B. Sinnott: J. Nanosci. Nanotechnol. Vol. 2(2) (2002), p.113.

Google Scholar

[22] C. Hepburn: Polyurethane elastomers, (sec. ed. ) (Elsevier Applied Science, London, 2001).

Google Scholar

[23] L.H. Sperling: Polymeric multicomponent materials (Wiley, New York, USA 1997).

Google Scholar

[24] E.M. Terentjev and Warner M.: The European Physical Journal E Vol. 4 (2001), p.343.

Google Scholar

[25] M.V. Kireitseu, S.G. Yerakhavets, V. L. Basenuk, V. Belotserkovski: in Proceedings of the SAMPE 34th Conference. Affordable Materials Technology - Platform to Global Value and Performance, Long Beach CA, May 12 - 16, 2002, pp.360-376.

Google Scholar

[26] B. Bhushan: Handbook of Nanotechnology (Springer-Verlag, New York, USA 2004).

Google Scholar

[27] N. Carrere, F. Lardillier, M.H. Vidal-Setif, R. Valle: Mater. Sci. Technol. 19 (2003), p.669.

Google Scholar

[28] J.H. Gu, X.N. Zhang, M.Y. Gu: Mater. Lett. Vol. 58 (2004), p. (1952).

Google Scholar

[29] M. Kireitseu, G. Tomlinson, J. Rongong, L. Bochkareva: in Proceedings of 10 th Int. -l Conf. on Numerical Methods in Continuum Mechanics NMCM, Žilina, Slovak Republic (2005), p.43.

Google Scholar

[30] M.V. Kireitseu, I. Nemerenco, A. Fedaravichus: in Proceedings of Annual meeting of the Materials Research Society, December 2-6, 2002, Boston, MA, USA, vol. 740 (2002), p.223.

Google Scholar

[31] M.V. Kireitseu: Journal of Thermal Spray Technology Vol. 12 (4) (2003), p.586.

Google Scholar

[32] Y. Favstov, L. Zhuravel, L. Kochetkova: Metal Sci. & Heat Treatment Vol. 45 (2003), p.16.

Google Scholar

[33] Y. Deming, Y. Xinfang, P. Jin, Journal of Material Science Letters Vol. 12 (1993), p.252.

Google Scholar

[34] D.M. Wilson: ASM Engineered Materials Handbook, (ASm Int. -l, USA 2001).

Google Scholar

[35] S. Patsias, C. Saxton, M. Shipton, Materials Sc. and Eng. A Vol. 370 (2004), p.412.

Google Scholar

[36] M. Istomin, M.V. Kireitseu, S.G. Yerakhavets, M. Belotserkovski, A. Fedaravichus: in Proceedings of the SAMPE 34 th Conference: Affordable Materials Technology - Platform to Global Value and Performance, Long Beach CA, ISSU 47; Book 2 (2002).

Google Scholar