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Abstrakty
A method to model the tensile properties of cylindrical nanoclusters is proposed. The isothermal size effect, appearing in the static simple tension test and in the dynamic process of uniaxial stretching, is discussed. A numerical simulation of this effect is presented.
Czasopismo
Rocznik
Tom
Strony
9--22
Opis fizyczny
Bibliogr. 16 poz., wykr.
Twórcy
autor
- Institute of Fundamental Technological Research, Polish Academy of Sciences, Świętokrzyska 21, 00-049 Warszawa, Poland
Bibliografia
- 1. Y. IMRY, Introduction to mesoscopic physics, Oxford University Press, New York 2002.
- 2. M. ROUKES, Nanophysics, Sci. Am., Special Issue (Nanotech), September, 42-49, 2001.
- 3. A. TRZĘSOWSKI, 4, 339-350, 2003. On the quasi-solid state of solid nanoclusters, Journal of Technical Physics, 44, 4, 339-350, 2003.
- 4. A. TRZĘSOWSKI, Tensility and compressibility of axially symmetric nanoclusters I: Simplified modelling, Journal of Technical Physics, 45, 2, 2004.
- 5. L.A. SANTALO, Integral geometry and geometric probability, Addison-Wesley, London 1976.
- 6. M. BRACK, Metallic clusters and magic numbers, Sci. Amer. (Polish edition), No. 2(78), 34-39, 1998.
- 7. J.G. MURPHY, G. A. ROGERSON, A method to model simple tension experiments, Int. J. Eng. Sci., 40, 499-510, 2002.
- 8. A. TRZĘSOWSKI, On liquid-like response of the size-effect body, Bull. Ac. Polon. Sci., Sci. Tech., 28, 7-8, 127-133, 1980.
- 9. A. TRZĘSOWSKI, Nanomaterial clusters as macroscopically small size-effect bodies (Part I and II), Arch. Mech., 52, 155-197, 2000.
- 10. A. BLINOWSKI, A. TRZĘSOWSKI, Surface energy in liquids and the Hadwiger integral theorem, Arch. Mech., 33, 133-146, 1981.
- 11. C. KOCH, Bulk behavior of nanostructured materials, [in:] Nanostructure science and technology, R.W. SIEGEL, E. Hu, M.C. Roco [Eds.J, Kluwer Academic Publishers, Dordrecht 1999.
- 12. L.I. TRUSOW,. V.G. GRYNOW, Highly dispersed systems and nanocrystals, Nanostruc. Mat., 1, 251-254, 1992.
- 13. R.W. SIEGEL, Creating nanophase materials, Sci. Amer., 275, 42-47, 1996.
- 14. D.M. Cox, High surface area materials [in:] Nanostructure science and technology, R.W. SIEGEL, E. Hu, M.C. Roco [Eds.j, Kluwer Academic Publishers, Dordrecht 1999.
- 15. C. TRUESDELL, Rational thermodynamics, McGraw-Hill, New York 1969.
- 16. A. TRZĘSOWSKI, On constrained size-effect bodies, Arch. Mech., 36, 185-193, 1984.
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-article-BAT5-0005-0016