Model for Time-Dependent Stress and Strain Analysis of Layered Composite Element

Article Preview

Abstract:

The authors have proposed a relatively simple and convenient method for engineering purposes that allows one to simulate time-dependent viscoelastic properties of a multilayered composite element subjected to loading along layer joints. The method proposed is found to be of a good coincidence in comparison with the known analytical solution of a two-layered composite element. Numerical analysis is also performed adopting the model proposed for the deformational response of reinforced concrete elements.

You might also be interested in these eBooks

Info:

Periodical:

Solid State Phenomena (Volume 113)

Pages:

571-576

Citation:

Online since:

June 2006

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2006 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] J. M. Illston and P. L. J. Domone: Construction Materials: Their nature and behavior (Spon Press, London 2001).

Google Scholar

[2] R. M. Christensen: Mechanics of Composite Materials (John Wiley & Soon, New York 1979).

Google Scholar

[3] V. V. Vasiliev, E. V. Morozov: Mechanics and analysis of composite materials (Elsevier, Amsterdam 2001).

Google Scholar

[4] R. M. Jones: Mechanics of composite materials (Taylor & Francis, Philadelphia 1999).

Google Scholar

[5] J. D. Lazič, V.B. Lazič: Cement and Concrete research Vol. 14 (1984), p.819.

Google Scholar

[6] M. L. Boubakar, L. Vang, F. Trivaudey and D. Perreux: Composite Structures Vol. 60, No. 3 (2003), p.275.

DOI: 10.1016/s0263-8223(03)00012-6

Google Scholar

[7] D. Zabulionis: Prediction of cracking of external layers of laminated walls by taking into account thermal and moisture deformations (PhD thesis, Vilnius Gediminas Technical University 2003) (in Lithuanian).

Google Scholar

[8] P. M. Ogibalov, V. A. Lomakin and B. P. Kishkin: Mechanic of the polymers (MGU, Moscow 1975) (in Russian).

Google Scholar

[9] Eurocode 2 (EC2): Design of concrete structures - Part 1: General rules and rules for buildings. European prestandard ENV 1992-1-1 (European committee for standardization, Brussels 2001).

Google Scholar

[10] V. A. Chernoyarov: Experimental Investigation of losses of prestress in uniaxial prestressed reinforced concrete members (Plain and Reinforced Concrete Research, Stroiizdat, Moscow 1974), pp.20-25 (in Russian).

Google Scholar

[11] R. Balevičius, E. Dulinskas: Determination of Linear Creep Characteristics for concrete (Civil Engineering, Vol. VI, No 2, 2000), p.87.

DOI: 10.1080/13921525.2000.10531571

Google Scholar