Conference Paper

Analysis of Temperature Change Effect on Dissipation of Energy in Functionally Graded Beams

Volume: 23 September 30, 2023
  • Victor Rizov
EN

Analysis of Temperature Change Effect on Dissipation of Energy in Functionally Graded Beams

Abstract

In this paper, an analysis of the energy dissipation in functionally graded beam structures of viscoelastic behaviour under bending is presented with considering the effects of temperature change. There is an obvious need of carrying-out of such analyses because very often various load-bearing beam structures made of functionally graded viscoelastic materials are exposed to temperature changes simultaneously with external mechanical loading during their lifetime. Rheological model with one spring and two viscous components is used for treating the beam viscoelastic behaviour. The energy dissipation analysis accounts for the temperature change by correcting the time-dependent modulus of elasticity. A parametric study is performed. The general trend of the results obtained is that the dissipated energy decreases when the temperature increases.

Keywords

References

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  2. Gandra, J., Miranda, R., Vilaça, P., Velhinho, A., & Teixeira, J.P. (2011). Functionally graded materials produced by friction stir processing. Journal of Materials Processing Technology, 211, 1659-1668.
  3. Gururaja Udupa, Shrikantha Rao, S., & Rao Gangadharan, K. (2014). Functionally graded composite materials: An overview. Procedia Materals Science, 5, 1291-1299.

Details

Primary Language

English

Subjects

Environmental and Sustainable Processes

Journal Section

Conference Paper

Authors

Victor Rizov This is me
Bulgaria

Early Pub Date

October 5, 2023

Publication Date

September 30, 2023

Submission Date

May 2, 2023

Acceptance Date

August 31, 2023

Published in Issue

Year 2023 Volume: 23

APA
Rizov, V. (2023). Analysis of Temperature Change Effect on Dissipation of Energy in Functionally Graded Beams. The Eurasia Proceedings of Science Technology Engineering and Mathematics, 23, 406-412. https://doi.org/10.55549/epstem.1371771