Testing and modelling of shape memory alloy plates for energy dissipators

Heresi P.; Herrera, R. A.; Moroni M.O.

Abstract

Shape memory alloys (SMA) can dissipate energy through hysteresis cycles without significant residual deformation. This paper describes the fabrication and testing of copper-based SMA hourglass-shaped plates for use in energy dissipation devices and the development of a numerical model to reproduce the experiments. The plates were tested under cyclic flexural deformations, showing stable hysteresis cycles without strength degradation. A detailed nonlinear numerical model was developed and validated with the experimental data, using as input the constitutive relationship for the material determined from cyclic tests of material coupons under tension loading. The model adequately reproduces the experimental results. The study is focused on the exploitation of SMA in the martensite phase.

Más información

Título según WOS: Testing and modelling of shape memory alloy plates for energy dissipators
Título según SCOPUS: Testing and modelling of shape memory alloy plates for energy dissipators
Título de la Revista: SMART STRUCTURES AND SYSTEMS
Volumen: 14
Número: 5
Editorial: TECHNO-PRESS
Fecha de publicación: 2014
Página de inicio: 883
Página final: 900
Idioma: English
DOI:

10.12989/sss.2014.14.5.883

Notas: ISI, SCOPUS