Growing environmental concerns have driven increased interest in solid-state thermal technologies based on the elastocaloric properties of shape memory alloys (SMA). This work examines the elastocaloric effect (eCE) in Ni-Ti SMA sheets subjected to cyclic bending, providing quantitative thermal characterization of their behavior under controlled loading conditions. The experimental investigation employed passive thermography to analyze the thermal response of Ni-Ti sheets under two deflection configurations at 1800 rpm loading. Testing revealed consistent adiabatic temperature variations (ΔTad) of 4.14 °C and 4.26 °C for the respective deflections during heating cycles, while cooling phases demonstrated efficient thermal homogenization with temperature gradients decreasing from 4.13 °C to 0.13 °C and 4.43 °C to 0.68 °C over 60 s. These findings provide systematic thermal documentation of elastocaloric behavior in bending-loaded Ni-Ti sheet elements and quantitative data on the relationship between mechanical loading parameters and thermal gradients, enhancing the experimental understanding of elastocaloric phenomena in this configuration.

Danaee Barforooshi, S., Bizzarri, G., Costanza, G., Paoloni, S., Porroni, I., Tata, M.e. (2025). Thermographic investigation of elastocaloric behavior in Ni-Ti sheet elements under cyclic bending. MATERIALS, 18(15) [10.3390/ma18153546].

Thermographic investigation of elastocaloric behavior in Ni-Ti sheet elements under cyclic bending

Saeed Danaee Barforooshi;Girolamo Costanza;Stefano Paoloni;Maria Elisa Tata
2025-01-01

Abstract

Growing environmental concerns have driven increased interest in solid-state thermal technologies based on the elastocaloric properties of shape memory alloys (SMA). This work examines the elastocaloric effect (eCE) in Ni-Ti SMA sheets subjected to cyclic bending, providing quantitative thermal characterization of their behavior under controlled loading conditions. The experimental investigation employed passive thermography to analyze the thermal response of Ni-Ti sheets under two deflection configurations at 1800 rpm loading. Testing revealed consistent adiabatic temperature variations (ΔTad) of 4.14 °C and 4.26 °C for the respective deflections during heating cycles, while cooling phases demonstrated efficient thermal homogenization with temperature gradients decreasing from 4.13 °C to 0.13 °C and 4.43 °C to 0.68 °C over 60 s. These findings provide systematic thermal documentation of elastocaloric behavior in bending-loaded Ni-Ti sheet elements and quantitative data on the relationship between mechanical loading parameters and thermal gradients, enhancing the experimental understanding of elastocaloric phenomena in this configuration.
2025
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/01
Settore PHYS-03/A - Fisica sperimentale della materia e applicazioni
English
Elastocaloric effect
Green cooling
Ni-Ti
Shape memory alloys
Superelasticity
Danaee Barforooshi, S., Bizzarri, G., Costanza, G., Paoloni, S., Porroni, I., Tata, M.e. (2025). Thermographic investigation of elastocaloric behavior in Ni-Ti sheet elements under cyclic bending. MATERIALS, 18(15) [10.3390/ma18153546].
Danaee Barforooshi, S; Bizzarri, G; Costanza, G; Paoloni, S; Porroni, I; Tata, Me
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/432063
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