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Enhancing elastocaloric regenerative performance using functionally graded structures : a model-based efficiency evaluation
ID Mohajerani, Shiva (Avtor), ID Vanaei, Saeedeh (Avtor), ID Tušek, Jaka (Avtor), ID Elahinia, Mohammad (Avtor)

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Izvleček
Elastocaloric (eC) cooling technology, leveraging the latent heat associated with phase transformations in shape memory alloys, presents a promising alternative to traditional refrigeration systems. In this study, a three-dimensional phenomenological constitutive model based on Gibbs free energy is employed and coupled with an energy balance equation in cylindrical coordinates as a necessary step toward system-level simulation of eC tubes. After calibration against experimental data from the literature, the model is used to investigate an innovative functionally graded (FG) superelastic tube in which the transformation temperature (TT) is intentionally varied along the length. The primary objective is to determine whether a spatially tailored transformation-temperature profile can counteract the strong temperature gradients established during regenerative cycling. The simulations demonstrate that such grading promotes a more uniform phase transformation under constant loading and directly improves the material-level coefficient of performance. Notably, the graded profile reduces hysteresis losses by 7.85% and 10.88% at 650 MPa and 750 MPa, respectively through a gradual, distributed transformation that lowers the local critical stresses for forward and reverse transformation. The improvement in hysteresis in the FG design arises from the spatial variation in TTs across the tube, which leads to a gradual and distributed phase transformation rather than a sharp transition. In the model, this grading reduces the critical stresses required for both forward and reverse transformations in different tube segments. While the model does not directly alter the hysteresis loop size, the lowered transformation stresses effectively narrow the hysteresis loop by reducing the stress gap between the forward and reverse paths. This mechanism is embedded in the model influencing martensitic volume fraction, and subsequently through the stress–strain response. The FG design, therefore, enables a smoother transformation response with reduced internal energy dissipation, which manifests as improved (reduced) hysteresis. This work demonstrates the transformative potential of FG structures in creating practical eC systems.

Jezik:Angleški jezik
Ključne besede:functionally graded structures, elastocaloric effect, energy-based modeling, transformation temperature, shape memory alloys, regenerator
Vrsta gradiva:Članek v reviji
Tipologija:1.01 - Izvirni znanstveni članek
Organizacija:FS - Fakulteta za strojništvo
Status publikacije:Objavljeno
Različica publikacije:Objavljena publikacija
Leto izida:2026
Št. strani:31 str.
Številčenje:Vol. 34, no. 2, art. 025009
PID:20.500.12556/RUL-185173 Povezava se odpre v novem oknu
UDK:620.178.37:536.7
ISSN pri članku:1361-651X
DOI:10.1088/1361-651X/ae481c Povezava se odpre v novem oknu
COBISS.SI-ID:286054147 Povezava se odpre v novem oknu
Datum objave v RUL:27.07.2026
Število ogledov:59
Število prenosov:24
Metapodatki:XML DC-XML DC-RDF
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Gradivo je del revije

Naslov:Modelling and simulation in materials science and engineering
Skrajšan naslov:Model. simul. mater. sci. eng.
Založnik:IOP Pub.
ISSN:1361-651X
COBISS.SI-ID:515076121 Povezava se odpre v novem oknu

Licence

Licenca:CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna
Povezava:http://creativecommons.org/licenses/by/4.0/deed.sl
Opis:To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja.

Sekundarni jezik

Jezik:Slovenski jezik
Ključne besede:funkcionalno razporejene strukture, elastokalorični učinki, energetsko modeliranje, temperatura preoblikovanja, zlitine z oblikovnim spominom, elastokalorični regenerator

Projekti

Financer:ARIS - Javna agencija za znanstvenoraziskovalno in inovacijsko dejavnost Republike Slovenije
Številka projekta:N2-0375
Naslov:Napredni elastokalorični regeneratorji

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