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Elastocaloric Cooling: State-of-the-art and Future Challenges in Designing Regenerative Elastocaloric Devices

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Academic year: 2020

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Figure

Fig. 1.  Schematic representation of the eCE  in the superelastic cycle
Fig. 2.  A schematic representation of four basic operational steps of: a) a single-stage elastocaloric device with a solid-to-solid contact heat transfer mechanism, and b) a regenerative elastocaloric device with a convective (through porous material) heat transfer mechanism [51] and temperature (T)-entropy (s) diagrams: of c) a single-stage, and d) a regenerative elastocaloric Brayton thermodynamic cycle
Table 1.  Overview of experimentally obtained cooling/heating characteristics of elastocaloric devices tested to date
Fig. 4.  Schematic representation of crack growth during tension and compression [69]
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