Abstract
Elastocaloric refrigeration using superelastic NiTi shape memory alloys (SMAs) has attracted much attention recently because it has a large energy saving potential, no environmental effects, and a low cost. Achieving the continuous operating of elastocaloric devices, i.e., separating the cold and hot areas on the NiTi alloys physically, helps the efficient release and absorption of heat and avoid the reciprocal parts and intervals of outputs in the system. In this paper, an analytical model and proof-of-concept experiments for continuous operating (elasto)caloric devices are presented. The experimental concept was developed based on a set of rotating NiTi sheets with which the copper heat sink and heat source contact cyclically. © 2022 ASM International.
| Original language | English |
|---|---|
| Title of host publication | SMST 2022 |
| Subtitle of host publication | Extended Abstracts from the International Conference on Shape Memory and Superelastic Technologies |
| Publisher | ASM International |
| Pages | 32-33 |
| Number of pages | 2 |
| DOIs | |
| Publication status | Published - 2022 |
| Externally published | Yes |
| Event | 2022 International Conference on Shape Memory and Superelastic Technologies (SMST 2022) - Carlsbad, United States Duration: 16 May 2022 → 20 May 2022 |
Publication series
| Name | International Conference on Shape Memory and Superelastic Technologies, SMST |
|---|
Conference
| Conference | 2022 International Conference on Shape Memory and Superelastic Technologies (SMST 2022) |
|---|---|
| Place | United States |
| City | Carlsbad |
| Period | 16/05/22 → 20/05/22 |
Funding
This work was supported by the IER Foundation 2020 (Grant No. IERF202003).
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