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Title: | Effect of uniaxial stress on energy harvesting, storage and electrocaloric performance of BZT ceramics |
Authors: | Patel, Satyanarayan Yadav, Harekrishna |
Keywords: | Barium compounds;Electric fields;Energy harvesting;Energy storage;Hysteresis;Storage (materials);Titanium compounds;Waste heat;Zirconium compounds;Electric field hysteresis loop;Electro-caloric effects;Electro-mechanical;Energy storage density;Mechanical energies;Operating temperature ranges;Stress confinement;Uniaxial compressive;Compressive stress |
Issue Date: | 2021 |
Publisher: | Springer |
Citation: | Patel, S., Yadav, H., & Kumar, M. (2021). Effect of uniaxial stress on energy harvesting, storage and electrocaloric performance of BZT ceramics. Journal of the Korean Ceramic Society, 58(4), 437-444. doi:10.1007/s43207-021-00118-4 |
Abstract: | In this work, a systematic approach of waste (thermal/mechanical) energy harvesting and storage potential is studied in Ba0.85Zr0.15TiO3 (BZT) ceramics. The effect of stress on energy storage density (harvesting/storage) and electrocaloric performance is also studied. For this purpose, polarization–electric field hysteresis loops were recorded at various temperatures and uniaxial compressive stress. The Olsen cycle and electro-mechanical cycle are used for direct waste heat or mechanical energy to electrical energy conversion. A thermal energy-harvesting density of 42 kJ/m3 per cycle was obtained when the Olsen cycle was operated between 296–343 K and 0.25–1.5 MV/m. The electro-mechanical cycle-based energy harvesting is estimated as 78 kJ/m3 under the applied stress of 5–160 MPa and the electric field of 0.25–1.5 MV/m. The energy storage density is found as 39 kJ/m3 at zero stress field and 343 K, which increases to 53 kJ/m3 under the biased stress of 80 MPa in a wide operating temperature range of 296–328 K. It is observed that the high energy storage is a result of the reduction of the hysteresis loss. The electrocaloric temperature is found as 0.16 K and 0.18 K under the 0 and 80 MPa stress fields, respectively. Overall, the reported findings will enrich our understanding of the stress effect on BZT materials, which offers high performance for energy harvesting and storage-based applications. Moreover, this work can be also helpful in improving the energy storage density and electrocaloric effect via stress confinement. © 2021, The Korean Ceramic Society. |
URI: | https://doi.org/10.1007/s43207-021-00118-4 https://dspace.iiti.ac.in/handle/123456789/6943 |
ISSN: | 1229-7801 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Mechanical Engineering |
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