Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process
Wang C, Miao X, Zha J, Guo W, Ren Q, Zhang Y, Xu F, Caron L (2023)
Scripta Materialia 223: 115067.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
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Autor*in
Wang, Chenxu;
Miao, Xuefei;
Zha, Jiaju;
Guo, Wenhui;
Ren, Qingyong;
Zhang, Yujing;
Xu, Feng;
Caron, LuanaUniBi
Abstract / Bemerkung
The geometry of a magnetocaloric regenerator (MR) is crucial to the heat exchange efficiency and the performance of a magnetic refrigerator. Here we proposed a new and facile way to produce monolithic La0.67Ca0.33MnO3 MRs with highly ordered and unidirectional oriented microchannels. This is realized by a selforganization process of alginate sol, which does not require specific processing equipment and hence is wellsuited for large-scale production. The average diameter and total porosity of the well-defined microchannels can be adjusted in the range of 71.5-156.3 mu m and 15.3%-21.5%, respectively. The orthorhombic perovskite structure is retained in the sintered MRs without any detectable secondary phase. Besides, the sintered MRs exhibit a significantly higher isothermal entropy change than the original La0.67Ca0.33MnO3 powders due to an increase in the grain size. Consequently, our study may trigger a breakthrough in the large-scale production of monolithic MRs with desirable geometries for magnetic refrigerators.
Stichworte
Magnetocaloric effect;
Magnetic refrigeration;
Self -organization;
process;
Microstructure
Erscheinungsjahr
2023
Zeitschriftentitel
Scripta Materialia
Band
223
Art.-Nr.
115067
ISSN
1359-6462
eISSN
1872-8456
Page URI
https://pub.uni-bielefeld.de/record/2967255
Zitieren
Wang C, Miao X, Zha J, et al. Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process. Scripta Materialia. 2023;223: 115067.
Wang, C., Miao, X., Zha, J., Guo, W., Ren, Q., Zhang, Y., Xu, F., et al. (2023). Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process. Scripta Materialia, 223, 115067. https://doi.org/10.1016/j.scriptamat.2022.115067
Wang, Chenxu, Miao, Xuefei, Zha, Jiaju, Guo, Wenhui, Ren, Qingyong, Zhang, Yujing, Xu, Feng, and Caron, Luana. 2023. “Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process”. Scripta Materialia 223: 115067.
Wang, C., Miao, X., Zha, J., Guo, W., Ren, Q., Zhang, Y., Xu, F., and Caron, L. (2023). Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process. Scripta Materialia 223:115067.
Wang, C., et al., 2023. Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process. Scripta Materialia, 223: 115067.
C. Wang, et al., “Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process”, Scripta Materialia, vol. 223, 2023, : 115067.
Wang, C., Miao, X., Zha, J., Guo, W., Ren, Q., Zhang, Y., Xu, F., Caron, L.: Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process. Scripta Materialia. 223, : 115067 (2023).
Wang, Chenxu, Miao, Xuefei, Zha, Jiaju, Guo, Wenhui, Ren, Qingyong, Zhang, Yujing, Xu, Feng, and Caron, Luana. “Novel fabrication of honeycomb-like magnetocaloric regenerators via a self-organization process”. Scripta Materialia 223 (2023): 115067.
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