Solid-state refrigeration based on the caloric effects is promising to replace the traditional vapor-compressing refrigeration technology due to environmental protection and high efficiency. However, the narrow working temperature region has hindered the application of these refrigeration technologies. In this paper, we propose a method of combined caloric, through which a broad refrigeration region can be realized in a multiferroic alloy, Ni-Mn-Ga, by combining its elastocaloric and magnetocaloric effects. Moreover, the materials' efficiency of elastocaloric effect has been greatly improved in our sample. These results illuminate a promising way to use multiferroic alloys for refrigeration with a broad refrigeration temperature region.
CITATION STYLE
Hu, Y., Li, Z., Yang, B., Qian, S., Gan, W., Gong, Y., … Du, Y. (2017). Combined caloric effects in a multiferroic Ni-Mn-Ga alloy with broad refrigeration temperature region. APL Materials, 5(4). https://doi.org/10.1063/1.4980161
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