| Literature DB >> 31576210 |
Zongbin Li1, Claude Esling2,3.
Abstract
Oligocrystalline-structured Ni43.7Cu1.5Co5.1Mn36.7In13 microwires with bamboo-like grains were successfully prepared by Chen et al. [(2019), IUCrJ, 6, 843-853]. Pronounced mechanical and magnetic properties were shown in the tensile superelasticity and the magnetocaloric effect, respectively. © Li and Esling 2019.Entities:
Keywords: magnetocaloric effect; magnetostructural transformation; meta-magnetic shape-memory microwires; superelasticity
Year: 2019 PMID: 31576210 PMCID: PMC6760447 DOI: 10.1107/S2052252519010856
Source DB: PubMed Journal: IUCrJ ISSN: 2052-2525 Impact factor: 4.769
Figure 1Illustration of field-up and field-down isothermal magnetization curves showing the reversible magnetic-field-induced magnetostructural transformation between weak magnetic martensite and ferromagnetic austenite in Ni–Mn–X alloys.