Abstract
We report rapidly quenched Gd-based metallic glass micro-fibers with a nominal composition of Gd55Al25Co20, which are fabricated by melt-extraction method, and possess remarkable magnetic properties and excellent mechanical performances. Attractively, these metallic glass micro-fibers exhibit a noticeable and reversible magnetocaloric effect (MCE). For a magnetic field change of 5 T, the isothermal magnetic entropy change (-ΔSm) reaches as high as 9.7 J kg-1 K-1 and the refrigerant capacity (RC) achieves a relatively large value of 652 J kg-1. In addition, the Arrott plots indicate that the ferromagnetic-paramagnetic transition is of second-order. Remarkably, the average value of maximum tensile strength for Gd55Al 25Co20 metallic glass micro-fibers is statistically calculated to be 1189 MPa and their fracture reliabilities were characterized using Weibull and lognormal methods, respectively. It is demonstrated that the as-extracted metallic glass micro-fibers have an excellent fracture modulus of 19.9 and a high security threshold of 796 MPa for practical application. Though with a low Curie temperature, the adaptability and outstanding characteristics of the melt-extracted Gd-based metallic glass micro-fibers are expected to be applied in the multifunctional fields of MCE-based refrigeration.
| Original language | English |
|---|---|
| Pages (from-to) | 167-171 |
| Number of pages | 5 |
| Journal | Journal of Alloys and Compounds |
| Volume | 603 |
| DOIs | |
| State | Published - 5 Aug 2014 |
| Externally published | Yes |
Keywords
- Magnetocaloric effect (MCE)
- Mechanical property
- Melt-extraction
- Micro-fibers
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