Magnetocaloric alloys useful for magnetic refrigeration applications
This invention relates to magnetocaloric materials comprising ternary alloys useful for magnetic refrigeration applications. The disclosed ternary alloys are Cerium, Neodymium, and/or Gadolinium based compositions that are fairly inexpensive, and in some cases exhibit only 2 nd order magnetic phase transitions near their curie temperature, thus there are no thermal and structural hysteresis losses. This makes these compositions attractive candidates for use in magnetic refrigeration applications. The performance of the disclosed materials is similar or better to many of the known expensive rare-earth based magnetocaloric materials.
1. A magnetocaloric material comprising:
(Ce x Nd 1-x )Si
wherein x is in the range of about 0.1 to about 0.9,
and wherein the magnetocaloric material exhibits a 2 nd order magnetic phase transition in the temperature range of about 10K to about 42K.
2. The magnetocaloric material of claim 1 , wherein the material is Ce 0.1 Nd 0.9 Si 1.0 , Ce 0.2 Nd 0.8 Si 1.0 , Ce 0.3 Nd 0.7 Si 1.0 , Ce 0.4 Nd 0.6 Si 1.0 , Ce 0.5 Nd 0.5 Si 1.0 , Ce 0.6 Nd 0.4 Si 1.0 , Ce 0.7 Nd 0.3 Si 1.0 , Ce 0.8 Nd 0.2 Si 1.0 , Ce 0.9 Nd 0.1 Si 1.0 , or any combination thereof.
3. The magnetocaloric material of claim 1 , wherein the material comprises nano-grains, wherein at least one dimension of the nano-grains is in the range of about 0.1 nm to about 1000 nm.
4. A magnetic refrigerator, comprising the magnetocaloric material of claim 1 .
5. A method of manufacturing a heat pump, comprising fabricating at least one part of the heat pump from the material of claim 1 .