Modified La—Fe—Si magnetocaloric alloys
A magnetocaloric material comprising a La—Fe—Si based alloy composition that is compositionally modified to include a small but effective amount of at least one of Al, Ga, and In to improve mechanical stability of the alloy (substantially reduce alloy brittleness), improve thermal conductivity, and preserve comparable or provide improved magnetocaloric effects. The alloy composition may be further modified by inclusion of at least one of Co, Mn, Cr, and V as well as interstitial hydrogen.
1. A magnetocaloric alloy having one of the following compositions:
LaFe 13-z Si z-y X y , where X=at least one of Al, Ga, and In with 1.1≤z≤1.9 and 0.01≤y≤0.5
La(Fe 1-w M w ) 13-z Si z-y X y , where X=at least one of Al, Ga, and In, and M=at least one of Co, Mn, Cr, and V with 0.05≤w≤0.1, and 1.1≤z≤1.9, and 0.01≤y≤0.5
LaFe 13-z Si z-y X y H v , where X=at least one of Al, Ga, and In with 1.1≤z≤1.9, 0.01≤y≤0.5, 0<v≤2.3
La(Fe 1-w M w ) 13-z Si z-y X y H v , where X=at least one of Al, Ga, and In, and M=at least one of Co, Mn, Cr, and V with 0.05≤w≤0.1, and 1.1≤z≤1.9, and 0.01≤y≤0.5, and 0<v≤2.3
wherein the value of y is selected to reduce brittleness of the alloy as compared to an identical alloy devoid of Al, Ga, and In to increase the number of temperature/magnetic field cycles without alloy cracking or decrepitation.
2. The alloy of claim 1 exhibiting large magnetocaloric effect that is tunable between about 170K and about 350K.
3. The alloy of claim 1 exhibiting increased thermal conductivity as compared to an identical La—Fe—Si alloy devoid of Al, Ga, and In.
4. The alloy of claim 1 that is machinable.