La-Fe-Si base room-temperature magnetic refrigeration composite material and preparing method thereof
A magnetic refrigeration material, la-fe-si technology, applied in the direction of magnetic materials, inorganic materials, magnetic objects, etc., can solve problems such as performance gaps, and achieve the effects of excellent mechanical properties, excellent mechanical properties, and good density
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Embodiment 1
[0035] A kind of La-Fe-Si base room temperature magnetic refrigeration composite material, its preparation method is as follows:
[0036] Step 1: Press LaFe 11.6 Si 1.4 Alloy and Ce 40 co 60 Nominal composition of the alloy, the raw materials are pure La (≥99.5wt.%), Ce (≥99.5wt.%), Fe (≥99.95wt.%), Co (≥99.95wt.%), Si (≥99.9999%) In the block, the balance of La and Ce is 3wt.% to supplement the volatile mass loss during the smelting process, and the smelting is turned over 5 times to ensure the uniformity of the ingot. LaFe 11.6 Si 1.4 Alloy and Ce 40 co 60 The speeds of the alloy strips are 1.5m / s and 15m / s respectively. The resulting LaFe 11.6 Si 1.4 The alloy strip is sealed and annealed at 1050°C for 24 hours to obtain NaZn with a content of about 84.7wt.%. 13 Type 1:13 phase, the remainder is α-Fe and a small amount of LaFeSi (1:1:1) phase. The obtained strip is mechanically ground and sieved to obtain LaFe with a particle size of 100-300 μm and less than 46 ...
Embodiment 2
[0052] A kind of La-Fe-Si base room temperature magnetic refrigeration composite material, its preparation method is as follows:
[0053] Step 1: Press LaFe 11.6 Si 1.4 Alloy and Ce 40 co 60 Nominal composition of the alloy, the raw materials are pure La (≥99.5wt.%), Ce (≥99.5wt.%), Fe (≥99.95wt.%), Co (≥99.95wt.%), Si (≥99.9999%) In the block, the balance of La and Ce is 3wt.% to supplement the volatile mass loss during the smelting process, and the smelting is turned over 5 times to ensure the uniformity of the ingot. LaFe 11.6 Si 1.4 Alloy and Ce 40 co 60 The speeds of the alloy strips are 1.5m / s and 15m / s respectively. The resulting LaFe 11.6 Si 1.4 The alloy strip is sealed and annealed at 1050°C for 24 hours to obtain NaZn with a content of about 84.7wt.%. 13 Type 1:13 phase, the remainder is α-Fe and a small amount of LaFeSi (1:1:1) phase. The obtained strip is mechanically ground and sieved to obtain LaFe with a particle size of 100-300 μm and less than 46 ...
Embodiment 3
[0065] A kind of La-Fe-Si base room temperature magnetic refrigeration composite material, its preparation method is as follows:
[0066] Step 1: Press LaFe 11.6 Si 1.4 Alloy and Ce 40 co 60 Nominal composition of the alloy, the raw materials are pure La (≥99.5wt.%), Ce (≥99.5wt.%), Fe (≥99.95wt.%), Co (≥99.95wt.%), Si (≥99.9999%) In the block, the balance of La and Ce is 3wt.% to supplement the volatile mass loss during the smelting process, and the smelting is turned over 5 times to ensure the uniformity of the ingot. LaFe 11.6 Si 1.4 Alloy and Ce 40 co 60 The speeds of the alloy strips are 1.5m / s and 15m / s respectively. The resulting LaFe 11.6 Si 1.4 The alloy strip is sealed and annealed at 1050°C for 24 hours to obtain NaZn with a content of about 84.7wt.%. 13 Type 1:13 phase, the remainder is α-Fe and a small amount of LaFeSi (1:1:1) phase. The obtained strip is mechanically ground and sieved to obtain LaFe with a particle size of 100-300 μm and less than 46 ...
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