Rare earth-aluminum material used for magnetic refrigeration, and preparation method and application thereof
A technology for magnetic refrigeration and aluminum materials, applied in the field of rare earth-aluminum materials and their preparation, can solve problems such as inability to meet demand, damage to climate and environment, and achieve the effects of strong refrigeration capacity and increased magnetic entropy
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0037] Embodiment 1: This embodiment is used to illustrate the magnetic refrigeration material and its preparation method provided by the present invention
[0038] 1. Preparation method:
[0039] 1) Press Ho 3 Al 2 The atomic ratio in the chemical formula is weighed, and the commercially available rare earth metal Ho with a purity higher than 99.9% is mixed with the Al raw material, wherein Ho is excessively added by 2% (atomic percentage);
[0040] 2) Put the raw materials prepared in step 1) into the electric arc furnace to vacuumize, when the vacuum degree reaches 3×10 -3Pa, after cleaning twice with pure argon, smelting under the protection of 1 atmosphere of pure argon, the smelting time is 3 minutes, and the smelting temperature is 1500-1550°C;
[0041] 3) Cool the as-cast alloy in a copper crucible, wrap the as-cast alloy with molybdenum foil, and seal it in a vacuum of 5×10 -3 In a Pa quartz tube, it was annealed at 800°C for 7 days, taken out and quickly quench...
Embodiment 2
[0050] Example 2: This example is used to illustrate the magnetic refrigeration material provided by the present invention and its preparation method
[0051] 1. Preparation method:
[0052] 1) Press Tb 3 al 2 The atomic ratio in the chemical formula is weighed, and the commercially available rare earth metal Tb with a purity higher than 99.9% is mixed with the Al raw material, wherein Tb is excessively added by 2% (atomic percentage);
[0053] 2) Put the raw materials prepared in step 1) into the electric arc furnace to vacuumize, when the vacuum degree reaches 3×10 -3 Pa, after cleaning twice with pure argon, smelting under the protection of 1 atmosphere of pure argon, the smelting time is 3 minutes, and the smelting temperature is 1500-1550°C;
[0054] 3) Cool the as-cast alloy in a copper crucible, wrap the as-cast alloy with molybdenum foil, and seal it in a vacuum of 5×10 -3 In the quartz tube of Pa, it was annealed at 950°C for 14 days, taken out and quickly quenc...
Embodiment 3
[0061] Example 3: This example is used to illustrate the magnetic refrigeration material provided by the present invention and its preparation method
[0062] 1. Preparation method:
[0063] 1) Press Dy 3 Al 2 The atomic ratio in the chemical formula is weighed, and the commercially available rare earth metal Dy with a purity higher than 99.9% is mixed with the Al raw material, wherein Dy is excessively added by 2% (atomic percentage);
[0064] Step 2) and step 3) are identical with embodiment 2.
[0065] 2. Product characterization and performance measurement:
[0066] The room temperature X-ray diffraction spectrum of the compound obtained in this embodiment is as follows: Figure 11 As shown, the results show that the product is a single-phase Zr 3 Al 2 Dy of type tetragonal crystal structure 3 Al 2 compound whose space group is P4 2 nm, the lattice parameter is α=β=γ=90°.
[0067] Dy in this embodiment 3 Al 2 In the magnetic field strength μ 0 The thermoma...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com