Lafesi-based magnetic refrigeration composite material and its preparation method and application
A composite material, magnetic refrigeration technology, applied in heat exchange materials, chemical instruments and methods, etc., can solve the problems of affecting materials, low thermal conductivity of materials, affecting magnetic working medium and fluid heat transfer, etc., to achieve easy operation in the preparation process. , the raw materials are cheap and easy to obtain, and the preparation process is simple.
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[0058] In some embodiments, the preparation method includes:
[0059] Prepare raw materials other than H according to the chemical formula of the LaFeSi-based alloy particles;
[0060] Melting the raw materials under the protection of high-purity inert gas to form alloy ingots or quick-setting flakes;
[0061] The alloy ingots or quick-setting flakes are annealed in a vacuum environment or an inert atmosphere, and then quickly quenched in an environment such as liquid nitrogen or ice water to form NaZn 13 LaFeSi-based alloy with type structure;
[0062] Crushing the LaFeSi-based alloy into particles with a particle size of ≤250 μm, and uniformly mixing with a low melting point metal or alloy to form a mixed powder;
[0063] Put the mixed powder at a pressure of 8×10 -2 Hot press molding in a high vacuum environment below Pa or in an inert atmosphere, the pressing pressure is 50MPa~1GPa, the hot pressing temperature is 180~300℃, and the pressure holding time is 0.5min~10min.
[0064] In t...
Embodiment 1
[0081] Example 1 LaFe is involved in this example 11.6 Si 1.4 H x / Sn magnetic refrigeration composite material preparation and performance study
[0082] (1) Press LaFe 11.6 Si 1.4 Chemical formula ingredients, put into the crucible of vacuum induction rapid solidification furnace, vacuumize and fill with high-purity argon gas until the temperature reaches 1600℃, the raw materials are completely melted, and the alloy liquid is poured on a rotating copper roller with a speed of 1.7m / s. LaFe 11.6 Si 1.4 Quick-setting tablets
[0083] (2) Put the prepared quick-setting sheet into the quartz tube and vacuum to 2×10 -3 Fill the Pa with argon gas of 0.05MPa and seal the tube;
[0084] (3) Put the sealed quartz tube into a muffle furnace, heat it to 1050°C, keep it for 24 hours, and then quench it with an ice-water mixture;
[0085] (4) LaFe 11.6 Si 1.4 Put the quick-setting plate into a quartz tube, and then place it in a hydrogen heat treatment furnace, and set the hydrogen charging condi...
Embodiment 2
[0089] Example 2 LaFe is involved in this example 11.6 Si 1.4 H x / Sn magnetic refrigeration composite material preparation and performance study
[0090] Prepare LaFe in the same way as in Example 1. 11.6 Si 1.4 H x / Sn magnetic refrigeration composite material, except that the hot pressing temperature is changed to 233℃.
[0091] LaFe obtained in this embodiment 11.6 Si 1.4 H x The Curie temperature of the / Sn magnetic refrigeration composite material is 281K, and the maximum magnetic entropy is calculated to become 10.2J / kgK (such as image 3 As shown), the room temperature thermal conductivity measured by the laser thermal conductivity meter is 6.6W / mk (as Image 6 Shown), the compressive strength measured by the universal testing machine is 173MPa (such as Figure 8a Shown).
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