A magnetic phase change alloy
A magnetic phase transition and alloy technology, applied in the fields of inorganic material magnetism, inductance/transformer/magnet manufacturing, electrical components, etc., can solve the problems of small magnetocaloric effect, hinder the ideal practical working fluid of magnetocaloric materials, and high application cost, and achieve thermal effect. Enhanced, abundant reserves, good performance stability
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Embodiment 1
[0032] The chemical formula of this embodiment preparation is Mn 25 Fe 9 Ni 32 Ge 18 Si 16 A magnetic phase change alloy with high temperature and large magnetic entropy change, in which Mn 25 Fe 9 Ni 32 Ge 18 Si 16 The alloy means that the alloy contains 25 atomic percent of Mn element, 9 atomic percent of Fe element, 32 atomic percent of Ni element, 18 atomic percent of Ge element and 16 atomic percent of Si element. In other embodiments, the same explanation is also made. Its preparation method is carried out according to the following specific steps:
[0033](1) According to the molar ratio of Mn:Fe:Ni:Ge:Si=25:9:32:18:16, respectively weigh Mn, Fe, Ni, Ge, Si metal raw materials with a purity of 99.9%;
[0034] (2) Put the weighed raw materials into a water-cooled copper crucible, and use a mechanical pump to evacuate the vacuum to 1×10 - 3 Below Pa, argon gas was introduced as a protective gas, and the polycrystalline sample ingot was smelted by the arc melt...
Embodiment 2
[0038] The chemical formula of this embodiment preparation is Mn 19 co 14 Ni 36 Ge 3.1 Si 27.9 Magnetic Phase Change Alloy Strip:
[0039] (1) According to the molar ratio of Mn:Co:Ni:Ge:Si=19:14:36:3.1:27.9, respectively weigh Mn, Co, Ni, Ge, Si metal raw materials with a purity of 99.9%;
[0040] (2) Put the weighed raw materials into the crucible, and use a mechanical pump to evacuate the vacuum to 1×10 - 3 Below Pa, argon gas is introduced as a protective gas, and the polycrystalline sample ingot is melted by the arc melting method. Each sample is turned over 3 times, and a total of 4 times of melting is used to ensure uniform composition;
[0041] (3) The obtained button spindle material is sealed in a vacuum quartz tube, annealed at 900° C. for 96 hours for homogenization annealing treatment, and then cooled to room temperature at a cooling rate of 2° C. / second;
[0042] (4) Put the annealed button spindle into a quartz tube with a small hole at the bottom, place ...
Embodiment 3
[0044] The preparation composition of this embodiment is: Mn 13 Fe 20 Ni 34 Ge 5 Si 28 A magnetic phase change alloy with high temperature and large magnetic entropy change; its preparation method is similar to that of Example 1, except that in step (1) the molar ratio Mn:Co:Ni:Ge:Si=13:20: 34:5:28 Weigh the raw materials and anneal at 900°C for 24 hours in step (3). The same method as in Example 1 was used to determine the phase transition temperature and magnetic entropy change. Table 1 shows the phase transition temperature and the magnetic entropy change value of the obtained sample at a magnetic field change of 50kOe. Example 4
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