Iron-based bulk amorphous soft magnetic alloy and preparation method thereof
A technology of soft magnetic alloy and amorphous alloy, which is applied in the direction of magnetic materials, magnetic objects, electrical components, etc., can solve the problems that amorphous alloys are difficult to be widely used in practice, and achieve the effect of low cost and simple preparation method
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Embodiment 3
[0033] Preparation (Fe 0.5 co 0.5 ) 69.7 B 20 Si 5 Nb 4.3 Tb 1.0 Large pieces of metallic glass. Raw material Fe, Co, FeB, Si, Nb, Tb are Fe: Co: B: Si: Nb: Tb=34.85: 34.85: 20: 5: 4.3: 1 batching according to atomic percentage, Fe, Co, Tb in the raw material The purity is not higher than 99.0wt% and B is added in the form of industrial FeB alloy, the prepared material is put into an arc melting furnace with argon atmosphere, mixed and smelted for 4-5 times, and obtained after cooling (Fe 0.5 co 0.5 ) 69.7 B 20 Si 5 Nb 4.3 Tb 1.0 master alloy ingot, and break the ingot into small pieces; then use the vacuum copper mold casting method to melt the small piece of ingot again, and press the master alloy melt into the copper mold to obtain the composition (Fe 0.5 co 0.5 ) 69.7 B 20 Si 5 Nb 4.3 Tb 1.0 , a bulk amorphous alloy with a diameter of 3 mm.
[0034] from figure 1 The X-ray diffraction (XRD) shown can prove that the diameter is 3mm (Fe 0.5 co 0.5 ) 6...
Embodiment 1
[0035] Example 1, 2, 4, 5, 6
[0036] Various ratios of iron-based bulk amorphous alloys were prepared.
[0037] A series of iron-based bulk amorphous alloys with various ratios were prepared according to the method of Example 1, and their compositions and thermophysical parameters are listed in Table 1.
[0038] Note: 1) The symbols in the table have the following meanings:
[0039] Φ——Critical diameter size under the experimental conditions; T c - Curie temperature; T g - glass transition temperature;
[0040] ΔT x —Width of subcooled liquid phase region; T 1 - liquidus temperature; T rg ——Reduced glass temperature; M s ——saturation magnetization; H c --Coercivity.
[0041] 2)T rg =T g / T 1 ;
[0042] 3) The heating rate used in the measurement of each component sample in the table is 40K / min.
[0043] Table 1. Composition, thermal properties and magnetic performance parameters of various proportioning iron-based bulk amorphous alloys of the present invention ...
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