Magnetic memory alloy with in-situ precipitation and co-lattice precipitation phase and preparation method thereof
A technology of memory alloy and precipitated phase, which is applied in the field of shape memory alloy, can solve the problems of magnetic shape memory alloy magnetic strain function fatigue, functional failure, hindering the application and promotion of driving, etc., and achieve large magnetic strain, excellent magnetic performance, The effect of broadening the range of industrial applications
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Embodiment 1
[0026] Prepare 400g composition as Co 39.9 Ni 29.6 al 29.6 T m 0.9 The low fatigue magnetic memory alloy, its preparation method is as follows:
[0027] S1. Ingredients: Weigh Co, Ni, Al, Tm with a purity of 99.99% respectively;
[0028] S2. Melting: Put the prepared raw materials in a crucible for vacuum melting, the melting conditions are: a.1×10 -3 The low vacuum state of MPa; b. melting temperature is 1450 ℃; c. melting process adopts magnetic stirring; d. melting time 400s (according to formula t=K×(M -1 / 2 ) to obtain, where the element coefficient K is 20s·g -1 / 2 , M is 400g);
[0029] S3. Magnetic field heat treatment: The alloy ingot obtained by the above-mentioned vacuum smelting is subjected to vacuum magnetic field heat treatment, and the treatment conditions are: temperature 600°C; time: 15 hours; vacuum degree: 1×10 -3 MPa; Applied magnetic field strength: 2×10 6 A·m -1 ; Magnetic field rise rate: 1200A m -1 ·s -1 ;
[0030] S4. Cooling; then cooling w...
Embodiment 2
[0033] Prepare 500g composition as Co 37.0 Ni 31.3 Al 30.7 T m 1.0 The low fatigue magnetic memory alloy, its preparation method is as follows:
[0034] S1. Ingredients: Weigh Co, Ni, Al, Tm with a purity of 99.99% respectively;
[0035] S2. Melting: Put the prepared raw materials in a crucible for vacuum melting, the melting conditions are: a.2×10 -3 The low vacuum state of MPa; b. the smelting temperature is 1470 ℃; c. the smelting process adopts magnetic stirring; d. the smelting time is 425s (according to the formula t=K×(M -1 / 2 ) to obtain, where the element coefficient K is 19s g -1 / 2 , M is 500g);
[0036] S3. Magnetic field heat treatment: The alloy ingot obtained by the above-mentioned vacuum smelting is subjected to vacuum magnetic field heat treatment, and the treatment conditions are: temperature 610°C; time: 14 hours; vacuum degree: 2×10 -3 MPa; Applied magnetic field strength: 5×10 6 A·m -1 ; Magnetic field rise rate: 1200A m -1 ·s -1 ;
[0037] S4. C...
Embodiment 3
[0040] Prepare 600g composition as Co 38.3 Ni 30.0 Al 30.5 T m 1.2 The low fatigue magnetic memory alloy, its preparation method is as follows:
[0041] S1. Ingredients: Weigh Co, Ni, Al, Tm with a purity of 99.99% respectively;
[0042] S2. Melting: Put the prepared raw materials in a crucible for vacuum melting, and the melting conditions are: a.3×10 -3 The low vacuum state of MPa; b. the smelting temperature is 1490 ℃; c. the smelting process adopts magnetic stirring; d. the smelting time is 441s (according to the formula t=K×(M -1 / 2 ) to obtain, where the element coefficient K is 18s g -1 / 2 , M is 600g);
[0043] S3. Magnetic field heat treatment: The alloy ingot obtained by the above vacuum smelting is subjected to vacuum magnetic field heat treatment, the treatment conditions are: temperature 620°C; time: 13 hours; vacuum degree: 3×10 -3 MPa; Applied magnetic field strength: 7×10 6 A·m -1 ; Magnetic field rise rate: 1200A m -1 ·s -1 ;
[0044] S4. Cooling; th...
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