A kind of low-temperature superelastic ti-ni-cu-y-hf shape memory alloy and its preparation method
A ti-ni-cu-y-hf, memory alloy technology, applied in the field of low-temperature superelasticity Ti-Ni-Cu-Y-Hf shape memory alloy and its preparation, can solve the problem of not having low-temperature superelasticity, phase transition temperature higher question
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Embodiment 1
[0039] Using high-purity metal Ti, Ni, Cu, Y, and Hf as raw materials, after cleaning, the atomic ratio of 39% Ti, 44% Ni, 6% Cu, 1% Y and 10% Hf is the alloy 1 , put the raw material in the vacuum electric arc furnace, vacuumize to 8.5*10 -3Below Pa, refill argon gas to -0.05MPa and then strike the arc, control the melting current at 100-300A, turn on the magnetic stirring power, ensure that all metals are completely melted together, and then turn off the power. The obtained alloy ingot is turned over with a manipulator, and then smelted repeatedly 6 times to make the composition of the raw material uniform; the obtained alloy is cut into small pieces by wire, placed in a vacuum heat treatment furnace and evacuated to -0.05MPa, and then filled with argon. After homogenization at 900°C for 2h, it was quickly quenched in an ice-water mixture to obtain a Ti-Ni-Cu-Y-Hf shape memory alloy.
[0040] The microstructure photo of gained alloy 1 is as follows figure 1 Shown, the phas...
Embodiment 2
[0042] Using high-purity metals Ti, Ni, Cu, Y, and Hf as raw materials, after cleaning, the atomic ratio of 43% Ti, 44% Ni, 6% Cu, 1% Y and 6% Hf is the alloy 2 , put the raw material in the vacuum electric arc furnace, vacuumize to 8.5*10 -3 Below Pa, refill argon gas to -0.05MPa and then strike the arc, control the melting current at 100-300A, turn on the magnetic stirring power, ensure that all metals are completely melted together, and then turn off the power. The obtained alloy ingot is turned over with a manipulator, and then smelted repeatedly 6 times to make the composition of the raw material uniform; the obtained alloy is cut into small pieces by wire, placed in a vacuum heat treatment furnace and evacuated to -0.05MPa, and then filled with argon. After homogenization at 900°C for 2h, it was quickly quenched in an ice-water mixture to obtain a Ti-Ni-Cu-Y-Hf shape memory alloy.
[0043] The microstructure photograph of gained alloy 2 is as Figure 5 As shown, the tr...
Embodiment 3
[0045] Using high-purity metals Ti, Ni, Cu, Y, and Hf as raw materials, after cleaning, the atomic ratio of 47% Ti, 44% Ni, 6% Cu, 1% Y and 2% Hf is used as alloy 3, and the raw materials are placed in In the vacuum electric arc furnace, vacuumize to 8.5*10 -3 Below Pa, refill argon gas to -0.05MPa and then strike the arc, control the melting current at 100-300A to ensure that all metals are completely melted together, and then turn off the power. The obtained alloy ingot is turned over with a manipulator, and then smelted repeatedly 6 times to make the composition of the raw material uniform; the obtained alloy is cut into small pieces by wire, placed in a vacuum heat treatment furnace and evacuated to -0.05MPa, and then filled with argon. After homogenization treatment at 900° C. for 2 hours, the Ti-Ni-Cu-Y-Hf shape memory alloy was obtained by quenching and cooling in ice water.
[0046] The microstructure photo of gained alloy 3 is as follows Figure 9 As shown, the tran...
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