High temperature FeNiCo magnetostriction alloy as well as preparation method thereof
A magnetostriction and alloy technology, applied in the field of alloys, can solve the problems of difficult-to-process small wires, high brittleness, and high processing difficulty, and achieve high temperature, long-term stable and accurate measurement, large saturation magnetostriction coefficient, and stable The effect of magnetostrictive properties
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Embodiment 1
[0046] The composition content of the selected alloy is: Ni: 39.5%, Co: 15.5%, Cr: 3.0%, Mo: 3.0%, Ti: 2.5%, Al: 0.6%, B: 0.003%, and the balance is Fe.
[0047] Take the above components and put them into vacuum induction melting. The melting process is melting power 80Kw, refining power 20-30Kw, vacuum degree better than 1Pa, melting time 15-30 minutes; Heating in the furnace to 1150°C, hot forging into billets of various required specifications, hot rolling the alloy billets at 900-1170°C, and rolling them into wire rods. The rolled wire rod is cold-drawn at 0-45°C, and cold-drawn into a wire with a diameter of 0.72mm or less.
[0048] Put the wire into a vacuum heat treatment furnace, keep it at 1100±5°C for 1 hour; then cool it to 580±5°C at a rate of 60°C / h, keep it at 5 hours and then cool it to room temperature with the furnace, the obtained high temperature FeNiCo magnetic Strict alloy, used to equip high temperature magnetostrictive sensor.
[0049] The test result...
Embodiment 2
[0051] The difference from the examples is that the composition content of the selected alloy is: Ni: 49.0%, Co: 10.0%, Cr: 2.5%, Mo: 2.5%, Ti: 2.0%, Al: 1.0%, B: 0.005%, and the balance Be Fe, all the other are with embodiment 1.
[0052] The test results show that the alloy's saturation magnetostriction coefficient λs=17×10 -6 / °C, the Curie temperature of the alloy: Tc=470°C.
Embodiment 3
[0054] Different from the embodiment, the composition content of the selected alloy is Ni: 32.0%, Co: 21.0%, Cr: 1.3%, Mo: 1.5%, Ti: 3.0%, Al: 0.3%, B: 0.004%, and the balance is Fe, all the other are with embodiment 1.
[0055] The test results show that the alloy's saturation magnetostriction coefficient λs=29×10 -6 / °C, the Curie temperature of the alloy: Tc=464°C.
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