Iron-based bulk metallic glass alloy with large supercooled liquid phase region
A technology of supercooled liquid phase zone and bulk metal, applied in the field of new materials, can solve the problems of low stability of supercooled liquid and the use of difficult-to-metal glass alloys, and achieve the effects of low production cost, low cost and high practical value
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Embodiment 1
[0036] Fe 55 co 10 Ni 5 Mo 5 P 10 C 10 B 5 Preparation, testing and superplastic processing of metallic glass alloys.
[0037] (1) High-purity elements are used for compounding according to the chemical composition ratio of the alloy. Phosphorus is added through the iron-phosphorus alloy. The purity of the elements in terms of mass percentage is: iron: 99.9%, cobalt: 99.9%, nickel: 99.9%, molybdenum : 99.9%, carbon: 99.999%, boron: 99.5%, iron phosphorus: 99.9%.
[0038] (2) Put the proportioned raw materials into the crucible of the induction melting furnace, and evacuate to 2×10 -3 Pa, filled with argon, in the argon atmosphere, using high-frequency induction melting 4 times, to obtain a master alloy ingot with uniform composition.
[0039] (3) Break the master alloy ingot and put it into a quartz tube with a small hole at the bottom. After vacuuming, fill it with argon gas. In the argon atmosphere, first heat the master alloy to a molten state by high-frequency ind...
Embodiment 2
[0048] Fe 55 Ni 15 Mo 5 P 10 C 10 B 5 Preparation, testing and superplastic processing of metallic glass alloys. Step is with embodiment 1, and concrete data is listed in attached table.
Embodiment 3
[0050] Fe 65 Ni 5 Mo 5 P 10 C 10 B 5 Preparation, testing and superplastic processing of metallic glass alloys. Step is with embodiment 1, and concrete data is listed in attached table.
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