High-strength corrosion-resistant iron-nickel-based high-temperature alloy and preparation method thereof
A superalloy, iron-nickel-based technology, applied in the field of high-strength corrosion-resistant iron-nickel-based superalloy and its preparation, can solve problems such as poor processing performance, and achieve the effects of improving alloy processing performance, excellent oxidation resistance, and reducing raw material costs
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Embodiment 1
[0031] The high-strength and corrosion-resistant iron-nickel-based superalloy of this embodiment includes: Cr: 15%, Ti: 0.7%, Al: 3.0%, Si: 0.5%, Mn: 0.5%, C: 0.1%, Fe : 45%, the balance is Ni;
[0032] The preparation method of the present embodiment comprises the following steps:
[0033] 1) Raw material preparation: the composition includes by mass percentage: Cr: 15%, Ti: 0.7%, Al: 3.0%, Si: 0.5%, Mn: 0.5%, C: 0.1%, Fe: 45%, and the balance is Ni;
[0034] 2) Melting step: place the ceramic crucible and prepared raw materials in a vacuum melting furnace at the same time, and use a vacuum induction furnace at a vacuum degree not higher than 1.0×10 -4 Under MPa, the prepared alloy is smelted into alloy mother liquor, and when the alloy mother liquor is solidified, an electric arc is used to preheat the ceramic crucible at low power. After the alloy is completely solidified into an ingot, it is moved to a preheated ceramic crucible to prevent the alloy ingot from contactin...
Embodiment 2
[0040]The high-strength and corrosion-resistant iron-nickel-based superalloy of this embodiment comprises: Cr: 15%, Ti: 0.7%, Al: 3.0%, Si: 0.5%, Mn: 0.5%, Cu: 3.0%, C : 0.1%, Fe: 45%, the balance is Ni;
[0041] The preparation method of the present embodiment comprises the following steps:
[0042] 1) Raw material preparation: The ingredients include by mass percentage: Cr: 15%, Ti: 0.7%, Al: 3.0%, Si: 0.5%, Mn: 0.5%, Cu: 3.0%, C: 0.1%, Fe: 45% %, the balance is Ni;
[0043] 2) Melting step: place the ceramic crucible and prepared raw materials in a vacuum melting furnace at the same time, and use a vacuum induction furnace at a vacuum degree not higher than 1.0×10 -4 Under MPa, the prepared alloy is smelted into alloy mother liquor, and when the alloy mother liquor is solidified, an electric arc is used to preheat the ceramic crucible at low power. After the alloy is completely solidified into an ingot, it is moved to a preheated ceramic crucible to prevent the alloy ing...
Embodiment 3
[0049] The high-strength and corrosion-resistant iron-nickel-based superalloy of this embodiment includes: Cr: 15%, Ti: 0.7%, Al: 3.0%, W: 1.0%, Si: 0.5%, Mn: 0.5%, C : 0.1%, Fe: 45%, the balance is Ni;
[0050] The preparation method of the present embodiment comprises the following steps:
[0051] 1) Raw material preparation: The ingredients include by mass percentage: Cr: 15%, Ti: 0.7%, Al: 3.0%, W: 1.0%, Si: 0.5%, Mn: 0.5%, C: 0.1%, Fe: 45% %, the balance is Ni;
[0052] 2) Melting step: place the ceramic crucible and prepared raw materials in a vacuum melting furnace at the same time, and use a vacuum induction furnace at a vacuum degree not higher than 1.0×10 -4 Under MPa, the prepared alloy is smelted into alloy mother liquor, and when the alloy mother liquor is solidified, an electric arc is used to preheat the ceramic crucible at low power. After the alloy is completely solidified into an ingot, it is moved to a preheated ceramic crucible to prevent the alloy ingot...
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