Low-chromium corrosion-resistant high-strength polycrystal high-temperature alloy and preparation method thereof
A high-temperature alloy and corrosion-resistant technology, which is applied in the field of low-chromium corrosion-resistant high-strength polycrystalline superalloy and its preparation, can solve the problems of alloy structure instability and influence, and achieve excellent oxidation resistance, excellent strength performance and corrosion resistance, The effect of excellent tissue stability
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Embodiment 1
[0036]The heat-resistant steel material of this embodiment includes by mass percentage: Cr: 17%, Co: 20%, Ti: 1.5%, Al: 4.0%, W: 7.0%, Si: 0.5%, Mn: 0.5%, Nb: 1.0%, C: 0.04%, the balance being Ni;
[0037] The preparation method of the present embodiment comprises the following steps:
[0038] 1) Raw material preparation: The ingredients include by mass percentage: Cr: 17%, Co: 20%, Ti: 1.5%, Al: 4.0%, W: 7.0%, Si: 0.5%, Mn: 0.5%, Nb: 1.0 %, C: 0.04%, the balance is Ni;
[0039] 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 i...
Embodiment 2
[0045] The heat-resistant steel material of this embodiment includes by mass percentage: Cr: 17%, Co: 20%, Ti: 1.0%, Al: 4.0%, W: 8.5%, Si: 0.5%, Mn: 0.5%, Nb: 1.5%, C: 0.04%, the balance being Ni;
[0046] The preparation method of the present embodiment comprises the following steps:
[0047] 1) Raw material preparation: The ingredients include by mass percentage: Cr: 17%, Co: 20%, Ti: 1.0%, Al: 4.0%, W: 8.5%, Si: 0.5%, Mn: 0.5%, Nb: 1.5% %, C: 0.04%, the balance is Ni;
[0048] 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...
Embodiment 3
[0073] 1) Alloy preparation: Alloy components meet the following range requirements by mass percentage: Cr: 15%, Co: 15%, Ti: 0.5%, Al: 3.5%, W: 5%, Si: ≤0.5%, Mn: ≤0.5 %, Nb: 0.5%, C: 0.03%, the balance is Ni;
[0074] 2) Smelting: Melt the prepared alloy into alloy mother liquor, then use electroslag remelting process to refine, cool, after the alloy mother liquor is solidified into ingot and before the ingot temperature reaches 900°C, control the cooling rate not to exceed 15°C / min , after the ingot temperature reaches 900°C, it is cooled to room temperature at a cooling rate exceeding 10°C / min;
[0075] 3) Homogenization treatment: take out the ingot, then heat the ingot to 1030°C for half an hour, then heat it in a heat treatment furnace at 1170°C for 23 hours, and finally cool to room temperature to obtain a superalloy ingot;
[0076] 4) Hot rolling: the ingot is rolled, the total deformation is 50%, the deformation of each pass is controlled at 15%, and the deformation...
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