Multi-alloying beta-phase-solidified high Nb-TiAl alloy and preparation method thereof
A technology of multiple alloys and alloys, applied in the field of alloys, to achieve the effect of easy operation and simple process of the process
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Embodiment 1
[0024] The preparation of the multi-alloyed β-phase solidification high Nb-TiAl alloy of this embodiment is achieved through the following steps: 1. Weigh the following raw materials: sponge titanium, high-purity aluminum, aluminum-niobium master alloy, aluminum-tungsten-niobium master alloy and electrolytic chromium flakes , Of which Ti46.3at.%, Al45at.%, Nb8at.%, W0.2at.%, Cr0.5at.%; 2. The raw materials weighed in step 1 are pressed into a metal briquetting machine. First put the titanium sponge on the inner edge of the mold, and then the bottom of the area enclosed by the titanium sponge is the high-purity aluminum layer, the aluminum-niobium intermediate alloy layer, the electrolytic chromium sheet, the aluminum-tungsten-niobium intermediate alloy layer and the sponge. Titanium layer; 3. Put the compact obtained in step 2 into a centrifugal pourable water-cooled copper crucible vacuum induction levitation melting furnace. Before melting, preheat the metal mold to 400℃, and ...
Embodiment 2
[0027] The preparation of the multi-alloyed β-phase solidification high Nb-TiAl alloy of this embodiment is achieved through the following steps: 1. Weigh the following raw materials: sponge titanium, high-purity aluminum, aluminum-niobium master alloy, aluminum-tungsten-niobium master alloy and electrolytic chromium flakes , Including Ti48.3at.%, Al43at.%, Nb8at.%, W0.2at.%, Cr0.5at%; 2. The raw materials weighed in step 1 are pressed into a metal briquetting machine, and the first Place the titanium sponge on the inner edge of the mold, and then the bottom of the area enclosed by the titanium sponge is high-purity aluminum layer, aluminum-niobium intermediate alloy layer, electrolytic chromium sheet, aluminum-tungsten-niobium intermediate alloy layer and titanium sponge Layer; 3. Put the compact obtained in step 2 into a centrifugal pourable water-cooled copper crucible vacuum induction levitation melting furnace, preheat the metal mold to 500°C before melting, and pump the wa...
Embodiment 3
[0030] The preparation of the multi-alloyed β-phase solidification high Nb-TiAl alloy of this embodiment is achieved through the following steps: 1. Weigh the following raw materials: sponge titanium, high-purity aluminum, aluminum-niobium master alloy, aluminum-tungsten-niobium master alloy and electrolytic chromium flakes , Among which Ti47.6at.%, Al44at.%, Nb8at.%, W0.1at.%, Cr0.3at%; 2. The raw materials weighed in step 1 are pressed into a metal briquetting machine. Place the titanium sponge on the inner edge of the mold, and then the bottom of the area enclosed by the titanium sponge is high-purity aluminum layer, aluminum-niobium intermediate alloy layer, electrolytic chromium sheet, aluminum-tungsten-niobium intermediate alloy layer and titanium sponge Layer; 3. Put the compact obtained in step 2 into a centrifugal pourable water-cooled copper crucible vacuum induction levitation melting furnace, preheat the metal mold to 300 ℃ before melting, and pump the water-cooled c...
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