Double-phase high-strength and high-plasticity titanium alloy with heterogeneous laminated structure and preparation method thereof
A laminated structure and titanium alloy technology, applied in the field of metal materials, can solve problems such as hindering the development of metastable β titanium alloy, decreasing elongation and work hardening rate, and difficult to control the content of precipitated α phase.
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[0037] A method for preparing a dual-phase high-strength and high-plasticity titanium alloy with a heterogeneous laminated structure, comprising the following steps:
[0038] Step 1. Heat the titanium alloy in the β single-phase region at 1000-1200°C in a muffle furnace for 1-2 hours, and then quench it to room temperature to obtain a uniform β-phase;
[0039]Step 2, heating the alloy obtained in step 1 to a temperature above the transformation point again, and rolling after keeping the temperature for 10-20 minutes.
[0040] The temperature of the phase transition point is 760±5°C, the heating temperature is from the phase transition point temperature to 10°C above the phase transition point temperature, and the heating temperature is 765-775°C.
[0041] Step 3. The titanium alloy obtained in step 2 is rolled across β, and the rolling reduction in a single pass is 4 to 10% of the rolling deformation. After each 1 to 2 passes of rolling, the temperature is lower than the phase...
Embodiment 1
[0055] A dual-phase TRIP / TWIP titanium alloy with a heterogeneous laminated structure and a hot rolling method thereof, comprising the following steps:
[0056] Step 1. Heat the 9mm thick Ti-Al-Mo-Cr-Zr metastable β-titanium alloy plate in a muffle furnace at 1000°C for 60 minutes, and then quench it to room temperature;
[0057] The composition of Ti-Al-Mo-Cr-Zr metastable β titanium alloy is 0.5-1.5% Al, 8-9% Mo, 2.5-4% Cr, 3-4% Zr, and the balance is Ti and Some other unavoidable impurities.
[0058] Step 2, heat the 9mm thick Ti-Al-Mo-Cr-Zr metastable alloy plate at 770°C for 10min in a muffle furnace;
[0059] Step 3. Take it out for rolling. The reduction in a single pass is 5%. After every two passes of rolling, the sample is returned to the furnace and kept at 770° C. for 1 min. The total rolling reduction is 90%.
[0060] Step 4. Immediately put the rolled sample into a muffle furnace, keep it at 770° C. for 1 min, and then quench it to room temperature to obtain a ...
Embodiment 2
[0064] A dual-phase high-strength and high-plasticity TRIP / TWIP titanium alloy with a heterogeneous laminated structure and a hot rolling method thereof, comprising the following steps:
[0065] Step 1. Heat the 9mm thick Ti-Al-Mo-Cr-Zr metastable β-titanium alloy plate in a muffle furnace at 1000°C for 60 minutes, and then quench it to room temperature;
[0066] The composition of Ti-Al-Mo-Cr-Zr metastable β titanium alloy is 0.5-1.5% Al, 8-9% Mo, 2.5-4% Cr, 3-4% Zr, and the balance is Ti and Some other unavoidable impurities.
[0067] Step 2, keeping the 9mm thick Ti-Al-Mo-Cr-Zr metastable β-titanium alloy sheet in a muffle furnace at 770°C for 10 minutes;
[0068] Step 3. Take it out for rolling. The reduction in a single pass is 5%. After every two passes of rolling, the sample is returned to the furnace and kept at 770° C. for 1 min. The total rolling reduction is 90%.
[0069] Step 4. Immediately put the rolled sample into the muffle furnace, hold it at 770°C for 3 min...
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