Thermal processing method for preparing multi-scale and multi-configuration double-phase titanium alloy structure
A titanium alloy and multi-configuration technology, which is applied in the field of thermal processing of duplex titanium alloys, can solve the problems of unstable metastable phase, unfavorable microstructure, and cumbersome processing technology, and achieve good machinability, easy control, The effect of simple thermal processing process
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Embodiment 1
[0018] In an environment with argon as a protective gas, a TC4 duplex titanium alloy plate with a thickness of 2mm was heated to 950°C at 25°C / s and held for 40s, so that the proportion of the two phases was 60% for the α phase and 60% for the intergranular β phase. 40%, and then quickly sent to the rolling mill for rolling, rapid compression deformation with a reduction of 1mm, and a deformation strain rate of 10-12s -1 After the thermal deformation is completed, spray water to cool, and cool the titanium alloy plate from 950°C to room temperature at a cooling rate of 200-250°C / s. figure 1 It is the microstructure diagram of TC4 titanium alloy after deformation. The width of the α slab is measured to be about 0.29 μm, and it is found that the microstructure of the titanium alloy has a good effect of refining and has a multi-scale and multi-configuration structure.
Embodiment 2
[0020] In an environment with argon as a protective gas, a TC4 dual-phase titanium alloy plate with a thickness of 2mm was heated to 900°C at 30°C / s and held for 30s, so that the two-phase ratio α phase accounted for 70%, and the intergranular β phase accounted for 70%. 30%, and then quickly sent to the rolling mill for rolling, rapid compression deformation with a reduction of 1mm, and a deformation strain rate of 13-15s -1 , After the thermal deformation is completed, spray water to cool, and cool the titanium alloy plate from 900°C to room temperature at a cooling rate of 250-300°C / s. figure 2 It is the microstructure diagram of TC4 titanium alloy after deformation. The width of the α strip is measured to be about 0.28 μm, and it is found that the microstructure refinement effect of titanium alloy also exists.
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