Preparation method of TC6 titanium alloy large-sized bar
A titanium alloy, large-scale technology, which is applied in the field of preparation of large-scale TC6 titanium alloy bars, can solve the problems of reducing the processing and forging times of large-scale titanium alloys, reducing the number of fires, and low preparation efficiency, and achieving excellent product quality, Reduce the number of fires, good tissue uniformity
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Embodiment 1
[0030] This embodiment includes the following steps:
[0031] Step 1. Carrying out the drawing and billet forging of the TC6 titanium alloy ingot once to obtain a primary billet; the TC6 titanium alloy ingot is a cylindrical ingot with a cross-sectional diameter of 690 mm, and the transverse diameter of the primary billet is The cross-section is a square with a side length of 500 mm, the initial forging temperature in the drawing and blanking forging is 1150°C, the forging ratio is 2.4, the material width ratio is 1.2, and the reduction rate is 15%;
[0032] Step 2: Slitting and blanking the primary billet described in step 1, and then subjecting the primary billet after slitting and blanking to the initial forging temperature of (Tβ+50)°C for the first time Elongated and spheronized forging to obtain an intermediate billet; the Tβ is the β phase transition temperature of the TC6 titanium alloy, and the unit of Tβ is °C; the forging ratio of the first elongated and spheronized...
Embodiment 2
[0038] This embodiment includes the following steps:
[0039] Step 1. Carrying out the drawing and billet forging of the TC6 titanium alloy ingot once to obtain a primary billet; the TC6 titanium alloy ingot is a cylindrical ingot with a cross-sectional diameter of 720mm, and the transverse diameter of the primary billet is The cross-section is a square with a side length of 410mm, the initial forging temperature in the forging of the drawing square is 1100°C, the forging ratio is 1.8, the material width ratio is 0.8, and the reduction ratio is 40%;
[0040] Step 2. Slitting and blanking the primary billet described in step 1, and then subjecting the primary billet after slitting and blanking to the initial forging temperature of (Tβ+40)°C for the first time Elongated and spheronized forging to obtain an intermediate billet; the Tβ is the β phase transition temperature of the TC6 titanium alloy, and the unit of Tβ is °C; the forging ratio of the first elongated and spheronized...
Embodiment 3
[0046] This embodiment includes the following steps:
[0047] Step 1. Carrying out the drawing and billet forging of the TC6 titanium alloy ingot once to obtain a primary billet; the TC6 titanium alloy ingot is a cylindrical ingot with a cross-sectional diameter of 540mm, and the transverse diameter of the primary billet is The cross-section is a square with a side length of 300mm, the initial forging temperature in the forging of the drawing square is 1000°C, the forging ratio is 2, the material width ratio is 1, and the reduction rate is 20%;
[0048] Step 2: Slitting and blanking the primary billet described in step 1, and then subjecting the primary billet after slitting and blanking to the initial forging temperature of (Tβ+30)°C for the first time Elongated and spheronized forging to obtain an intermediate billet; the Tβ is the β phase transition temperature of the TC6 titanium alloy, and the unit of Tβ is °C; the forging ratio of the first elongated and spheronized forg...
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