High-strength and fatigue-resistant titanium ring and preparing method thereof
A fatigue-resistant and high-strength technology, applied in the field of titanium ring materials, can solve the problems of low efficiency, inconsistent lines, time-consuming and labor-intensive, etc., and achieve the effect of high efficiency, clear grain boundaries, and ensuring consistency and stability.
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Embodiment 1
[0025] (1) Using 0-grade sponge titanium, pure Al with a purity >99%, pure Cr with a purity >99%, Al-85Mo master alloy, Al-85V master alloy, and Ti-32Mo master alloy as ingredients, the purity is greater than 99%. The consumable electrode is smelted in a vacuum consumable electric arc furnace twice to make a Ti-Al-Mo-V-Cr alloy ingot, wherein the weight percentage of each component in the Ti-Al-Mo-V-Cr alloy ingot is Al: 3.5%, V: 6%, Cr: 6%, Mo: 5%, impurity content < 0.2%, and the rest is Ti alloy, the mass ratio of primary α phase in the Ti alloy is 8%, and the primary The ratio of the horizontal and vertical directions of the striped α phase is 1-2.5.
[0026] (2) The Ti-Al-Mo-V-Cr alloy ingot was billeted at 1050°C, with a deformation of 60%. After several times of cooling and reversing forging, the final forging temperature was 760-810°C, and the accumulated deformation was 80%. , and made into a 900×75×35mm square rod Ti ingot.
[0027] (3) Forge the Ti ingot into a bi...
Embodiment 2
[0030] (1) Using 0-grade sponge titanium, pure Al with a purity >99%, pure Cr with a purity >99%, Al-85V master alloy, and Ti-32Mo master alloy ingredients, the purity is greater than 99% and pressed into a consumable electrode. Secondary vacuum consumable electric arc furnace smelting to make Ti-Al-Mo-V-Cr alloy ingot, wherein the weight percentage of each component in the Ti-Al-Mo-V-Cr alloy ingot is Al: 4%, V: 5%, Cr: 6%, Mo: 5%, impurity content <0.2%, and the rest is Ti alloy, which contains primary α phase in a mass ratio of 15%, and the transverse The longitudinal ratio is 1-3.
[0031] (2) The Ti-Al-Mo-V-Cr alloy ingot was billeted at 1050°C, with a deformation of 60%. After several times of cooling and reversing forging, the final forging temperature was 760-780°C, and the accumulated deformation was 75%. , made of φ18mm rod Ti ingot.
[0032](3) Forge the Ti ingot into a billet of 170×60mm, roll it to a thickness of 5.6mm in one direction, level it after annealing ...
Embodiment 3
[0035] (1) Using 0-grade sponge titanium, pure Al with a purity >99%, pure Cr with a purity >99%, Al-85Mo master alloy, Al-85V master alloy, and Ti-32Mo master alloy as ingredients, the purity is greater than 99%. The consumable electrode is smelted in a vacuum consumable electric arc furnace twice to make a Ti-Al-Mo-V-Cr alloy ingot, wherein the weight percentage of each component in the Ti-Al-Mo-V-Cr alloy ingot is It is Al: 4.5%, V: 6%, Cr: 6%, Mo: 5%, impurity content <0.2%, and the rest is Ti alloy. The mass ratio of the primary α phase in the Ti alloy is 3.5%. The ratio of the horizontal and vertical directions of the striped α phase is 2-3.
[0036] (2) The Ti-Al-Mo-V-Cr alloy ingot was billeted at 1050°C, with a deformation of 60%. After several times of cooling and reversing forging, the final forging temperature was 760-790°C, and the accumulated deformation was 85%. , and made into a 30×30×1000mm plate Ti ingot.
[0037] (3) Forge the Ti ingot into a billet of 170...
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