Influence of alloying elements on hardness of experimental pseudo-β-titanium alloys

S. Skvortsova, G. T. Zainetdinova, G. Gurtovaya, M. D. Tevs
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Abstract

The influence of alloying elements on the structure and hardness of experimental titanium-based pseudo-β-alloys in the initial cast state, after all-round forging at 900 °C, subsequent quenching from the temperatures of β- and (α+β)-regions and aging at 500 °C within 1—10 hours has been studied. It was established that the Ti—6Al—4V—1Mo—1Cr—3.5Fe—2Sn—2Zr—0.15C alloy had the maximum hardness (53.5 HRC) in the case of aging at 500 °C for 6 hours after preliminary quenching from (α+β)-region.
合金元素对实验伪β钛合金硬度的影响
研究了合金元素对钛基伪β合金初铸态、900℃全面锻造、β区和(α+β)区淬火、500℃时效1 ~ 10h组织和硬度的影响。结果表明,Ti-6Al-4V-1Mo-1Cr-3.5Fe-2Sn-2Zr-0.15C合金在(α+β)区初淬后,500℃时效6 h,硬度达到53.5 HRC。
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