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Effect of tantalum addition on the tensile properties of V-Ta-4Cr-4Ti quaternary alloys

机译:钽加入对V-TA-4CR-4TI季合金拉伸性能的影响

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Various V-Ta-4Cr-4Ti quaternary alloys containing different amounts of Ta were investigated to determine the effect of Ta concentration on their tensile properties. Six button-shaped ingots of V-xTa-4Cr-4Ti alloys (x = 4, 8, 15, 22, 24, and 35 wt.%) were fabricated on a laboratory scale by using non-consumable arc-melting in argon atmosphere. The sheet specimens for all the V-Ta-4Cr-4Ti alloys examined herein were obtained by cold-rolling; hot-rolling or intermediate annealing was not required. Although the examined alloys were fabricated on a laboratory scale, the high-Ta alloys, unlike the high-Cr alloys, did not experience crack formation in the cold rolling process. It is possible that V-4Cr-4Ti alloys adopt large amount of Ta and its strengthening effect without negative impact on rolling fabricability. Tensile strength tended to increase with increasing Ta content at both room temperature and high temperatures of 973 K and 1073 K, which can be attributed to the solid solution strengthening by Ta. Thus, addition of Ta to V-4Cr-4Ti alloys can improve their strength without decreasing their rolling fabricabilities. However, an alloy containing excess Ta (V-35Ta-4Cr-4Ti) showed a loss of ductility and a brittle fracture mode due to the formation of a large amount of friable Laves phase. Therefore, it is necessary to limit the amount of Ta to prevent the formation of the Laves phase.
机译:研究了含有不同量TA的各种V-TA-4CR-4TI季合金,以确定TA浓度对其拉伸性能的影响。通过在氩气氛中使用非耗材弧形熔化,在实验室秤上制造六个纽扣形状的V-XTA-4CR-4TI合金(X = 4,8,15,22,24和35重量%) 。通过冷轧获得的所有V-TA-4CR-4TI合金的片样品;不需要热轧或中间退火。尽管在实验室规模上制造了检查的合金,但与高Cr合金不同,高Ta合金并未在冷轧过程中经历裂缝形成。 V-4CR-4TI合金可以采用大量的TA及其强化效果,而不会对轧制生产性产生负面影响。抗拉强度倾向于随着TA含量的增加,在室温和973k和1073k的高温下增加,这可以归因于TA强化的固溶体。因此,TA至V-4CR-4TI合金的添加可以改善它们的强度而不会降低其轧制脂肪量。然而,由于形成大量易碎的疏浚阶段,含有过量的Ta(V-35TA-4Cr-4Ti)的合金显示延展性和脆性断裂模式。因此,有必要限制TA的量,以防止形成疏浚阶段。

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