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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Aging on Superelastic Behaviors of a Metastable β Ti-Mo-based alloy
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Effect of Aging on Superelastic Behaviors of a Metastable β Ti-Mo-based alloy

机译:时效对亚稳态βTi-Mo基合金超弹性行为的影响

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Effect of aging on the tensile and superelasticity (SE) behaviors of Ti-9.8Mo-3.9Nb-2V-3.1Al (wt.%) alloy have been investigated. It is found that the ultimate tensile strength (UTS) and yield strength of aged alloy change with the aging temperature following a nonlinear relationship due to aα-phase and α-phase precipitates. The SE, especially elastic recovery behavior, is closely related with the morphology of α-phase precipitates, as well as α-phase formed during aging. At a maximum tensile strain of 4%, the specimen aged at 673 K with ω + α-phase precipitates shows a superelastic recovery strain of 3.2%. Lots of α-phase precipitates, distributing homogeneously in specimen aged at 773 K, result in the lost of SE. A maximum recovery strain of 3.3% is obtained for specimens aged at 873 or 973 K for 30 min, with coarse short bar-like α-phase precipitates.
机译:研究了时效对Ti-9.8Mo-3.9Nb-2V-3.1Al(wt。%)合金的拉伸和超弹性(SE)行为的影响。发现时效合金的极限抗拉强度(UTS)和屈服强度随时效温度的变化而变化,这是由于α相和α相析出物​​之间存在非线性关系。 SE,特别是弹性回复行为,与α相沉淀物的形态以及老化过程中形成的α相密切相关。在4%的最大拉伸应变下,在673 K下老化的具有ω+α相沉淀物的试样显示出3.2%的超弹性回复应变。许多α相沉淀物均匀分布在773 K时效样品中,导致SE的损失。对于在873或973 K下老化30分钟的样品,最大的恢复应变为3.3%,且粗大的短条状α相沉淀物。

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