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The effect of metastability on room temperature deformation behavior of β and α + β titanium alloys

机译:亚稳态对β和α+β钛合金室温变形行为的影响

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摘要

The deformation behavior of single-phase metastable β-titanium alloys and two-phase α+metastable-β alloys strongly depends on the degree of stability of the β-phase. Recently, it has been shown that the tensile deformation behavior, as well as the creep deformation behavior at low temperatures (<0.25T m), is strongly influenced by the degree of metastability. For example, the titanium β-alloy Ti–13.0wt%Mn, which has higher stability than the titanium β-alloy Ti–14.8wt%V, deforms by slip only; whereas the latter deforms by slip and twinning. In addition to the mechanical properties, the deformation mechanisms also depend on the degree of metastability. Further, the deformation mechanisms of a given metastable β-alloy depend on whether the β-phase is present by itself as a single-phase alloy, or in the presence of α-phase in the form of a two-phase alloy. For example, it was found that a metastable Ti–V alloy deforms by slip and twinning when it is in the form of a single-phase alloy, but deforms by slip and martensitic transformation when the same metastable β-phase is present in a two-phase α + β alloy. The mechanical properties of the metastable β alloys in turn depend on these deformation mechanisms. These recent developments are reviewed in this article.
机译:单相亚稳态β-钛合金和两相α+可转移-β合金的变形行为在很大程度上取决于β相的稳定性。最近,已经表明,亚稳态程度强烈影响拉伸变形行为以及在低温(<0.25T m )下的蠕变变形行为。例如,钛β合金Ti–13.0wt%Mn比钛β合金Ti–14.8wt%V具有更高的稳定性,只能通过打滑而变形。后者因打滑和孪生而变形。除了机械性能外,变形机理还取决于亚稳的程度。此外,给定的亚稳态β-合金的变形机理取决于β相本身是否以单相合金形式存在,或存在于以两相合金形式存在的α相中。例如,发现亚稳Ti–V合金为单相合金时会因滑移和孪生而变形,而当两种亚稳态β-相中存在相同的亚稳β相时会因滑移和马氏体相变而变形。相α+β合金。亚稳态β合金的机械性能又取决于这些变形机制。本文回顾了这些最新发展。

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