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Ni-free beta Ti alloys with shape memory and super-elastic properties

机译:无期βTi合金,具有形状记忆和超弹性性能

摘要

A group of substantially nickel-free beta-titanium alloys have shape memory and super-elastic properties suitable for, e.g., medical device applications. In particular, the present disclosure provides a titanium-based group of alloys including 16-20 at. % of hafnium, zirconium or a mixture thereof, 8-17 at. % niobium, and 0.25-6 at. % tin. This alloy group exhibits recoverable strains of at least 3.5% after axial, bending or torsional deformation. In some instances, the alloys have a capability to recover of more than 5% deformation strain. Niobium and tin are provided in the alloy to control beta phase stability, which enhances the ability of the materials to exhibit shape memory or super-elastic properties at a desired application temperature (e.g., body temperature). Hafnium and/or zirconium may be interchangeably added to increase the radiopacity of the material, and also contribute to the superelasticity of the material.
机译:一组基本上无镍的β-钛合金具有形状记忆和适用于例如医疗装置应用的超弹性性能。 特别地,本公开提供了一种基于钛的合金组,包括16-20。 铪,锆或其混合物的百分比,8-17℃。 %铌,0.25-6℃。 %锡。 在轴向,弯曲或扭转变形之后,该合金基团在轴向,弯曲或扭转变形后的可回收菌株至少为3.5%。 在某些情况下,合金具有恢复超过5%变形菌株的能力。 在合金中提供铌和锡以控制β相位稳定性,这提高了材料在所需的施加温度(例如,体温)下表现出形状记忆或超弹性性能的能力。 铪和/或锆可以互换添加以增加材料的辐射性,并且还有助于材料的超弹性。

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