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Alloy Design and Properties of New α+β Titanium Alloy with Excellent Cold Workability, Superplasticity and Cytocompatibility

机译:具有优异的冷加工性,超塑性和细胞相容性的新型α+β钛合金的合金设计和性能

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Alloy designing and evaluation of various properties of new α+β type titanium alloy with excellent cold workability, superplasticity, and cytocompatibility were conducted. Alloy designing was performed by investigations of the effects of O, Al, Mo, Fe, and Nb contents on cold workability of the alloy with a basic composition of Ti-4.5%AI-4.5%Nb-2%Fe-2%Mo. Use of β stabilizing elements such as V, Ni, or Cu was avoided for biocompatibility. Cold workability was evaluated on the basis of a critical rolling reduction for onset of cracking, hardness under as solution treated condition and hardness variations with a cold rolling reduction. Excellent cold workability was obtained by enhanced thermal and mechanical stabilities of β phase and by lowered hardness of α phase in the α+β two-phase microstructure. Newly developed alloy Ti-4.5%AI-6%Nb-2%Fe-2Mo showed the β transus of 1 156 K, a critical rolling reduction over 60%, and yield strength in recrystallization annealing of 910 MPa. An extremely fine α+β two-phase microstructure with α grain size of approximately 1 μm was evolved by annealing at 1 048 to 1 073 K, and a superplastic elongation value of around 3 000% was obtained by tensile testing at these temperatures. New alloy showed an excellent cytocompatibility in a cell culture test using L929 cells, yielding a higher value of cell viability over Ti-6%AI-4%V and Ti-6%AI-7%Nb alloys.
机译:进行了具有优异的冷加工性,超塑性和细胞相容性的新型α+β型钛合金的合金设计和各种性能的评估。通过研究O,Al,Mo,Fe和Nb含量对基本成分为Ti-4.5%Al-4.5%Nb-2%Fe-2%Mo的合金的冷加工性能的影响来进行合金设计。为了生物相容性,避免使用β稳定元素,例如V,Ni或Cu。基于开裂的临界轧制率,固溶处理条件下的硬度以及冷轧率的硬度变化来评价冷加工性。通过增强β相的热稳定性和机械稳定性以及降低α+β两相微结构中α相的硬度,可以获得出色的冷加工性能。新开发的Ti-4.5%Al-6%Nb-2%Fe-2Mo合金的β相变值为1 156 K,临界压下率超过60%,重结晶退火的屈服强度为910 MPa。通过在1,048至1,073 K下退火,形成了α晶粒尺寸约为1μm的极细α+β两相组织,并通过在这些温度下的拉伸试验获得了约3,000%的超塑性伸长率。新合金在使用L929细胞的细胞培养测试中显示出优异的细胞相容性,比Ti-6%AI-4%V和Ti-6%AI-7%Nb合金具有更高的细胞活力值。

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