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Isothermal forging of titanium aluminides without beta-phase - Using non-equilibrium phases produced by spark plasma sintering for improved hot working behavior

机译:无需β相的钛铝化物的等温锻造 - 使用由火花等离子体烧结产生的非平衡阶段,以改善热工作行为

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摘要

This paper investigates the hot forgeability of a TNB-V5 (Ti-45Al-5Nb-0.2B-0.2C, at.%) alloy produced by spark plasma sintering (SPS) from pre-alloyed powder particles using the concept of processing maps. For the first time in this paper, to the best of our knowledge, we report the possibility of the isothermal forging of a TiAl alloy without the necessity to induce the ductile beta-phase in the microstructure, by using non-equilibrium phases produced by SPS. At room temperature, the SPSed sample reveals a homogeneous equiaxed microstructure consisting of globular alpha(2)-and gamma-grains with the alpha(2)-phase formed mainly at the necks between powder particles as confirmed by EBSD analyses. The necks contain a lower Al content and thus transform into alpha-phase upon heating to forging temperature. A stable plastic flow is observed for all ranges of the studied strain rates. The presence of a fine equiaxed microstructure at hot working temperature seems to ensure good workability and leads to a relatively wide processing window. The processing map reveals two safe processing windows for the studied alloy. The lower strain rate domain (10(-3).10(-2) s(-1)) corresponding to a strain rate sensitivity value of approximate to 0.8 represents superplasticity of the fine and uniform (alpha + gamma) equiaxed microstructure. The higher strain rate domain (10(-2)-10(-1) s(-1), T 1215 degrees C) with a strain rate sensitivity value of approximate to 0.45 represents dynamic recrystallization of the alpha-grains at elevated temperatures. The processing map also exhibits a domain of flow instability represented by the deformation conditions of T 1215 degrees C and epsilon 10(-2) s(-1) , which might result from the void formation and/or cracking. Although the TNB-V5 alloy was not designed for forging operations, the SPS process can create a homogeneous equiaxed microstructure consisting of globular alpha- and gamma-grains decorating the interfaces and triple junctions between former powder particles leading to a good hot workability. The current study offers a new process design strategy by opening up the possibility of using local non-equilibrium conditions in the material during the forging process, which could stabilize the ductile phases locally.
机译:本文研究了通过使用处理地图的概念从预合金粉末颗粒产生的火花血浆烧结(SPS)产生的TNB-V5(Ti-45Al-0.2b-0.2b-0.2c,0.%)合金的热折衷性。在本文的首次,据我们所知,我们通过使用SPS产生的非平衡相。在室温下,SPSED样品揭示了由球状α(2) - 和γ-粒组成的均匀等式的微观结构,其主要由EBSD分析证实的粉末颗粒之间的颈部形成。颈部含有较低的Al含量,从而在加热到锻造温度时转化成α相。对于研究的应变率的所有范围,观察到稳定的塑料流动。在热工作温度下的细能细胞的存在似乎确保了良好的可加工性并导致相对宽的处理窗口。处理地图显示了用于研究合金的两个安全的处理窗口。对应于近似为0.8的应变速率敏感值的低应变率域(10(-3).10(-2))(-1))表示细细和均匀(α+γ)等轴微结构的超塑性。具有近似为0.45的应变速率灵敏度值的较高应变率结构域(10(-2)-10(-1)S(-1),T> 1215℃表示α-粒度的动态重结晶温度。处理地图还表现出由T&LT的变形条件表示的流动不稳定性的领域。 1215℃和epsilon& 10(-2)S(-1),可能由空隙形成和/或开裂引起。虽然TNB-V5合金没有设计用于锻造操作,但SPS工艺可以产生由球状α-和γ-谷物组成的均匀等式的微观结构,装饰前粉末颗粒之间的界面和三重连接,导致良好的热可加工性。目前的研究通过在锻造过程中开辟了在材料中使用本地非平衡条件的可能性,提供了新的工艺设计策略,这可以在本地稳定延展阶段。

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