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Effect of carbon addition on solidification behavior, phase evolution and creep properties of an intermetallic $\beta$-stabilized $\gamma$-TiAl based alloy

机译:碳添加对金属间$ \ beta $稳定的$ \γ$ -TiAl基合金的凝固行为,相演变和蠕变性能的影响

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摘要

Improving mechanical properties of advanced intermetallic multi-phase γ-TiAl based alloys, such as the Ti-43.5Al-4Nb-1Mo-0.1B alloy (in at.%), termed TNM alloy, is limited by compositional and microstructural adaptations. A common possibility to further improve strength and creep behavior of such β-solidifying TiAl alloys is e.g. alloying with β-stabilizing substitutional solid solution hardening elements Nb, Mo, Ta, W as well as the addition of interstitial hardening elements C and N which are also carbide and nitride forming elements. Carbon is known to be a strong α-stabilizer and, therefore, alloying with C is accompanied by a change of phase evolution. The preservation of the solidification pathway via the β-phase, which is needed to obtain grain refinement, minimum segregation and an almost texture-free solidification microstructure, in combination with an enhanced content of C, requires a certain amount of β-stabilizing elements, e.g. Mo. In the present study, the solidification pathway, C-solubility and phase evolution of C-containing TNM variants are investigated. Finally, the creep behavior of a refined TNM alloy with 1.5 at.% Mo and 0.5 at.% C is compared with that exhibiting a nominal Ti-43.5Al-4Nb-1Mo-0.1B alloy composition.
机译:先进的金属间多相γ-TiAl基合金(例如称为TNM合金的Ti-43.5Al-4Nb-1Mo-0.1B合金(以原子%计))的机械性能受到成分和微观结构适应性的限制。进一步改善这种β-凝固TiAl合金的强度和蠕变行为的常见可能性是例如。与β稳定的替代固溶硬化元素Nb,Mo,Ta,W合金化,以及添加间隙硬化元素C和N,后者也是碳化物和氮化物形成元素。碳是一种很强的α稳定剂,因此,与C合金化会伴随相变的变化。要获得晶粒细化,最小的偏析和几乎无织构的凝固微观结构,需要通过β相保存凝固路径,同时增加C的含量,需要一定量的β稳定元素,例如Mo.在本研究中,研究了含C的TNM变体的固化途径,C溶解性和相演化。最后,将具有1.5at。%Mo和0.5 at。%C的精制TNM合金的蠕变行为与表现出标称Ti-43.5Al-4Nb-1Mo-0.1B合金成分的蠕变行为进行了比较。

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