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EFFECTS OF THERMO-MECHANICAL TREATMENTS ON MICROSTRUCTURE OF Ti-43Al-9V-Y ALLOY

机译:热机械处理对Ti-43Al-9V-Y合金微观结构的影响

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Ti-43Al-9V-Y alloy billets was prepared by the quasi-isothermal canned forging processing, and effect of heat treatment processes on the microstructure of as-forged Ti-43Al-9V-Y alloy was investigated. The results show that, as-forged Ti-43Al-9V-Y alloy has streamline microstructure including a large number of recrystallized grains and broken lamellae, and different heat treatment processes were employed to obtain different microstructures of Ti-43Al-9V-Y alloy. After heat treatment at 1250°C, the microstructure of as-forged Ti-43Al-9V-Y alloy becomes γ+B2 microstructure. Comparing with the microstructure after HT of 1250°C/30 min, the precipitation of B2 lath phase in γ equiaxed grains increased and γ grains refined after HT of 1280°C/30min or 1320°C/30min. However, after the heat treatment of 1300°C/30 min, the duplex microstructures can be gained.
机译:通过准等温罐装锻造加工制备TI-43AL-9V-Y合金坯料,研究了热处理方法对锻造Ti-43al-9V-Y合金的微观结构的影响。结果表明,锻造的Ti-43Al-9V-Y合金具有流线微观结构,包括大量重结晶的晶粒和破碎的薄片,并且使用不同的热处理方法来获得不同的Ti-43Al-9V-Y合金微观结构。在1250℃下热处理后,锻造Ti-43Al-9V-Y合金的微观结构变为γ+ B2微观结构。与HTH的微观结构相比HT为1250℃/ 30分钟,γ等轴晶粒中的B2 Lath相的沉淀增加,在1280℃/ 30min或1320℃/ 30min后改进的γ晶粒。然而,在1300℃/ 30分钟的热处理后,可以获得双面微结构。

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