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Investigation on the microstructure evolution and dynamic recrystallization mechanisms of TiAl alloy at elevated temperature

机译:升高温度下Tial合金微观结构演化和动态再结晶机理的研究

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The flow stress–strain curves appear to be sensitive to deformation conditions. The ratio of critical strain to peak strain εc/εp follows a linear relationship except when the temperature is 1240 °C and the strain rate is 0.001 s-1. During the deformation, the fragmentation and decomposition of γ/α2 lamellae are related to recrystallization of α2 and γ laths in the lamellae and the γ → α2 phase transformation, the former depends on dislocation slip and twinning, and the latter is related to temperature, local stress concentration and diffusion time. As for the recrystallization mechanisms, the γ phase is discontinuous dynamic recrystallization (DDRX) mode, while the α2 phase relies on continuous dynamic recrystallization (CDRX) mode. The β phase has more low-angle grain boundaries (LAGB) during deformation, indicating the continuous coordinated deformation, and this explains the enlarged hot working window of the TiAl alloy (1165–1240 °C/0.001 ~ 1 s-1 and 1120–1165 °C/0.001–0.4 s-1).
机译:流量应变曲线似乎对变形条件敏感。除峰应变εc/εp的临界应变比的比例遵循线性关系,除了温度为1240℃并且应变率为0.001 s-1时。在变形期间,γ/α2薄片的碎裂和分解与薄片和γ→α2相变的α2和γ板条的重结晶有关,前者取决于位错滑动和孪生,后者与温度有关,局部应力集中和扩散时间。至于重结晶机制,γ相是不连续的动态再结晶(DDRX)模式,而α2相位依赖于连续动态再结晶(CDRX)模式。 β相在变形期间具有更低的低角度晶界(LAGB),表明连续配位变形,这解释了Tial合金的扩大的热工作窗口(1165-1240°C / 0.001〜1 S-1和1120- 1165°C / 0.001-0.4 S-1)。

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