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Microstructural Evolution During the Hot Deformation of Ti-55Ni (at. pct) Intermetallic Alloy

机译:Ti-55Ni(at。pct)金属间合金热变形过程中的微观组织演变

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The hot deformation behavior of Ti-55Ni (at. pct) alloy was studied using compression testing at 1173 K (900℃) to 1323 K (1050℃) and at the strain rates of 0.001 to 0.35 s~(-1). The microstructure evolution was characterized using optical and scanning electron microscopy (SEM). The influences of hot-working parameters on the flow stress and microstructural features of this alloy were then analyzed. The results indicate that, depending on the temperature and strain rate, the dynamic recrystallization (DRX) is the dominate mechanism. Besides, the particle-stimulated nucleation (PSN) mechanism could partially recrystallize the structure. The PSN phenomenon is of significant importance for the Ti-55Ni (at. pct) that suffers from insufficient workability because of its high content of intermetallic phases. It is of interest that the discontinuous yielding phenomenon has been observed when the specimens were deformed at 1173 K (900℃). Finally, the optimum parameters for hot working of Ti-55Ni (at. pct) alloy are determined as well.
机译:利用压缩试验在1173 K(900℃)至1323 K(1050℃)以及0.001至0.35 s〜(-1)的应变速率下研究了Ti-55Ni(at。pct)合金的热变形行为。使用光学和扫描电子显微镜(SEM)表征微观结构的演变。然后分析了热加工参数对合金流动应力和微观组织特征的影响。结果表明,取决于温度和应变速率,动态重结晶(DRX)是主要机理。此外,粒子激发成核(PSN)机制可以使结构部分重结晶。 PSN现象对于Ti-55Ni(at。pct)非常重要,因为它的金属间相含量很高,因此可加工性不足。有趣的是,当样品在1173 K(900℃)下变形时,观察到不连续屈服现象。最后,还确定了Ti-55Ni(at。pct)合金热加工的最佳参数。

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