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Characterization of hot deformation behavior of a P/M nickel-base superalloy using processing map and activation energy

机译:使用加工图和活化能表征P / M镍基高温合金的热变形行为

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The hot deformation behavior of a nickel-base superalloy prepared by powder metallurgy (P/M) was investigated by using isothermal constant strain rate compressing tests conducted in deformation temperature from 1000 ℃ to 1100 ℃ and strain rate from 0.001 s~(-1) to 1 s~(-1). The true stress-true strain curves show that the alloy has higher strength at the temperature of 1000℃. The processing maps for hot working were established based on the variations of efficiency of powder dissipation with deformation temperature and strain rate, interpreted using dynamic material model (DMM). The processing maps demonstrate that strain markedly affected the instability regions. The efficiencies of powder dissipation obtained in the strain range from 0.1 to 0.7 are essentially similar, which indicates that strain has a slight influence on it. The alloy exhibits a better workability in deformation temperature range from 1060 ℃ to 1100℃ and strain rate range from 1 × 10~(-1.5)s~(-1) to 1 × 10~(-0.5)s~(-1) owing to lower activation energy. Moreover, the fine recrystallized grain region can be identified on the basis of Zener-Hollomon parameter map at strain of 0.6.
机译:采用等温恒应变率压缩试验,在变形温度1000℃至1100℃,应变率0.001 s〜(-1)下,研究了粉末冶金法制备的镍基高温合金的热变形行为。至1 s〜(-1)。真实应力-真实应变曲线表明,该合金在1000℃温度下具有较高的强度。根据粉末散逸效率随变形温度和应变速率的变化建立了热加工工艺图,并使用动态材料模型(DMM)进行了解释。加工图表明,应变显着影响了不稳定性区域。在0.1至0.7的应变范围内获得的粉末耗散效率基本相似,这表明应变对其具有轻微的影响。该合金在1060℃至1100℃的变形温度范围内,应变率在1×10〜(-1.5)s〜(-1)至1×10〜(-0.5)s〜(-1)范围内具有较好的加工性能。由于较低的活化能。此外,可以基于0.6应变下的齐纳-所罗门参数图来识别细微的再结晶晶粒区域。

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