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Investigation on hot deformation behavior of P/M Ni-base superalloy FGH96 by using processing maps

机译:利用加工图研究P / M Ni基高温合金FGH96的热变形行为

摘要

The hot deformation behavior of a powder metallurgy (P/M) Ni-base superalloy FGH96 was investigated at the temperature (T) of 1050-1140°C, strain rate (ε̇) of 0.002-1.0s-1, and the height reduction of 20-50% via isothermal hot compression experiment. The flow behavior and the microstructural mechanism of the synthesized superalloy were systematically studied. The processing map was constructed based on the experiment data to evaluate the efficiency of power dissipation and recognize the instability regimes for forging process determination. The processing map with the strain of 0.15 exhibits a smooth and small variation of η and predicts a little instability regime confined at (T: 1050°C, ε̇: 1.0 s-1), attributed to the previous particle boundary (PPB) cracks. The map obtained at the strain of 0.65 reveals a large domain with the efficiency above 40% and predicts two instability regimes at around (1050°C, 1s-1) and located in the regime of (T: 1080-1140°C, ε̇: 0.002-0.01 s-1), respectively. The optimum processing condition is identified as (T: 1140°C, ε̇: 1.0 s-1), which presented the highest efficiency in hot working process, as well as the obtained fine microstructure after the hot processing. Via microstructure characterization and observation, it is concluded that the dynamic recrystallization (DRX) occurred at the PPBs in the P/M superalloy. The DRX and the strain rate sensitivity exponent m are both affected by true strain. The local DRX presents a relatively low m in a small strain compression. With an increase of strain, the fraction of the recrystallized grains increases with m. The global DRX, however, presents a relatively high m in a large strain compression. It is thus indicated that the superplasticity of FGH96 superalloy can be realized at a slow strain rate such as 0.001s-1 and the deformation temperature of 1110°C, near to the γ'-transus temperature, by using the uniformly fine-grained superalloys as well as the high temperature superplastic forming equipment.
机译:研究了粉末冶金(P / M)镍基高温合金FGH96在温度(T)为1050-1140°C,应变率(ε̇)为0.002-1.0s-1和高度减小时的热变形行为通过等温热压缩实验得到20-50%系统地研究了合成高温合金的流动行为和微观结构机理。根据实验数据构建加工图,以评估功率消耗的效率并识别锻造过程确定的不稳定性状态。应变为0.15的加工图表现出η的平滑且很小的变化,并预测了局限在(T:1050°C,ε̇:1.0 s-1)的不稳定性状态,这归因于先前的颗粒边界(PPB)裂纹。在0.65应变下获得的图谱显示出一个较大的域,效率高于40%,并预测了在(1050°C,1s-1)附近和(T:1080-1140°C,ε̇)范围内的两个不稳定状态。 :0.002-0.01 s-1)。最佳加工条件确定为(T:1140°C,ε̇:1.0 s-1),它在热加工过程中效率最高,并且在热加工后获得了良好的微观结构。通过微观结构表征和观察,可以得出结论:动态再结晶(DRX)发生在P / M高温合金的PPB处。 DRX和应变率灵敏度指数m都受真实应变的影响。本地DRX在较小的应变压缩下呈现出相对较低的m。随着应变的增加,重结晶晶粒的分数随m增加。然而,整体DRX在大应变压缩中​​呈现出相对较高的m。因此表明,通过使用均一的细晶粒超合金,可以在诸如0.001s-1的慢应变速率和1110℃的变形温度接近γ′-转变温度时实现FGH96超合金的超塑性。以及高温超塑成型设备。

著录项

  • 作者

    Ning Y; Yao Z; Guo H; Fu MW; Li H; Xie X;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:56:10

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