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Hot deformation behavior and hot working characteristic of Nickel-base electron beam weldments

机译:镍基电子束焊件的热变形行为和热加工特性

摘要

The electron beam welding (EBW) of Nickel-base superalloys was conducted, and the cylindrical compression specimens were machined from the central part of the electron beam (EB) weldments. The hot deformation behavior of EB weldments was investigated at the temperature of 960-1140 C and the strain rate of 0.001-1.0 s-1. The apparent activation energy of deformation was calculated to be 400 kJ/mol, and the constitutive equation that describes the flow stress as a function of strain rate and deformation temperature was proposed for modeling of the hot deformation process of EB weldments. The processing map approach was adopted to investigate the deformation mechanisms during the hot plastic deformation and to optimize the processing parameters of EB weldments. It is found that the true strain has a significant effect on the efficiency of power dissipation (η). The η value in the safe processing domain (1140 C, 1.0 s-1) increases from 0.32 to 0.55. In the unsafe processing domain (1080 C, 0.001 s-1), however, the η value greatly decreases with the increase of strain. When the strain is 0.40, the efficiency of power dissipation becomes negative. The flow instability is predicted to occur since the instability parameter ξ(ε̇) becomes negative. The hot deformation of EB weldments can be carried out safely in the domain with the strain rate range of 0.1-1.0 s-1 and the temperature range of 960-1140 C. When the height reduction is about 50%, the optimum processing condition is (Topi: 1140 C, ε̇ opi: 1.0 s-1) with the peak efficiency of 0.55 for the processing of EB weldments.
机译:进行了镍基高温合金的电子束焊接(EBW),并从电子束(EB)焊件的中心部分加工了圆柱状压缩试样。研究了EB焊件在960-1140 C的温度和0.001-1.0 s-1的应变速率下的热变形行为。计算得出的变形的表观活化能为400 kJ / mol,并提出了描述流动应力与应变率和变形温度的函数关系的本构方程,以对EB焊件的热变形过程进行建模。采用加工图方法研究了热塑性变形过程中的变形机理,并优化了EB焊件的加工参数。发现真实应变对功耗(η)的效率具有显着影响。安全处理域(1140 C,1.0 s-1)中的η值从0.32增加到0.55。但是,在不安全的加工域(1080 C,0.001 s-1)中,η值会随着应变的增加而大大降低。当应变为0.40时,功耗效率为负。由于不稳定性参数ξ(ε̇)为负,因此预计会发生流动不稳定性。 EB焊件的热变形可以在应变率范围为0.1-1.0 s-1和温度范围为960-1140 C的区域内安全地进行。当高度降低约50%时,最佳加工条件为(Topi:1140 C,ε̇opi:1.0 s-1),用于EB焊件加工的峰值效率为0.55。

著录项

  • 作者

    Ning Y; Yao Z; Guo H; Fu MW;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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