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对一种镍基高温合金进行脉冲电流处理,研究了脉冲电流与时效处理过程中γ’相的粗化行为.结果表明,与相同温度时效状态相比,脉冲电流条件下合金中γ '相的长大速率显著增加.脉冲电流下γ’相的粗化遵循Lifshitz- Slyozov -Wagner理论,与时效过程中γ’相粗化激活能相比降低64.3%.脉冲电流处理过程中,脉冲电子流加剧合金原子自身的热振动,使原子处于相对高能状态,降低合金中原子跃迁激活能;脉冲电流初期由于瞬时升温而形成热应力,提高合金中的空位浓度,加速合金中的原子扩散,促进γ’相的粗化.

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