粗晶Fe3Al基合金在高温变形时显微组织演变机制

Microstructure evolution of a Fe3Al-based alloy with coarse initial grains deformed at elevated temperature

  • 摘要: 采用Gleeble 1500型热模拟试验机进行单轴压缩实验,研究了Fe3Al基合金在温度为850℃、应变速率为10-3s-1条件下的组织演变.结果表明:在本实验变形条件下,Fe3Al基合金能够发生动态再结晶.变形初期,Fe3Al可以通过晶界弓弯机制形成动态再结晶核心,即发生了不连续动态再结晶现象,但再结晶核心不易长大.随着应变量的增加,通过连续动态再结晶形成一定量的再结晶细小晶粒.

     

    Abstract: The microstructure evolution of a Fe3Al-based alloy was investigated by uniaxial compression tests on a Gleeble 1500 hot simulation test machine at 850℃ and a strain rate of 10-3s-1. The results indicated that under the present deformation conditions the dynamic recrystallization of the Fe3Al-based alloy occurred. At low strain, the nuclei of dynamic recrystallization formed by bulging of initial grain boundaries, i.e. discontinuous dynamic recrystallization occurred; but the growth of the nuclei became more difficult with increasing strain. At large strain, finer dynamic recrvstallized grains formed by the process of continuous dynamic recrystallization.

     

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