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Microstructural characterization, formation mechanism and fracture behavior of the needle δ phase in Fe-Ni-Cr type superalloys with high Nb content

机译:Nb含量高的Fe-Ni-Cr型高温合金针状δ相的组织表征,形成机理和断裂行为

摘要

Microstructural characterization, formation mechanism and fracture behavior of the needle δ phase in Fe-Ni-Cr type superalloys with high Nb content (GH4169, equivalent to Inconel 718) have been quantitatively investigated in this research. The typical microstructures of δ phases with the stick, mixed and needle shapes obviously present in Inconel 718 after the isothermal upsetting at the temperature of 980-1060 °C with the initial strain rate of 10- 3-10- 1 s- 1. It is found that the shape of the δ phase has a great effect on the mechanical properties of the alloy, viz., the stick δ phase behaves good plasticity and the needle δ phase has good strength. In addition, the needle δ phase can be used to control the grain size as it can prevent grain growth. The combined effect of the localized necking and microvoid coalescence leads to the final ductile fracture of the GH4169 components with the needle δ phase. Both dislocation motion and atom diffusion are the root-cause for the needle δ phase to be firstly separated at grain boundary and then at sub-boundary. The formation mechanism of the needle δ phase is the new finding in this research. Furthermore, it is the primary mechanism for controlling the needle δ phase in Fe-Ni-Cr type superalloys with high Nb content.
机译:本研究定量研究了高Nb含量(GH4169,相当于Inconel 718)的Fe-Ni-Cr型高温合金的针状δ相的组织结构,形成机理和断裂行为。在980-1060°C,初始应变率为10-3-10-1 s-1的等温up锻后,Inconel 718中明显存在具有棒状,混合状和针状δ相的典型微观结构。发现δ相的形状对合金的机械性能有很大的影响,即棒状δ相表现出良好的可塑性,而针状δ相具有良好的强度。此外,针状δ相可用于控制晶粒尺寸,因为它可防止晶粒生长。局部颈缩和微孔聚结的综合作用导致GH4169组分最终呈针状δ相的延性断裂。位错运动和原子扩散都是针状δ相首先在晶界处分离然后在子边界处分离的根本原因。针状δ相的形成机理是本研究的新发现。此外,它是控制Nb含量高的Fe-Ni-Cr型高温合金中针状δ相的主要机理。

著录项

  • 作者

    Ning Y; Huang S; Fu MW; Dong J;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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