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Creep behaviour and microstructural evolution in AISI 316LN+Nb steels at 650 degrees C

机译:AISI 316LN + Nb钢在650摄氏度下的蠕变行为和组织演变

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摘要

The paper deals with the effect of niobium in the wrought AISI 316LN steels on the long-term creep characteristics at 650 °C. Casts B and C contained 0.1 and 0.3 wt.%Nb, respectively. As a reference material the niobium free Cast A was used. Small additions of niobium to the AISI 316LN steel resulted in a significant reduction of the minimum creep rate and shortening of the tertiary creep stage. At time to rupture exceeding 104 h the creep rupture strength of the niobium-bearing Casts B and C was slightly inferior to the Cast A. Two nitrides formed in the Casts B and C: Z-phase and M6X. The minimum creep rate in niobium-bearing casts was favourably affected by precipitation of the Z-phase. The dimensional stability of Z-phase particles was very high, but niobium additions also accelerated the formation and coarsening of η-Laves and σ-phase. Coarse σ-phase particles at grain boundaries contributed significantly to the shortening of the tertiary creep stage.Research highlights
机译:本文探讨了变形AISI 316LN钢中铌对650°C长期蠕变特性的影响。铸件B和C分别包含0.1和0.3重量%的Nb。作为参考材料,使用了无铌铸件A。向AISI 316LN钢中少量添加铌会导致最小蠕变速率显着降低,并缩短第三蠕变阶段。断裂时间超过104小时时,含铌铸件B和C的蠕变断裂强度略低于铸件A。在铸件B和C中形成了两种氮化物:Z相和M6X。含铌铸件的最小蠕变速率受到Z相沉淀的有利影响。 Z相颗粒的尺寸稳定性很高,但是添加铌也加速了η-Laves和σ相的形成和粗化。晶界处粗大的σ相粒子对缩短第三蠕变阶段做出了重要贡献。

著录项

  • 作者

    Vodárek, Vlastimil;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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