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The role of phosphorus in precipitation behavior and its effect on the creep properties of alumina-forming austenitic heat-resistant steels

机译:磷在析出行为中的作用及其对形成氧化铝的奥氏体耐热钢蠕变性能的影响

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摘要

The precipitation behavior and creep properties of lower phosphorus (P) alumina-forming austenitic (AFAlp) heat-resistant steel were investigated and compared to those of AFA. The creep rupture time and hardness of the investigated steels were improved with the decrease of the P content. The TEM and EELS analyses confirmed an enhanced P concentration in the M_(23)C_6 precipitates along the grain boundaries. The P promoted the precipitation of M_(23)C_6 and also suppressed the precipitation of secondary NbC in the earlier stage of aging. The creep rupture time of AFA became shorter compared to AFA_(LP) due to the reduction in the fraction of secondary NbC which acts as a dominant strengthening phase during creep. The suppression of secondary NbC precipitation by P increased the Nb content in the austenite matrix and accelerated the precipitation of the Laves phase in the intermediate stage. However, the difference in Vickers hardness caused by Laves phase was not large in both alloys because the volume fraction of Laves phase strongly depended on the nominal content of Mo rather than Nb. The Vickers hardness at the earlier stage is determined by the precipitation of secondary NbC and the difference of the hardness maintained at the final stage. Thus, it is found that P degrades the creep rupture time and P is a detrimental element in terms of creep and precipitation hardening in AFA steels.
机译:研究了低磷(P)氧化铝形成奥氏体(AFAlp)耐热钢的析出行为和蠕变性能,并将其与AFA进行了比较。随着P含量的降低,被研究钢的蠕变断裂时间和硬度得到改善。 TEM和EELS分析证实,沿着晶界的M_(23)C_6析出物中P浓度增加。 P促进了M_(23)C_6的析出,并且在老化的早期抑制了次生NbC的析出。与次要NbC的分数相比,AFA的蠕变破裂时间比AFA_(LP)短,这是由于在蠕变过程中作为主要强化阶段的次要NbC的减少。 P对次生NbC析出的抑制作用增加了奥氏体基体中Nb的含量,并在中间阶段加速了Laves相的析出。但是,在两种合金中,由拉夫斯相引起的维氏硬度差异并不大,因为拉夫斯相的体积分数主要取决于钼的标称含量,而不是铌。早期的维氏硬度取决于次级NbC的沉淀和最终阶段所保持的硬度差。因此,发现P降低了蠕变断裂时间,并且P对于AFA钢的蠕变和沉淀硬化而言是有害的元素。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第27期|14-21|共8页
  • 作者单位

    Division of Materials Science and Engineering, Hanyang University, Seongdong-ku, Seoul 133-791, Republic of Korea,Ferrous Alloy Department, Advanced Metallic Materials Division, Korea Institute of Materials Science, 797 Changwondaero, Seongsangu, Changwon,Gyeongnam 642-831, Republic of Korea;

    Ferrous Alloy Department, Advanced Metallic Materials Division, Korea Institute of Materials Science, 797 Changwondaero, Seongsangu, Changwon,Gyeongnam 642-831, Republic of Korea;

    Ferrous Alloy Department, Advanced Metallic Materials Division, Korea Institute of Materials Science, 797 Changwondaero, Seongsangu, Changwon,Gyeongnam 642-831, Republic of Korea;

    Ferrous Alloy Department, Advanced Metallic Materials Division, Korea Institute of Materials Science, 797 Changwondaero, Seongsangu, Changwon,Gyeongnam 642-831, Republic of Korea;

    Division of Materials Science and Engineering, Hanyang University, Seongdong-ku, Seoul 133-791, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phosphorous; Creep test; Precipitation behavior; Alumina-forming austenitic heat-resistant; (AFA) steel;

    机译:磷;蠕变测试;降水行为;形成氧化铝的奥氏体耐热材料;(AFA)钢;

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