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Effect of Boron on Carbide Coarsening at 873 K (600 °C) in 9 to 12 pct Chromium Steels

机译:硼对9至12 pct铬钢中873 K(600°C)时碳化物粗化的影响

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摘要

The addition of small amounts of boron to 9 to 12 pct chromium steels has been found to decrease their creep rate at 823 K to 923 K (550 °C to 650 °C). In this article, the behavior of boron during austenitizing, tempering, and isothermal heat treatment at 873 K (600 °C) is studied using high-resolution microscopy and microanalysis as well as using atomistic modeling. It was found that increasing the boron content from 9 to 40 ppm decreased the coarsening constant of M23C6 by a factor of almost 2. Most of the added boron was incorporated in M23C6. Atomistic modeling showed that boron diffusion in ferrite is dominated by an interstitial mechanism at 873 K (600 °C). However, the generation of vacancies when carbide precipitates dissolve may promote a distribution with substitutional boron atoms. The absence of a fast mechanism for the transition from substitutional to interstitial occupancy will make the slow substitutional boron diffusion in the matrix rate controlling for the coarsening process.
机译:发现在9至12 pct铬钢中添加少量硼会降低其在823 K至923 K(550°C至650°C)下的蠕变速率。在本文中,使用高分辨率显微镜和微观分析以及原子模型研究了硼在873 K(600°C)的奥氏体化,回火和等温热处理过程中的行为。发现将硼含量从9 ppm增加到40 ppm会使M23 C6 的粗化常数降低了将近2倍。大多数添加的硼都掺入了M23 C6 < / sub>。原子模型表明,硼在铁素体中的扩散主要受873 K(600°C)下的间隙机制影响。但是,碳化物沉淀物溶解时空位的产生可能促进取代硼原子的分布。缺乏从替代性向间隙占据过渡的快速机制,将使替代硼的扩散缓慢地控制着粗化过程的基质速率。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第11期|p.4053-4062|共10页
  • 作者单位

    Department of Applied Physics, Chalmers University of Technology, SE-41296, Gothenburg, Sweden;

    Department of Applied Physics, Chalmers University of Technology, SE-41296, Gothenburg, Sweden;

    R&ampD Center, Sandvik Materials Technology, SE-81181, Sandviken, Sweden;

    Department of Applied Physics, Chalmers University of Technology, SE-41296, Gothenburg, Sweden;

    Department of Applied Physics, Chalmers University of Technology, SE-41296, Gothenburg, Sweden;

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