首页> 外文期刊>Materials Science and Engineering >Microstructural evolution of dissimilar welded joints between reduced- activation ferritic-martensitic steel and 316L stainless steel during the post weld heat treatment
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Microstructural evolution of dissimilar welded joints between reduced- activation ferritic-martensitic steel and 316L stainless steel during the post weld heat treatment

机译:焊后热处理过程中还原活化铁素体-马氏体钢与316L不锈钢之间异种焊接接头的组织演变

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摘要

In the present study, electron beam welding (EBW) was used to join reduced-activation ferritic-martensitic (RAFM) steel to 316L stainless steel. Microstructural evolution and mechanical property variation in the heat-affected zone (HAZ) and weld metal (WM) during the post weld heat treatment (PWHT) was investigated. The results suggested that the hardness of RAFM-HAZ decreased with increased PWHT temperature, while the hardness of WM decreased to minimum at 620 ℃ and then increased at higher PWHT temperatures. This was consistent with strength variation in the WM during PWHTs. Microstructural observations and corresponding phase diagram calculation indicated that blending of two types of base metals increased nickel content of WM, enlarged the two phase-region and lowered A1(start of transformation of ferrite to austenite) point of WM, as compared with similar ferritic-martensitic steel weld joint. Thus, reversed austenite transformation and subsequent martensite transformation occurred in WM of sample subjected to higher temperature heat treatment, while there was no transformation in the HAZ. This effect explained the changes in hardness and strength of WM corresponding to PWHT. The optimized properties of both HAZ and WM in the dissimilar weld joint were obtained by a two-step post weld heat treatment.
机译:在本研究中,电子束焊接(EBW)用于将减活化铁素体-马氏体(RAFM)钢与316L不锈钢连接。研究了焊后热处理(PWHT)过程中热影响区(HAZ)和焊缝金属(WM)的组织演变和力学性能变化。结果表明,RAFM-HAZ的硬度随PWHT温度的升高而降低,而WM的硬度在620℃时降至最低,然后在较高的PWHT温度时升高。这与PWHT期间WM中的强度变化一致。显微组织观察和相应的相图计算表明,与类似的铁素体合金相比,两种贱金属的掺混增加了钨金属的镍含量,扩大了两个相区,降低了钨金属的A1(铁素体向奥氏体转变的开始)点。马氏体钢焊接接头。因此,在进行了高温热处理的样品的WM中发生了奥氏体的逆相变和随后的马氏体相变,而HAZ中没有相变。这种效果解释了与PWHT相对应的WM硬度和强度的变化。通过两步焊后热处理,获得了异种焊接接头中的热影响区和焊缝的最佳性能。

著录项

  • 来源
    《Materials Science and Engineering》 |2018年第11期|182-196|共15页
  • 作者单位

    Collaborative Innovation Center of Steel Technology, University of Science and Technology Beijing,School of Materials Science and Engineering, University of Science and Technology Beijing;

    Collaborative Innovation Center of Steel Technology, University of Science and Technology Beijing;

    School of Materials Science and Engineering, University of Science and Technology Beijing;

    Collaborative Innovation Center of Steel Technology, University of Science and Technology Beijing;

    Collaborative Innovation Center of Steel Technology, University of Science and Technology Beijing,School of Materials Science and Engineering, University of Science and Technology Beijing;

    Collaborative Innovation Center of Steel Technology, University of Science and Technology Beijing;

    School of Materials Science and Engineering, University of Science and Technology Beijing;

    School of Materials Science and Engineering, University of Science and Technology Beijing;

    Collaborative Innovation Center of Steel Technology, University of Science and Technology Beijing;

    Laboratory for Excellence in Advanced Steel Research, Department of Metallurgical, Materials and Biological Engineering, University of Texas El Paso;

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

    Dissimilar weld; Post weld heat treatment; Phase transformation; Microstructure; Mechanical property;

    机译:异种焊缝;焊后热处理;相变;显微组织;力学性能;

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