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Phase Transformations and Microstructural Evolution of Mo-Bearing Stainless Steels

机译:含钼不锈钢的相变和组织演变

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摘要

The good corrosion resistance of superaustenitic stainless steel (SASS) alloys has been shown to be a direct consequence of high concentrations of Mo, which can have a significant effect on the microstructural development of welds in these alloys. In this research, the microstructural development of welds in the Fe-Ni-Cr-Mo system was analyzed over a wide variety of Cr/Ni ratios and Mo contents. The system was first simulated by construction of multicomponent phase diagrams using the CALPHAD technique. Data from vertical sections of these diagrams are presented over a wide compositional range to produce diagrams that can be used as a guide to understand the influence of composition on microstructural development. A large number of experimental alloys were then prepared via arc-button melting for comparison with the diagrams. Each alloy was characterized using various microscopy techniques. The expected δ-ferrite and γ-austenite phases were accompanied by martensite at low Cr/Ni ratios and by σ phase at high Mo contents. A total of 20 possible phase transformation sequences are proposed, resulting in various amounts and morphologies of the γ, δ, σ, and martensite phases. The results were used to construct a map of expected phase transformation sequence and resultant microstructure as a function of composition. The results of this work provide a working guideline for future base metal and filler metal development of this class of materials.
机译:事实证明,高浓度的Mo直接导致了超级奥氏体不锈钢(SASS)合金的良好耐腐蚀性,这可能会对这些合金中焊缝的显微组织发展产生重大影响。在这项研究中,分析了Fe-Ni-Cr-Mo系统中焊缝的微观组织发展,分析了各种Cr / Ni比和Mo含量。首先使用CALPHAD技术通过构建多组分相图来模拟该系统。这些图的垂直部分的数据会在很宽的组成范围内显示,以产生可作为理解组成对微结构发展影响的指南的图。然后,通过电弧按钮熔化制备了大量实验合金,以与图表进行比较。使用各种显微镜技术对每种合金进行表征。预期的δ-铁素体相和γ-奥氏体相伴随着低Cr / Ni比的马氏体和高Mo含量的σ相。提出了总共20种可能的相变序列,导致γ,δ,σ和马氏体相的数量和形态不同。结果用于构建预期的相变序列和所得微结构作为组成函数的图。这项工作的结果为此类材料的未来贱金属和填充金属开发提供了工作指南。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第1期|86-99|共14页
  • 作者单位

    Department of Materials Science and Engineering Lehigh University Bethlehem PA 18015 USA;

    Department of Materials Science and Engineering Lehigh University Bethlehem PA 18015 USA;

    Joining and Coatings Department Sandia National Laboratories Albuquerque NM USA;

    Department of Materials Science and Engineering Lehigh University Bethlehem PA 18015 USA;

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