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首页> 外文期刊>Materials Science and Engineering >Additive manufacturing of an Fe-Cr-Ni-Al maraging stainless steel: Microstructure evolution, heat treatment, and strengthening mechanisms
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Additive manufacturing of an Fe-Cr-Ni-Al maraging stainless steel: Microstructure evolution, heat treatment, and strengthening mechanisms

机译:Fe-Cr-Ni-Al Mastlutl钢的添加剂制造:微观结构演化,热处理和强化机制

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摘要

Additive manufacturing of a low carbon Fe-Cr-Ni-Al maraging stainless steel (with the brand name CX) through the laser-powder bed fusion (LPBF) process is studied. Since the strength of this material is enhanced through precipitation hardening, the effect of different heat treatment cycles on the hardness and microstructure is assessed. The LPBF-CX is heat treated through a standard heat treatment procedure consisted of austenitization at 900°C for 1 h followed by air cooling and aging at 530 °C for 3 h. Moreover, the effect of aging treatment (with no austenitization) on the as-built sample is studied. The microstructure of the as-built, austenitized-aged, and aged samples is studied using multiscale electron microscopy techniques. The as-built LPBF-CX consists of the typical lath martensitic structure and minor retained austenite. The martensite laths are featured by high dislocation density, with no evidence of precipitates. Austenitization-aging treatment shows a detrimental effect on the strength of LPBF-CX, due to martensite laths growth and retardation of precipitates evolution. Aging of the as-built LPBF-CX results in strength enhancement due to the evolution of nanometric and coherent β-NiAl pre-cipitates, and martensite laths refinement. Moreover, the pre-existing dislocation networks play a key role in the strength of the aged material. The strength enhancement of the aged LPBF-CX is investigated through the fun-damentals of alloy hardening.
机译:研究了低碳Fe-Cr-Ni-Al的添加剂制造,通过激光粉末床融合(LPBF)进行了不锈钢(用品牌CX)。由于这种材料的强度通过沉淀硬化增强,评估了不同热处理循环对硬度和微观结构的影响。通过在900℃下由奥氏体化组成的标准热处理方法进行热处理LPBF-CX,然后在530℃下进行空气冷却和老化3小时。此外,研究了老化处理(没有奥氏体化)在嵌造样品上的影响。使用多尺度电子显微镜技术研究了竣工,奥氏体化和老化样品的微观结构。竣工的LPBF-CX由典型的Lath马氏体结构和次要保留奥氏体组成。马氏体板条是高位脱位密度的特色,没有沉淀物的证据。奥氏体化 - 老化治疗表明,对LPBF-CX的强度的不利影响,由于马氏体增加的沉淀物的生长和沉淀物的延迟。由于纳米和相干β-nial预培养物的演变,以及马氏体板条改进,所造成的LPBF-CX老化导致强度提高。此外,预先存在的位错网络在老化材料的强度中起着关键作用。通过合金硬化的乐趣姿势研究了老化LPBF-CX的强度增强。

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  • 来源
    《Materials Science and Engineering》 |2020年第10期|139470.1-139470.10|共10页
  • 作者单位

    Marine Additive Manufacturing Centre of Excellence (MAMCE) University of New Brunswick Fredericton NB E3B 5A1 Canada CanmetMATERIALS Natural Resources Canada 183 Longwood Road South Hamilton ON L8P 0A5 Canada Department of Mechanical Engineering University of Memphis Memphis TN 38152 USA;

    Marine Additive Manufacturing Centre of Excellence (MAMCE) University of New Brunswick Fredericton NB E3B 5A1 Canada;

    CanmetMATERIALS Natural Resources Canada 183 Longwood Road South Hamilton ON L8P 0A5 Canada Marine Additive Manufacturing Centre of Excellence (MAMCE) University of New Brunswick Fredericton NB E3B 5A1 Canada;

    CanmetMATERIALS Natural Resources Canada 183 Longwood Road South Hamilton ON L8P 0A5 Canada;

    Marine Additive Manufacturing Centre of Excellence (MAMCE) University of New Brunswick Fredericton NB E3B 5A1 Canada;

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

    Laser-powder bed fusion (LPBF); Precipitation; Maraging stainless steel CX; Strengthening mechanism; Hierarchical microstructure;

    机译:激光粉床融合(LPBF);沉淀;播放不锈钢CX;加强机制;分层微观结构;

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