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Impact of homogenization on microstructure-property relationships of Inconel 718 alloy prepared by laser powder bed fusion

机译:均质化对激光粉末融合制备的Inconel 718合金的微观结构 - 性能关系

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摘要

Due to the temperature gradients generated from the complex heating and cooling cycles during Laser Powder Bed Fusion, strong columnar texture is often observed in the as-built Inconel 718 alloys together with notable residual stress, which leads to anisotropic properties of manufactured alloy components. We found that, in contrast to the typical homogenization performed at 1065°C, a simple higher temperature homogenization step conducted at 1180°C can effectively remove the residual stress and reconstruct the microstructure by introducing recrystallization. More importantly, it can introduce isotropic microstructures and tensile properties, which are critical in engineering applications. Additionally, owing to the elimination of the residual stress, the precipitation of the strengthening phase γ″ becomes more isotropic (i.e., with three variants precipitating) during the subsequent aging process. This work is conducive to developing effective post-heat treatment of additively manufactured alloys for better performance.
机译:由于激光粉末融合期间的复合加热和冷却循环产生的温度梯度,通常在竣工的418合金中与显着的残余应力一起观察到强大的柱状质地,这导致制造合金组分的各向异性特性。我们发现,与在1065℃下进行的典型均质化相反,在1180℃下进行的简单较高的较高温度均质化步骤可以有效地除去残余应力并通过引入重结晶来重建微结构。更重要的是,它可以引入各向同性的微观结构和拉伸性能,这对于工程应用至关重要。另外,由于消除残余应力,在随后的老化过程中,增强相γ的沉淀变为更加各向同性(即,具有三个变体沉淀)。这项工作有利于开发有效的加热后热处理,用于更好的性能。

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  • 来源
    《Materials Science and Engineering》 |2021年第5期|141973.1-141973.11|共11页
  • 作者单位

    Physical Metallurgy and Materials Design Laboratory Department of Mechanical Engineering and Materials Science University of Pittsburgh Pittsburgh PA 15261 USA;

    Department of Materials Science and Engineering Northwestern University Evanston IL 60208 USA;

    Department of Materials Science and Engineering Northwestern University Evanston IL 60208 USA;

    Department of Electrical and Computer Engineering University of Pittsburgh Pittsburgh PA 15260 USA Petersen Institute of Nanoscience and Engineering University of Pittsburgh Pittsburgh PA 15260 USA;

    Physical Metallurgy and Materials Design Laboratory Department of Mechanical Engineering and Materials Science University of Pittsburgh Pittsburgh PA 15261 USA;

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

    Ni-based superalloys; Laser powder bed fusion; Microstructure characterization; Grain texture; Phase transformations; Mechanical properties;

    机译:基于NI的高温合金;激光粉床融合;微观结构特征;谷物纹理;相变;机械性能;

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