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Effects of composition and particle size on the surface state and degassing behavior of nickel-based superalloy powders

机译:组合物和粒度对镍基超合金粉末表面状态和脱气行为的影响

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摘要

Surface state and degassing behavior of nickel-based superalloy powders are essential to the melting and sintering properties of additive manufacturing (AM) and powder metallurgy (PM). Superalloy powders with various compositions and particle sizes were investigated by FESEM, XPS, AES, HAADF-STEM, and temperature programmed desorption mass spectrometry (TPD-MS). The surface analysis results demonstrate that IN625, IN718, and FGH96 superalloy powders are covered by homogeneous Ni oxide/hydroxide (NiO/Ni(OH)2) layer decorated with various oxides. NiO/Ni(OH)2 layer thickness changes in the range of 5.7 nm to 9.8 nm with different powder compositions and particle sizes, while the influencing factors of thickness can be arranged in the following order (from highest to lowest) as IN625-IN718-FGH96 and (106–150 μm)-(48–106 μm)-(<48 μm) respectively. The TPD-MS results indicate that the degassing amounts significantly increase with the decrease of NiO/Ni(OH)2 layer thickness, in which the degassing behavior is partially controlled by molecular diffusion. Powders with more active metallic elements, i.e. Al and Ti, and smaller particle size possess relatively thinner oxide layer which result in lower diffusion barrier and higher degassing amounts. The investigation reveals the relationship between the surface state and degassing behavior of superalloy powders considering the differences in the composition and particle size, and gives guidance on nickel-based superalloy powder processing.
机译:镍基超合金粉末的表面状态和脱气行为对于添加剂制造(AM)和粉末冶金(PM)的熔融和烧结性能至关重要。通过FESEM,XPS,AES,HAADF-杆和温度编程的解吸质谱(TPD-MS)研究了具有各种组合物和颗粒尺寸的超合金粉末。表面分析结果表明,IN625,IN718和FGH96高温合金粉末被均匀的Ni氧化物/氢氧化物(NiO / Ni(OH)2)层覆盖,用各种氧化物装饰。 NiO / Ni(OH)2层厚度在5.7nm至9.8nm的范围内,不同的粉末组合物和粒度变化,而厚度的影响因素可以按以下顺序排列(从最高到最低),如625-IN718 -FGH96和(106-150μm) - (48-106μm) - (<48μm)。 TPD-MS结果表明,随着NiO / Ni(OH)2层厚度的降低,脱气量显着增加,其中脱气行为通过分子扩散部分控制。具有更活跃的金属元素的粉末,即Al和Ti,较小的粒度具有相对较薄的氧化物层,其导致较低的扩散屏障和更高的脱气量。考虑到组合物和粒径的差异,揭示了超合金粉末的表面状态和脱气行为之间的关系,并对镍基超合金粉末加工进行了引导。

著录项

  • 来源
    《Applied Surface Science》 |2021年第1期|149793.1-149793.12|共12页
  • 作者单位

    Beijing Advanced Innovation Center for Materials Genome Engineering Institute for Advanced Materials and Technology University of Science and Technology Beijing Beijing 100083 China|Science and Technology on Advanced High Temperature Structural Materials Laboratory AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    Science and Technology on Advanced High Temperature Structural Materials Laboratory AECC Beijing Institute of Aeronautical Materials Beijing 100095 China|3D Printing Research and Technology Center AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    Science and Technology on Advanced High Temperature Structural Materials Laboratory AECC Beijing Institute of Aeronautical Materials Beijing 100095 China|3D Printing Research and Technology Center AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    Science and Technology on Advanced High Temperature Structural Materials Laboratory AECC Beijing Institute of Aeronautical Materials Beijing 100095 China|3D Printing Research and Technology Center AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    Science and Technology on Advanced High Temperature Structural Materials Laboratory AECC Beijing Institute of Aeronautical Materials Beijing 100095 China|3D Printing Research and Technology Center AECC Beijing Institute of Aeronautical Materials Beijing 100095 China;

    Beijing Advanced Innovation Center for Materials Genome Engineering Institute for Advanced Materials and Technology University of Science and Technology Beijing Beijing 100083 China|Key Laboratory for Advanced Materials Processing of Ministry of Education Institute for Advanced Materials and Technology University of Science and Technology Beijing Beijing 100083 China|Beijing Laboratory of Metallic Materials and Processing for Modern Transportation University of Science and Technology Beijing Beijing 100083 China;

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

    Degassing behavior; Nickel-based superalloy powders; Oxide layer thickness; Surface state;

    机译:脱气行为;镍基超合金粉末;氧化物层厚度;表面状态;

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