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首页> 外文期刊>Materials Science and Engineering >Influence of Co content on the microstructures and mechanical properties of a Ni-Co base superalloy made by specific additive manufacturing process
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Influence of Co content on the microstructures and mechanical properties of a Ni-Co base superalloy made by specific additive manufacturing process

机译:CO含量对特定添加剂制造工艺制备的Ni-Co基超合金组织和力学性能的影响

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摘要

Microstructures and tensile properties of a Ni-Co base superalloy containing different Co contents made by additive manufacturing (AM) after standard heat treatment have been investigated. Microstructure observation by scanning electron microscopy (SEM) reveals that a great deal of η precipitates form in the interdendritic region and distribute linearly along the columnar microstructure in 5Co alloy. In addition, transmission electron microscopy (TEM) results reveal that spherical y' phase can be found in 5Co alloy and nearly cuboidal γ' phase can been observed in 23Co alloy. The different morphologies of the γ' precipitate can be attributed to the different γ' compositions and the differences in γ/γ' lattice misfit in the two alloys. The results of tensile tests reveal that, when tested below 500 °C, the ultimate strength and the elongation of the alloys made by AM are lower than that of the cast & wrought (C&W) alloys. When tested at 750 °C and 800 °C, alloys made by AM exhibit higher yield strength and superior plasticity. With the increment of the testing temperature, deformation mechanism of the alloys transforms from dislocation glide to stacking fault shearing and deformation twinning. Increasing of Co content can decrease the stacking fault energy (SFE) and facilitate the initiation of twinning, therefore, deformation mechanisms between the 5Co alloy and 23Co alloy made by AM are of notable difference.
机译:研究了在标准热处理后,含有添加剂制造(AM)不同CO含量的Ni-Co基超合金的微观结构和拉伸性能。通过扫描电子显微镜(SEM)的微观结构观察显示,大量的η沉淀在间钟形区域中的形式,并在5CO合金中沿柱状微观结构线性分布。此外,透射电子显微镜(TEM)结果表明,球形Y'相可以在5Co合金中找到,并且在23CO合金中可以观察到几乎立方体γ'相。 γ'沉淀物的不同形态可归因于不同γ'组合物和两种合金中γ/γ'格式不足的差异。拉伸试验的结果表明,当测试到500℃以下时,由AM制造的合金的最终强度和伸长率低于铸造和锻造(C&W)合金。当在750℃和800℃下测试时,AM制造的合金具有更高的屈服强度和优异的可塑性。随着测试温度的增量,合金的变形机制从位错滑动转变为堆叠故障剪切和变形孪晶。 CO含量的增加可以降低堆叠故障能量(SFE)并促进孪生的启动,因此,由AM制造的5CO合金和23CO合金之间的变形机制具有显着的差异。

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  • 来源
    《Materials Science and Engineering》 |2020年第1期|139438.1-139438.10|共10页
  • 作者单位

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China School of Materials Science and Engineering University of Science and Technology of China 96 Jinzhai Road Hefei 230026 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China Space Manufacturing Technology (CAS Key Lab) Beijing 100094 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China Space Manufacturing Technology (CAS Key Lab) Beijing 100094 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metal Lanzhou University of Technology 287 Langongping Road Lanzhou 730000 China;

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

    Additive manufacturing; Ni-Co base Superalloy; Tensile strength; Deformation mechanism;

    机译:添加剂制造;Ni-Co碱超合金;抗拉强度;变形机制;

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