gangongwen Lecturer (higher education)

Supervisor of Master's Candidates

  

  • Date of Birth: 1992-09-08

  • Date of Employment: 2021-03-23

  • Education Level: PhD graduate

  • Degree: Doctor of engineering

  • Gender: Male

  • Professional Title: Lecturer (higher education)

  • Status: 在岗

  • Alma Mater: 电子科技大学

  • Supervisor of Master's Candidates

  • School/Department: 信息科学与技术学院

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    Language: 中文

    Paper Publications

    Tuning the mechanical properties of powder bed fusion printed CoCrFeNiMn high-entropy alloys by annealing and hot isostatic pressing

    Impact Factor:6.2

    DOI number:10.1016/j.jallcom.2023.169376

    Journal:Journal of Alloys and Compounds

    Key Words:Powder bed fusionHigh-entropy alloyPost thermal treatmentsMechanical properties

    Abstract:Powder bed fusion (PBF) and other additive manufacturing (AM) techniques show good potential for research and the processing industry. The reinforcement on the microstructure and mechanical properties is a practical necessity of additive manufacturing (AM) processed high-entropy alloy (HEA), which has structural and performance defects for application. Two post thermal treatment approaches based on annealing and hot isostatic pressing (HIP) for PBF technology printed CoCrFeNiMn HEA are proposed to enhance mechanical properties. No additional phase is detected by X-ray diffraction when the printed alloy undergoes post thermal processing, in addition to the face-centred-cubic crystalline phase. Both approaches give rise to almost fully dense arrangement structure with relative density exceeding 98%. Post treatments can significantly enhance the plasticity of PBF printed HEAs; in particular, they can lead to considerable increment in elongation and tensile properties, which can be attributed to the main mechanism of the synergistic effect of dislocation and nano-twin crystal deformation. In summary, both post thermal treatments are of great significance to the development of HEA with excellent mechanical properties. In particular, HIP leads to optimal structure and performance.

    Indexed by:SCI

    Discipline:Engineering

    Document Type:J

    Volume:946

    Page Number:169376

    ISSN No.:0925-8388

    Translation or Not:no

    Date of Publication:2023-06-15

    Included Journals:SCI

    Links to published journals:https://www.sciencedirect.com/science/article/pii/S0925838823006795?via%3Dihub

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