• Journal of Inorganic Materials
  • Vol. 37, Issue 3, 333 (2021)
Yong ZENG1、2、3, Zijia ZHANG1、2、3, Lijun SUN1、2、3, Haihua YAO1、2、3, and Jiming CHEN1、2、3
Author Affiliations
  • 11. Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing 100124, China
  • 22. Beijing Engineering Research Center of 3D Printing for Digital Medical Health, Beijing 100124, China
  • 33. Key Laboratory of Trans-scale Laser Manufacturing Technology, Ministry of Education, Beijing 100124, China
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    DOI: 10.15541/jim20210634 Cite this Article
    Yong ZENG, Zijia ZHANG, Lijun SUN, Haihua YAO, Jiming CHEN. Atmosphere Debinding Heat Treatment of 3D Printed Alumina Ceramics[J]. Journal of Inorganic Materials, 2021, 37(3): 333 Copy Citation Text show less
    Sintering process curve in air after debinding in argon
    1. Sintering process curve in air after debinding in argon
    Photos of alumina green body obtained after debinding in different atmospheres
    2. Photos of alumina green body obtained after debinding in different atmospheres
    SEM images of surface modified alumina powder and sintered alumina ceramics after debinding in different atmospheres
    3. SEM images of surface modified alumina powder and sintered alumina ceramics after debinding in different atmospheres
    XRD patterns of alumina powders and sintered alumina ceramics after debinding in different atmospheres
    4. XRD patterns of alumina powders and sintered alumina ceramics after debinding in different atmospheres
    Stress-strain curves of sintered alumina ceramics after debinding in different atmospheres
    5. Stress-strain curves of sintered alumina ceramics after debinding in different atmospheres
    AtmosphereShrinkage/%Densification/%
    XYZ
    Air4.814.559.2395.39
    Ar5.625.4811.5496.72
    Table 1. Shrinkage and density of sintered samples after debinding in different atmospheres
    Yong ZENG, Zijia ZHANG, Lijun SUN, Haihua YAO, Jiming CHEN. Atmosphere Debinding Heat Treatment of 3D Printed Alumina Ceramics[J]. Journal of Inorganic Materials, 2021, 37(3): 333
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