• Journal of Inorganic Materials
  • Vol. 37, Issue 3, 353 (2021)
Guoqian LIU1, Changhai YAN1, Keqiang ZHANG2, Hua JIN3, and Rujie HE2、*
Author Affiliations
  • 11. Science and Technology on Space Physics Laboratory, China Academy of Launch Vehicle Technology, Beijing 100076, China
  • 22. Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing 100081, China
  • 33. School of Aerospace Engineering, Xiamen University, Xiamen, 361005, China
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    DOI: 10.15541/jim20210636 Cite this Article
    Guoqian LIU, Changhai YAN, Keqiang ZHANG, Hua JIN, Rujie HE. Effect of Solid Loading on the Property of Al2O3 Ceramics in Stereolithographic Additive Manufacturing [J]. Journal of Inorganic Materials, 2021, 37(3): 353 Copy Citation Text show less
    References

    [1] Y LAKHDAR, C TUCK, J BINNER et al. Additive manufacturing of advanced ceramic materials. Progress in Materials Science, 116, 100736(2021).

    [2] B LI X, H ZHONG, X ZHANG J et al. Powder characteristics on the rheological performance of resin-based zirconia suspension for stereolithography. Journal of Inorganic Materials, 35, 231-235(2020).

    [3] C HE, C MA, L LI X et al. Continuous fast 3D printing of SiOC ceramic components. Additive Manufacturing, 46, 102111(2021).

    [4] L YANG L, J ZENG X, A DITTA et al. Preliminary 3D printing of large inclined-shaped alumina ceramic parts by direct ink writing. Journal of Advanced Ceramics, 9, 312-319(2020).

    [5] A HU X, L ZHAO G, C LIU F et al. Microstructure and mechanical behavior of Inconel 625 alloy processed by selective laser melting at high temperature up to 1000 ℃. Rare Metal, 39, 1181-1189(2020).

    [6] F CHEN, H ZHU, M WU J et al. Preparation and biological evaluation of ZrO2 all-ceramic teeth by DLP technology. Ceramics International, 46, 11268-11274(2020).

    [7] Q ZHANG K, C XIE, G WANG et al. High solid loading, low viscosity photosensitive Al2O3 slurry for stereolithography based additive manufacturing. Ceramics International, 45, 203-208(2019).

    [8] W CHEN Z, Y LI Z, J LI J et al. 3D printing of ceramics: a review. Journal of the European Ceramic Society, 39, 661-687(2019).

    [9] J HE R, N P ZHOU,, Q ZHANG K et al. Progress and challenges towards additive manufacturing of SiC ceramic. Journal of Advanced Ceramics, 10, 637-674(2021).

    [10] B SU, S DHARA, L WANG. Green ceramic machining: a top- down approach for the rapid fabrication of complex-shaped ceramics. Journal of the European Ceramic Society, 28, 2109-2115(2008).

    [11] H LI, S LIU Y, S LIU Y et al. Microstructure and mechanical properties of 3D printed ceramics with different vinyl acetate contents. Rare Metals, 40, 3241-3250(2021).

    [12] J DING G, J HE R, Q ZHANG K et al. Dispersion and stability of SiC ceramic slurry for stereolithography. Ceramics International, 46, 4720-4729(2020).

    [13] H LI K, Z ZHAO. The effect of the surfactants on the formulation of UV-curable SLA alumina suspension. Ceramics International, 43, 4761-4767(2017).

    [14] B NIE J, S LI M, W LIU W et al. The role of plasticizer in optimizing the rheological behavior of ceramic pastes intended for stereolithography-based additive manufacturing. Journal of the European Ceramic Society, 41, 646-654(2021).

    [15] F AZARMI, A ALI. Microstructural evolution during fabrication of alumina via laser stereolithography technique. Ceramics International, 45, 271-278(2019).

    [16] S NDINISA S, J WHITEFIELD D, I SIGALAS. Fabrication of complex shaped alumina parts by gelcasting on 3D printed moulds. Ceramics International, 46, 3177-3182(2020).

    [17] J WEI J, L LI J, X SONG X et al. Effects of solid loading on the rheological behaviors and mechanical properties of injection- molded alumina ceramics. Journal of Alloys and Compounds, 768, 503-509(2018).

    [18] Q ZHANG K, J HE R, J DING G et al. Digital light processing of 3Y-TZP strengthened ZrO2 ceramics. Material Science Engineering A, 774, 138768(2020).

    [19]

    [20] H HERSCHEL W, R BULKLEY. Konsistenzmessungen von gummi-benzollosungen. Kolloid Zeitschrift, 39, 291-300(1926).

    [21] A LEWIS J. Colloidal processing of ceramics. Journal of the American Ceramic Society, 83, 2341-2359(2000).

    [22] M LIU D. Particle packing and rheological property of highly- concentrated ceramic suspensions: φm determination and viscosity prediction. Journal of Materials Science, 35, 5503-5507(2000).

    [23] T CHARITIER, C CHAPUT, F DOREAU et al. Stereolithography of structural complex ceramic parts. Journal of Materials Science, 37, 3141-3147(2002).

    [24] Y ABOULIATIM, T CHARTIER, P ABELARD et al. Optical characterization of stereolithography alumina suspensions using the Kubelka-Munk model. Journal of the European Ceramic Society, 29, 919-924(2009).

    [25] L GRIFFITH M, W HALLORAN J. Freeform fabrication of ceramics via stereolithography. Journal of the American Ceramic Society, 79, 2601-2608(1996).

    [26] S DIENER, G FRANCHIN, N ACHILLES et al. X-ray microtomography investigations on the residual pore structure in silicon nitride bars manufactured by Direct Ink Writing using different printing patterns. Open Ceramic, 5, 100042(2021).

    [27] Q ZHANG K, Y MENG Q, J CAI N et al. Effects of solid loading on stereolithographic additive manufactured ZrO2 ceramic: a quantitative defect study by X-ray computed tomography. Ceramics International, 47, 24353-24359(2021).

    [28] Q ZHANG K, J HE R, J DING G et al. Effects of fine grains and sintering additives on stereolithography additive manufactured Al2O3 ceramic. Ceramics International, 47, 2303-2310(2021).

    Guoqian LIU, Changhai YAN, Keqiang ZHANG, Hua JIN, Rujie HE. Effect of Solid Loading on the Property of Al2O3 Ceramics in Stereolithographic Additive Manufacturing [J]. Journal of Inorganic Materials, 2021, 37(3): 353
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