Preparation And Degreasing Process Optimization of Light-Curing Slurry for Alumina Ceramics
DOI:
https://doi.org/10.54097/hset.v51i.8268Keywords:
Alumina ceramics; light-curing paste; preparation and degreasing; light-curing printing; dispersant; process optimization.Abstract
Aluminum oxide ceramic light-curing paste preparation and degreasing has always been an important part of the production and manufacturing of alumina ceramics, and is also the key to ensure the quality of alumina ceramics, so it has been the attention of relevant technical personnel and workers and concerns. The traditional alumina ceramic light-curing paste preparation and degreasing process still has some shortcomings, and if these shortcomings are not compensated in time, the overall quality of alumina ceramics will be affected, so the alumina ceramic light-curing paste preparation and degreasing process must be continuously optimized. In this regard, this paper analyzes in detail the preparation and degreasing process optimization of light-curing slurry for alumina ceramics. The preparation of alumina ceramic light-curing paste with incomplete degreasing and other undesirable phenomena will not only lead to the occurrence of a large number of porosity, but also increase the incidence of defects such as cracks, thus reducing the quality of ceramics. Therefore, as the relevant staff, not only should pay great attention to the preparation and degreasing of alumina ceramic light-curing paste, but also according to the various preparation and degreasing problems that occurred in the past, and constantly optimize the existing alumina ceramic light-curing paste preparation and degreasing process, if necessary, with the help of 3D printing technology, light-curing molding (SLA) technology modern high-tech technology, to constantly optimize the alumina ceramic light-curing paste Preparation and degreasing process
Downloads
References
Chen L, Wang ZS, Cui XD. Preparation and degreasing process optimization of alumina ceramic photocurable slurry [J]. Journal of Sichuan University (Natural Science Edition),2022,59(4):140-147.
Wang R. Preparation of alumina ceramics by light curing method (DLP) and optimization of properties [D]. Henan:Zhengzhou University,2021.
Jiao Shouzheng, Qi Wen, Chen Song, et al. Effect of dispersant and powder particle size on the viscosity of light-cured alumina ceramic pastes and the performance of manufactured parts [J]. Silicate Bulletin,2020,39(1):260-265.
Lan F.Y., Yang M.H., Lan T., et al. Preparation and properties of alumina foam ceramics with braided silicon carbide nanowires [J]. Journal of Artificial Crystals,2022,51(7):1275-1283.
Wu Xiaolang, Zhao Jin, Shimai Junzo, et al. Preparation of high-density alumina billets by ceramic gel reflow combined with press filtration [J]. Silicate Bulletin,2022,41(7):2467-2473.
Xie Yuzhou, Peng Chaoqun, Wang Xiaofeng, et al. Preparation of porous alumina ceramics by HEMA-TBA gel system [J]. Journal of Inorganic Materials,2017,32(7):731-738.
Song T, Zhao SK, Ding CHY, et al. Study on the preparation process of alumina ceramic flat film slurry for tila impregnation [J]. Modern Technical Ceramics,2021,42(4):256-264.
Laodong, Jia Wenbao, Wang Yufan, et al. Preparation and properties of alumina-based reticulated porous ceramics [J]. Refractory Materials,2019,53(4):283-287,293.
Wang Shiwei. Advances in spontaneous solidification molding of ceramic slurry based on hydrophobic interaction [J]. Journal of Inorganic Materials,2022,37(8):809-820.
Wang G, Yuan B, Han J-S, et al. Preparation of alumina-based porous ceramics by foaming method(Ⅰ): Preparation and process optimization of pure alumina porous ceramics and their large-size samples [J]. Refractory Materials,2017,51(5):321-328.
Downloads
Published
Issue
Section
License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







