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首页> 外文期刊>Journal of the European Ceramic Society >3D printing of CaO-based ceramic core using nanozirconia suspension as a binder
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3D printing of CaO-based ceramic core using nanozirconia suspension as a binder

机译:使用纳米锆悬浮液作为粘合剂的CaO基陶瓷芯的3D印刷

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The 3D printing of a ceramic core with nanoceramic suspension as a binder was performed to investigate a novel method for the fabrication of a complex-shaped ceramic core. Green bodies were printed using CaO powder as a precursor material and nanozirconia-absolute ethyl alcohol solution suspension as a binder. The green bodies were sintered at 1300-1500°Cfor 2h. The effects of binder saturation level on the properties of the sintered bodies were investigated. Increasing the binder saturation level caused decreases in the linear shrinkage of the sintered bodies, but increases in hydration resistance and bending strength. The nanozirconia particles were deposited on the surfaces of the CaO particles and filled the pores of green bodies, and then formed a high melting temperature CaZrO_3 layer with the CaO at the surfaces of the CaO grains, which improved the hydration resistance of the CaO-based ceramic core parts.
机译:进行纳米铬悬浮液作为粘合剂的陶瓷芯的3D印刷,以研究制造复杂形陶瓷芯的新方法。 使用CaO粉末作为前体材料和纳米锆 - 绝对乙醇溶液悬浮作为粘合剂的粘合剂印刷生物。 生坯烧结在1300-1500°C转变2小时。 研究了粘合剂饱和水平对烧结体的性质的影响。 增加粘合剂饱和水平引起的烧结体的线性收缩率降低,但是水化抗性和弯曲强度的增加。 将纳米锆颗粒沉积在CaO颗粒的表面上并填充生坯的孔,然后在CaO晶粒的表面上用CaO形成高熔点Cazro_3层,这改善了CaO的水化性 陶瓷芯部件。

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