4.7 Article

Preparation and properties of high-porosity ZrB2-SiC ceramics by water-based freeze casting

期刊

JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
卷 41, 期 4, 页码 2239-2246

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ELSEVIER SCI LTD
DOI: 10.1016/j.jeurceramsoc.2020.11.009

关键词

ZrB2-SiC; Freeze casting; Porous ceramics; Mechanical properties; Compressive strength

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In this study, a water-based freeze casting process was used to fabricate ZrB2-SiC porous ceramic with aligned lamellar-channels structure. By adjusting the solid loading, samples with tailored porosity ranging from 76.12% to 59.37% and compressive strength from 7 MPa to 78 MPa were obtained. The porous ceramic showed decreased porosity and increased compressive strength after oxidation, making it a promising candidate for cermet composite framework.
The development of novel cermet composites based on porous ceramics with high porosity, interconnected pore structure and good mechanical property has attracted considerable attention in engineering application. In this work, water-based freeze casting process was employed to fabricate ZrB2-SiC porous ceramic with aligned lamellar-channels structure using PAA-NH4 as the dispersant. The results revealed that the well-dispersed suspension with best rheological behavior was obtained using 1.0 wt% PAA-NH4 at pH 9. The crack-free porous ceramic exhibited small volume shrinkage ranging from 2.59 % to 1.87 %. By varying the solid loading, the fabricated samples displayed a tailored porosity ranging from 76.12% to 59.37% and an excellent compressive strength of 7 MPa to 78 MPa. After oxidation, the samples displayed a decreased porosity and an increased compressive strength. The ZrB2-SiC porous ceramic fabricated in this work will be a promising candidate for the framework of cermet composite.

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