Fabrication of Mullite-Bonded Porous SiC Using Ti3AlC2 MAX Phase
Author:
Funder
Ministry of Education
National Research Foundation of Korea
Publisher
Korean Ceramic Society
Subject
Ceramics and Composites
Link
http://jkcs.or.kr/upload/pdf/kcers-2019-56-2-11.pdf
Reference33 articles.
1. Anomalous oxidation behaviour of pressureless liquid-phase-sintered SiC
2. Sliding-wear resistance of ultrafine-grained SiC densified by spark plasma sintering with 3Y2O3+5Al2O3 or Y3Al5O12 additives
3. High-temperature strength of a thermally conductive silicon carbide ceramic sintered with yttria and scandia
4. Preparation and properties of SiC honeycomb ceramics by pressureless sintering technology
5. Effect of Y2O3 addition on the properties of reaction-bonded porous SiC ceramics
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1. Electrical resistivity and flexural strength of mullite‐bonded porous SiC: Effect of transition metal additives;Journal of the American Ceramic Society;2023-06-13
2. Mullite-bonded porous SiC-based Mn3O4–Ni system: control of electrical resistivity, flexural strength, and extrusion;Journal of the Korean Ceramic Society;2022-08-18
3. Effect of Ni content and its particle size on electrical resistivity and flexural strength of porous SiC ceramic sintered at low-temperature using clay additive;Ceramics International;2021-11
4. Fire-safe unsaturated polyester resin nanocomposites based on MAX and MXene: a comparative investigation of their properties and mechanism of fire retardancy;Dalton Transactions;2020
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