Dense Polycrystalline SiC Fiber Derived from Aluminum-doped Polycarbosilane by One-Pot Synthesis
Author:
Publisher
Korean Ceramic Society
Subject
Ceramics and Composites
Link
http://www.jkcs.or.kr/upload/pdf/SRMHB8_2007_v44n7_393.pdf
Reference19 articles.
1. Boron Transport and Change of Lattice Parameter During Sintering of beta-SiC
2. Effect of Boron and Carbon on Sintering of SIC
3. Microstructural development and mechanical properties of pressureless-sintered SiC with plate-like grains using Al2O3-Y2O3 additives
4. The Use of MgO as a densification aid for α-SiC
5. Formation of solid solutions between SiC and AlN during liquid-phase sintering
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1. Fabrication and high-temperature performance evaluation of silicon carbide – Hafnium carbide nanocomposite fiber;Ceramics International;2022-05
2. Structural Evolution of Silicon Carbide Phase from the Polycarbosilane Cured with Iodine: NMR Study;Journal of Inorganic and Organometallic Polymers and Materials;2018-05-09
3. Preceramic Polymer Technology for High Temperature Ceramic Composite and its Application;Composites Research;2017-04-30
4. Fabrication of Cu-30 vol% SiC Composites by Pressureless Sintering of Polycarbosilane Coated SiC and Cu Powder Mixtures;Korean Journal of Materials Research;2016-06-30
5. Synthesis and Consolidation of Nano-Sized Cu Coated SiC Powders by a Chemical Method and Spark Plasma Sintering;Journal of Nanoscience and Nanotechnology;2016-02-01
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