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Effect of Impurities Control on the Crystallization and Densification of Polymer-Derived SiC Fibersopen access

Authors
Joo, Young-junJoo, Sang-hyunLee, Hyuk-junShim, Young-jinShin, Dong-geunCho, Kwang-youn
Issue Date
Nov-2021
Publisher
MDPI
Keywords
polycarbonsilane; SiC fiber; impurities control; crystallization; densification
Citation
NANOMATERIALS, v.11, no.11
Indexed
SCIE
SCOPUS
Journal Title
NANOMATERIALS
Volume
11
Number
11
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/72858
DOI
10.3390/nano11112933
ISSN
2079-4991
Abstract
The polymer-derived SiC fibers are mainly used as reinforcing materials for ceramic matrix composites (CMCs) because of their excellent mechanical properties at high temperature. However, decomposition reactions such as release of SiO and CO gases and the formation of pores proceed above 1400 & DEG;C because of impurities introduced during the curing process. In this study, polycrystalline SiC fibers were fabricated by applying iodine-curing method and using controlled pyrolysis conditions to investigate crystallization and densification behavior. Oxygen and iodine impurities in amorphous SiC fibers were reduced without pores by diffusion and release to the fiber surface depending on the pyrolysis time. In addition, the reduction of the impurity content had a positive effect on the densification and crystallization of polymer-derived SiC fibers without a sintering aid above the sintering temperature. Consequently, dense Si-Al-C-O polycrystalline fibers containing beta-SiC crystal grains of 50~100 nm were easily fabricated through the blending method and controlled pyrolysis conditions.
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