Journal of the Ceramic Society of Japan (日本セラミックス協会学術論文誌)
Online ISSN : 1882-1022
Print ISSN : 0914-5400
ISSN-L : 0914-5400
ゲストエディターによる特集:有機-無機変換プロセス:論文
拡張可能なマイクロスフェアーを用いた多孔質なオープンセル構造を持つマイクロセルラー炭化ケイ素セラミックスのプロセッシング
Doo-Hee JANGYoung-Wook KIMIn-Hyuck SONGHai-Doo KIMChul B. PARK
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2006 年 114 巻 1330 号 p. 549-553

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A refined processing route for producing highly porous, open-cell, microcellular SiC ceramics by the expansion method using expandable microspheres has been demonstrated. The strategy adopted for making microcellular SiC ceramics involved the following steps: (i) fabricating preceramic foams by heating a mixture of polysiloxane, carbon black or phenol resin (used as a carbon source), Al2O3-Y2O3 (used as a sintering additive), expandable microspheres (used as sacrificial templates), and SiC (an optional inert filler); (ii) cross-linking the polysiloxane in the foamed body; (iii) transforming the polysiloxane and phenol resin by pyrolysis into silicon oxycarbide and carbon, respectively; and (iv) synthesizing SiC by carbothermal reduction. Effects of the carbon source, expandable microsphere content, and inert filler content on microstructure, porosity, and cell density were investigated in this study. By controlling the expandable microsphere and inert filler contents, it was possible to adjust the porosity within a range of 77% to 94%.
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© 2006 The Ceramic Society of Japan
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