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NASA NTRS · 20020073157

Precursor Selection for Property Optimization in Biomorphic SiC Ceramics

Abstract

Biomorphic SiC ceramics have been fabricated using different wood precursors. The evolution of volume, density and microstructure of the woods, carbon performs, and final SiC products are systematically studied in order to establish experimental guidelines that allow materials selection. The wood density is a critical characteristic, which results in a particular final SiC density, and the level of anisotropy in mechanical properties in directions parallel (axial) and perpendicular (radial) to the growth of the wood. The purpose of this work is to explore experimental laws that can help choose a type of wood as precursor for a final SiC product, with a given microstructure, density and level of anisotropy. Preliminary studies of physical properties suggest that not only mechanical properties are strongly anisotropic, but also electrical conductivity and gas permeability, which have great technological importance.

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BibTeXRIS

Varela-Feria, F. M., Lopez-Robledo, M. J., Martinez-Fernandez, J., deArellano-Lopez, A. R., Singh, M., Gray, Hugh R.. 2002-01-01. Precursor Selection for Property Optimization in Biomorphic SiC Ceramics. https://ntrs.nasa.gov/citations/20020073157

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