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- W2014950658 abstract "Chemical vapor infiltration (CVI) is a process according to which a ceramic material is deposited from a gaseous precursor in the open pores of a heated substrate. It has been used to elaborate ceramic matrix composites, starting from porous fiber preforms. SiC/SiC composites consist of an SiC CVI-matrix reinforced with Si-C-O ex-polycarbosilane yarn fibers. These composites exhibit non-brittle mechanical behavior in tension loading when a thin layer of a compliant interphase material (turbostratic pyrocarbon or hex-BN) with a low shear failure stress is deposited onto the fibers prior to infiltration of the SiC-matrix. When exposed to oxidizing atmospheres, SiC/C/SiC composites are self healing if their carbon-interphase is thin enough and the temperature is high. Their oxidation resistance can be improved by replacing the vulnerable carbon-interphase by a BN-interphase (low temperature exposures) and/or adding a glass-former coating on the external surface of the composites." @default.
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- W2014950658 date "1992-10-01" @default.
- W2014950658 modified "2023-09-25" @default.
- W2014950658 title "Two-dimensional SiC/SiC composites processed according to the isobaric-isothermal chemical vapor infiltration gas phase route" @default.
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- W2014950658 doi "https://doi.org/10.1016/0925-8388(92)90641-l" @default.
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