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Titlebook: Developments in the Science and Technology of Composite Materials; ECCM3 Third European A. R. Bunsell,P. Lamicq,A. Massiah Book 1989 Spring

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https://doi.org/10.1007/978-3-322-80990-2ngs of a polymer. It has been shown that the tensile strength distribution is strongly influenced by these variables. It appears that coating or embedding inhibits failure from surface flaws at strains which would otherwise have led to failure.
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Michael Braksiek,Kinga Golus,Lilian Streblowield of the sol using a particulate filler. After sintering the composites were found to be microcracked as a result of the constrained sintering and thermal shrinkage. The interfacial shear strength has been estimated from the average spacing of the microcracks, and found to be comparatively low fo
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Peter Schildhauer,Carolin Zehneors were optimized with respect to ceramic yield and minimum bloating during pyrolysis. Solution infiltration of stacked Nicalon SiC fibre weaves was performed. Repeated impregnations/pyrolyses yielded fairly strong composites exhibiting non-brittle fracture behaviour, especially when a polymer free
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https://doi.org/10.1007/978-3-658-34178-7l composite SiC/SiC and C/SiC materials combine a good resistance to oxidation and to chemical agressions with a high mechanical behaviour, at high temperature and an exceptional toughness-compared to the classical ceramics. News applications have been found for these new composites in the fields of
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Applications of Transmission Electron Microscopy for the Study of Composites (Carbons-Sic) RelationsPeculiar modes of TEM allowing to restitute the three dimensional arrangement of elementary scattering domains (microstructure) of a given material are described. Applications to carbon and ceramic (SiC) fibres and matrices are given as examples. Mechanical and electrical properties related to microstructure are considered mainly for carbon fibres.
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