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René Pailler

Researcher at Centre national de la recherche scientifique

Publications -  227
Citations -  6959

René Pailler is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Ceramic & Ceramic matrix composite. The author has an hindex of 38, co-authored 225 publications receiving 6506 citations. Previous affiliations of René Pailler include Commissariat à l'énergie atomique et aux énergies alternatives & Alternatives.

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Macroscopic Fibers and Ribbons of Oriented Carbon Nanotubes

TL;DR: A simple method was used to assemble single-walled carbon nanotubes into indefinitely long ribbons and fibers, and the obtained elastic modulus is 10 times higher than the modulus of high-quality bucky paper.
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SiC filament/titanium matrix composites regarded as model composites

TL;DR: In this paper, the authors analyse the FM interaction zone composition, its kinetics of growth in the 700 to 1100°C temperature range, and the growth mechanism of the FM reaction zone.
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Conversion mechanisms of a polycarbosilane precursor into an SiC-based ceramic material

TL;DR: The pyrolysis of a PCS precursor has been studied up to 1600 °C through the analysis of the gas phase and the characterization of the solid residue by thermogravimetric analysis, extended X-ray absorption fine structure, electron spectrocopy for chemical analysis, transmission electron microscopy, Xray diffraction, Raman and Auger electron spectroscopy microanalyses, as well as electrical conductivity measurements.
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Oxidation-resistant carbon-fiber-reinforced ceramic-matrix composites

TL;DR: In this paper, a Si-B-C ceramic matrix has been developed to improve the oxidation resistance and the lifetime in an oxygen environment of carbon-fiber-reinforced ceramic-matrix composites.
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Macroscopic Fibers and Ribbons of Oriented Carbon Nanotubes.

TL;DR: In this paper, a simple method was used to assemble single-walled carbon nanotubes into indefinitely long ribbons and fibers, which can be strongly bent without breaking, and their obtained elastic modulus is 10 times higher than the modulus of high-quality bucky paper.