175 research outputs found

    Processing of functional fine scale ceramic structures by ink-jet printing

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    International audienceThis review illustrates the potentiality of ink-jet printing for the fabrication of functional fine scale ceramic structures corresponding to two different kinds of micro-pillar arrays i.e. (i) PZT skeletons, etc..

    Thermal and Optical Characterization of Undoped and Neodymium-Doped Y3ScAl4O12 Ceramics

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    Y3–3xNd3xSc1Al4O12 (x = 0, 0.01, and 0.02) ceramics were fabricated by sintering at high temperature under vacuum. Unit cell parameter refinement and chemical analysis have been performed. The morphological characterization shows micrograins with no visible defects. The thermal analysis of these ceramics is presented, by measuring the specific heat in the temperature range from 300 to 500 K. Their values at room temperature are in the range 0.81–0.90 J g1–K–1. The thermal conductivity has been determined by two methods: by the experimental measurement of the thermal diffusivity by the photopyroelectric method, and by spectroscopy, evaluating the thermal load. The thermal conductivities are in the range 9.7–6.5 W K–1 m–1 in the temperature interval from 300 to 500 K. The thermooptic coefficients were measured at 632 nm by the dark mode method using a prism coupler, and the obtained values are in the range 12.8–13.3 × 10–6 K–1. The nonlinear refractive index values at 795 nm have been evaluated to calibrate the nonlinear optical response of these materials.This work is supported by the Spanish Government under projects MAT2011-29255-C02-01-02, MAT2013-47395-C4-4-R, and the Catalan Government under project 2014SGR1358. It was also funded by the European Commission under the Seventh Framework Programme, project Cleanspace, FP7-SPACE-2010-1-GA No. 263044

    SĂ©minaire : From powders to transparent ceramics: control of ceramic processes

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    Cours « Le Frittage »

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    De la poterie aux lasers : les céramiques innovent !

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    Nouveaux matériaux pour lasers : les céramiques transparentes.

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    National audienceDepuis une dizaine d'année, le développement de lasers de haute puissance s'accompagne de l'utilisation croissante de céramiques transparentes comme milieux amplificateurs. En effet, les céramiques présentent de nombreux avantages par rapport aux cristaux habituellement employés pour cet usage. Les techniques de mise en forme des céramiques permettent notamment d'élaborer des matériaux de plus grande taille et d'architecture plus complexe. Toutefois, ce type d'application requiert un contrôle drastique de l'ensemble du procédé d'élaboration qui conditionne la qualité optique du matériau final

    Les CĂ©ramiques pour Lasers, un enjeu pour l'avenir

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