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DIN EN ISO 22765:2019-11

DIN EN ISO 22765:2019-11

Nuclear fuel technology - Sintered (U,Pu)O<(Index)2> pellets - Guidance for ceramographic preparation for microstructure examination (ISO 22765:2016); German Version EN ISO 22765:2019 / Note: To be replaced by DIN EN ISO 22765 (2024-01).

Technologie du combustible nucléaire - Pastilles (U,Pu)O<(Index)2> frittées - Préconisations relatives à la préparation céramographique pour examen de la microstructure (ISO 22765:2016); Version allemande EN ISO 22765:2019 / Attention: À remplacer par DIN EN ISO 22765 (2024-01).

Kernbrennstofftechnologie - Gesinterte (U,Pu)O<(Index)2>-Pellets - Leitfaden für die keramographische Herstellung der Proben zur Untersuchung des Feingefüges (ISO 22765:2016); Deutsche Fassung EN ISO 22765:2019 / Achtung: Vorgesehener Ersatz durch DIN EN ISO 22765 (2024-01).

Date:
2019-11 /Active
Idiomas Disponibles:
Inglés, Alemán
International equivalences:

EN ISO 22765:2019

ISO 22765:2016

Relación con otras normas DIN:
Summary:
The ceramographic procedure used to prepare sintered (U,Pu)O2 pellets for qualitative and quantitative examination of the pellet microstructure.The examinations are performed before and after thermal treatment or chemical etching.They allow- observation of any cracks, intra- and intergranular pores or inclusions, and- measurement of the grain size, porosity and plutonium homogeneity distribution.The mean grain diameter is measured by one of the classic methods: counting (intercept method), comparison with standard grids or typical images, etc.[2] The measurement of individual grain sizes requires uniform development of the microstructure over the entire specimen.The plutonium cluster and pore distribution and localization are generally analysed by automatic image analysis systems. The plutonium distribution is usually revealed by chemical etching but alpha-autoradiography can also be used. The first technique avoids the tendency for autoradiography to exaggerate the size of plutonium-rich clusters due to the distance the alpha particles travel away from the source.
Keywords:
Ceramography, Design, Dies (press tools), Dimensions, Etching, Fatigue testing, Flaws, Grain size, Granulates, Guide books, Homogeneity, Identification methods, Image analysis, Inclusions, Investigations, Metals, Microstructure, Nuclear energy, Nuclear fuels, Pellets, Plutonium, Pores, Porosity, Powder metallurgy, Production, Radius, Sintered, Sintered products, Stress concentration, Test specimens
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