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>UNE EN ISO 18610:2021 - Fine ceramics (advanced ceramics, advanced technical ceramics) - Mechanical properties of ceramic composites at ambient temperature in air atmospheric pressure - Determination of elastic properties by ultrasonic technique (ISO 18610:2016) (Endorsed by Asociación Española de Normalización in March of 2021.)
sklademVydáno: 2021-03-01
UNE EN ISO 18610:2021 - Fine ceramics (advanced ceramics, advanced technical ceramics) - Mechanical properties of ceramic composites at ambient temperature in air atmospheric pressure - Determination of elastic properties by ultrasonic technique (ISO 18610:2016) (Endorsed by Asociación Española de Normalización in March of 2021.)

UNE EN ISO 18610:2021

Fine ceramics (advanced ceramics, advanced technical ceramics) - Mechanical properties of ceramic composites at ambient temperature in air atmospheric pressure - Determination of elastic properties by ultrasonic technique (ISO 18610:2016) (Endorsed by Asociación Española de Normalización in March of 2021.)

Cerámicas técnicas (cerámicas avanzadas, cerámicas técnicas avanzadas). Propiedades mecánicas de las cerámicas compuestas a temperatura ambiente en aire a presión atmosférica. Determinación de propiedades elásticas por técnica ultrasónica. (ISO 18610:2016). (Ratificada por la Asociación Española de Normalización en marzo de 2021.)

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Označení normy:UNE EN ISO 18610:2021
Počet stran:29
Vydáno:2021-03-01
Status:Norma
DESCRIPTION

UNE EN ISO 18610:2021

This document specifies an ultrasonic method to determine the components of the elasticity tensor of ceramic matrix composite materials at room temperature. Young s moduli shear moduli and Poisson coefficients, can be determined from the components of the elasticity tensor. This document applies to ceramic matrix composites with a continuous fibre reinforcement: unidirectional (1D), bidirectional (2D), and tridirectional (×D, with 2 < × d" 3) which have at least orthotropic symmetry, and whose material symmetry axes are known. This method is applicable only when the ultrasonic wavelength used is larger than the thickness of the representative elementary volume, thus imposing an upper limit to the frequency range of the transducers used. NOTE Properties obtained by this method might not be comparable with moduli obtained by ISO 15733, ISO 20504 and EN 12289.

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