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BS EN 14186:2007

Current
Current

The latest, up-to-date edition.

Advanced technical ceramics. Mechanical properties of ceramic composites at room temperature. Determination of elastic properties by an ultrasonic technique
Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-31-2008

Foreword
1 Scope
2 Normative references
3 Terms and definitions
4 Principle
5 Significance and use
6 Apparatus
   6.1 Ultrasonic tank with thermostatic control
   6.2 Temperature measurement device
   6.3 Test specimen holder
   6.4 Transducers
   6.5 Transducer holders
   6.6 Pulse generator
   6.7 Signal recording system
7 Test specimens
8 Test specimen preparation
9 Test procedure
   9.1 Choice of frequency
   9.2 Establishment of the test temperature
   9.3 Reference test without test specimen
   9.4 Measurement with the specimen
10 Calculation
   10.1 Delay
   10.2 Calculation of the propagation velocities
   10.3 Calculation of the refracted angle [theta][r]
   10.4 Identification of the elastic constants, C[ij]
   10.5 Back calculation of the phase velocities
   10.6 Polar plots of the velocity curves
   10.7 Calculation of the quadratic deviation
   10.8 Calculation of the engineering constants
11 Test validity
   11.1 Measurements
   11.2 Criterion of validity for the reliability of
        the C[ij] components
12 Test report
Annex A (informative) - Example of a presentation of the
                        results for a material with
                        orthothropic symmetry
      A.1 Velocity curves
      A.2 Stiffness matrix with stiffness components
      A.3 Engineering constants
Bibliography

Describes an ultrasonic method to determine the components of the elasticity tensor of ceramic matrix composite materials at room temperature.

This European Standard 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 European Standard applies to ceramic matrix composites with a continuous fibre reinforcement: unidirectional (1D), bidirectional (2D), and tridirectional (?D, with 2 < ? ? 3) which have at least orthotropic symmetry, and whose material symmetry axes are known. This method is applicable only when the ultrasonic wave length 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 may not be comparable with moduli obtained by EN 658-1, EN 658-2 and EN 12289.

Committee
RPI/13
DevelopmentNote
Supersedes DD ENV 14186. (02/2008)
DocumentType
Standard
Pages
28
PublisherName
British Standards Institution
Status
Current
Supersedes

Standards Relationship
I.S. EN 14186:2007 Identical
EN 14186:2007 Identical
NS EN 14186 : 1ED 2007 Identical
NBN EN 14186 : 2008 Identical
NEN EN 14186 : 2007 Identical
NF EN 14186 : 2008 Identical
SN EN 14186 : 2008 Identical
DIN EN 14186:2008-02 Identical

EN 1389:2003 (edition 2) Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity
ISO/IEC 17025:2005 General requirements for the competence of testing and calibration laboratories
ISO 653:1980 Long solid-stem thermometers for precision use
EN 658-1:1998 Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 1: Determination of tensile properties
EN 12289:2005 Advanced technical ceramics - Mechanical properties of ceramic composites at ambient temperature - Determination of in-plane shear properties
EN 658-2 : 2002 ADVANCED TECHNICAL CERAMICS - MECHANICAL PROPERTIES OF CERAMIC COMPOSITES AT ROOM TEMPERATURE - PART 2: DETERMINATION OF COMPRESSION PROPERTIES
ISO 3611:2010 Geometrical product specifications (GPS) — Dimensional measuring equipment: Micrometers for external measurements — Design and metrological characteristics
CEN/TR 13233 : 2007 COR 2007 ADVANCED TECHNICAL CERAMICS - NOTATIONS AND SYMBOLS

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