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CEN/TS 820-5:2004

Withdrawn

Withdrawn

A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

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Advanced technical ceramics - Methods of testing monolithic ceramics. Thermomechanical properties - Part 5: Determination of elastic moduli at elevated temperatures

Withdrawn date

23-10-2024

Superseded by

EN 820-5:2009

Published date

11-02-2004

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Foreword
1 Scope
2 Normative references
3 Terms and definitions
4 Method A: Static bending method
  4.1 Principle
  4.2 Apparatus
  4.3 Test pieces
  4.4 Procedure
  4.5 Calculation of results
  4.6 Accuracy and interferences
5 Method B: Resonance method
  5.1 Principle
  5.2 Apparatus
  5.3 Test pieces
  5.4 Procedure
  5.5 Calculation of results
  5.6 Accuracy and interferences
6 Method C: Impulse excitation method
  6.1 Principle
  6.2 Apparatus
  6.3 Test pieces
  6.4 Procedure
  6.5 Calculation
  6.6 Accuracy and interferences
7 Test report
Bibliography

This part of ENV 820 describes methods for determining the elastic moduli, specifically Young's modulus, shear modulus and Poisson's ratio, of advanced monolithic technical ceramics at temperatures above room temperature. The Technical Specification prescribes three alternative methods for determining some or all of these three parameters:AThe determination of Young's modulus by static flexure of a thin beam in three- or four-point bending.BThe determination of Young's modulus by forced longitudinal resonance, or Young's modulus, shear modulus and Poisson's ratio by forced flexural and torsional resonance, of a thin beam.CThe determination of Young's modulus from the fundamental natural frequency of a struck bar (impulse excitation method).This Technical Specification extends the above-defined room-temperature methods described in ENV 843-2 to elevated temperatures. All the test methods assume the use of homogeneous test pieces of linear elastic materials. The test assumes that the test piece has isotropic elastic properties. At high porosity levels all of the methods can become inappropriate. The maximum grain size (see EN 623-3), excluding deliberately added whiskers, should be less than 10% of the minimum dimension of the test piece.

Committee
CEN/TC 184
DocumentType
Technical Specification
PublisherName
Comite Europeen de Normalisation
Status
Withdrawn
SupersededBy

CEN/TR 13233 : 2007 COR 2007 ADVANCED TECHNICAL CERAMICS - NOTATIONS AND SYMBOLS
BS EN 15335:2007 Advanced technical ceramics. Ceramic composites. Determination of elastic properties by resonant beam method up to 2000°C
09/30185903 DC : 0 BS EN 14232 - ADVANCED TECHNICAL CERAMICS - TERMS, DEFINITIONS AND ABBREVIATIONS
PREN 14232 : DRAFT 2009 ADVANCED TECHNICAL CERAMICS - TERMS, DEFINITIONS AND ABBREVIATIONS
EN 15335:2007 Advanced technical ceramics - Ceramic composites - Determination of elastic properties by resonant beam method up to 2 000 °C
PD CEN/TR 13233:2007 Advanced technical ceramics. Notations and symbols
DD CEN/TR 13233 : 2007 ADVANCED TECHNICAL CERAMICS - NOTATIONS AND SYMBOLS
S.R. CEN TR 13233:2007 ADVANCED TECHNICAL CERAMICS - NOTATIONS AND SYMBOLS
DIN EN 15335:2007-08 Advanced technical ceramics - Ceramic composites - Determination of elastic properties by resonant beam method up to 2000 ?C

EN 843-1:2006 Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Part 1: Determination of flexural strength
EN 60584-2:1993 Thermocouples - Part 2: Tolerances
EN 820-1:2002 Advanced technical ceramics - Methods of testing monolithic ceramics - Thermonechanical properties - Part 1: Determination of flexural strength at elevated temperatures
ISO 6906:1984 Vernier callipers reading to 0,02 mm
ENV 843-2 : 1995 ADVANCED TECHNICAL CERAMICS - MONOLITHIC CERAMICS - MECHANICAL PROPERTIES AT ROOM TEMPERATURE - DETERMINATION OF ELASTIC MODULI
EN 60584-1:2013 Thermocouples - Part 1: EMF specifications and tolerances
ISO 3611:2010 Geometrical product specifications (GPS) — Dimensional measuring equipment: Micrometers for external measurements — Design and metrological characteristics
ISO/R 463:1965 Dial gauges reading in 0.01 mm, 0.001 in and 0.0001 in

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