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BS ISO 6721-5:2019

$102.76

Plastics. Determination of dynamic mechanical properties – Flexural vibration. Non-resonance method

Published By Publication Date Number of Pages
BSI 2019 18
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This document describes a flexural, non-resonance method for determining the components of the flexural complex modulus Ef* of polymers at frequencies typically in the range 0,01 Hz to 100 Hz. Higher-frequency measurements can be made, but significant errors in the dynamic properties measured are likely to result (see 10.2.2 and 10.2.3). The method is suitable for measuring dynamic storage moduli in the range 10 MPa to 200 GPa.

NOTE

Although materials with moduli less than 10 MPa can be studied, more accurate measurements of their dynamic-mechanical properties can be made using shear modes of deformation (see ISO 6721-6).

This method is particularly suited to the measurement of loss factors greater than 0,02 and can therefore be conveniently used to study the variation of dynamic properties with temperature and frequency through most of the glass-rubber relaxation region (see ISO 6721-1). The availability of data determined over wide ranges of both frequency and temperature enables master plots to be derived, using frequency/temperature shift procedures, which present dynamic properties over an extended frequency range at different temperatures.

PDF Catalog

PDF Pages PDF Title
2 National foreword
6 Foreword
7 1 Scope
2 Normative references
3 Terms and definitions
4 Principle
8 5 Apparatus
5.1 Loading assembly
5.1.1 General
5.1.2 Load stage
5.1.3 Transducers
9 5.2 Electronic data-processing equipment
5.3 Temperature measurement and control
5.4 Devices for measuring test specimen dimensions
6 Test specimens
6.1 General
6.2 Shape and dimensions
6.3 Preparation
7 Number of specimens
8 Conditioning
10 9 Procedure
9.1 Test atmosphere
9.2 Measuring the cross-section of the specimen
9.3 Clamping the specimen
9.4 Varying the temperature
9.5 Performing the test
11 10 Expression of results
10.1 Symbols
10.2 Calculation of flexural storage modulus Ef′
10.2.1 General
12 10.2.2 Avoidance of specimen resonance
13 10.2.3 Correction for transducer resonance
10.2.4 Correction for apparatus compliance
10.2.5 Application of a length correction
14 10.3 Calculation of the flexural loss factor tan 
10.4 Calculation of the flexural loss modulus Ef′′
10.5 Presentation of data as a function of temperature
11 Precision
12 Test report
17 Bibliography
BS ISO 6721-5:2019
$102.76