Homepage>BS EN IEC 60793-1-31:2019 - TC Tracked Changes. Optical fibres Measurement methods and test procedures. Tensile strength
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sklademVydáno: 2020-02-24
BS EN IEC 60793-1-31:2019 - TC
Tracked Changes. Optical fibres Measurement methods and test procedures. Tensile strength
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Označení normy:
BS EN IEC 60793-1-31:2019 - TC
Vydáno:
2020-02-24
ISBN:
978-0-539-07732-2
Status:
Tracked Changes
DESCRIPTION
BS EN IEC 60793-1-31:2019 - TC
This standard BS EN IEC 60793-1-31:2019 - TC Tracked Changes. Optical fibres is classified in these ICS categories:
33.180.10 Fibres and cables
IEC 60793-1-31:2019 provides values of the tensile strength under dynamic loading of optical fibre samples. The method tests individual lengths of uncabled and unbundled glass optical fibre. Sections of fibre are broken with controlled increasing stress or strain that is uniform over the entire fibre length and cross section. The stress or strain is increased at a nominally constant rate until breakage occurs. The distribution of the tensile strength values of a given fibre strongly depends on the sample length, loading velocity and environmental conditions. The test can be used for inspection where statistical data on fibre strength is required. Results are reported by means of statistical quality control distribution. Normally, the test is carried out after temperature and humidity conditioning of the sample. However, in some cases, it can be sufficient to measure the values at ambient temperature and humidity conditions. This method is applicable to categories A1, A2, and A3, and classes B and C optical fibres. The object of this document is to establish uniform requirements for the mechanical characteristic: tensile strength. This third edition cancels and replaces the second edition published in 2010. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: a) correction of Formulae (3b) and (4b) and renumbering of formulae. Keywords: tensile strength under dynamic loading of optical fibre samples