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BS 3894-1:1965 Method of converting elongation values for steel - Part 1: Carbon and low alloy steels

Abbreviation
BS 3894-1:1965
Valid from
03/06/1965

Information provider
Standards New Zealand
Author
British Standards Institution
Information type
British Standard
Format
PDF


Description

This Standard gives a method of converting percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths.

Scope

The formula of the conversions are based, is considered reliable when applied to carbon, carbon manganese, molybdenum and chromium molybdenum steels. Not applicable to cold reduced steels, quenched and tempered steels, or austenitic steels.

Whilst the conversions are considered to be reliable within the limitations and may generally be used for acceptance purposes, because of the various factors influencing the determination of percentage elongations, in cases of dispute the elongations shall be determined on the gauge length stated in the relevant material specification.

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For assistance with locating previous versions, please contact the information provider.
This resource is cited by:

BS 3894-1:1965 Method of converting elongation values for steel - Part 1: Carbon and low alloy steels

This document is CITED BY:

BS 3894-1:1965 Method of converting elongation values for steel - Part 1: Carbon and low alloy steels

Description

This Standard gives a method of converting percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths.

View on Information Provider website
BS 3894-1:1965 Method of converting elongation values for steel - Part 1: Carbon and low alloy steels
Description

This Standard gives a method of converting percentage elongations after fracture obtained on various proportional and non-proportional gauge lengths to other gauge lengths.

View on Information Provider website
This resource does not cite any other resources.

BS 3894-1:1965 Method of converting elongation values for steel - Part 1: Carbon and low alloy steels

This resource does not CITE any other resources.
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