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BS EN ISO 17640:2018

Current

Current

The latest, up-to-date edition.

Non-destructive testing of welds. Ultrasonic testing. Techniques, testing levels, and assessment

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

23-01-2019

€254.76
Excluding VAT

This document specifies techniques for the manual ultrasonic testing of fusion-welded joints in metallic
materials of thickness ≥8 mm which exhibit low ultrasonic attenuation (especially that due to scatter)
at object temperatures from 0 °C to 60 °C.

Committee
WEE/46
DocumentType
Standard
ISBN
9780539007718
Pages
0
PublisherName
British Standards Institution
Status
Current
Supersedes

This document specifies techniques for the manual ultrasonic testing of fusion-welded joints in metallic materials of thickness ≥8mm which exhibit low ultrasonic attenuation (especially that due to scatter) at object temperatures from 0°C to 60°C. It is primarily intended for use on full penetration welded joints where both the welded and parent material are ferritic. Where material-dependent ultrasonic values are specified in this document, they are based on steels having an ultrasonic sound velocity of (5920±50)m/s for longitudinal waves and (3255±30)m/s for transverse waves. This document specifies four testing levels, each corresponding to a different probability of detection of imperfections. Guidance on the selection of testing levels A, B, and C is given in AnnexA. This document specifies that the requirements of testing levelD, which is intended for special applications, be in accordance with general requirements. Testing levelD can only be used when defined by specification. This includes tests of metals other than ferritic steel, tests on partial penetration welds, tests with automated equipment, and tests at object temperatures outside the range 0°C to 60°C. This document can be used for the assessment of discontinuities, for acceptance purposes, by either of the following techniques: evaluation based primarily on length and echo amplitude of the discontinuity; evaluation based on characterization and sizing of the discontinuity by probe movement techniques.

Standards Relationship
ISO 17640:2018 Identical
EN ISO 17640:2018 Identical

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