NF EN ISO 15653

NF EN ISO 15653

January 2018
Standard Current

Metallic materials - Method of test for the determination of quasistatic fracture toughness of welds

ISO 15653:2018 specifies methods for determining fracture toughness in terms of stress intensity factor (K), crack tip opening displacement or CTOD (δ) and experimental equivalent of the J-integral for welds in metallic materials (J).ISO 15653:2018 complements ISO 12135, which covers all aspects of fracture toughness testing of parent metal and which needs to be used in conjunction with this document. This document describes methods for determining point values of fracture toughness. It should not be considered a way of obtaining a valid R-curve (resistance-to-crack-extension curve). However, the specimen preparation methods described in this document could be usefully employed when determining R-curves for welds. The methods use fatigue precracked specimens which have been notched, after welding, in a specific target area in the weld. Methods are described to evaluate the suitability of a weld for notch placement within the target area, which is either within the weld metal or within the weld heat-affected zone (HAZ), and then, where appropriate, to evaluate the effectiveness of the fatigue crack in sampling these areas.

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Main informations

Collections

National standards and national normative documents

Publication date

January 2018

Number of pages

56 p.

Reference

NF EN ISO 15653

ICS Codes

25.160.40   Welded joints and welds

Classification index

A89-217

Print number

1

International kinship

ISO 15653:2018

European kinship

EN ISO 15653:2018
Sumary
Metallic materials - Method of test for the determination of quasistatic fracture toughness of welds

ISO 15653:2018 specifies methods for determining fracture toughness in terms of stress intensity factor (K), crack tip opening displacement or CTOD (δ) and experimental equivalent of the J-integral for welds in metallic materials (J).

ISO 15653:2018 complements ISO 12135, which covers all aspects of fracture toughness testing of parent metal and which needs to be used in conjunction with this document. This document describes methods for determining point values of fracture toughness. It should not be considered a way of obtaining a valid R-curve (resistance-to-crack-extension curve). However, the specimen preparation methods described in this document could be usefully employed when determining R-curves for welds. The methods use fatigue precracked specimens which have been notched, after welding, in a specific target area in the weld. Methods are described to evaluate the suitability of a weld for notch placement within the target area, which is either within the weld metal or within the weld heat-affected zone (HAZ), and then, where appropriate, to evaluate the effectiveness of the fatigue crack in sampling these areas.

Replaced standards (1)
NF EN ISO 15653
July 2010
Standard Cancelled
Metallic materials - Method of test for the determination of quasistatic fracture toughness of welds

ISO 15653:2010 specifies methods for determining fracture toughness in terms of K (stress intensity factor), δ (crack tip opening displacement, CTOD) and J (experimental equivalent of the J‑integral) for welds in metallic materials. ISO 15653 is complementary to ISO 12135, which covers all aspects of fracture toughness testing of parent metal and which needs to be used in conjunction with this document. It describes methods for determining point values of fracture toughness. It should not be considered a way of obtaining a valid R‑curve (resistance-to-crack-extension curve). However, the specimen preparation methods described in ISO 15653 could be usefully employed when determining R‑curves for welds. The methods use fatigue precracked specimens which have been notched, after welding, in a specific target area in the weld. Methods are described to evaluate the suitability of a weld for notch placement within the target area, which is either within the weld metal or within the weld heat-affected zone (HAZ), and then, where appropriate, to evaluate the effectiveness of the fatigue crack in sampling these areas.

Table of contents
  • 1 Domaine d'application
  • 2 Références normatives
  • 3 Termes et définitions
  • 4 Symboles et unités (et abréviations)
  • 5 Principe
  • 6 Choix du type d'éprouvette, de l'orientation et de l'emplacement d'entaille
  • 7 Métallographie avant usinage
  • 8 Usinage
  • 9 Préparation de l'éprouvette
  • 10 Appareillage d'essai, exigences et mode opératoire d'essai
  • 11 Examen métallographique après essai
  • 12 Analyse après essai
  • 13 Rapport d'essai
  • Annexe A Exemple d'emplacements de l'entaille
  • Annexe B Exemples d'examens métallographiques avant essai et après essai
  • Annexe C Modification des contraintes résiduelles et technique de préfissuration
  • Annexe D Caractérisation des pop-ins
  • Annexe E Essais sur éprouvette à entaille peu profonde
  • Bibliographie
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