NF EN ISO 7539-6

NF EN ISO 7539-6

December 2011
Standard Cancelled

Corrosion of metals and alloys - Stress corrosion testing - Part 6 : preparation and use of precracked specimens for tests under constant load or constant displacement

ISO 7539-6:2011 covers procedures for designing, preparing and using precracked specimens for investigating susceptibility to stress corrosion. It gives recommendations for the design, preparation and use of precracked specimens for investigating susceptibility to stress corrosion. The term "metal" as used in ISO 7539-6:2011 includes alloys. Because of the need to confine plasticity at the crack tip, precracked specimens are not suitable for the evaluation of thin products, such as sheet or wire, and are generally used for thicker products including plate bar and forgings. They can also be used for parts joined by welding. Precracked specimens can be loaded with equipment for application of a constant load or can incorporate a device to produce a constant displacement at the loading points. Tests conducted under increasing displacement or increasing load are dealt with in ISO 7539-9. A particular advantage of precracked specimens is that they allow data to be acquired from which critical defect sizes, above which stress corrosion cracking can occur, can be estimated for components of known geometry subjected to known stresses. They also enable rates of stress corrosion crack propagation to be determined. The latter data can be taken into account when monitoring parts containing defects during service.

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Main informations

Collections

National standards and national normative documents

Publication date

December 2011

Number of pages

47 p.

Reference

NF EN ISO 7539-6

ICS Codes

77.060   Corrosion of metals

Classification index

A05-501-6

Print number

1 - 12/12/2011

International kinship

European kinship

EN ISO 7539-6:2011
Sumary
Corrosion of metals and alloys - Stress corrosion testing - Part 6 : preparation and use of precracked specimens for tests under constant load or constant displacement

ISO 7539-6:2011 covers procedures for designing, preparing and using precracked specimens for investigating susceptibility to stress corrosion. It gives recommendations for the design, preparation and use of precracked specimens for investigating susceptibility to stress corrosion.

The term "metal" as used in ISO 7539-6:2011 includes alloys.

Because of the need to confine plasticity at the crack tip, precracked specimens are not suitable for the evaluation of thin products, such as sheet or wire, and are generally used for thicker products including plate bar and forgings. They can also be used for parts joined by welding.

Precracked specimens can be loaded with equipment for application of a constant load or can incorporate a device to produce a constant displacement at the loading points. Tests conducted under increasing displacement or increasing load are dealt with in ISO 7539-9.

A particular advantage of precracked specimens is that they allow data to be acquired from which critical defect sizes, above which stress corrosion cracking can occur, can be estimated for components of known geometry subjected to known stresses. They also enable rates of stress corrosion crack propagation to be determined. The latter data can be taken into account when monitoring parts containing defects during service.

Replaced standards (1)
NF EN ISO 7539-6
June 2003
Standard Cancelled
Corrosion of metals and alloys - Stress corrosion testing - Part 6 : preparation and use of pre-cracked specimens for tests under constant load or constant displacement

<p>ISO 7539-6:2002 covers procedures for designing, preparing and using pre-cracked specimens for investigating susceptibility to stress corrosion. It gives recommendations for the design, preparation and use of pre-cracked specimens for investigating susceptibility to stress corrosion.</p> <p>The term "metal" as used in this part of ISO 7539 includes alloys.</p> <p>Because of the need to confine plasticity at the crack tip, pre-cracked specimens are not suitable for the evaluation of thin products such as sheet or wire and are generally used for thicker products including plate bar and forgings. They can also be used for parts joined by welding.</p>

Standard replaced by (1)
NF EN ISO 7539-6
September 2018
Standard Current
Corrosion of metals and alloys - Stress corrosion testing - Part 6 : preparation and use of precracked specimens for tests under constant load or constant displacement

<p>This document specifies procedures for designing, preparing and using precracked specimens for investigating susceptibility to stress corrosion. It gives recommendations for the design, preparation and use of precracked specimens for investigating susceptibility to stress corrosion. Recommendations concerning notched specimens are given in Annex A.</p> <p>The term "metal" as used in this document includes alloys.</p> <p>Because of the need to confine plasticity at the crack tip, precracked specimens are not suitable for the evaluation of thin products, such as sheet or wire, and are generally used for thicker products including plate bar and forgings. They can also be used for parts joined by welding.</p> <p>Precracked specimens can be loaded with equipment for application of a constant load or can incorporate a device to produce a constant displacement at the loading points. Tests conducted under increasing displacement or increasing load are dealt with in ISO 7539-9.</p> <p>A particular advantage of precracked specimens is that they allow data to be acquired, from which critical defect sizes, above which stress corrosion cracking can occur, can be estimated for components of known geometry subjected to known stresses. They also enable rates of stress corrosion crack propagation to be determined. The latter data can be taken into account when monitoring parts containing defects during service.</p>

Table of contents
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  • Avant-propos
    iv
  • 1 Domaine d'application
    1
  • 2 Références normatives
    1
  • 3 Termes et définitions
    2
  • 4 Principe
    4
  • 5 Éprouvettes
    5
  • 5.1 Généralités
    5
  • 5.2 Modèles d'éprouvette
    7
  • 5.3 Considérations concernant le facteur d'intensité de contrainte
    18
  • 5.4 Préparation des éprouvettes
    23
  • 5.5 Identification des éprouvettes
    24
  • 6 Amorçage et propagation de la fissure de fatigue
    24
  • 7 Mode opératoire
    26
  • 7.1 Généralités
    26
  • 7.2 Considérations environnementales
    26
  • 7.3 Enceinte environnementale
    28
  • 7.4 Contrôle et surveillance du milieu
    29
  • 7.5 Détermination du KISCC par la méthode d'arrêt de la fissuration
    29
  • 7.6 Détermination de KISCC par amorçage de la fissure
    32
  • 7.7 Mesurage de la vitesse de fissuration
    33
  • 8 Rapport d'essai
    34
  • Annexe A (normative) Utilisation d'éprouvettes entaillées pour essais de corrosion sous contrainte
    36
  • Annexe B (normative) Détermination de la vitesse de propagation de la fissuration
    39
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