Ductile Tearing or Plastic Collapse?

Author:

Gilles Ph.1,Marques Viera E.2,Ancelet O.2,Le Delliou P.3,Le Grasse Th.4

Affiliation:

1. GEP-INT Consulting , 103 rue de Rome, Paris 75017, France

2. Framatome Tour AREVA , Paris-La-Défense 92084, France

3. Electricité de France (EDF), Moret-Sur-Loing 77316, France

4. CEA Saclay , D36, Saclay 91130, France

Abstract

Abstract Ductile fracture is characterized by a large amount of deformation. Two mechanisms may lead to ductile failure: local tearing may appear in front of a stress concentration region like a crack front or large geometry changes in a weak part of the structure can induce global collapse of the structure. For large cracks such as those considered in Leak Before Break studies, tearing analyses and net-section collapse criteria have been used. The present paper examines the link between these two mechanisms for a through-wall cracked pipe under bending and concludes that the transition from ductile tearing to collapse depends not only on material properties but also on geometrical parameters. The reference stress approach is a promising approach for predicting the transition, provided the transferability issue of j-resistance curve has been solved.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference13 articles.

1. French Experimental Studies of Circumferentially Through-Wall Cracked Austenitic Pipes Under Static Bending;Int. J. Pressure Vessels Piping,1996

2. Design Criteria for Piping Components Against Plastic Collapse Application to Pipe Bend Experiments,1988

3. Advances in Elastic-Plastic Fracture Analysis,1984

4. The Assessment of Defects in Structures of Strain Hardening Materials;Eng. Fract. Mech.,1984

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