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Fatigue crack growth rates in six pipeline steels
A. Bussiba
, Ph P. Darcis
, J. D. McColskey
, C. N. McCowan
, T. A. Siewert
, G. Kohn
, R. Smith
, J. Merritt
Research output
:
Contribution to conference
›
Paper
›
peer-review
5
Scopus citations
Overview
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Keyphrases
Pipeline Steel
100%
Fatigue Crack Growth Rate
100%
Full-thickness
33%
Mixed Failure Modes
33%
Growth Failure
33%
Minor Differences
33%
Crack Growth
33%
Growth Regimes
33%
Internal Surface
33%
Fatigue Failure
33%
Diagram Technique
33%
Compressive Residual Stress
33%
Semi-elliptic
33%
X100
33%
Stable Crack Growth
33%
Fatigue Crack Growth Test
33%
Tension-type
33%
Fatigue Data
33%
Failure Assessment Diagram
33%
Potential Failure Mode
33%
Engineering
Steel Pipeline
100%
Fatigue Crack Growth
100%
Crack Growth Rate
100%
Failure Mode
33%
Mixed Mode
33%
Outer Surface
33%
Final Stage
33%
Crack Growth
33%
Internal Surface
33%
Fatigue Failure
33%
Compressive Residual Stress
33%
Specimen Type
33%
Stable Crack Growth
33%
Potential Failure
33%
Material Science
Fatigue Crack Growth
100%
Mechanical Strength
33%
Residual Stress
33%
Crack Growth
33%
Stable Crack Growth
33%
Failure Assessment Diagrams
33%