The crack tip opening displacement in elastic-plastic fracture mechanics : Proceedings of the Workshop on the CTOD Methodology, GKSS-Forschungszentrum Geesthacht, GmbH, Geesthacht, Germany, April 23-25, 1985
著者
書誌事項
The crack tip opening displacement in elastic-plastic fracture mechanics : Proceedings of the Workshop on the CTOD Methodology, GKSS-Forschungszentrum Geesthacht, GmbH, Geesthacht, Germany, April 23-25, 1985
Springer-Verlag, c1986
- Berlin
- New York
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注記
Includes bibliographies
"sponsored by studiengesellschaft zur förderung der Kernenergieverwertung in schiffbau und schiffahrt e. V. (KEST), Hamburg."
内容説明・目次
内容説明
Sponsored by Studiengesellschaft zur Forderung der Kern- energieverwertung im Schiffbau und Schiffahrt e.V. (KEST), Hamburg/Stiftung Volkswagenwerk, Hannover
目次
Crack Tip Examination.- Numerical Evaluation of Crack Tip Opening Displacements: 2D and 3D Applications.- Problems of Numerical CTOD Analyses.- Theoretical Calculation of CTOD Using a Dugdale Model Including Strain Hardening for Surface Cracks.- Dugdale Solutions for Strain Hardening Materials.- Experimental Techniques.- COD Concepts in R-Curve Testing.- On the Experimental Determination of CTOD Based R-Curves.- Relationships Between Various Definitions of the Crack Tip Opening Displacement.- CTOD and Crack Growth Including J-CTOD Relationship.- Evaluation of the Crack-Tip-Opening-Displacement (VR) Resistance Curve Method.- CTOD and J Relationships for a Growing Crack.- Relations Between the Crack Tip Opening Displacement, ?5, and the Modified J, JM.- Application.- A Preliminary Assessment of the Use of the CTOD Criterion in Dynamic Fracture Mechanics.- CTOD Testing of Welds.- Statistical Analysis of Critical CTOD and J Values in SAW C-Mn Steel Welds.- On the Toughness Evaluation of Sulphide-Controlled Fe 510 Steel by Charpy-V-Impact, Fracture Mechanics, and Wide Plate Tests.- The Use of CTOD Methods in Fitness for Purpose Analysis.- The Prediction of Failure Situations Using th CTOD Concept Based on the Engineering Treatment Model (ETM).- Fracture Mechanics Tests on Axially Cracked Pipe Sections Subjected to Internal Pressure.
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