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Preface; Contents; 1 48 Years of Fracture Mechanics and Structural Integrity in South East Europe; Abstract; 1 Introduction-Magister Thesis; 2 Doctoral Thesis; 3 Later Developments; 3.1 Origin and Analysis of Leakage Problem; 3.1.1 Description of Cracks and Defects; 3.1.2 Analysis of Crack Occurrence in One Spherical Storage Tanks; 3.2 Structural Integrity Assessment; 3.2.1 Material Crack Resistance Curves and Structural Integrity of Damaged Tanks; 3.2.2 Conclusion; 4 International Fracture Mechanics Summer Schools; 5 USA-Yu Project Weldment Fracture Mechanics (1982-1990); 6 Conclusions.

3 The Role of the Ratio of Surface and Bulk Behaviours in Size Effects4 Mechanical Testing of Materials; 5 Correlation of Fatigue Crack Growth Resistance Parameters in the Paris Region; 6 Correlation of the Manson-Coffin Parameters in the Low Cycle Fatigue Range; 7 Correlation of the Wöhler Line (Basquin Relationship) Parameters in the Lifetime Fatigue Rang; 8 Correlation of Material Parameters in Power Law Relationships Used to Describe Creep Processes; 9 Power Law Relationships in the Evaluation of Other Mechanical Testing Results; 10 Summary; Acknowledgments; References.

4 The CTOA as a Parameter of Resistance to Crack Extension in Pipes Under Internal PressureAbstract; 1 Introduction; 2 Experimental Determination of CTOA on API 5L X65 Pipe Steel; 2.1 Definition; 2.2 Choice of Specimen to Determine CTOA; 2.3 Different Methods of Measurements of CTOA; 2.3.1 Direct Methods; 2.3.2 Indirect Methods; 2.4 CTOA Value at Stable Crack Growth for an X65 Pipe Steel; 2.5 Influence of Thickness on CTOA; 3 Node Release Technique for Crack Extension; 4 Finite Element Modelling of Crack Extension; 4.1 Meshing; 4.2 Boundaries Conditions; 4.3 Loading; 4.4 Strain Rate Effect.

5 Results5.1 Crack Velocity; 5.2 Arrest Pressure; 5.3 Crack Extension at Arrest; 6 Discussion; 7 Conclusions; References; 5 Is Substituting P91 for P22 Justified?; Abstract; 1 Introduction; 2 Development of Materials for Elevated Temperature Application; 3 Uniaxial Creep; 4 Experimental Procedures; 5 Results and Discussions; 6 Reduction of Thickness; 7 Summary; Acknowledgments; References; 6 The Two-Parameter Approach for Fracture Mechanics: Some Industrial Applications; Abstract; 1 Introduction and Background on the Master Material Failure Curve; 2 Some Industrial Applications of the Two Fracture Mechanics Approach.

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