General Papers
Ability of using Experimental Measurements of delta to Predict Crack Initiation for Structural Components | |
W.G. Reuter, S.M. Graham, W.R. Lloyd, R.L. Williamson |
Alternative Representations for Scaled R Curves in a Titanium Alloy | |
S.J. Jhon, C.E. Turner |
A Model for Transition Fracture of Structural Steels from Observation of Isolated Cleavage regions | |
J.P. Gudas, G.R. Irwin, R.W. Armstrong, X.J. Zhang |
Ability of using Experimental Measurements of delta to Predict Crack Initiation for Structural Components | |
W.G. Reuter, S.M. Graham, W.R. Lloyd, R.L. Williamson |
Alternative Representations for Scaled R Curves in a Titanium Alloy | |
S.J. Jhon, C.E. Turner |
An Application of the J Integral to an Incremental Analysis of Blunting Crack Behaviour | |
J.G. Merkle, Oscar Borla, Giuseppe Lacidogna, Amedeo Manuello Bertetto |
An Energy Analysis of Elastic-Plastic Fracture | |
Nguyen Quoc Son |
An Improved Procedure for Calculating COD from the Plastic Component of Clip-Gauge Displacement | |
O. Kolednik, Elena Torskaya |
An Investigation of Two and Three-dimensional Elasto-Plastic Crack Growth Experiments | |
J. Faleskoy, K. Zaremba, F. Nilsson, H. Oberg |
Appendix J - the Deformation Plasticity Failure Assessment Diagram (DPF AD) Approach to Evaluation of Flaws in Ferritic Piping | |
J. M. Bloom |
Application of Elastic-Plastic Defect Assessment to a Flawed Carbon-Manganese Steel Pressure Vessel | |
D. J. Smith, J. R. Gordon |
Application of the Engineering Treatment Model (ETM) to the Prediction of the Behaviour of a Circumferentially Cracked Pipe | |
K.-H. Schwalbe, L. Gruter |
Aspects of Assessment of Defects in Welded Joints and Related Reliability Analysis Treatments | |
F. M. Burdekin, H. K. Saket, S. D. Thurlbeck, J. G. Frodin |
Assessment of Stable Growth of Surface Flaws | |
H. Talja, H. Kordisch, L. Hodulak |
A Statistiscal Study of the Effect of Local Brittle Zone (LBZ) on the Fracture Toughmess (CTOD) of Weldments | |
S. Machida, T. Miyata, Y. Hagiwara, H. Ypshinari, Y. Suzuki |
Circumferentially Cracked Pipes | |
L. Gruter, H. Huthmann, A. Cornec, Alfonso Fernández-Canteli |
Component Assessment: Fracture Mechanics for Added Value | |
I. Milne |
Coping with Residual Stresses in the Integrity Assessment of an As- Welded Repair | |
N. Knee |
Correlation between Instrumented Notched-Bar, Tensile and KIc Tests on the Basis of Steel Specimens in Different Conditions | |
K. Reiff, A. Gerscha, E. Klausnitzer, Petr Belov, L. Kobetz |
Crack Growth Onset in Biaxially Loaded Elasto-Plastic Plates | |
V.P. Naumenko, V.A. Radovsky |
Crack Growth Resistance at Surface Cracks in Three Aluminium Alloys | |
H.-M. Bauschke, D. T. Read, K.-H. Schwalbe, Oleg Naimark |
Development of an Engineering Definition of the Extent of J Controlled Crack Growth | |
J.A. Joyce, E.M. Hackett |
Ductile Fracture in Aluminium Alloy Weldments | |
J. R. Gordon, S. J. Garwood |
Dynamic Toughness Fracture of some Metallic Materials (Probabilistic Aspects) | |
B. Tolba, G. Pluvinage, Gunter Kullmer |
Effect of Heat Treatment on the Fracture Toughness Transition Properties of an A508 Class Steel | |
G.P. Gibson, M. Capel, S.G. Druce |
Elastic-Plastic Handbook Solutions: Experimental Evaluation and User Guide | |
R. E. Link, J. D. Landes, R. Herrera |
Evaluation of HAZ Toughness by CTOD and Tensile Panels | |
HM. Kocak, S. Yao, L. Chen, K.-H. Schwalbe |
Experimental Evaluation of CTOA in Controlling Unstable Ductile Fracture Propagation | |
G. Demofonti, L. Rizzi |
Finite Elements Fracture Simulation of A533B Steel Sheet Specimens | |
J.C. Newman, K.N. Shivakumar, D.E. McCabe |
Fractographic Study of Toughness Variability in the Transition Region | |
V. Bicego, C. Rinaldi, Vladimir Peleshko |
Fracture Mechanics Analysis of Destructive Large-Scale Pressure Vessel Tests | |
A. Saarenheimo, H. Talja, H. Keinanen |
Fracture Toughness Testing of Sub-Sized and Weld-Reconstructed Specimens | |
V. Bicego, E. Lucan, S. Ragazzoni |
Fundamentals of Ductile Fracture | |
B. Bilby, Hryhoriy Nykyforchyn |
Influence of Notch Acuity on the Temperature Dependence of Fracture Mechanics Values | |
R. Hubo, A. Halim, W. Dahl |
Interpretation of Fracture Toughness in the Ductile-to-Brittle Transition Region by Fractographical Observations | |
J. Heerens, D.T. Read, A. Cornec, K.H. Schwalbe |
J Integral Calculations in Mixed-Mode Elastic-Plastic Crack Problems | |
P. Diekmann, F.G. Buchholz, H. Grebner, H.A. Richard |
J Integral for Thin Shells | |
A. Sednak, M. Berkovic, J. Jaric |
J Integral Testing of SA Weldments on HSLA Steel with Different Treatments after Welding | |
I. Rak, V. Gliha, L. Sidjanin, B. Petrouski |
JR Curve Testing of Welded Joints in Offshore Steels | |
W. Dahl, H. Krebs, R. Schlim, F. Becker, B. Lian |
Justification of Dimensioning Criteria for a Rocket Motor Case using Fracture Mechanics | |
P. Agatonovic, H. Kordisch, E. Sommer |
Local versus Global Approaches to Elastic-Plastic Fracture Mechanics. Application to Ferritic Steels and a Cast Duplex Stainless Steel | |
A. Pineau, P. Joly |
Micromechanical Implications of the Weakest Link Model for the Ductile-Brittle Transition Region | |
A. Bruckner-Foit, D. Munz, B. Trolldenier, Rami Eliasi |
Modelling Elastic-Plastic Crack Growth with Dugdale Model | |
H.A. Ernst, E.T. Pollitz |
Nucleation and Growth of Microcracks: an improved Dislocation Model and Implications for Ductile/Brittle Behaviour Analysis | |
V.S. Kharin, M. Zakharov, A. Bulatova |
Numerical Prediction of Ductile Fracture Resistance Behaviour based on Micromechanical Models | |
D.Z. Sun, B. Voss, W. Schmitt |
Numerical Studies on Stable Crack Growth | |
W. Brocks, H. Yuan |
On Stress Relaxation at the Tip of a Crack under Normal Tension | |
B.K. Gamulich, V.I. Pokhurmsky |
On the Crack Extension Energy Rate in Elastic-Plastic Bodies | |
M. Chiarelli, A. Frediani, M. Lucchesi |
On the Ductile Crack Initiation and Behaviour of a Pressure Vessel Steel under Impact Loading | |
W. Bohme, W. Schmitt, Tomas Walander |
On the Effect of Constraint on Ductile Fracture | |
A. Sommer, D. Aurich |
On the Influence of Triaxiality of the Stress State on Ductile Tearing Resistance | |
W. Brocks, G. Kunecke |
On the Problem of Transferability in the CTOD Concept | |
H. Amstutz, T. Seeger, Hans-Werner Viehrig |
Prediction of Cleavage Fracture Events in the Brittle-Ductile Transition Region of a Ferritic Steel | |
A. Bakker, R.W.J. Koers, Yuebibg Li, Zengliang Gao |
Probability Distribution of Cleavage Fracture Stress and Scatter of Fracture Toughness | |
T. Miyata, A. Otsuka, T. Katayama, T. Otake |
Something New on Size and Constraint Effects for J-R Curves | |
R.E. Link, J.D. Landes, R. Herrera, Z. Zhou |
Statistical Modelling of Fracture in the Ductile-to Brittle Transition region | |
K. Wallin |
The Ductile-to-Brittle Transition of a Pressure Vessel Steel Embrittled by Step Cooling Treatment | |
M. Holzmann, B. Vlach, J. Man |
The Effect of Specimen Geometry on Fracture Toughness Transition Behaviour | |
E. Morland, T. Ingham, D. Swan, Daniel Casellas, J.M. Prado |
The Effect of Specimen Size and Geometry on J-R- Curve Behaviour | |
R.L. Jones, J.R. Gordon |
The Effect of Weld Metal Strength Mismatch on J and CTOD | |
M. J. Cray, A. R. Luxmoore, J. D. G. Sumpter |
The Engineering Treatment Model (ETM) - a Simple Method for Estimating the Driving Force under Elastic-Plastic and Plane Stress Conditions | |
K.-H. Schwalbe, A. Cornec, J. Heerens |
The Effect of Residual Stresses on the Residual Strength of the Welded Pressure Vessel with an Axial Notch | |
T. AdZiev, S. Sedmak, B. Petrovski |
The Measurement of Fracture Toughness and the Application of Fracture Mechanics Assessment Methods to Weldments | |
S. J. Garwood |
Theoretical and Experimental Investigations of Fracture by FEM and Grating Methods | |
K. Andersen, R. Ritter, E. Steck |
Thermoelastic-Plastic FEM-Analysis of a Semi-Elliptical Surface Crack in a Cylinder under Non-Axi-Symmetric Cooling | |
M. Kuna, H. Kordisch, A. Ockewitz |
Three-Dimensional Aspects of HRR-Dominance | |
D.M. Parks |
Weldment Fracture Toughness Measurements using T-CTOD Specimens | |
D. T. Read |