General Papers
| A Study of the COD Concept for Brittle Fracture Initiation | |
| T. Kanazawa, S. Machida, Y. Hagiwara, K. Itoga, H. Tsuchiya |
| Effect of Plate Thickness on Brittle Fracture Initiation and Arresting Characteristics for Very Thick Plates | |
| K. Ikeda |
| New Test Method Measuring Crack Arrest Properties of Steel | |
| K. Ishikawa, K. Tsuya |
| Analysis of Random Cracks and Elliptical Holes | |
| M. Isida |
| Growth of Distributed Cracks under Fatigue Loading | |
| H. Kitagawa, M. Isbida, T. Ohira, M. Kuroda |
| Hole Nucleation by Inclusion Separation in Ductile Fracture | |
| A.S. Argon, J. Im |
| Technical Application of Fracture Mechanics to Thin-Walled Structures | |
| H. Kihara, K. Ikeda |
| Misorientation of Blocks and Crystalline Solids Resistance to Fracture | |
| V. I. Betechtin, A. I. Slutsker, A. I. Petrov, S. A. Ivanov, A. N. Bachtibaev |
| The Fracture of Metals with Voids | |
| Y. Ino, Y. Kawada |
| An Analytic Approach to Low Stress fatigue Crack Growth in Titanium | |
| J.L. Robinson, P.E. Irving, G.J. Beevers |
| Estimation of Low Cycle Fatigue Strengh of Steels in Strain Controlled Cycling Condition | |
| T. Hotta, S. Kanazawa, T. Ishiguro, N. Ishii, S. Sekiguchi |
| Low Cycle Fatigue Behaviour of Smooth and Notched Specimens | |
| K. Iida, Y. Urabe, G. Yagawa, Y. Ando |
| Low Cycle Fatigue Crack Initiation in Notched Wide Plates | |
| K. Iida, I. Soya, Y. Ando |
| The Materials Low Cycle Fatigue Evaluation with Regard to the Stress Concentration Factor | |
| V.A. Ignatov, G.P. Karzov, M.P. Rozanov, B.T. Timofeev |
| Zu fraktographischen Besonderheiten von Bruchflächen und der Bruchzahlgkeit Ermüdungsexperimenten | |
| V.S. Ivanova, L.R. Botvina, L.I. Maslov |
| Study of Deformation of Crystalline Polymer by ESR Method | |
| N. Kusumoto, H. Mukoyama, Y. Haga, O. Imamura |
| Besonderheiten der Deformation und des Bruches von faserverstärkten Verbundwerk stoffen | |
| V.S. Ivanov, I.M. Kopjev, J.E. Busalov |
| A Comparison of the Prediction of the Stress Concentration Theory of Fracture Mechanics with a Number of Actual Failures of Large Plant Components | |
| W.H. Irvine, A. Quirk |
| Experimental Verification for Application of Fracture Mechanics to Failure of Pressure Vessel | |
| J. Imamasa, T. Miki |