Stress redistribution in notched specimens during fatigue cycling

Author:

Blatherwick A. A.,Olson B. K.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering

Reference18 articles.

1. Lazan, B. J., andBlatherwick, A. A., “Strength Properties of Rolled Aluminum Alloys Under Various Combinations of Alternating and Mean Axial Fatigue Stresses,”Proc. ASTM,53,856 (1953).

2. Gough, H. J., “The Fatigue of Metals,”Van Nostrand Company, New York (1926).

3. Appenrodt, A., “Die Dämpfungsfähigkeit von Kurbelwellen Stahlen in kaltem und warmem Zustand bei Anlieferung und in Dauerbetrieb,” Mitt. des Wohler-Institutes, Braunschweig,24 (1935).

4. Schuette, E. H., “Plastic-Flow and Work-Hardening Phenomena in Magnesium Alloys During Fixed-Deflection Tests,”Proc. ASTM,52,804 (1952).

5. Lazan, B. J., “A Study with New Equipment of the Effects of Fatigue Stress on the Damping Capacity and Elasticity of Mild Steel,” Trans. ASM (1949).

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1. A NEW METHOD FOR PREDICTING FATIGUE LIFE IN NOTCHED GEOMETRIES;Fatigue & Fracture of Engineering Materials & Structures;1998-01

2. 1968;Bibliography on the Fatigue of Materials, Components and Structures;1990

3. An integrated local energy density approach to notch low cycle fatigue life prediction;Engineering Fracture Mechanics;1985-01

4. Benchmark Cyclic Plastic Notch Strain Measurements;Journal of Engineering Materials and Technology;1983-10-01

5. Assessment of Crack Formation Life;Fatigue as a Design Criterion;1977

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