Fatigue Strength Evaluation for Aluminum Alloy A6061-T6 Based on Dissipated Energy Measurement

Author:

AKAI Atsushi1,SHIOZAWA Daiki2,FUNAZO Shunsuke2,CHINZAKA Keita2,SAKAGAMI Takahide2

Affiliation:

1. Toyota Central R&D Labs., Inc.

2. Department of Mechanical Engineering, Graduate School of Engineering, Kobe University

Publisher

Society of Materials Science, Japan

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference21 articles.

1. 1) H. Inoue, “Rapid evaluation of fatigue limits using infrared thermography”, Journal of the Japanese Society for Non-Destructive Inspection, Vol. 60, No. 6, pp. 322-327 (2011).

2. 2) T. Yaoita, “Application of thermography to measurement of stress and determination of fatigue -limit using dissipated energy”, Journal of the Japanese Society for Non-Destructive Inspection, Vol. 51, No. 6, pp. 333-337 (2002).

3. 3) A. Akai, K. Inaba, D. Shiozawa and T. Sakagami, “Estimation of fatigue crack initiation location based on dissipated energy measurement”, Journal of the Society of Materials Science, Japan, Vol. 64, No. 8, pp. 668-674 (2015).

4. 4) M. P. Luong, “Infrared thermographic scanning of fatigue in metals”, Nuclear Engineering and Design, Vol. 158, Nos. 2-3, pp. 363-376 (1995).

5. 5) G. La Rosa and A. Risitano, “Thermographic methodology for rapid determination of the fatigue limit of materials and mechanical components”, International Journal of Fatigue, Vol. 22, No.1, pp. 65-73 (2000).

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