Cumulative Damage Models and Multi-Stress Fatigue Life Prediction

Author:

Hwang W.1,Han K.S.1

Affiliation:

1. Department of Mechanical and Aerospace Engineering State University of New York at Buffalo Buffalo, New York 14260

Abstract

Cumulative damage during fatigue is studied analytically. Extensive reviews are per formed on the published damage models. Three different cumulative damage models are defined using several physical variables such as fatigue modulus and resultant strain. Proposed model I is defined using fatigue modulus, while models II and III are defined using resultant strains. Proposed models are derived as functions of nor malized applied stress level, r, and number of fatigue cycle, n. It is verified that the proposed cumulative damage model III has better agreement with the two stress level fatigue experimental data than other models.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference34 articles.

1. Leve, H.L. "Cumulative Damage Theories," Metal Fatigue: Theory and Design , A. F. Madayag, Ed., pp. 170-203 (1960).

2. Palmgren, A., Ball and Roller Bearing Engineering, translated by G. Palmgren, et al. 1st ed., pp. 82-84 (1945).

3. Miner, M.A. "Cumulative Damage in Fatigue," J. of Appl. Mech ., pp. A-159-164(1945).

4. Shanley, F.R. "A Theory of Fatigue Based on Unbonding During Reversed Slip," The Rand Corporation, P-350 (November 11, 1952).

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