Stress intensity factor of a penny-shaped crack with small-disturbed crack front line
Author:
Affiliation:
1. Department of Mechanical Engineering, Tokyo University of Science
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/mej/5/6/5_18-00244/_pdf
Reference14 articles.
1. Bower, A. F. and Ortiz, M., Solution of three-dimensional crack problems by a finite perturbation method, Journal of the Mechanics and Physics of Solids, Vol. 38, No.4 (1990), pp. 443-480.
2. Desjardins, J. L., Burns, D. J. and Thompson, J. C., A weight function technique for estimating stress intensity factors for cracks in high pressure vessels, Journal of Pressure Vessel Technology, Vol. 113 (1991), pp.10-21.
3. Gao, H. and Rice, J. R., A first-order perturbation analysis of crack trapping by arrays of obstacles, Journal of Applied Mechanics, Vol. 56 (1989), pp. 828-836.
4. Hand, R. J., Stress intensity factors for penny and half-penny shaped cracks subjected to a stress gradient, International Journal of Fatigue, Vol. 57 (1992), pp.237-247.
5. Legrand, L. and Lazarus, V., Front shape and loading evolution during cracks coalescence using an incremental perturbation method, Engineering Fracture Mechanics, Vol. 133 (2015), pp.40-51.
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1. O-Integral evaluation for stress intensity factor of three-dimensional planar-crack with arbitrary shape;Mechanical Engineering Journal;2021
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