Method of arresting crack growth for application at a narrow working space

Author:

MAKABE Chobin1,NAKA Kaito2,FERDOUS Md. Shafiul1

Affiliation:

1. Department of Mechanical Systems Engineering, University of the Ryukyus

2. Graduate student, Graduate School of Engineering and Science, University of the Ryukyus

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference12 articles.

1. Ayatollahi, M. R., Razavi, S. M. J. and Chamani, H. R., Fatigue life extension by crack repair using stop-hole technique under pure mode-I and pure mode-II loading conditions, Procedia Engineering, Vol. 74 (2014), pp. 18-21.

2. Baker, A., Fatigue studies related to certification of composite crack patching for primary metallic aircraft structure, Proceedings of the FAA-NASA Symposium on the Continued Airworthiness of Aircraft Structure, FAA Report No. DOT/FAA/AR-97/2, I (1997), pp.313-330, Atlanta, Georgia.

3. Crain, J., Fatigue Enhancement of Undersized, Drilled Crack-Stop Holes, (2010), <http://kuscholarworks.ku.edu/handle/1808/6288>, (accessed on 4 August, 2014).

4. Ghfiri, R., Shi, H., Guo, R., and Mesmacque, G., Effects of expanded and non-expanded hole on the delay of arresting crack propagation for aluminum alloys, Material Science Engineering, Series A, Vol. 286. No.2 (2000), pp. 244-249.

5. Makabe, C., Murdani, A., Kuniyoshi, K., Irei, Y. and Saimoto, A., Crack-growth arrest by redirecting crack growth by drilling holes and inserting pins into them, Engineering Failure Analysis, Vol. 16, No.1 (2009), pp. 475-483.

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