PSI - Issue 37
Jesús Toribio et al. / Procedia Structural Integrity 37 (2022) 1029–1036 Jesús Toribio / Procedia Structural Integrity 00 (2021) 000 – 000
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Mackay, T.L, Alperin, B.J., 1985. Stress intensity factors for fatigue cracking in high-strength bolts. Engineering Fracture Mechanics 21, 391. Mattheck, C., Morawietz, P., Müller, S., Munz, D., Kober, A., 1984. Bruchmekanik an rissen in wellen and schrauben. Der Machinenschaden 57, 73. Nezu, K., Machida, S., Nakamura, H., 1982. SIF of surface cracks and fatigue crack propagation behaviour in a cylindrical bar. 25 th Japan Congress on Materials Research, Tokyo, Japan, pp. 87-92. Nord, K.J., Chung, T.J., 1986. Fracture and surface flaws in smooth and threaded round bars. International Journal of Fracture 30, 47. Raju, I.S, Newman, J.C., 1986. Stress intensity factors for circumferential surface cracks in pipes and rods. Fracture Mechanics: Seventeenth Volume, ASTM STP 905, 789. Reibaldi, G.G., 1986. Stress intensity factor solutions for a cracked bolt. Advances in Fracture Research (Fracture 84), Vol. 2, pp. 1177-1183. Rolfe, S.T., Barsom, J.M., 1977. Fracture and fatigue control in structures. Englewood Cliffs, NJ, Prentice Hall. Salah el Din, A.S., Lovegrove, J.M., 1981. Stress intensity factors for fatigue cracking of round bars. International Journal of Fatigue 3, 117. Shih, Y.S., Chen, J.J., 1997. Analysis of fatigue crack growth on a cracked shaft. International Journal of Fracture 19, 477. Shih, Y.S., Chen, J.J., 2002. The stress intensity factor study of an elliptical cracked shaft. Nuclear Engineering and Design 214, 137. Shin, C.S., Cai, C.Q., 2004. Experimental and finite element analyses on stress intensity factors of elliptical surface crack in a circular shaft under tension and bending. International Journal of Fracture 129, 239. Si, E., 1990. Stress intensity factors for edge cracks in round bars. Engineering Fracture Mechanics 37, 805. Toribio, J., 1992a. Effect of crack shape and loading conditions on the stress intensity factor for a cracked bolt. Proceedings of the international conference on offshore mechanics and arctic engineering (OMAE'92). Calgary, Canada: ASME, pp. 363-370. Toribio, J., 1992b. Stress intensity factor solutions for a cracked bolt loaded by a nut. International Journal of Fracture 53, 367. Toribio, J., 1994. Fatigue and fracture of threaded connections. In: Carpinteri, A., editor. Handbook of Fatigue Crack Propagation in Metallic Structures. Amsterdam, The Netherlands: Elsevier Science Publishers B.V., pp. 1415-1452. Toribio, J., Campos J., Sánchez-Gálvez, V., 1991a. X-Ray measurement of residual stresses in a rolled bolt: Application to the calculation of stress intensity factors after cracking. The Journal of Strain Analysis for Engineering Design 26, 103. Toribio, J., Lancha, A.M., 1995. Stress corrosion behaviour of high-strength steel: design on the basis of the crack growth kinetics curve. Materials & Design 16, 283. Toribio, J., Sánchez-Gálvez, V., Astiz, M.A., 1991b. Stress intensification in cracked shank of tightened bolt. Theoretical and Applied Fracture Mechanics 15, 85. Toribio, J., Sánchez-Gálvez, V., Astiz, M.A., Campos, J.M., 1991c. Stress intensity factor solutions for a cracked bolt under tension, bending and residual stress loading. Engineering Fracture Mechanics 39, 359. Trantina, G.G., de Lorenzi, H.G., Wilkening, W.W., 1983. Three-dimensional elastic-plastic finite element analysis of small surface cracks. Engineering Fracture Mechanics 18, 925. Valiente, A., 1980. Criterios de fractura para alambres. PhD Thesis, Polytechnic University of Madrid, Spain. Wilhem, D., Fitzgerald, J., Carter, J., Dittmer, D., 1981. An empirical approach to determining K for surface cracks. Advances in Fracture Research (Fracture 81), Vol. 1, pp. 11-21.
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