Crack Paths 2012
obtained suggests that the W - M V Mis a design tool capable of capturing the engineering
essence of the investigated phenomenon. Accordingly, the W - M V Mcan safely be used,
together with the appropriate multiaxial fatigue criterion [2, 5, 12], to perform the
fatigue assessment in situations of practical interest.
1.
2.
R E F E R E N C E S
Socie, D.F., Marquis, G.B. (1999) Multiaxial Fatigue, SAE, Warrendale, USA.
3.
Susmel, L. (2009) Multiaxial Notch Fatigue, Woodhead& CRC, Cambridge, UK.
4.
Karolczuk, A., Macha, E. (2005) Int. J. Fracture 134, 267–304.
Araújo, J.A. et al. (2011) Int. J. Fatigue 33, 1092-1100.
5.
Susmel, L., Tovo, R., Benasciutti, D. (2009) Fatigue Fract. Engng Mater. Struct.
32, 441–459.
6.
7.
Susmel, L. (2010) Int. J. Fatigue 32, 1875-1883.
Forsyth, P.J.E. (1961). In: Proceedings of the Crack Propagation Symposium, Vol.
1, Cranfield, UK,pp. 76-94.
Ellyin, F. (1997) Fatigue damage, crack growth and life prediction. Chapman&
8.
Hall, London, UK.
91.1.
Brown, M.W., Miller K.J. (1973). In: Proceedings of the Institution of Mechanical
Engineers 187, 65/73, pp. 745-755.
0 Hua, C.T., Socie, D.F. (1984) Fatigue Fract. Engng Mater. Struct. 7, pp. 165-179.
12.
Socie, D.F., Bannantine, J. (1988) Mat. Science Engng. A103, pp. 3-14.
13.
Susmel, L., Tovo, R. (2011) Fatigue Fract. Engng Mater. Struct. 34, 1053–1077.
Macha, E. (1989) Materialwissenschaft und Werkstofftechnik 20 4, 132-136.
Kanazawa, K., Miller, K.J., Brown, M.W. (1977) J Engng Mat. Techn. (Trans
14.
ASME),pp. 222-228.
15. Suresh, S. (1991) Fatigue of materials. Cambridge University Press, UK.
Nishihara, T., Kawamoto, M. (1945) In: Memories of the College of Engineering,
16.
Kyoto Imperial University 11 5, pp. 85-112.
17. Neugebauer, J. (1986) LBFReport FB-175, Darmstadt, Germany.
18.
Karolczuk, A., Macha, E. (2005) Critical Planes in Multiaxial Fatigue of Materials.
VDIReihe 18 Nr. 298, VDIVerlag, Düsseldorf, Germany.
19. Park, J., Nelson, D.V. (2000) In: A S T MSTP 1387, Edited by S. Kalluri, P.J.
Bonacuse, ASTM,USA, pp. 246-265.
20. Reis L., Li. B., De Freitas M. (2006) Fatigue Fract. Engng Mater. Struct. 29, 281–
289.
21. Reis L., Li. B., Leite, M., De Freitas M. (2006) Fatigue Fract. Engng Mater. Struct.
28, 445–454.
22.
Morel, F. (1996) Fatigue multiaxial sous chargement d’amplidue variable, PhD
Thesis, Universite de Poitiers, Poitiers, France.
23.
Miller, K. J. (1993) Fatigue Fract. Engng Mater. Struct. 16, pp. 931-939.
24.
Carpinteri, A., Brighenti, R., Spagnoli, A. (2000) Fatigue Fract. Engng Mater.
Struct. 23, pp. 355–364.
25.
Carpinteri, A., Spagnoli, A. (2001) Int. J. Fatigue 23, 135-145.
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