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Tortuous cracks under remote mode I: the statistical LEFM approach

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
Summer School Of Fracture Mechanics. Current Research On Fatigue And Fracture/sympozjum (VII ; 18-22.06.2001 ; Opole - Pokrzywna, Poland)
Języki publikacji
EN
Abstrakty
EN
Principles of the statistical approach to the stability of microtortuous cracks under the remote mode I loading are presented within the framework of linear elastic fracture mechanics. The basic idea of this approach lies in the suggestion that branching occurs only at those sites along the crack front, where the characteristic structural parameter (grain size, interparticle distance) is comparable to or larger than the plastic zone size. By using procedures introduced in the paper, extrinsic contribution to the fracture toughness or to the fatigue threshold can be separated from experimentally obtained KIc or [delta]Kth values. Consequently, it enables to determine the intrinsic resistance against crack initiation and growth as a more relevant measure of materials quality. Moreover, this theory elucidates quantitatively well some interesting phenomena observed in fracture and fatigue of metallic materials.
Rocznik
Tom
Strony
277--296
Opis fizyczny
Bibliogr. 37 poz., wykr.
Twórcy
autor
  • Institute of Physical Engineering, Brno University of Technology, Czech Republic
Bibliografia
  • [1] MILLER K.J., DE LOS RIOS, E. R: The Behaviour of Short Fatigue Cracks. Mechanical Engineering Publ., London 1986.
  • [2] DAVIDSON D.L., LANGFORD J.: In: Small Fatigue Cracks, eds. R. O. Ritchie & J. Lankford, The Metallurgical Society AIM 1986, p. 455.
  • [3] MILLER K. J.: Mater. Sci. technology 9, 1993, 453.
  • [4] RITCHIE R.O.: Mat. Sci. Eng. A103, 1988, 15.
  • [5] SURESH S., RITCHIE R. O.: Met. Transactions 13A, 1982, 1627.
  • [6] POKLUDA J., ŚANDERA P. and ZEMAN J.: ASTM STP 1131, 1992,653.
  • [7] KITAGAWA H„ YUUKI R„ TOSH1AKI O.: Engng. Fract. Mechanics 7, 1975, 515.
  • 18] LO K.K.: J. Appl. Mechanics 45, 1978, 797.
  • [9] WANG J. and STEVENS R.: Mater. Science 24, 1989, 3421.
  • [10] FABER K.T. and EVANS A.G.: Acta Metali. 31, 1983, 565.
  • [11] COTTERELL B. and RICE J.R.: Int. J. Fracture 16, 1980, 155.
  • [12] SURESH S.: Fatigue of Materials. Cambridge Univ. Press. Cambridge 1998.
  • [13] WANG, S.H. and MULLER, C.: In: Fatigue '99, Vol.I, eds. Wu, X.R. and Wang, Z.G. EMAS, Beijing 1999, p. 539.
  • [14] POKLUDA J., ŚANDERA P., HORNIKOVA J.: In: Europian Conference on Fracture (ECF 13) CDROM.
  • [15] BROEK D.: Elementary Engineering Fracture Mechanics. Martinus Nijhooff Publ., Boston - Lancaster 1982.
  • [16] ANDERSON T.L.: Fracture Mechanics. Fundamentals and Applications. CRC Press Texas, 1995.
  • [17] MAGILL M.A. and ZWERNEMANN F.J.: Engng. Fract. Mechanics 56, 1997, 9.
  • [18] RIEDL IT: Fracture Mechanisms. In: Materials Science and Technology. Vol. 6, ed. H. Mughrabi. VCH Publishers Inc. New York 1993.
  • [19] POKLUDA J.: In. Materials Science on the Onset of 3rd Millennium, ed. J. Svejcar. UMI FS1 VUT a CSNMT, Brno 1999, p. 104.
  • [20] SURESH S.: Met. Transactions A14, 1983, 2375.
  • [21] POKLUDA J., ŚANDERA P., VLACH B„ JANOVA D. and HORNIKOVA J.: In: FRACTOGRAPHY 2000, ed. L. Parilak. Emilena Bratislava 2000, p. 383.
  • [22] PIPPAN R.: Eng. Fract. Mechanics 44, 1993, 821.
  • [23] ZHANG G. P. and WANG Z.G.: Fatigue Fract. Engng. Mater. Struct. 20, 1997, 883.
  • [24] KERLINS V.: Modes of Fracture. In: Fractography Vol. 12, ed. K. Mills. ASM International 1992, p. 12.
  • [25] PETIT, J.: Metallic Materials 3, 1998, 220.
  • [26] POKLUDA, J. and SIEGL, J.: Fatigue Fract. Engng. Mater. Struct. 13, 1990, 375.
  • [27] POKLUDA J., SAXL I., ŚANDERA P., PONIZIL P., MATOUŚEK M., PODRABSKY T. and HORNIKOVA J: In: Advances in Mechanical Behaviour, Plasticity and Damage - Euromat 2000, eds.: D.Miannay, P.Costa, D.Francois, A.Pineau. ELSEVIER 2000, p. 449
  • [28] HORNIKOVA J.: On the Linear Fracture Mechanics for Cracks with Microscopically Tortuous Front. PhD. Thesis. Brno UT 2000.
  • [29] POKLUDA J. and ŚANDERA P.: In: Fracture from Defect (EOF 12), Vol. II, eds. M.W.Brown, E.R. de los Rios and K.J. Miller. EMAS, Warley 1998, p. 811.
  • [30] SAXL I., SULLEIOVA K. and PONIŻIL P.: In: FRACTOGRAPHY 2000, ed. L. Parilak. Emilena Bratislava 2000, p. 94.
  • [31] SALTYKOV S.A.: Stereometric Metallography. Metallugija, Moscow 1970.
  • [32] LEE S., MAINO L. and ASARO R.J.: Met. Trans. I6A, 1988, 1633.
  • [33] DATTAK.P. and WOOD W.E.: J. Test. Eval., 9, 1981, 111.
  • [34] POKLUDA J. and ŚANDERA P.: In: Reliability and Structural Integrity of Ad¬vanced Materials (ECF 9), eds. S. Sedmak, A. Sedmak, D. Duric, EMAS Warley 1992, p. 1093.
  • [35] ZEMAN J., ROLC S., BUCHAR J. and POKLUDA J.: ASTM STP 1074, 1990, 396.
  • [36] POKLUDA J., VLACH B., ŚANDERA P. and JURAŚEK L.: In: Workshop of COST Action 517, ed. A.Brozova. INR ASCR (in print).
  • [37] TOMITA Y.: Met. Trans. 19A, 1988, 2313
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOG-0020-0015
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