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Tytuł artykułu

Ductile Damage Model Calibration and Fracture Simulations of Structural Steel Components

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
The First European Summer School of Fatigue and Fracture (ESSFF1) and The Ninth Polish-Ukrainian-German Summer of Fracture Mechanics (SSFM9) on NEW RESULTS IN FATIGUE AND FRACTURE. Vol.1 (1,9;19-26.06.2005;Zakopane;Polska)
Języki publikacji
EN
Abstrakty
Słowa kluczowe
Rocznik
Tom
Strony
297--313
Opis fizyczny
Bibliogr. 22 poz., tab., wykr.
Twórcy
autor
  • Structural Design Integrity Group, Bristol
autor
  • Oxford University
Bibliografia
  • [1] GURSON A.L.: Continuum theory of ductile rupture by void nucleation and growth, Part I - Yield criteria and flow rules for porous ductile media. J. Engng. Mater. Technol., 99, 1977, 2-15.
  • [2] CHU C.C., NEEDLEMAN A.: Void nucleation effect in biaxially stretched sheets. J. Engng. Mater. Technol, 102, 1980, 249-256.
  • [3] TVERGAARD V.: Influence of voids on shear band instability under piane strain conditions. !NT. J. FRAT., 17, 1981, 389-40.
  • [4] TVERGAARD V: Ductile fracture by cavity nucleation between larger voids. J. Mech. Phys. Solids, 30, 1982, 265-286.
  • [5] TVERGAARD V, NEEDLEMAN A.: Analysis of the cup-cone fracture in a round tensile bar. Acta. Metall., 32, 1984, 157-169.
  • [6] SUN DZ, VOSSAND B, SCHMITT W.: Numerical prediction of ductile fracture resistance behaviour based on micromechanical models. Defect Assessment in Components-Fundamental and Applications, ESIS-EGF9, 1991, 447-458.
  • [7] PARDOEN T, DELATTE P, MORHET J, DOGHRI I, KNOCKAERT R DELANNAY F.: Application of local damage and fracture models to notched round copper bars. J. Physique, IV 6, 1996, 145-152.
  • [8] TVERGAARD V., NEEDLEMAN A.: Effects on non-local damage in porous plastic solids. lnt. J. Solids Struct., 32, 1995, 1063-1077.
  • [9] TVERGAARD V. NEEDLEMAN A.: Non-local effects in ductile fracture by cavitation between larger voids, in Computational Plasticity Fundamental and Applications. Proceedings of the Fourth International Conference, Barcelona, Spain (eds, Owen D.R.J. and Onate E.), Pineridge Press, Swansea, UK, 1995.
  • [10] ESIS P6-94D: Draft procedure to measure and calculate local fracture criteria on notched tensile specimens, 25th plenary meetings, technical committee 1 on Elastic Plastic Fracture Mechanics 1998.
  • [11] British Standard BS 7448: Fracture mechanics toughness tests, Part 4: Methods for determination of fracture resistance curves and initiation values for stable crack extension in metallic materials, 1997.
  • [12] UNDERWOOD E.E.: Quantitative Stereology. Addison-Wesley Publishing Co., 1970.
  • [13] ROUSSELIER G, DEVAUX JC, MOTTET G. DEVESA G.: A methodology for ductile fracture analysis based on damage mechanics: an illustration of a local approach of fracture. Nonlinear Fracture Mechanics: Volume II elastic-plastic Fracture, ASTM STP 995, 1989, 332-354.
  • [14] FRANKLIN AG.: Comparison between a quantitative micro-scope and chemical methods for assessment of non-metallic inclusions. J. Iron and Steel Institute, 207, 1969, 181-186.
  • [15] ROUSSELIER G, DEVAUX JC, MOTTET G, DEVESA G.: A methodology for ductile fracture analysis based on damage mechanics: an illustration of a local approach of fracture. Nonlinear Fracture Mechanics: Volume II elastic-plastic Fracture, ASTM STP 995, 1989, 332-354.
  • [16] WANG L, REN XJ SHATIL G.: Ductile fracture analysis of structural steel using local approach method: Part I - Material characterisation, submitted to Fatigue Fract. Engng. Mater. Struct. 2005.
  • [17] WANG L, REN XJ SHATIL G.: Duetile fracture analysis of structural steel using local approach method: Patt II - Method and app1ication to design, submitted to Fatigue Fract. Engng. Mater. Struct, 2005.
  • [18] TVERGAARD V.: Material failure by void growth to coalescence, in Advances in Applied Mechanics, edited by Hutchinson JW and W u TY,. 27, Acadernic Press, Harcout B race, Jovanovich Publishers, 1990.
  • [19] NEEDLEMAN A. TVERGAARD V.: Mesh effects in the analysis of dynamic ductile crack growth. Engng. Fract. Mech., 47, 1994,75-91.
  • [20] KOPLIK J. NEEDLAMAN A.: Void growth and coalescence in porous plastic solids. J. Mech. Phys. Solids, 24, 1988, 835-853.
  • [21] LE ROY G, EMBURY JD, EDWARD G. ASHBY MF: A model of ductile fracture based on the nucleation and growth of void. Acta Metall., 29, 1981, 1509-1522.
  • [22] THOMASON PF: Ductile Fracture of Metals, Pegamon Press, 1990.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOK-0014-0016
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