Etude de l`endommagement pendant la mise en forme

Transcription

Etude de l`endommagement pendant la mise en forme
Références Bibliographiques
AMB87
AMBROISE M. H., BRETHEAU T., ZAOUI A., Crack initiation from the interface
of superficial inclusions, Mechanical behaviour of materials 1987 pp. 169-176.
ARG75a ARGON A. S., IM J. , SAFOGLU R. Cavity formation from inclusions in ductile
fracture. Metal Trans., 1975, vol. 6A, pp. 825-837.
ARG75b ARGON A. S., IM J. Separation of second phase particles in spheroidized 1045
steel, Cu-0.6Pct Cr alloy, and maraging steel in plastic straining. Metal trans., 1975,
vol. 6A, p 839-851
ASH88
M.F. ASHBY, L.J. GIBSON, Cellular Solids––Structure and Properties, Pergamon
Press, Oxford (1988).
ATT68
ATTIX F. H. R. (Ed), ROESCH W. C (Ed). Radiation Dosimetry. Vol. I :
Fundamentals. New York : Academic Press, 1968. 111 p.
BAB02
BABOUT L. Etude par tomographie X et modélisation de l’endommagement de
matériaux métalliques modèles. Thèse de l’INSA de Lyon. 2002, 204p
BAK97
BAKER,-I.; MUNROE,-P.-R., Mechanical properties of FeAl, InternationalMaterials-Reviews. 1997; 42(5): 181-208.
BAL03
BALDACCI A. Rupture des particules intermétalliques durant le laminage à chaud
d’un alliage d’aluminium 5182. Thèse de l’ENSM-SE 2003, 281p
BAL98
R.G. BALIGIDAD, A. RADHAKRISHNA, U. PRAKASH, Mechanical properties
of high carbon Fe3 Al-based intermetallic alloys, Materials Science and Engineering
A257 1998 pp. 235–239
BAN01
D. BANABIC, E. DANNENMANN, Prediction of the influence of yield locus on the
limit strains in sheet metals, Journal of Materials Processing Technology, Volume
109, Issues 1-2, 1 February 2001, Pages 9-12
BAN96
BANABIC D., Forming Limit Diagrams Predicted by Using the New Hill's Yield
Criterion, Numisheet- International conference, 3, 1996, pp 240-245
BEC94
R.BECKER, O RICHMOND, Incorporation of microstructural geometry in material
modelling Mater. Sci.eng.2 1994 pp. 439-454
BER01
BERVEILLER M., BRETHEAU T., FOUGERES R. et al, Rappels sur les
mécanismes de la plasticité et de l'endommagement. In Homogénéisation en
mécanique des matériaux 2. Comportements non linéaires et problèmes ouverts. Paris
: Hermes Science Europe Ltd, 2001, pp. 203-249.12.
BER81
BEREMIN F. M. Cavity formation from inclusions in ductile fracture of A508 steel.
Metal. Trans A, 1981, vol. 12A, p 723-731.
BOR96
M. BORNERT, C. STOLZ, A. ZAOUI, Morphologically representative patternbased bounding in elasticity, Journal of the Mechanics and Physics of Solids,
Volume 44, Issue 3, March 1996, Pages 307-331
217
Références Biliographiques
BOT98
J. BOTTEMA, C. LAHAYE, R. BAARTMAN et al, Recent Developments in Aa6016
Aluminum Type Body Sheet Product, International Congress & Exposition, February
1998, Detroit, MI, USA, Session: Advanced Technologies For Product And Process
Integration SAE 981007
BOU86
R.J. BOURCIER, D.A. KOSS, R.E. SMELSER, O. RICHMOND, The influence of
porosity on the deformation and fracture of alloys, Acta Metall vol34 n12 2443-2453
1986
BRE91
BRECHET Y., EMBURY J. D., TAO S,. LUO L. Damage initiation in metal matrix
composites. Acta Metall. Mater., 1991, vol. 39, n° 8, pp. 1781-1786.
BRI70
BRIDGEMAN P. W. The physics of high pressure. New York : Dover publication,
1970; 398 p.
BRO73
BROWN L. M., EMBURY J. D. The initiation and growth of voids at second phase
particles. Proceeding of the 3d international conference on strength of metals and
Alloys, Cambridge, 1973, pp. 164-168.
BUF02
BUFFIERE J. Y., Mémoire d'habilitation à diriger la recherche : INSA Lyon. 23
décembre 2002, 136 p..
BUF99
BUFFIERE J.Y., MAIRE E., CLOETENS P., LORMAN G., FOUGERES R.
Characterization of internal damage in a MMCp using X-Ray synchrotron phase
contrast microtomography. Acta Mater., 1999, vol. 47, n°. 5, pp. 1613-1625
CAC96
C. H. CACERES, J. R. GRIFFITHS, Damage by the cracking of silicon particles in
an Al-7Si-0.4Mg casting alloy, Acta Materialia, Volume 44, Issue 1, January 1996,
pp 25-33
CHA02
K. C. CHAN, G.Q. TONG, Formability of high-strain-rate superplastic Al-4.4Cu1.5Mg/21SiCw composite under biaxial tension, Materials Science and Engineering
A00 2002 1-9
CHE02
Z. T. CHEN, M. J. WORSWICK, N. CINOTTI, A. K. PILKEY, D. LLOYD, A
linked FEM-damage percolation model of aluminum alloy sheet forming,
International Journal of Plasticity, Volume 19, Issue 12, December 2003, Pages
2099-2120
CHE88
Y.-S.-CHENG; Y.-HUANG, Measurement of continuous damage parameter,
Engineering-Fracture-Mechanics. 1988; 31(6): 985-92
CHO01
C. L. CHOW, L. G. YU, W. H. TAI, M. Y. DEMERI, Prediction of forming limit
diagrams for AL6111-T4 under non-proportional loading, International Journal of
Mechanical Sciences, Volume 43, Issue 2, Feb. 2001, pp 471-486
CHO87
CHOW,-C.-L.; J.-WANG, an anisotropic theory of elasticity for continuum damage
mechanics, International-Journal-of-Fracture. Jan. 1987; 33(1): 3-16
CHU80
CHU C.C, NEEDLEMAN A. Void nucleation effects in biaxially stretched sheets. J.
Engng. Mater. Technol., 1980, vol. 102, pp. 249-256.
CLO97
CLOETENS P., PATEYRON-SALOME M., BUFFIERE J.Y., et al. Observation of
microstructure and damage in materials by phase sensitive radiography and
tomography. J. Appl. Phys., 1997, vol. 81, n° 9, pp. 5878-5886
COC68
COCKCROFT M.G., LATHAM D.J., Ductility and the workability of metals, 1968,
J. Inst of Metals, 96, p33
218
CON85
A.G. CONSIDERE, Memoire sur l'emploi du fer et de l'acier dans les constructions.
Annales des Ponts et Chausses (ser. 6) 9 (1885), pp. 574–775
COR82
CORDEBOIS,-J.; SIDOROFF,-F., Anisotropic damage in elasticity and plasticity,
Journal-de-Mecanique-Theorique-et-Appliquee. 1982; : 45-59
COR94
S CORBIN,-S.-F.; WILKINSON,-D.-S., Influence of matrix strength and damage
accumulation on the mechanical response of a particulate metal matrix composite,
Acta-Metallurgica-et-Materialia. April 1994; 42(4): 1329-35
DAN02
D. DANIEL, J. L. HOFFMANN, G. PLASSART, J. PRUNIER, Optimization of
6016 Aluminum Alloy Selection for Outer Panels, International Body Engineering
Conference & Exhibition and Automotive & Transportation Technology Congress,
July 2002, Paris, FRANC, Session: Advances in Alloy Technologies (Part 2)
DUB03
B. DUBOST, M.-O. MONCHICOURT, Chronique Info Sciences, France Info, 6 août
2003
DUC00
DUCRET D., EL GUERJOUMA R., JAYET Y, BABOUX J. C. Anisotropic damage
evaluation in polymer fiber composites under hygrothermal aging by means of
ultrasonic techniques. In : THOMPSON D. O. & CHIMENTI D. E. (Eds). Review of
progress in quantitative nondestructive evaluation. New York : American Institute of
Physics, 2000, pp. 1199-1206.
ELG01
EL GUERJOUMA R., BABOUX J. C., DUCRET D. et al, Non-destructive
evaluation of damage and failure of fibre reinforced polymer composites using
ultrasonic waves and acoustic emission. Adv. Engng. Mater., 2001, vol. 3, n° 8, pp.
601-608.
ESH57
ESHELBY J. D. The determination of the elastic field of an ellipsoidal inclusion, and
related problems. Proc. R. Soc., London, 1957, vol. A241, pp. 376-396.
EST99
ESTEVEZ R., MAIRE E., FRANCIOSI P. et al, Effect of particle clustering on the
strenghtening versus damage rivalry in particulate reinforced elastic plastic materials
: a 3-D analysis from a self-consistent modelling. Eur. J. Mech. A/solids, 1999, vol.
18, pp. 785-804.
FAV95
FAVIER S. Contribution à l’etude de l’endommagement de matériaux métalliques
contenant des particules dures : application à l’alliage 3004-H19 thèse de l’INPG
1995, 273p
FEL84
FELDKAMP L. A., DAVIS L. C., KRESS J. W. Practical cone-beam algorithm. J.
Opt. Soc., 1984, vol. 1, n° 6, pp. 612-619.
FOR83
P. E. FORTIN, M. J. BULL, D. M. MOORE, An Optimized Aluminum Alloy (X6111)
for Auto Body Sheet Applications, SAE paper 830096 1983
FRA93
FRANCOIS D, PINEAU A., ZAOUI A., 1993, Comportement Mécanique des
Matériaux, VII Hermes Ed, Paris
GOO68
GOODWIN G.M., Application of strain analysis to sheet metal forming problems in
the press shop. SAE paper no. 680093. 1968.
GOO79
GOODS S. H., BROWN L. M. The nucleation of cavities by plastic deformation.
Acta Metall., 1979, vol. 27, pp.1-15.
219
Références Biliographiques
GRE02
J.C. GRENIER, E. MAIRE, P. FRANCIOSI, A. VINCENT, Caractérisation de
l’endommagement pendant la mise en forme de tôles en alliages d’aluminium par
observations 2D et 3D, Mecamat AUSSOIS 2002
GUR77
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., 1977, vol. 99, pp. 2-15.
HAM90
HAMEL A., VINCENT A., FOUGERES R. A model for the unloading stiffness in
the saturation fatigue stage of pure aluminium. Acta Metall. Mater., 1990, vol. 39, n°
2, pp. 301-312.
HEL98
HELBERT,-A.-L.; FEAUGAS,-X.; CLAVEL,-M., Effects of microstructural
parameters and back stress on damage mechanisms in alpha / beta titanium alloys,
Acta-Materialia. 23 Jan. 1998; 46(3): 939-51
HIL52
HILL R., 1952. On discontinuous plastic states, with special reference to localized
necking in thin sheets. J. Mech. Phys. Solids 1, p. 19.
HIL65
HILL R., Continuum micromechanic of elastoplastic polycristals, J. Mech Phys
Solids, 13, 1965, pp 89-101
HIL75
HILL R., HUTCHINSON J. W. , Bifurcation phenomena in the plane tension test,
Journal of the Mechanics and Physics of Solids, v 23, n 4-5, Aug-Oct, 1975, p 239264
HIL93
R. HILL, A user-friendly theory of orthotropic plasticity in sheet metals, International
Journal of Mechanical Sciences, Volume 35, Issue 1, January 1993, Pages 19-25.
HIR82
J. P. HIRTH, J. LOTHE, theory of dislocations 2nd edt New york 1982 p 857
HOR99
M. F. HORSTEMEYER, A. M. GOKHALE, A void–crack nucleation model for
ductile metals, International Journal of Solids and Structures, Vol. 36, Issue 33, Nov.
1999, pp 5029-5055
HOS83
W.F. HOSFORD, R.M. CADDEL, Metal Forming, Mechanical and Metallurgy,
Prentice-Hall, Englewood Cliffs, NJ, 1983, p. 121
HU98
J. HU, J. J. JONAS, Y. ZHOU, T. ISHIKAWA, Influence of damage and texture
evolution on limit strain in biaxially stretched aluminum alloy sheets, Materials
Science and Engineering A, Volume 251, Issues 1-2, 15 August 1998, Pages 243-250
HUM89
HUMPHREYS F. J. In-situ SEM studies of the fracture of aluminium particulate
composites. In : Proc. of the Congress : "EMAG MICRO 89", London, sept. 1989.
London : IOP Publishing Ltd., 1989, pp. 465-468.
HUT78
HUTCHINSON J.W. NEALE K.W., 1978. Sheet necking –– II: time-independent
behavior. In: Koistinen, D.P. and Wang, N.M., Editors, 1978. Mechanism of Sheet
Metal Forming, Plenum Press, New York, p. 127.
KAC86
L.M. KACHANOV, Introduction to Continuum Damage Mechanics, Nijhoff
(Martinus), Dordrecht, The Netherlands 1986.
KEE67
KEELER S.P., Determination of forming limits in automotive stampings. SAE paper
no. 650535. 1965.
KIS96
M.T. KISER, F.W. ZOK, D.S. WILKINSON. Plastic flow and fracture of a
particulate metal matrix composite, Acta mater. 44 1996, p. 3465
220
KOE96
H. J. KOENIGSMANN, E. A. STARKE, P. E. ALLAIRE, Finite
element/experimental analysis of cavity nucleation in an Al-Si-Ge alloy, Acta
Materialia, Vol. 44, Issue 8, August 1996, pp 3069-3075
KOU01
M. KOUZELI L.WEBER, C. SAN MARCHI, A. MORTENSEN, Quantification of
microdamage phenomena during tensile straining oh high volume fraction particle
reinforced aluminium, Acta Mater 49 2001 497-505
KOV99
KOVACIK, Correlation bewenn Young’s modulus and porosity in porous materials,
Journal of materials science letters 18 1999 1007-1010
LEB96
LEBENSOHN,-R.; SOLAS,-D.; CANOVA,-G.; BRECHET,-Y., Modelling damage
of Al-Zn-Mg alloys, Acta-Materialia. Jan. 1996; 44(1): 315-25
LEE91
LEE C. S., KIM Y. H., LIM T., HAN K. S. Dynamic observation of failure process
in Al/SiCw composite materials. Scripta Metall. Mater., 1991, vol. 25, n° 3, pp. 613618.
LEM87
LEMAITRE,-J.; DUFAILLY,-J., Damage measurements, Engineering-FractureMechanics. 1987; 28(5-6): 643-61.
LER81
LE ROY G., EMBURY J. D., EDWARDS G, ASHBY M. F. A model of ductile
fracture based on the nucleation and growth of voids. Acta metall., 1981, vol. 29, pp.
1509-1522.
LEV67
LEVIN V. M., Mekhanika Tverdogo Tela, 1967, 2, 88; English translation: Mech.
Solids, 1967, 2, 58
LEW95
LEWIS C. A., WITHERS P. J. Weibull modelling of particle cracking in metal
matrix composites. Acta Metall. Mater., 1995, vol. 43, n° 10, pp. 3685-3699.
LIA91
J. LIAN, J. CHEN, Plastic instability and strain to fracture for damaged materials,
Material science and engineering A131 1991 9-15
LIU93
LIU,-C.-T.; KUMAR,-K.-S. , ordered intermetallic alloys. I. Nickel and iron
aluminides, JOM-. May 1993; 45(5): 38-44
LLO00
LLORCA J. Void formation in metal matrix composites. In : CLYNE T. W (Ed).
Comprehensive composites Materials. Vol 3, Metal Matrix Composites. Amsterdam :
Elsevier, 2000, pp. 91-115.
LLO91
LLORCA J., NEEDLEMAN A. , SURESH S. An analysis of the effects of matrix
void growth on deformation and ductility in metal-ceramic composites. Acta Metall.
Mater., 1991, vol. 39, n° 10, pp. 2317-2335.
LLO93
LLORCA J., MARTIN A., RUIZ J., ELICES M. Particulate fracture during
deformation of a spray formed metal-matrix composite. Metall. Trans. A, 1993, vol.
24A, pp. 1575-1588.
MAC50
J.K. MACKENZIE , The elastic constants of a solid containing spherical holes. Proc.
Phys. Soc. B 63 (1950), pp. 2–11
MAG88
P.E.MAGNUSEN, E.M. DUBENSKY, D,A, KOSS, The effect of void arrays on void
linking during ductile fracture Acta Met 36 1503-1509 1988
MAI01
MAIRE E., BUFFIERE J. Y., SALVO L., BLANDIN J. J., LUDWIG W. , LETANG
J. M. On the application of X-ray microtomography in the field of materials science.
Advanced Engineering Materials, 2001, vol. 3, n° 8, pp. 539-546
221
Références Biliographiques
MAI95a
MAIRE E. Relations entre les propriétés mécaniques statiques et la microstruture de
composites à matrice métallique à renforts particulaires élaborés par OspreyTM.
Thèse de Doctorat en génie des matériaux : INSA de Lyon, 1995, 186 p.
MAI95b
MAIRE E., VERDU C., LORMAND G., FOUGERES R. Study of the damage
mechanisms in an OSPREYTM Al alloy-SiCp composite by scanning electron
microscope in situ tensile tests. Mater. Sci. Eng., 1995, vol. A196, pp. 135-144.
MAI97a
MAIRE E., WILKINSON D.S., PORUKS P., HENEIN H., EMBURY J.D. , Damage
mechanisms of model metal matrix composites with heterogeneous spatial
distribution of the reinforcement. In : KHAN A.S. (Ed.) et al. Proc. of the 6th
international symposium on plasticity and its current applications : physics and
mechanics of finite plastic and viscoplastic deformation, july 1997, Juneau, Alaska.
Fulton, Maryland : Neat Press, 1997, pp. 207-208.
MAI97b
MAIRE E., WILKINSON D. S., EMBURY J. D., FOUGERES R. Role of damage on
the flow and fracture of particulate reinforced alloys and metal matrix composites.
Acta Mater., 1997, vol. 45, n° 12, pp. 5261-5274.
MAI98
MAIRE E., WILKINSON D. S., EMBURY J. D. & HENEIN H. Ductilization of a
powder metallurgy Al-17 Wt Pct Cu by means of channel-die compression and
extrusion. Metall. Mater. Trans. A, 1998, vol. 29A, pp. 2613-2620.
MAR00
MARTIN C. F., JOSSEROND C., SALVO L., BLANDIN J. J., CLOETENS P.,
BOLLER E. Characterisation by X-ray micro-tomography of cavity coalescence
during superplastic deformation. Scripta Mater., 2000, vol. 42, pp. 375-381.
MAR67
MARCINIAK Z., KUCZYNSKI K., Limit strains in the processes of stretch-forming
sheet metal. Int. J. Mech. Sci. 9, 1967. p. 609.
MAR98
MARINI L. Analyse d'images 3D seuillées. Mémoire de DEA au laboratoire ISA:
CPE Lyon, 1998, 61 p.
MAS00
R. MASSON, M. BORNERT, P. SUQUET, A. ZAOUI, An affine formulation for the
prediction of the effective properties of nonlinear composites and polycrystals,
Journal of the Mechanics and Physics of Solids, Volume 48, Issues 6-7, 1 June 2000,
Pages 1203-1227
MGU97
MGUIL S. Une technique de correlation directe d’images numériques: application à
la détermination de courbes limites de formage et proposition d’un critère de
striction. Thèse de l’INSA de Lyon 1997, 210p
MIL00
W. S. MILLER, L. ZHUANG, J. BOTTEMA et al, Recent development in aluminium
alloys for the automotive industry, Materials Science and Engineering A, Volume
280, Issue 1, 15 March 2000, Pages 37-49
MIL02
V. MILEKHINE, M. I. ONSØIEN, J. K. SOLBERG et al, Mechanical properties of
FeSi , FeSi2 and Mg2Si, Intermetallics, Vol. 10, Issue 8, August 2002, pp 743-750
MOC91
MOCHIDA,-T.; TAYA,-M.; OBATA,-M., Effect of damaged particles on the
stiffness of a particle/metal matrix composite, JSME-International-Journal,-Series-ISolid-Mechanics,-Strength-of-Materials. April 1991; 34(2): 187-93
MOC93
MOCELLIN A., R. FOUGERES, P.F. GOBIN, A study of damage under tensile
loaging in a new al fe si alloy processed by the osprey route, Journal of materials
science 28 1993 4855-4861
222
MON85
MONTHEILLET,-F.; GILORMINI,-P.; JONAS,-J.-J, Relation between axial stresses
and texture development during torsion testing: a simplified theory, ActaMetallurgica. April 1985; 33(4): 705-17
MON86
MONTEILLET F., MOUSSY F. (Eds). Physique et mécanique de l'endommagement.
Les Ulis : Les Editions de Physique, 1986, 258 p.
MOR81
L. R. MORRIS, R. IRICHBAR, J. D. EMBURY, J.L. DUNCAN, Formability of
aluminium sheet alloys aluminium and transformation technology and applications,
1981 ed C. Pampillo & al 1981 p549-582
MUK97
S. K. MUKHERJEE, S. BANDYOPADHYAY, Mechanical and interfacial
characterisation of Fe3Al, Al2O3 intermetallic composite made by mechanical
smearing and hot isostatic pressing, Composites part B 28B 1997 45-48
MUR82
MURA T., Micromechanics of defects in solids, 1982, Martinus Nijhoff Publishers,
494p
MUR95
S. J. MURTHA, J. M. STORY, G. W. JARVIS, H. R. ZONKER, Anisotropy Effects
in the Forming of Aluminum Sheet, SAE 950702
NAG02
A. NAGY , U. HARMS, F. KLOSE et al, Mechanical spectroscopy of ordered
ferromagnetic Fe3Al intermetallic compounds, Materials Science & Engineering
A324 2002 68–72
NAN96
NAN C. W., CLARKE D. R. The influence of particle size and particle fracture on
the elastic/plastic deformation of metal matrix composite. Acta Mater., 1996, vol. 44,
no 9, pp. 3801 - 3811.
NEE78
A. NEEDLMAN G.A. TRIANTAFYLLIDIS, Void growth and local necking in
biaxially stretched sheets, Journal of engineering materials and technology 100 1978
164-169
NEE87
NEEDLEMAN A. A continuum model for void nucleation by inclusion debonding. J.
Appl. Mech., 1987, vol. 54, pp. 525-531.
PEA72
R. PEARCE, D. GANGULI, The forming limits of Aluminium-Magnesium Alloy
sheet in biaxial tension, Journal of the institut of metal 1972 p289-295
PEI00
PEIX G., DUVAUCHELLE P., FREUD N. General principle, X-ray Tomography in
Material Science. Paris : HERMES Science Publications, 2000, p 15-26
PET95
PETTON G., Mécanismes microscopiques et comportement cyclique de l'alliage
d'aluminium 7010. Thèse de Doctorat en génie des matériaux : INSA de Lyon, 1995,
250 p.
POH69
D. POHL, On the fatigue strength of sintered iron, Powder Metall. Int., 1969, vol 1,
pp. 26-28
PON95
P. Ponte Castañeda, J. R. Willis, The effect of spatial distribution on the effective
behavior of composite materials and cracked media, Journal of the Mechanics and
Physics of Solids, Volume 43, Issue 12, December 1995, Pages 1919-1951
PON96
P. PONTE CASTAÑEDA, Exact second-order estimates for the effective mechanical
properties of nonlinear composite materials, Journal of the Mechanics and Physics of
Solids, Volume 44, Issue 6, June 1996, Pages 827-862
PON98
P. PONTE CASTAÑEDA, P. SUQUET, Nonlinear composites. Adv. Appl. Mech. 34
(1998), pp. 171–302
223
Références Biliographiques
POO98
W. J. POOLE, E. J. DOWDLE, Experimental measurements of damage evolution in
Al-Si eutectic alloys, Scripta Materialia, Vol. 39, Issue 9, 5 October 1998, pp 12811287
PRA94
PRANGNELL,-P.-B.; DOWNES,-T.; WITHERS,-P.-J.; STOBBS,-W.-M., The
deformation of discontinuously reinforced MMCs. II. The elastic response, ActaMetallurgica-et-Materialia. Oct. 1994; 42(10): 3437-42
REE01
D. W. A. REES, Factors influencing the FLD of automotive sheet metal, Journal of
Materials Processing Technology, Volume 118, Issues 1-3, 3 December 2001, Pages
1-8
RIC69
RICE J. R., TRACEY D. M. On the ductile enlargement of voids in triaxial stress
fields. J. Mech. Phys. Solids, 1969, vol. 17, pp. 201-217.
ROB96
ROBBE X. Etudes des relations entre limites de formage et endommagement des
alliages d’aluminium destinés à la carrosserie automobile. DEA de l’ENSPG 1996
ROU80
ROUSSELIER G. Finite deformation constitutive relations including ductile fracture
damage. In : IUTAM Symposium on three-dimensional constitutive relations and
ductile fracture, Dourdan, juin 1980. Edited by NEMAT-NASSER S., 1980, pp. 331355.
SAN97
SANDERS,-W.; SAUTHOFF,-G. Deformation behaviour of perovskite-type phases
in the system Fe-Ni-Al-C. II. Deformation behaviour of a two-phase Fe/sub
3/AlC/sub 0.45/ alloy, Intermetallics-. 1997; 5(5): 377-85
SAR01
J. SARKAR, T. R. G. KUTTY, K. T. CONLON et al, Tensile and bending properties
of AA5754 aluminum alloys, Materials Science and Engineering A, Volume 316,
Issues 1-2, 15 November 2001, Pages 52-59
SAV00
SAVELLI S. Identification des mécanismes et approche quantitative de la fatigue
d'alliages modèles d'aluminium de moulage. Thèse de doctorat en génie des
matériaux : INSA de Lyon. 2000, 194 p.
SBA00
O. SBAIZERO, G. PEZZOTTI, Influence of residual and bridging stresses on the Rcurve behavior of Mo- and FeAl-toughened alumina, Journal of the European
Ceramic Society 20 2000 pp. 1145-1152
SCH82
J.H. SCHMITT, J.M. JALINIER, Damage in sheet metal forming––I: physical
behavior; damage in sheet metal forming-II: plastic instability. Acta Metallurgical 30
(1982), pp. 1789–1809.
SIM71
G. SIMMONS, H WANG, single crystal elastic constants and calculated aggregate
properties : a handbook 2nd edt cambridge 1971 p 370
SIM97
SIMONE,-A.-E.; GIBSON,-L.-J., The compressive behaviour of porous copper made
by the GASAR process, Journal-of-Materials-Science. 15 Jan. 1997; 32(2): 451-7
STR02
G. STRAFFELINI, A. MOLINARI, Evolution of tensile damage in porous iron,
Materials Science and Engineering A, Volume 334, Issues 1-2, 1 September 2002, pp
96-103
SUQ01
P SUQUET. Rappels sur les mécanismes de la plasticité et de l'endommagement. In
Homogénéisation en mécanique des matériaux 2. Comportements non linéaires et
problèmes ouverts. Paris : Hermes Science Europe Ltd, 2001, pp. 203-249.
224
SWI52
SWIFT W. Plastic instability under plane strain conditions Int. J. Fract. Mech. 1952
vol 1 p 1-18
TAN00
C.Y. TANG, W.H. TAI, Material damage and forming limits of textured sheet
metals, Journal of materials processing technology 99 2000 135-140
TAN93
TANG,-C.-Y., Anisotropy in continuum damage mechanics, Scripta-Metallurgica-etMaterialia. 15 July 1993; 29(2): 183-8
TAN95
C. Y. TANG, W.B. LEE, Effects of damage on the shear modulus of aluminium alloy
2024T3, Scripta Metallurdica et Materiala Vol 32, No 12, pp 1993-1999 1995
THE93
THEBAUD F. Vers l'introduction de l'endommagement dans la prévision globale du
comportement de composites à matrice métallique. Thèse de doctorat en mécanique :
Ecole Polytechnique Palaiseau, 1993, 269 p.
THO68
THOMASON P. F. A theory for ductile fracture by internal necking of cavities.
Journal of the institute of metals, 1968, vol. 96, pp. 360-365.
THO90
THOMASON P. F. Ductile fracture of metals. Pergamon Press, 1990.
THO98
C. I. A. THOMSON, M. J. WORSWICK, A. K. PILKEY et al, Modeling void
nucleation and growth within periodic clusters of particles, Journal of the Mechanics
and Physics of Solids, Vol. 47, Issue 1, 4 December 1998, pp 1-26
THO99
THOMSON C. I. A., WORSWICK M..J., PILKEY A. K., LLOYD D. J. BURGER
G. Modeling void nucleation and growth within periodic clusters of particles. Mech.
Phys. Solids, 1999, vol. 47, pp. 1-26.
TVE81
TVERGAARD V. Influence of voids on shear band instabilities under plane strain
conditions. Int. J. Fracture, 1981, vol. 17, pp. 389-395.
TVE84
TVERGAARD V. , NEEDLEMAN.A. Analysis of the cup-cone fracture in a round
tensile bar. Acta Metall. Mater., 1984, vol. 32, pp. 157-169.
TVE90
TVERGAARD V. Material failure by void growth to coalescence. Adv. Appl.
Mech., 1990, vol. 27, pp. 83-151.
TVE95
TVERGAARD,-V.; NEEDLEMAN,-A., Effects of nonlocal damage in porous plastic
solids, International-Journal-of-Solids-and-Structures. April-May 1995; 32(8-9):
1063-77
VER97
VERHAEGHE B., LOUCHET F., BRECHET Y. MASSOUD J. P. Damage and
rupture mechanisms in an austenoferritic duplex steel. Acta Mater., 1997, vol. 45, n°
5, pp. 1811-1819.
WHI93
WHITEHOUSE A. F. CLYNE T. W. Cavity formation during tensile straining of
particulate and short fibre metal matrix composite. Acta Metall. Mater., 1993, vol.
41, n° 6, pp. 1701-1711.
WIL98
WILKINSON,-D.-S.; MAIRE,-E.; FOUGERES,-R., A model for damage in a
clustered particulate composite, Materials-Science-&-Engineering-A-StructuralMaterials:-Properties,-Microstructure-and-Processing. 1 April 1999; A262(1-2): 26470
WIL99
WILKINSON D.S., MAIRE E. FOUGERES R. A model for damage in a clustered
particulate composite. Mat. Sci. Eng., 1999, vol. A262, pp 264-270.
225
Références Biliographiques
WOR01
M. J. WORSWICK, Z. T. CHEN, A. K. PILKEY, D. LLOYD, S. COURT, Damage
characterization and damage percolation modelling in aluminum alloy sheet, Acta
Materialia, Volume 49, Issue 14, 16 August 2001, Pages 2791-2803
WOR96
WORSWICK M.J., PILKEY A.K., THOMSON C.I.A., Effect of microstructural
defect distribution on failure and localization of aluminium sheet. Final report for
ALCAN International Kingston Research and Development Centre. 1996
WOR98
WORSWICK M.J., PILKEY A.K., THOMSON C.I.A., LLOYD D.J., BURGER G.,
1998, Proc IMC, Northwood & Shehata Eds
XU95
XU,-Z.-R.; CHAWLA,-K.-K.; WOLFENDEN,-A. et al, Stiffness loss and density
decrease due to thermal cycling in an alumina fiber/magnesium alloy composite,
Materials-Science-&-Engineering-A-Structural-Materials:-Properties,Microstructure-and-Processing. 15 Nov. 1995; A203(1-2): 75-80.
YEH96
YEH J. W. , LIU W. P. The cracking mechanism of silicon particles in an A357
aluminum alloy. Metall. Mater. Trans. A, 1996, vol. 27A, pp. 3558-3568.
ZHA00
J. ZHANG , Z. FAN , Y. WANG , B. ZHOU, Hypereutectic aluminium alloy tubes
with graded distribution of Mg2Si particles prepared by centrifugal casting, Materials
and Design 21 2000 149-153
ZHA94
ZHAO D., TULER F. R., LLOYD D. J. Fracture at elevated temperatures in a
particle reinforced composite. Acta Metall. Mater., 1994, vol. 42, n° 7, pp. 25252533.
ZHU90
ZHUANG D., SANDOR B. I., A thermoelasticity theory for damage in anisotropic
materials, Fatigue Fract Engng Mater Struct, 1990, Vol 13, No 5, pp497-509
226
..
227
Références Biliographiques
228
229

Documents pareils