General Papers
Ductile Fracture Mechanisms of Structural Steels | |
J. LEREIM |
Ductile Fracture in High-Strength Structural Steels | |
C.P. YOU, J.F. KNOTT |
Dislocations Developed Around Crack Tips in Silicon, Their Influence on Fracture Toughness | |
G. MICHOT, A. GEORGE, G. CHAMPIER |
Dislocation-Theoretical Approach to the Brittle-to-Ductile Transition in Metals | |
M. PFUFF |
Experimental Determination of Crack Growth Resistance Curves | |
B. VOSS, J.G. BLAUEL |
Numerical Analysis of Elastic-Plastic Fracture Mechanics Experiments | |
W. SCHMITT, D. SIEGELE, T. HOLLSTEIN |
Comparison of R-Resistance Curves | |
R.L. JONES, T.V. DUGGAN, L.J. SPENCE, P.J. BARNES |
Prediction of Maximum Load Values of Different Sized CT-Specimens using the J-R-Curve-Concept | |
H. -J. KAISER, K. E. HAGEDORN |
KR-Curve Measurements with Ceramic Materials | |
H. WIENINGER, R:F. PABST |
Study of the Effect of Microstructure on Stable Crack Growth | |
F.L. BASTIAN, J.A. CHARLES |
The Influence of Structural Parameters on Crack Propagation in High-Strength Steels | |
J. HOFSTATTER, W. SCHWARZ, W. MEYER |
Influence of Microstructure to Fracture Toughness, Crack Propagation of TiAl6V4 | |
W. J. OBERPARLEITER |
Fracture Toughness of 7075-T7351 Aluminium Plates | |
G. MARCI, J. ESCHWEILER, T. FETT. |
Microstructure-Toughness Relationships in a C-Mn Weld Metal | |
J.H. TWEED, J.F. KNOTT |
Fracture Toughness, Microstructure of S. A. W. Weld Metal | |
L. DEVILLERS, B. MARANDET, D. KAPLAN, A. Ribes, V. RIBOUD |
Fracture Toughness of Cast Structures | |
P. UGGOWITZER, M.O. SPEIDEL |
Effect of Microstructure on Fracture Toughness of Age- Hardened Alloys | |
A. GYSLER, V. BACHMANN, G. LUTJERING |
Influence of Microstructure on Toughness of a Steel 20 MnMoNi | |
D. DORMAGEN, H.-J. ROSEZIN, W. DAHL |
Influence of Microstructure on the Fracture Toughness of Tempered Martensitic Alloy Steels | |
S. SLATCHER, J. F. KNOTT |
Fracture Toughness Investigations of Long-Term Behaviour of G-X 8 CrNi 12 Cast Steel | |
C. BERGER, F. STAIF |
Effect of Side Grooves, Orientation of the Testpieces on COD Values of a Structural Steel | |
H.M. CAMINHA JR., F. L. BASTIAN |
Quasistatic Extension of an Interface Crack | |
K.P. HERRMANN, U. STRATHMEIER |
Influence of Microstructure, other Parameter on Fracture- Mechanics Values of a Structural Steel | |
H. MILDNER, T. VARGA, G. SCHNEEWEISS |
Sources of Scatter in Fracture Toughness Values, in Fatigue Crack Propagation-Rates | |
J.F. KNOTT |
Investigation of Mechanical, Structural Anisotropy of N-A- XTRA 70 MAG Weldments | |
S. SEDMAK, L. NEDELJKOVIC, A. RADOVIC |
Scatter in the Cleavage Fracture Toughness of A533B Plate | |
D.A. CURRY, I MILNE, K.N. AKHURST |
Toughness Values Dispersion Correlated with Fracture Path Profilometric Analysis of Grey Cast Iron | |
G.L. ZAMBELLI, L. HAENNY |
On the Cleavage Fracture Strength of a Bainitic Microstructure | |
H. KOTILAINEN |
Inverse Response of Charpy Impact, Plane Strain Fracture Toughness to Microstructural Variations in a Low Alloy Steel | |
R. PADMANABHAN, W. E. WOOD |
Lateral Expansion of Charpy-V-Specimens, Fracture Behaviour of Steels | |
W. MEYER, J. HOFSTATTER |
The Influence of Steel Microstructure on Dynamic Fracture Toughness | |
J. BUCHAR, Z. KNESL, Z. BILEK |
Ductility, Microstructure of Ferritic Cast Iron with Nodular Graphite | |
D. AURICH, R. HELMS, CH. ZAMINER |
Microstructure, Ductile Fracture of a Quenched and Tempered Steel | |
R. EBNER, K. L. MAURER |
The Effect of Carbide Morphology on the Fracture of Nickel- Base Alloys | |
K. MOHR, P.J. ENNIS, H. SCHUSTER |
Contribution to the Fracture Micromechanism, Morphology of Cr-Mo-V Tool Steels | |
C. RODlC, A. RODIC, F. VODOPIVEC |
Ductile Fracture in a V/Nb Dual Phase Steel | |
V. RADMILOVIC, DJ. DROBNJAK, M. ROGULIC |
Reasons for the appearance of separations in HSLA-steels | |
K. KUHNE, H. DUNNEWALD, W. DAHL |
The cause of separations, its effects on fracture behaviour | |
B. Engl, A. Fuchs |
Analysis of fracture surfaces of Mo-alloys with carbide dispersions | |
R. Eck, I. Jager, E. Werner, E. Pink |
Persistent Slip Bands Induced by Fatigue in a Nickel Base Superalloy | |
J.N. VINCENT, L. REMY |
Surface Cracking of Quenched and Tempered Steel by Shear Instability, Effect on Fatigue Crack Initiation | |
G. WOLD |
Fatigue Crack Initiation Mechanisms in Air and in Vacuum in Polycrystalline Copper | |
J. MENDEZ, P. VTOLAN, C. GASC |
The Fatigue Limit of Steel Wires as Determined by the Fatigue Threshold and the Surface Characteristics | |
I. VERPOEST, A. DERUYTTERE, E. AERNOUDT, M. NEYRINCK |
The Influence of Microstructure on Fatigue Crack Initiation and Fatigue Crack Propagation in Al-Mg-Si Alloys | |
W. RUCH, V. GEROLD |
Crack Initiation and Microcrack Propagation under Constant Amplitude and Program Loading Histories | |
J. FOTH, H. NOWACK, G. LUTJERING |
Crack Initiation and Crack Propagation by Torsional Fatigue in Low Carbon Steels | |
G. KOMPEK, F.E. MATZER, K.L. MAURER |
The Micro-Mechanisms of Fatigue Deformation in Nimonic PE16 | |
C. H. D ARBUTHNOT |
Fatigue Crack Growth Rate in Air of Quenched and Tempered Steel | |
A. BIGNONNET, R. NAMDAR-IRANI, M. TRUCHON |
Effect of Microstructure on Crack Growth in a High Strength Aluminium Alloy | |
J. PETIT, P. RENAUD, P. VIOLAN |
The Influence of Incoherent Particles on Fatigue Crack Propagation under Variable Amplitude Loading in High- Strength Aluminium Alloys | |
K. SCHULTE |
Void Coalescence During Fatigue Crack Growth | |
D. RHODES, K.J. NIX, J.C. RADON |
Effects of Plasticity and Strain Rate on Fatigue Crack Growth | |
L. GUERRA ROSA, C. MOURA BRANCO, J.C. RADON |
The Temperature Field Surrounding the Fatigue Crack Tip | |
R. PIPPAN, H. -P. STUWE |
Numerical and Experimental Determination of Stress Intensity Factors in a 20 kHz Resonance System | |
A.F. BLOM, A. HADRBOLETZ, B. WEISS |
Fractography and the Shape of Part-Through Cracks | |
M. PRODAN, J.C. RADON |
The Effect of Microstructure on Appearance of Fatigue Fracture of H I Steel | |
J. WOODTLI-FOLPRECHT, M. PRODAN |
Influence of Overloads on the Subsequent Crack Growth of a Fatigue Crack in A E 36 Steel | |
C. ROBIN, C. CHE HI MI, M. LOUAH, G. PLUVTNAGE |
The Effect of Grain Structure on Fatigue Life of Age Hardening Aluminium Alloys | |
K. PEDERSEN, O. HELGELAND, O. LOHNE |
The Role of Induced Phase Transformations on Fatigue Processes in AISI 304L | |
Y. KATZ, A. BUSSIBA, H. MATHIAS |
Fatigue Crack Propagation in MAR M002 Crystals at Elevated Temperature | |
J.S. CROMPTON, J.W. MARTIN |
Fracture Toughness and Fatigue Behaviour of Austenitic Steels at 77 and 4 K | |
A. NYILAS, H. KRAUTH |
Influence of Environment on Microcrack Propagation in High Temperature Low Cycle Fatigue | |
M. REGER, L. REMY |
The Effect of Inclusions on the Environmentally Accelerated Cyclic Crack Growth of Reactor Pressure Vessel Steels in Simulated LWR Environments | |
K. TORRONEN, T. SAARIO, H. HANNINEN, M. KEMPPAINEN, S. SALONEN |
Corrosion Fatigue Cracking of Stainless Steels in Chloride Solutions | |
H. SCHMIDT, B. WEISS, R. STICKLER |
Fatigue in Lubricants Environment | |
P. POUDOU, G. NOUAIL, J. AYEL, G. PLUVINAGE |
Effect of Plasma Nitriding on Cyclic Behaviour under Various Environmental Conditions | |
K.T. RIE, TH. LAMPE, W. KOHLER |
Effect of Microstructures on LCF-Behaviour of Steels in High Pressure Hydrogen Environment | |
K.T. RIE, W. KOHLER |
The Fractography of Fatigue Cracking in a Cast Aluminium Alloy at a Range of Temperatures | |
L.E. CULVER, J.C. BALTHAZAR, J.C. RADON |
Three-Dimensional Fractography | |
B. BAUER, M. FRIPAN, V. SMOLEJ |
Quantitative Fracture Surface Profile Analysis in Environmental Fatigue Tests | |
G. AIROLDI |
High Temperature Behaviour of a Sintered - Sialon Material | |
G. ORANGE, J.C. GLANDUS, G. FANTOZZI, P. BOCH |
Thermal Shock Resistance of Ceramics Submitted to Severe Shocks | |
J.C. GLANDUS, P. BOCH |
Direct Visual Registration of Crack Extension in Ceramic Materials at Elevated Temperatures | |
A. BORNHAUSER, K. KROMP, H. SCHMID, R.F. PABST |
Fracture Toughness Dependence on Temperature, Loading Rate and Oxidation Treatment for Si Infiltrated SiC | |
T. HAUG, R.F. PABST |
A Comparison of Measured and Computed Cyclodynamic Fatigue Failure Times of SiC at Room and Elevated Temperatures | |
S. LAUF, A. BORNHAUSER, R.F. PABST |
Nucleation and Growth of Thermal Fatigue Cracks in Chemically Unhomogeneous Tool Steel | |
L. KOSEC, F. KOSEL, F. VODOPIVEC |
Mechanism of Crack Initiation by Thermal Fatigue and Crack Propagation in the Case of Hot Rolling Rolls | |
A. DIAS, J. GIUSTI, H.P. LIEURADE |
High-Temperature Low-Cycle Fatigue of a Martensitic Stainless Steel. New Damage Model, Applied to Thermal Fatigue | |
G. DEGALLAIX, J. FOCT |
Low Cycle Fatigue of X40CrMoV51 at High Temperatures | |
T. SCHOBERL, R. DANZER, H.P. STUWE |
Fatigue and Fracture Mechanics of a Wrought Ni-Base Alloy | |
R.B. SCARLIN, K.N. MELTON, W. HOFFELNER |
High-Cycle Fatigue and Creep of the Cast Nickelbase Superalloy in 738 LC at 850° C | |
H. SCHMIDT, W. HOFFELNER |
An Analytical Model of Intergranular Creep Cracking Application to Precipitation -Hardened Al Alloys Embrittled by Pb | |
B. QUANTIN, M. GUTTMANN |
Comparison of Creep Fracture in Air and in Simulated High Temperature Reactor Helium | |
H.M. YUN, P.J. ENNIS, H. NICKEL, H. SCHUSTER |
The Role of Microstructure and Notch Root Radius on the fracture toughness of a martensite structure steel | |
D. Firrao, R. Roberti, G. Silva |
Monotonic and Fatigue Behaviour of Rectangular Thin Walled Welded Joints used in Transport Vehicles | |
C.M. BRANCO |
Fatigue Life Assessment in Cruciform Joints | |
J.M. FERREIRA, C. M. BRANCO |
Brittle Fracture during Fatigue Loading at - 10 degr. C of a Full-Scale Tubular X-Joint. Influence of Ageing | |
J.J.W. NIBBERING, R. ZIJIN |
Fatigue Crack Growth in Welded Girders | |
O.I. EIDE, S. BERGE |
Low Cycle Fatigue and Fatigue Damage High Temperature Low-Cycle Fatigue of Austenitic and Ferritic Weldments | |
K.-T. RIE, R.-M. SCHMIDT |
Thermal Mechanical, Low Cycle Fatigue of 25 CD4 Steel | |
J. GILGERT, M. LEBIENVENU, G. PLUVINAGE |
High Temperature Fatigue Damage Mechanisms in Alloy 800 H | |
B. KEMPF, K. BOTHE, V. GEROLD |
Influence of the Structure and of the Temperature Field on the Formation and Propagation of Thermal Fatigue Cracks | |
W. ZLEPPNIG, R. DANZER, F.D. FISCHER, K.L. MAURER |
Some Results of Low Cycle Fatigue on Boiler Steel | |
J. PIRS |
The Influence of Shot-Peening on The Fatigue Strength of Welded Joints in High-Strength Structural Steels | |
L. PICQUET, A. BIGNONNET, H.P. LIEURADE, L. CASTEX, J.L. LEBRUN |
Linear and Non-Linear Fatigue Damage and Cumulation | |
N. RECHO |
Influencing Factors on Fatigue Crack Propagation of Mild Steels Cathodically Polarized in Seawater | |
Y.G. KWEON, M. HABASHI, J. GALLAND |
Corrosion Fatigue Properties of an Offshore Structural Steel in Seawater Containing Hydrogen Sulphide | |
C.J. THOMAS, I.M. AUSTEN, R. BROOK, R.G.J. EDYVEAN |
Corrosion Fatigue in Offshore; Influence of Frequency and Electrochemical Conditions | |
R. HELMS, H. HENKE |
The Influence of Electrochemical Parameters on the Low-Cycle Corrosion Fatigue of a Structural Steel | |
J.L. BRAZY, A. BIGNONNET, C. VALLET |
Modelling of Fatigue Crack Growth in 7075-T651 Aluminium Alloy Plate | |
R. J. H. WANHILL, A.U. DE KONING, L. SCHRA |
Crack Closure Effects in Fatigue Propagation of Elliptical Cracks | |
A. CLERIVET, C. BATHIAS |
Fatigue Crack Growth Behaviour in Constant-Load Amplitude and Constant Delta-K Tests on Notched Specimens | |
R. PIPPAN, H. P. STUWE |
Creep Crack Growth and Crack Propagation of IN 800 H at 830 degr. C | |
W. OBERPARLEITER, P. AGATONOVIC |
The Application of J Concept to Fatigue Crack Growth in Large Scale Yielding | |
Y. LAMBERT, C. BATHIAS |
Influence of a Residual Surface Stress Field near the Crack Tip on Crack Propagation | |
E. WELSCH, D. EIFLER, B. SCHOLTES, E. MACHERAUCH |
Prediction of Thresholds using Cyclic Properties of Material | |
L. GUERRA ROSA, C.M. BRANCO, J.C. RADON |
Mechanism of Low Cycle Small Surface Crack Propagation | |
N.A. MAKHUTOV, I.V. MAKARENKO |
The Expected Position of Fatigue Fracture Planes according to Variance of the Reduced Stress | |
W. BEDKOWSKI, E. MACHA |
Fatigue Crack Growth in Hard Steels | |
R.A. SMITH |
Experimental and Numerical Analysis on Fatigue Crack Propagation on Three Medium-Strength Steels | |
L. FELLONI, R. FRATESI, A. LA BARBERA, M. MARCHETTI |
Curvilinear Cracks in Planar Situations | |
M. AMESTOY, J.B. LEBLOND |
Continuum Mechanical Foundation of Curved Thermal Crack Growth in Elasto-Plastic Materials | |
B. KAEMPF, K. P. HERRMANN |
Crack Path Stability in Tapered DCB Specimens | |
Y. SUMI |
Effect of Crack Curving on Stress Intensity Factor/Energy Release Rate for Three-Point Bend Specimens | |
B.L. KARIHALOO |
The T-Criterion for Failure of Engineering Materials | |
P.S. THEOCARIS |
Brittle Fracture under Mixed Mode I/Mode II Loading | |
T.M. MACCAGNO, J.F. KNOTT |
Micromechanisms of Fracture | |
W. DAHL, D. DORMAGEN, A. HALIM |
Fatigue Crack Initiation and Propagation in Al-Zn-Mg Single Crystals and its Dependence on the Ageing Treatment | |
P. LIANG, H.-J GUDLADT, V. GEROLD |
The Effect of Dispersoids on Fatigue Crack Propagation in Al-Zn-Mg Alloys | |
M. HARRISON, J.W. MARTIN |
Near Threshold Fatigue Crack Propagation and Crack Closure in Al-Mg-Si Alloys with Varying Manganese Concentrations | |
R. SCHEFFEL, K. DETERT |
Effect of Microstructure on Fatigue in Near Threshold Region in V/Nb Dual-Phase Steel | |
K. GERIC, D.J. DROBNJAK |
Influence of Chemical Purity on the Propagation of Fatigue Cracks in Al-Zn-Mg-Cu Alloys | |
G. CHALANT |
Fatigue in Rate Dependent Alloy | |
Y. KATZ, A. BUSSIBA |
Fatigue Crack Initiation and Crack Growth in Alpha-Iron Polycrystals | |
J. POLÀK, M. KLESNIL |
Quantitative Fractography of Fatigue-Tested Inconel IN 713 LC and Nimonic 86 | |
U.W. HILDEBRANDT |
Fatigue Life Prediction based on Microcrack Growth | |
G. EBI, H. RIEDEL, P. NEUMANN |
Effect of Prior Cold Work on Low Cycle Fatigue Behaviour of AISI Type 304 Stainless Steel | |
K.B.S. RAO, M. VALSAN, R. SANDHYA, S.L. MANNAN, P. RODRIGUEZ |
Nucleation of Fatigue Cracks by Inclusions | |
T. JUTLA, C.E. NICHOLSON, G. JOLLEY |
Residual Life-Time Prediction in Aluminium Alloys | |
J. NEMEC, V. SEDLÁCEK |
Fatigue Oxidation Interation in a Cr-Mo Steel | |
Z. AZARI, P. BECKER, M. LEBIENVENU, G. PLUVINAGE |
Fatigue crack growth in Nb-H alloys | |
C.C. LIN, N. POLVANICH, K. SALAMA |
Influence of Hydrogen Presence on Fatigue Behaviour of a Vessel Steel | |
F. GUTIÉRREZ-SOLANA, L. CABOLLERO, M. ELICES, A. VALIENTE |
Environmental Effects on Cyclic Crack Extension | |
Y. KATZ, A. BUSSIBA |
Cleavage and Ductile Fracture Mechanisms Fracture Energy Analysis via Acoustic emission | |
L.I. MASLOV, V.V. SUKHAREVSKY |
The Influence of Loading Rate on the Ductile-Brittle Transition and Cleavage Fracture Stress of 2.25 Cr-1Mo Steel | |
M. HOLZMANN, B. VLACH, J. MAN |
Cleavage Fracture in a Eutectoid and Hypoeutectoid Steel | |
F. P. L. KAVISHE, T.J. BAKER |
Effects of Crack Length and Pre-Strain on Ductile Fracture | |
H.E. THOMPSON, J.F. KNOTT |
Micromechanisms of Brittle Fracture in 2 1/4 Cr-1 Mo Weld Metal | |
P. BOWEN, M.B.D. ELLIS, M. STRANGWOOD, J.F. KNOTT |
Brittle Fracture Nucleation in SA 533B-1 Steel | |
A. MARTIN MEIZOSO, J.M. RODRIGUEZ IBABE, J.L. VIVIENTE SOLÉ, J.GIL SEVILLANO |
Modelling of Cleavage Fracture in Microalloyed Steels with Mixed Ferrite-Bainitic Structure | |
B. STRNADEL, E. MAZANCOVÁ, K. MAZANEC |
The Effect of Non-Metallic Inclusions on Cleavage Fracture | |
T.J. BAKER, F.P.L. KAVISHE |
Effects of Through Thickness Inclusion Distributions on Short Transverse Properties | |
G. GREEN |
The Effect of Non-Metallic Inclusions on the Hot Ductility of Continuously Cast Low-Alloy Steel | |
C.I. GARCIA, S. PYTEL, A.J. DEARDO |
Mechanism of Ductile Fracture of the Low Carbon Cast Steel | |
M. BIEL |
A Study of the Ductile Tearing Mechanism during Single Overloads | |
N. RANGANATHAN, R. TINTILLER, B. BOUCHET, J. PETIT |
Sustained Load Crack Growth in an Aluminium-Silicon Bronze Alloy | |
R.D. SCHEFFEL, M.A. PHOPLONKER, J. BYRNE, R.L. JONES, P. BARNES |
Effect of Thermomechanical Processing on the Fracture Toughness and Ductility of the Beta-Ti-Alloy Ti-10V-2Fe-3Al | |
G. TERLINDE, H.J. RATHJEN, K.H. SCHWALBE, G.W. KUHLMAN |
Relationship between Microstructure, Tensile Ductility and Fracture Toughness of Ti and Al-Alloys | |
C. MULLER, A. GYSLER, G. LUTJERING |
Interactions between Brittle Fracture and Twinning in Tungsten subjected to Compression Tests at 77 K | |
TRAN —HUU-LOI, J.P. MORNIROLI, M. GANTOIS |
Impurity Effects on Sustained Load Cracking of 2.25 Cr-1 Mo Steel at High Temperature | |
J.J. LEWANDOWSKI, M.B.D. ELLIS, J.F. KNOTT |
The Effect of Temperature, Strain Rate and Environment on the Ductility of 304 Stainless Steel | |
P. TREVENA, N.S. STOLOFF, M.G. NICHOLAS |
Effects of Dynamic Segregation and Environment on Crack Growth at Elevated Temperature | |
P. BOWEN, C.A. HIPPSLEY, J.F. KNOTT |
Fracture of Ferritic Ductile Iron at Elevated Temperatures | |
L. WOJNAR, W. DZIADUR |
The Influence of Strength and Grain Size on the Microstructural Control on Stress Corrosion Cracking of High Strength Steels | |
F. GUTIÉRREZ-SOLANA, J. GONZÁLEZ, S. BARROSO, J.M. VARONA |
Failure Analysis of Reheater Tubes involving Creep and Sulfidisation | |
F. VODOPIVEC, B. RALIC, J. ZVOKELJ, B. DOBOVlSEK |
Influence of a 3.5% NaCl Solution on the Fracture Mechanisms of Al-Zn-Mg Alloys in Fatigue and Tension | |
T. MAGNIN, P. RIEUX, C. DUBESSV, J. LE COZE |
Hydrogen Effects on Cleavage Fracture in Fully Pearlitic Eutectoid Steel | |
J.J. LEWANDOWSKI, A.W. THOMPSON |
Hydrogen Permeation in HSLA Steels in Relation to its Stress Corrosion Cracking Behaviour | |
F. GUTIÉRREZ-SOLANA, I.M. BERNSTEIN |
The Effect of Hydrogen on the Ductility of Aluminium-Tin Alloys | |
J.W. MARTIN, A.K. BUSBY |
Fracture Aspects of Concrete | |
A. HILLERBORG |
The Double-Torsion Testing of Polymers: A Cinematographic Investigation of Crack Growth | |
R. FRASSINE, T. RICCO, M. RINK, A. PAVAN |
Prediction of the Influence of Temperature on Fatigue of Polymers | |
J.A.M. REMMERSWAAL |
A Fracture Mechanics Approach for Failure Prediction of a Restored Tooth | |
R. DE GROOT, H.C. VAN ELST, M. C. R. B. PETERS, Y.M. DE HAAN |
Fracture Strength of an Adhesive Joint | |
P. CZARNOCKI, K. PIEKARSKI |
Effect of Static and Fatigue Pre-loading on Residual Strength and Stiffness of Plain Concrete | |
H. A. W. CORNELISSEN, H.W. REINHARDT |
Appropriate Fracture Mechanics Specimens for Testing Rocks | |
E. CZOBOLY, M. GALOS, I. HAVOS, F. THAMM |
Fracture Mechanics of Glass Reinforced Plastics under Corrosive Environment | |
L. GOLASKI, A. FIGIEL |
Numerical Methods for the Description of "Ceramic Steels" (ZrO2 containing Ceramics) | |
W. H. MULLER |
Microstructural Short Cracks in Fatigue | |
K.J. MILLER |
Crack Paths and Crack Branching Effect of Crack Tip Plastic Zone on Kinked or Branched Crack Growth | |
H. HORII, S. NEMAT NASSER |
Physical and mathematical modelling of crack tip blunting in C-Mn Ferritic-Pearlitic Steels | |
R. ROBERTI, D. FIRRAO |
Fracture Characterization of Composites in Mixed Mode Loading | |
C. A. C. C. REBELO, A. T. MARQUES, P. M. S. T. DE CASTRO |
Numerical Simulation of Dynamic Crack Propagation and Crack Arrest Phenomena by means of Finite Element Methods | |
F. J. H. PEETERS, R. W. J. KOERS |
Numerical Treatment of Fracture Mechanics Problems | |
V.Z. PARTON, V.G. BORISKOVSKY |