E-Book, Englisch, 1416 Seiten
Gdoutos Fracture of Nano and Engineering Materials and Structures
1. Auflage 2008
ISBN: 978-1-4020-4972-9
Verlag: Springer-Verlag
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
Proceedings of the 16th European Conference of Fracture, Alexandroupolis, Greece, July 3-7, 2006
E-Book, Englisch, 1416 Seiten
ISBN: 978-1-4020-4972-9
Verlag: Springer-Verlag
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
The 16th European Conference of Fracture (ECF16) was held in Greece, July, 2006. It focused on all aspects of structural integrity with the objective of improving the safety and performance of engineering structures, components, systems and their associated materials. Emphasis was given to the failure of nanostructured materials and nanostructures including micro- and nano-electromechanical systems (MEMS and NEMS).
Autoren/Hrsg.
Weitere Infos & Material
1;Contents;5
2;Editor’s Preface;43
3;ORGANIZING COMMITTEES;45
4;ECF16 TRACKS;47
5;ECF16 SPECIAL SYMPOSIA/SESSIONS;48
6;A. INVITED PAPERS;50
6.1;DEFORMATION AND FRACTURE AT THE MICRON AND NANO SCALES;51
6.2;STATISTICAL MECHANICS OF SAFETY FACTORS AND SIZE EFFECT IN QUASIBRITTLE FRACTURE;53
6.3;“NANORELIABILITY” – FRACTURE MECHANICS ON THE WAY FROM MICRO TO NANO;55
6.4;FRACTURE MECHANICS AND COMPLEXITY SCIENCES;57
6.5;FAILURE OF COMPOSITE MATERIALS;58
6.6;INTERACTIONS OF CONSTRAINED FLOW AND SIZE SCALE ON MECHANICAL BEHAVIOR;60
6.7;SPACE SHUTTLE COLUMBIA POST-ACCIDENT ANALYSIS AND INVESTIGATION;62
6.8;THE ROLE OF ADHESION AND FRACTURE ON THE PERFORMANCE OF NANOSTRUCTURED FILMS;64
6.9;ASSESSMENT OF WELDMENT SPECIMENS CONTAINING RESIDUAL STRESS;66
6.10;MEMS: RECENT ADVANCES AND CURRENT CHALLENGES;68
6.11;FRACTURE, AGING AND DISEASE IN BONE AND TEETH;70
6.12;LABORATORY EARTHQUAKES;72
6.13;A HISTORICAL RETROSPECTIVE OF THE BEGINNINGS OF BRITTLE FRACTURE MECHANICS - THE PERIOD 1907-1947;74
6.14;DYNAMIC CRACK PROPAGATION IN PARTICLE REINFORCED NANOCOMPOSITES AND GRADED MATERIALS;76
6.15;SPATIAL AND TEMPORAL SCALING AFFECTED BY SYSTEM INHOMOGENEITY: ATOMIC, MICROSCOPIC AND MACROSCOPIC.;78
7;B. TRACKS;80
7.1;B1. Nanomaterials and Nanostructures;80
7.1.1;CHANNELING EFFECT IN FRACTURE OF MATERIALS WITH NANOSTRUCTURED SURFACE LAYERS;81
7.1.2;ATOMISTICS AND CONFIGURATIONAL FORCES IN GRADIENT ELASTICITY;83
7.1.3;TENSILE BEHAVIOR AND FRACTURE OF CARBON NANOTUBES CONTAINING STONE-WALES DEFECTS;85
7.1.4;ATOMIC-SCALE INVESTIGATION ON FRACTURE TOUGHNESS IN NANOCOMPOSITE SILICON CARBIDE;87
7.1.5;MULTISCALE MODELING AND COMPUTER SIMULATION OF STRESSDEFORMATION RELATIONSHIPS IN NANOPARTICLE-REINFORCED COMPOSITE MATERIALS;89
7.1.6;THE MECHANICAL PARAMETERS OF NANOOBJECTS (THEORY AND EXPERIMENT);91
7.1.7;ADVANCED MANUFACTURING DESIGN CONCEPTS AND MODELLING TOOLS OF THE NEXT GENERATION NANOPARTICLE-REINFORCED DAMPING MATERIALS;93
7.1.8;FRACTURE OF NANOSTRUCTURED IONOMER MEMBRANES;95
7.1.9;DEFORMATION AND LIMIT STATES OF CARBON NANOTUBES UNDER COMPLEX LOADING;97
7.1.10;INTERACTION OF DOMAIN WALLS WITH DEFECTS IN FERROELECTRIC MATERIALS;99
7.1.11;MICROSTRUCTURE AND INTERNAL STRESSES IN CYCLICALLY DEFORMED AL AND CU SINGLE CRYSTALS;101
7.1.12;DETERMINATION OF EQUILIBRIUM CONFIGURATIONS OF ATOMIC LATTICES AT QUASISTATIC DEFORMATION;103
7.1.13;MULTISCALE MECHANICS OF CARBON NANOTUBES AND THEIR COMPOSITES;105
7.1.14;IN-SITU SCANNING ELECTRON MICROSCOPE INDENTATION OF GALLIUM ARSENIDE;107
7.1.15;FRACTURE OF NANOSTRUCTURED LITHIUM BATTERIES;109
7.1.16;ANALYTICAL AND EXPERIMENTAL CHARACTERIZATION OF A MICROMIRROR SYSTEM;111
7.1.17;A METAL INTERPOSER FOR ISOLATING MEMS DEVICES FROM PACKAGE STRESSES;113
7.1.18;COMPUTATIONAL MODELING OF NANOPARTICLES IN BIOMICROFLUIDIC DEVICES;115
7.1.19;CHARACTERIZATION OF A MEMS PRESSURE SENSOR BY A HYBRID METHODOLOGY;117
7.1.20;NEW APPROACH TO SYNTHESIS OF LASER MICROWELDING PROCESSES FOR PACKAGING;119
7.1.21;THERMAL MANAGEMENT OF RF MEMS RELAY SWITCH;121
7.1.22;BUCKLING AND DELAMINATION OF THIN LAYERS ON A POLYMER SUBSTRATE;123
7.1.23;CARBIDE COATED CUTTING TOOL PROPERTIES INVESTIGATION BY NANO-MECHANICAL MEASUREMENTS UNDER 250-500°C.;125
7.1.24;DIAMOND COATING DEBOUNDING IN TOOL APPLICATION;127
7.1.25;INTERFACIAL STRENGTH OF CERAMIC THIN FILM ON POLYMER SUBSTRATE;129
7.1.26;DELAMINATE BEHAVIOR OF PVD/CPVD THIN FILM;131
7.1.27;EXPERIMENTAL STUDY OF MICROHARDNESS AND FRACTURE OF IMPLANTED GÁLLIUM NITRIDE FILMS;133
7.1.28;CRACK TIP STRAIN FIELD AND ITS PROPAGATION CHARACTERISTICS IN A POLYMER FOAM;135
7.1.29;HOW TO TOUGHEN CERAMICS – NANOCOMPOSITES;137
7.1.30;DEFORMATION AND FRACTURE BEHAVIOUR OF NANOCOMPOSITES;139
7.1.31;FRACTURE MECHANISMS IN CARBON NANOTUBE-REINFORCED COMPOSITES;141
7.2;B2. Engineering Materials and Structures;143
7.2.1;FRACTAL APPROACH TO CRACK PROBLEMS WITH NON-ROOT SINGULARITY;144
7.2.2;NEW METHOD FOR ANALYSING THE MAGNETIC EMISSION SIGNALS DURING FRACTURE;146
7.2.3;ELECTROMAGNETIC RADIATION METHOD FOR IDENTIFICATION OF MULTI-SCALE FRACTURE;148
7.2.4;MICROMECHANICAL MODELING OF GRAIN BOUNDARY RESISTANCE TO CLEAVAGE FRACTURE PROPAGATION;150
7.2.5;MICROSTRUCTURE OF REACTOR PRESSURE VESSEL STEEL CLOSE TO THE FRACTURE SURFACE;152
7.2.6;BRITTLE FRACTURE IN HEAT-AFFECTED ZONES OF GIRTH WELDS OF MODERN LINE PIPE STEEL (X100);154
7.2.7;CLEAVAGE FRACTURE OF STEELS AT VERY LOW TEMPERATURES;156
7.2.8;NEW FORMULATION OF THE RITCHIE, KNOT AND RICE HYPOTHESIS;158
7.2.9;THE EFFECT OF THE RATE OF DISPLACEMENT ON CRACK PATH STABILITY;160
7.2.10;SCRATCHING AND BRITTLE FRACTURE OF SEMICONDUCTOR IN-SITU SCANNING ELECTRON MICROSCOPE;162
7.2.11;CRACKS IN THIN SHEETS: WHEN GEOMETRY RULES THE FRACTURE PATH;164
7.2.12;CLEAVAGE MECHANISMS IN A SHIP PLATE STEEL;166
7.2.13;FAILURE BEHAVIOR OF HYBRID-LASER WELDS;168
7.2.14;FRACTURE OF PLASTIC BODIES. DEFORMATIONS CONCENTRATORS;170
7.2.15;3D DUCTILE TEARING ANALYSES OF BI-AXIALLY LOADED PIPES WITH SURFACE CRACKS;171
7.2.16;NEW MODEL MATERIALS FOR DUCTILE FRACTURE STUDIES;173
7.2.17;FATIGUE THRESHOLD COMPUTATION MODEL BASED ON THE SHAKEDOWN ANALYSIS;175
7.2.18;VOID COALESCENCE IN METALS INVOLVING TWO POPULATIONS OF CAVITIES;177
7.2.19;EFFECTS OF CHARACTERISTIC MATERIAL LENGTHS ON DUCTILE CRACK PROPAGATION;179
7.2.20;DUCTILE FRACTURE BY VOID NUCLEATION AT CARBIDES;181
7.2.21;THE SIGNIFICANCE OF MAXIMUM LOAD ON A LOAD-DISPLACEMENT CURVE WITH STABLE CRACK EXTENSION;183
7.2.22;3D VISUALIZATION OF DUCTILE FRACTURE USING SYNCHROTRON XRAY COMPUTER TOMOGRAPHY;185
7.2.23;NON-LOCAL PLASTIC-DAMAGE MODEL FOR FAILURE ANALYSIS OF SHEET-METALS;187
7.2.24;A NOVEL TECHNIQUE FOR EXTRACTING STRETCH ZONE FEATURES FROM FRACTOGRAPHS;189
7.2.25;SIMULATION OF FATIGUE CRACK GROWTH BY CRACK TIP BLUNTING;191
7.2.26;LOADING RATE EFFECT ON DUCTILE FRACTURE;193
7.2.27;EXPERIMENTAL INVESTIGATION OF SLANT CRACK PROPAGATION IN X100 PIPELINE STEEL;195
7.2.28;ESIS TC8 – NUMERICAL ROUND ROBIN ON MICRO MECHANICAL MODELS : RESULTS OF PHASE III FOR THE SIMULATION OF THE BRITTLE TO DUCTILE TRANSITION CURVE;197
7.2.29;CLOSURE OF A RECTANGULAR SKIN DEFECT VIA THE ADVANCEMENT FLAP;199
7.2.30;SIMILARITY SOLUTIONS OF CREEP – DAMAGE COUPLED PROBLEMS IN FRACTURE MECHANICS;201
7.2.31;IMPACT FRACTURE TOUGHNESS DETERMINATION OF DUCTILE POLYMERS BY SPB METHOD ;203
7.2.32;A MICRO-TOUGHNESS MODEL FOR DUCTILE FRACTURE;205
7.2.33;CRACK COALESCENCE MODELLING OF FSW JOINTS;207
7.2.34;FATIGUE CRACK INITIATION IN A TWO PHASE -METASTABLE TITANIUM ALLOY: INFLUENCE OF MICROSTRUCTURAL PARAMETERS;209
7.2.35;EFFECTS OF SPECIMEN TYPE, SIZE AND MEASUREMENT TECHNIQUES ON FCGR;211
7.2.36;THE EFFECT OF STRESS RATIO ON FATIGUE SHORT CRACKING;213
7.2.37;DWELL-FATIGUE BEHAVIOUR OF A BETA-FORGED TI 6242 ALLOY;215
7.2.38;INVESTIGATION INTO FATIGUE LIFEOF WELDED CHEMICAL PIPELINES;217
7.2.39;DIFFERENT ANALYTICAL PRESENTATIONS OF SHORT CRACK GROWTH UNDER ROTATION-BENDING FATIGUE;219
7.2.40;VARIABLE AMPLITUDE LOAD INTERACTION IN FATIGUE CRACK GROWTH FOR 2024-T3 ALUMINIUM ALLOY;221
7.2.41;AN INVESTIGATION ON THE FATIGUE PERFORMANCE OF HYDRAULIC GATE WHEELS;223
7.2.42;A MICROMECHANICAL MODEL FOR CRACK INITIATION IN HIGH CYCLE FATIGUE OF METALLIC MATERIALS;225
7.2.43;COMPARATIVE ANALYSIS OF TWO MODELS FOR EVALUATING FATIGUE DATA;227
7.2.44;ASSESSMENT OF DAMAGE AT NOTCH ROOT OF THICK PLATES;229
7.2.45;FATIGUE STRENGTH PREDICTION OF SPOT-WELDED JOINTS USING SMALL SPECIMEN TESTING;231
7.2.46;A THERMO-MECHANICAL MODEL FOR RANDOM BRAKING OF MACHINE COMPONENTS;232
7.2.47;LIFETIME CALCULATION OF RAILWAY WHEEL STEELS BASED ON PHYSICAL DATA;234
7.2.48;FATIGUE CRACK PROPAGATION OF SUPER-DUPLEX STAINLESS STEEL AT DIFFERENT TEMPERATURES;236
7.2.49;TRANSITIONS OF FATIGUE CRACK INITIATION FROM SURFACE, SUBSURFACE TO SNDFCO;238
7.2.50;SURFACE FATIGUE OF GEAR TEETH FLANKS;240
7.2.51;FATIGUE AND FRACTURE PROCESSES IN HIGH PERFORMANCE PM TOOL STEELS;242
7.2.52;NOTCH AND DEFECT SENSITIVITY OF ADI IN TORSIONAL FATIGUE;243
7.2.53;MULTI AXIAL FATIGUE IN WELDED COMPONENTS;245
7.2.54;ENHANCED FATIGUE LIFE BY MECHANICAL SURFACE TREATMENTS – EXPERIMENT AND SIMULATION;247
7.2.55;ANALYSIS OF REPAIRED ALUMINUM PANELS IN GENERAL MIXED-MODE CONDITIONS;249
7.2.56;EFFECT OF STRAIN RATE ON FATIGUE BEHAVIOR OF ULTRAFINE GRAINED COPPER;251
7.2.57;LUBRICANT EFFECTS ON PROPAGATION OF SURFACE-BREAKING CRACKS UNDER ROLLING CONTACT LOADING;253
7.2.58;COMPUTATIONAL MODELLING OF CRACK INITIATION IN A MIXING TEE SUBJECTED TO THERMAL FATIGUE LOAD;255
7.2.59;ESTIMATION OF CRITICAL STRESS INTENSITY FACTOR IN STEEL CRACKED WIRES;257
7.2.60;LOW-CYCLE FATIGUE OF DIN 1.2367 STEELS IN VARIOUS TREATMENTS;259
7.2.61;IMPACT TESTING A CAPABLE METHOD TO INVESTIGATE THE FATIGUE RESISTANCE;261
7.2.62;COMPARATIVE ASSESSMENT OF FATIGUE-THRESHOLDS ESTIMATED BY SHORT AND LONG CRACKS;263
7.2.63;SCANNING ELECTRON MICROSCOPE MEASUREMENTS OF CRACKOPENING STRESS ON FATIGUE CRACKS EXPOSED TO OVERLOADS;265
7.2.64;PROPAGATION PATH AND FATIGUE LIFE PREDICTIONS OF BRANCHED CRACKS UNDER PLANE STRAIN CONDITIONS;267
7.2.65;SHORT CRACK EQUATIONS TO PREDICT STRESS GRADIENT EFFECTS IN FATIGUE;269
7.2.66;FATIGUE BEHAVIOUR OF PRE-STRAINED TYPE 316 STAINLESS STEEL;271
7.2.67;THE INFLUENCE OF CONSTRAINT ON FITTING FATIGUE CRACK GROWTH DATA;273
7.2.68;ATOMIC FORCE MICROSCOPY OF LOCAL PLASTIC DEFORMATION FOR TEMPERED MARTENSITE;275
7.2.69;IMPROVEMENT OF FATIGUE STRENGTH DUE TO GRAIN REFINEMENT IN MAGNESIUM ALLOYS;277
7.2.70;A UNIFIED FATIGUE AND FRACTURE MODEL APPLIED TO STEEL WIRE ROPES;279
7.2.71;CORRELATION BETWEEN PARIS’ LAW PARAMETERS BASED ON SELFSIMILARITY AND CRITICALITY CONDITION;281
7.2.72;THERMO-MECHANICAL FATIGUE LIFETIME ASSESSMENT WITH DAMAGE-PARAMETERS, ENERGY-CRITERIONS AND CYCLIC-JINTEGRAL CONCEPTS;283
7.2.73;PREDICTING FATIGUE CRACK RETARDATION FOLLOWING OVERLOAD CYCLES;285
7.2.74;FATIGUE CRACK GROWTH AT NOTCHES CONSIDERING PLASTICITY INDUCED CLOSURE;287
7.2.75;INFLUENCE OF MICROSTRUCTURE ON FATIGUE PROPERTIES OF NIBASE SUPERALLOY AT ELEVATED TEMPERATURE;289
7.2.76;MODDELLING FATIGUE CRACK CLOSURE USING DISLOCATION DIPOLES;291
7.2.77;COMPARISON BETWEEN FATIGUE CRACK GROWTH MODELLED BY CONTINOUS DISLOCATION DISTRIBUTIONS AND DISCRETE DISLOCATIONS;293
7.2.78;FATIGUE EVALUATION CONSIDERING THE ENVIRONMENTAL INFLUENCE USING A MONITORING SYSTEM;295
7.2.79;THERMAL FATIGUE CRACK INITIATION AND PROPAGATION BEHAVIOR OF STEELS FOR BOILER;297
7.2.80;RECENT DEVELOPMENTS IN FATIGUE CRACK GROWTH;299
7.2.81;CRACK CLOSURE EFFECTS IN A CRACKED CYLINDER UNDER PRESSURE;301
7.2.82;AN EXPERIMENTAL STUDY OF TEARING-FATIGUE INTERACTION;303
7.2.83;SIF SOLUTIONS FOR CRACKS IN RAILWAY AXLES UNDER ROTATING BENDING;305
7.2.84;MECHANICAL CHARACTERIZATION OF SINGLE CRYSTAL BARS WITH CAPACITOR DISCHARGE WELDING AND LASER CLADDING;307
7.2.85;FRACTAL DIMENSION ANALYSIS OF FRACTURE TOUGHNESS USED HIGH STRENGTH CAST IRON;309
7.2.86;INVESTIGATING GAP EFFECTS IN FATIGUE LIFE OF SPOT WELDED JOINTS;311
7.2.87;FATIGUE OF PMMA BONE CEMENT;313
7.2.88;INFLUENCE ON THERMAL BARRIER COATING DELAMINATION BEHAVIOUR OF EDGE GEOMETRY H.;315
7.2.89;LOW CYCLE FATIGUE AND FRACTURE OF A COATED SUPERALLOY CMSX-4;317
7.2.90;THERMOMECHANICAL FATIGUE OF OPEN-CELL ALUMINIUM SPONGE;319
7.2.91;THE INFLUENCE OF ALTERNATE BLOCK LOADING ON THE FATIGUE LIFETIME;321
7.2.92;FATIGUE DESIGN AND INSPECTION PLANNING OF WELDED JOINTS BASED ON REFINED PHYSICAL MODELLING;323
7.2.93;A MIXED MODE FATIGUE CRACK GROWTH MODEL INCLUDING THE RESIDUAL STRESS EFFECT DUE TO WELD;325
7.2.94;EFFECTS OF SHOT PEENING ON FATIGUE PROPERTY IN SICP/AL-MMC;327
7.2.95;FATIGUE BEHAVIOUR OF FRICTION STIR WELDED 6061-T6 ALUMINIUM ALLOY;329
7.2.96;TRANSFORMATION OF A NONPROPORTIONAL MULTIAXIAL LOADING TO AN EQUIVALENT PROPORTIONAL MULTIAXIAL LOADING;331
7.2.97;ACOUSTIC EMISSION MONITORING OF DELAMINATION GROWTH IN FIBER-REINFORCED POLYMER-MATRIX COMPOSITES;333
7.2.98;FRACTURE MECHANICS VERSUS STRENGTH CONCEPTS FOR EVALUATION OF ADHESION QUALITY;335
7.2.99;ALTERNATIVE APPROACHES FOR THE EVALUATION OF THE SLOW CRACK GROWTH RESISTANCE OF POLYETHYLENE RESINS USED IN THE PRODUCTION OF EXTRUDED WATER PIPES;337
7.2.100;A STEREOSCOPIC METHOD FOR FRACTOGRAPHIC INVESTIGATIONS OF ORDINARY CERAMICS;339
7.2.101;MODELINGS OF FIBER DEFORMATION DURING MACHINING ARAMID-FRP;341
7.2.102;QUALITY CONTROL AND THE STRENGTH OF GLASS;343
7.2.103;EXPERIMENTAL STUDY OF CRACKED LAMINATE PLATES BY CAUSTICS;345
7.2.104;FRACTURE OF COMPOSITES IN MILITARY AIRCRAFT;347
7.2.105;ANALYSIS OF 7005/AL2O3/10P MMC SHEETS JOINED BY FSW BY THERMOELASTICITY;349
7.2.106;SURFACE MODIFICATION OF LIGHTWEIGHT AGGREGATE AND PROPERTIES OF THE LIGHTWEIGHT AGGREGATE CONCRETE;350
7.2.107;FINITE ELEMENT BASED PREDICTION OF FAILURE IN LAMINATED COMPOSITE PLATES;352
7.2.108;AN EMBEDDED CYLINDRICAL PZT WITH ELECTRODED IMPERFECT INTERFACE;354
7.2.109;CHARACTERIZATION OF COMPOSITES FOR THE MAESLANT STORM SURGE BARRIER;356
7.2.110;WEIGHT FUNCTION, J-INTEGRAL AND MATERIAL FORCES APPROACH TO CERAMIC MULTILAYERS;358
7.2.111;ASSESSMENT OF MATRIX FATIGUE DAMAGE IN CFRP;360
7.2.112;PROGRESSIVE FAILURE OF COMPOSITE MATERIALS UNDER DYNAMIC LOADING;362
7.2.113;AGING AIRCRAFT TRANSPARENCIES: A CASE HISTORY FROM ITALIAN AIR FORCE FLEET;364
7.2.114;FATIGUE CRACK GROWTH IN QUENCHED AMORPHOUS POLYMERS PC AND PET;366
7.2.115;THERMO-MECHANICAL STATE OF BIMATERIAL WITH AN INTERFACE CRACK;368
7.2.116;THERMO-MECHANICAL STATE OF BIMATERIAL WITH AN INTERFACE CRACK;370
7.2.117;INDENTATION RESPONSE OF FIBRE REINFORCED COMPOSITE LAMINATES;372
7.2.118;ANALYSIS OF TUBULAR COMPOSITE CYLINDRICAL SHELLS;374
7.2.119;ANALYSIS OF COMPOSITE PRESSURE VESSELS;376
7.2.120;GRADIENTS INFLUENCE ON DAMAGE AND CRACKING IN CRYSTALLINE POLYMERS;378
7.2.121;AN ELASTO-PLASTIC SHEAR-LAG MODEL FOR SINGLE FIBER COMPOSITE;380
7.2.122;PROGRESSIVE FAILURE OF COMPOSITE LAMINATES; ANALYSIS VS EXPERIMENTS;382
7.2.123;A TEMPERATURE DEPENDENT VISCOELASTIC-DAMAGE MODEL FOR CERAMICS FAILURE;384
7.2.124;AVALANCHE MECHANICS: LEFM VS. GRADIENT MODEL;386
7.2.125;INFLUENCE OF AUSTEMPERING ON FRACTURE MECHANICS PARAMETERS OF 65 SI 7 STEEL;388
7.2.126;MODELLING THE EVOLUTION OF ELASTIC SYMMETRIES OF GROWING MIXED-MODE CRACKS;390
7.2.127;EFFECT OF AGING ON THE MICROSTRUCTURE AND FRACTURE OF ALUMINUM-LITHIUM;392
7.2.128;BUCKLING OF MULTICRACKED COLUMNS;394
7.2.129;EXPERIMENTAL AND NUMERICAL ANALYSIS OF INTERACTIONS BETWEEN STRESS CORROSION CRACKS;396
7.2.130;AN IMPROVED UPPER BOUND LIMIT LOAD SOLUTION FOR WELD STRENGTH ANISOTROPIC OVERMATCHED CRACKED PLATES IN PURE BENDING;398
7.2.131;FRACTURE PARAMETER ESTIMATION OF ALLOY STEEL REINFORCED WITH MARAGING STEEL;400
7.2.132;INCORPORATION OF LENGTH SCALES IN PLANE STRESS FRACTURE ANALYSIS;402
7.2.133;MODE III CRACK IN A FUNCTIONALLY GRADED PIEZOELECTRIC/ PIEZOMAGNETIC HALF PLANE;404
7.2.134;ELECTRO-MECHANICAL FIELD OF A PIEZOELECTRIC FINITE WEDGE UNDER ANTIPLANE LOADING;406
7.2.135;SENSITIVITY OF CRACK NUCLEATION PARAMETERS TO THE GEOMETRIC IMPERFECTION;408
7.2.136;AN EXPERIMENTAL EVALUATION OF A LOCAL APPROACH MODEL FOR GRADED MATERIALS;410
7.2.137;A STOCHASTIC MODEL FOR CRACK GROWTH;412
7.2.138;STOCHASTIC EVALUATION OF FATIGUE CRACK INITIATION AND PROPAGATION;414
7.2.139;A WEIBULL-BASED METHOD TO PREDICT THE STRENGTH OF ADHESIVELY BONDED JOINTS OF PULTRUDED FRPS;416
7.2.140;THE LATERAL CONSTRAINT INDEX AS A NEW FACTOR TO ASSESS THE INFLUENCE OF THE SPECIMEN THICKNESS;418
7.2.141;ANALYSIS OF CRACK PROPAGATION IN ALUMINA-GLASS FUNCTIONALLY GRADED MATERIALS;420
7.2.142;NUMERICAL SOLUTION OF INTEGRO-DIFFERENTIAL EQUATIONS FOR FRACTURE MECHANICS PROBLEMS;422
7.2.143;ANALYTICAL METHOD OF GENERATING DA/DN CURVE FOR AEROSPACE ALLOYS;424
7.2.144;THERMO-ELASTIC FRACTURE OF EDGE CRACKED PLATE UNDER SURFACE ‘SHOCK’ LOADING;426
7.2.145;FAILURE PREDICTION OF IC INTERCONNECT STRUCTURES USING COHESIVE ZONE MODELLING;428
7.2.146;NON-LOCAL DAMAGE SIMULATION IN COMPOSITES USING CRACK PROPAGATION AND MESH ADAPTIVITY;430
7.2.147;ELASTIC WAVE MOTION IN A CRACKED, MULTI-LAYERED GEOLOGICAL REGION UNDER TRANSIENT CONDITIONS;432
7.2.148;WOOD BEAM STRENGTHENED WITH GLASS/EPOXY COMPOSITE SHEETS;434
7.2.149;COMPUTATION OF DYNAMIC STRESS INTENSITY FACTORS USING ENRICHED FINITE ELEMENTS;436
7.2.150;PARTLY CRACKED XFEM INTERFACE FOR INTERSECTING CRACKS;438
7.2.151;ON THE EVALUATION OF ELASTIC COMPLIANCE TENSOR DUE TO GROWING MIXED-MODE MICROCRACKS;440
7.2.152;ON THE PROBLEM OF DETERMINATION OF SAFETY FACTORS FOR MACHINE-BUILDING PARTS USING THE FINITE ELEMENT COMPUTATIONS;442
7.2.153;DYNAMIC EXPLICIT CELL MODEL SIMULATIONS IN POROUS DUCTILE METALS;444
7.2.154;NUMERICAL EVALUATION OF ENERGY RELEASE RATES FOR BIMATERIALS INTERFACE CRACKS;446
7.2.155;INCLUSION EFFECT ON THE PLASTIC ZONE SIZE IN CONFINED PLASTICITY;448
7.2.156;MODIFIED KEY-CURVE-METHOD FOR DETERMINATION OF DYNAMIC CRACK RESISTANCE CURVES;450
7.2.157;A COUPLED COMPUTATIONAL FRAMEWORK FOR DUCTILE DAMAGE AND FRACTURE;452
7.2.158;MARBLE DISCS UNDER DISTRIBUTED LOADING: THEORETICAL, NUMERICAL AND EXPERIMENTAL STUDY;454
7.2.159;SIMULATION OF THE MECHANICAL BEHAVIOUR OF THE LUMBAR INTERVERTEBRAL DISC;456
7.2.160;THE PULL-OUT STRENGTH OF TRANSPEDICULAR SCREWS IN POSTERIOR SPINAL FUSION;458
7.2.161;MECHANICAL BEHAVIOR SIMULATION OF HIP PROSTHESES STRESS DISTRIBUTIONS ANALYSIS;460
7.2.162;MECHANICAL BEHAVIOR SIMULATION OF HIP PROSTHESES STRESS DISTRIBUTIONS ANALYSIS;460
7.2.163;DBEM ANALYSIS OF AXISYMMETRIC CRACK GROWTH IN A PISTON CROWN;462
7.2.164;RESIDUAL SHEAR STRESSES AND KII COMPUTATION;464
7.2.165;QUANTITATIVE INTERPRETATION OF CRACK TIP STRAIN FIELD MEASUREMENTS;466
7.2.166;MIXED MODE (I+II) STRESS INTENSITY FACTOR MEASUREMENT USING IMAGE CORRELATION;468
7.2.167;FRACTURE OF TURBINE BLADES UNDER SELF-EXCITING MODES;470
7.2.168;PREDICTING CRACK ARREST BEHAVIOUR OF STRUCTURAL STEELS USING NEW PROCEDURES;472
7.2.169;MECHANICAL PROPERTIES OF LARGE PLASTIC-MOLD STEEL BLOOMS.;474
7.2.170;NON-LINEAR PHOTOELASTIC METHOD FOR STUDY FRACTURE PROBLEMS;476
7.2.171;FATIGUE CRACK LENGTH MEASUREMENT METHOD WITH AN ION SPUTTERED FILM;478
7.2.172;INDIVIDUAL FRACTURE EVENTS IN CELLULAR FOODS;480
7.2.173;EXFOLIATION FRACTURE MODE IN HEAVILY DRAWN PEARLITIC STEELS;482
7.2.174;INVESTIGATION OF CRACK CLOSURE BY USING THERMOEASTIC STRESS ANALYSIS;484
7.2.175;FRACTURE TOUGHNESS INVESTIGATIONS OF SEVERE PLASTIC DEFORMED TUNGSTEN ALLOYS;486
7.2.176;PHOTOELASTIC ANALYSIS OF MODE I STRESS INTENSITY FACTOR IN BEAMS WITH ANGULAR NOTCHES;488
7.2.177;FULL-SCALE EXPERIMENTAL INVESTIGATIONS ON PRESSURE TUBES RUPTURE OF RBMK;490
7.2.178;STUDY OF FRACTURE MECHANISM OF COMPOSITE MATERIAL BUILDINGS BY PHOTOELASTICITY AND PHOTOELASITC COATING METHODS;492
7.2.179;FRACTURE ENERGY IN MODE I AND MODE II OF TEXTILE REINFORCED WOOD;494
7.2.180;MEASUREMENT BASED PERFORMANCE PREDICTION OF THE EUROPABRUCKE AGAINST TRAFFIC LOADING;496
7.2.181;THE EFFECT OF THE LABORATORY SPECIMEN ON FATIGUE CRACK GROWTH RATE;498
7.2.182;VALIDITY OF THE CAUSTICS METHOD FOR PLATES WITH CIRCULAR HOLE;500
7.2.183;AN ENHANCED NORMALIZATION METHOD FOR DYNAMIC FRACTURE TOUGHNESS TESTING;502
7.2.184;THE POTENTIAL DROP TECHNIQUE FOR MEASURING CRACK GROWTH IN SHEAR;504
7.2.185;A MODIFIED DCB GEOMETRY FOR CTOA MEASUREMENT IN THIN SHEET 2024-T3 ALUMINIUM ALLOY;506
7.2.186;COULD COD SERVE AS FRACTURE CRITERION IN CASE OF MARBLE?;508
7.2.187;CREEP RUPTURE OF A LEAD-FREE Sn-Ag-Cu SOLDER;510
7.2.188;QUANTITATIVE EVALUATION OF ACCELERATION CREEP IN MAGNESIUM-ALUMINUM ALLOYS AT 0.65TM;512
7.2.189;LONG-TERM CREEP RUPTURE PREDICTION IN UNIDIRECTIONAL COMPOSITES 1;514
7.2.190;CREEP FRACTURE OF BINARY AND TERNARY COMMERCIAL ALUMINUM ALLOYS;518
7.2.191;ANALYSIS OF CREEP CRACK INITIATION AND GROWTH IN LABORATORY SPECIMENS;520
7.2.192;TEMPERATURE GRADIENT EFFECTS ON THE CREEP BEHAVIOUR OF STRUCTURES;522
7.2.193;A SURGICAL IMPLANT CREVICE-ASSISTED CORROSION FATIGUE INBODY FAILURE;524
7.2.194;ASYMPTOTICALLY STABLE GROWTH OF DELAMINATIONS UNDER HYDROGEN EMBRITTLEMENT CONDITIONS;526
7.2.195;CORROSION AND MECHANICAL STRENGTH OF RUSSIAN LIGHT WATER REACTORS;528
7.2.196;CORROSION FATIGUE CHARACTERISTICS OF CF8A STEEL DEGRADED AT HIGH TEMPERATURE;530
7.2.197;MODELING ENVIRONMENT-ASSISTED FATIGUE CRACK PROPAGATION;532
7.2.198;MEASURING THE FRACTURE RESISTANCE OF COMPOSITES AND ADHESIVELY BONDED JOINTS AT HIGH TEST RATES.;534
7.2.199;QUASISTATIC AND DYNAMIC FRACTURE OF PEARLITIC STEEL;536
7.2.200;FRAGMENTATION IN THE EXPANDING RING EXPERIMENT;538
7.2.201;INFLUENCE OF FRICTION ON RESULTS OF AN INSTRUMENTED IMPACT TEST I ;540
7.2.202;INFLUENCE OF MOISTURE CONTENT ON THE DYNAMIC BEHAVIOUR OF CONCRETE;542
7.2.203;STRENGTH AND TOUGHNESS PROPERTIES OF STEELS UNDER DYNAMIC LOADING;544
7.2.204;RUBBER PARTICLE SIZE EFFECT ON IMPACT CHARACTERISTICS OF PC/ABS (50/50) BLENDS;546
7.2.205;EFFECT OF STRAIN RATE ON MECHANICAL PROPERTIES OF REINFORCED POLYOLEFINS;548
7.2.206;FRACTURE RELATED MECHANICAL PROPERTIES OF AIRCRAFT CAST ALUMINUM ALLOY A357;550
7.2.207;SHEAR FAILURE OF TI-6AL-4V BY DIRECT IMPACT AND ANALYSE OF THE PROCESS OF ELASTIC AND PLASTIC WAVE PROPAGATION;552
7.2.208;EVALUATING OF FRACTURE MECHANICS PROPERTIES AT INTERMEDIATE STRAIN RATES, TRANSFERABLE TO COMPONENTS;554
7.2.209;CRACK RESISTANCE DETERMINATION FROM THE CHARPY IMPACT TEST;556
7.2.210;A STOCHASTIC INTERFACE MODEL FOR THE FRACTURE OF BARS;558
7.2.211;THE ANTI-PENETRATION PROPERTIES OF SPACE ARMOR;560
7.2.212;KEY CURVE METHODS FOR DYNAMIC FRACTURE MECHANICS OF CAST IRON;562
7.2.213;DYNAMIC TENSILE BEHAVIOR OF ARAMID FRP USING SPLIT HOPKINSON BAR METHOD;564
7.2.214;DETECTION OF LOW-VELOCITY IMPACT DAMAGE IN CARBON-EPOXY PLATES USING NDT;566
7.2.215;DAMAGE ACCUMULATION AT HIGH TEMPERATURE CREEP OF A SINGLE-CRYSTAL SUPERALLOY;568
7.2.216;ASYMPTOTIC HOMOGENISATION FOR HETEROGENEOUS MEDIA WITH EVOLVING MICROCRACKS;570
7.2.217;ON THE ANALYSIS OF DAMAGE LOCALIZATION AS PRECURSOR OF MACRO-CRACKS;572
7.2.218;FATIGUE ASSESSMENT BASED ON STATISTICAL ANALYSIS OF THEORETICAL PARAMETERS;574
7.2.219;DETERMINATION OF DUCTILE DAMAGE PARAMETERS BY LOCAL DEFORMATION FIELDS;576
7.2.220;FRACTURE OF CONCRETE DUE TO CORROSION;578
7.2.221;EXPERIMENTAL STUDY OF SPRAYED CONCRETE STRENGTH USING MARBLE AGGREGATES;580
7.2.222;ANALYSIS OF THE BEHAVIOUR OF INTERFACE CRACKS IN GRAVITY DAM;582
7.2.223;APPLICATION OF COMPOSITE MECHANICS TO COMPOSITES ENHANCED CONCRETE STRUCTURES;584
7.2.224;INITIATION AND COALESCENCE OF LOCALS DAMAGES ON BLANCO DE MACAEL MARBLE;586
7.2.225;INFLUENCE OF CONCRETE´S MINERALOGICAL COMPONENTS ON FRACTURE COMPRESSIVE AND TRACTIVE;588
7.2.226;CONSTITUTIVE MODEL FOR DESCRIPTION OF HIGH-STRAIN RATE BEHAVIOR OF CONCRETE;590
7.2.227;HYDRAYLIC FRACTURING IN WEAK ROCKS;592
7.2.228;APPLICATION OF FRACTURE MECHANICS ON UNREINFORCED CONCRETE WALLS;594
7.2.229;SUBCRITICAL CRACK GROWTH IN ROCKS UNDER WATER ENVIRONMENT;596
7.2.230;STRESS ANALYSIS AND PREDICTION OF FAILURE IN STRUCTURALLY GRADED SANDWICH PANELS;598
7.2.231;DEBONDING AND KINKING IN FOAM-CORE SANDWICH BEAMS;600
7.2.232;MODELING CORE FAILURE BY THE TSAI–WU CRITERION IN THE DESIGN OF FOAM-CORE SANDWICH BEAMS;602
7.2.233;NUMERICAL INVESTIGATION OF CRACK PROPAGATION IN SANDWICH STRUCTURES;604
7.2.234;LOCAL EFFECTS IN SANDWICH BEAMS: MODELLING AND EXPERIMENTAL INVESTIGATION;606
7.2.235;TYPICAL IN-PLANE RESPONSE SURFACES FORPRISMATIC FOAM-CORE SANDWICH BEAMS;608
7.2.236;NON-DESTRUCTIVE EVALUATION OF YIELD STRENGTH USING A NOVEL MINIATURE DUMB-BELL SPECIMEN-AN EMPIRICAL APPROACH;610
7.2.237;3D MEASUREMENT OF THE STRAIN FIELD SURROUNDING CRACK TIP;612
7.2.238;RADIOGRAPHIC OBSERVATION OF DAMAGE ZONE EVOLUTION IN HIGH DUCTILE SPECIMEN;614
7.2.239;CALIBRATION OF FRACTURE PARAMETERS BY INSTRUMENTED INDENTATION AND TEST SIMULATION;616
7.2.240;INTERNAL CRACK DETECTION AND ANALYSIS USING THERMOELASTIC STRESS ANALYSIS;618
7.2.241;ULTRAHIGH-RESOLUTION TRANSVERSAL POLARIZATION-SENSITIVE OPTICAL COHERENCE TOMOGRAPHY: STRUCTURAL ANALYSIS AND STRAIN-MAPPING;620
7.2.242;APPLICATION OF DIGITAL SHEAROGRAPHY IN DETERMINING OPENING MODE SIF IN EDGE CRACKS;622
7.2.243;FINITE ELEMENT MODELING OF PULSE TRANSIENT IR THERMOGRAPHY;624
7.2.244;A NEW TECHNIQUE FOR THE MACHINING OF NATURAL CRACKS;626
7.2.245;DISPLACEMENTS MEASUREMENT IN IRREGULARLY BOUNDED PLATES USING MESH FREE METHODS;628
7.2.246;BIAXIAL STRENGTH TESTING ON MINI SPECIMENS;630
7.2.247;NUMERICAL SIMULATION OF A FRACTURE TEST FOR BRITTLE DISORDERED MATERIALS;632
7.2.248;UNIFICATION OF THE OUT-OF-PLANE CONSTRAINT LOSS IN CENTRECRACKED PANELS;634
7.2.249;HIGH TEMPERATURE FAILURE ASSESSMENT OF WELDMENTS;636
7.2.250;POST-TENSIONED GLASS BEAMS;638
7.2.251;STRUCTURAL INTEGRITY OF A NPP USING THE MASTER CURVE APPROACH;640
7.2.252;FRP CONSOLIDATION FOR MASONRY ARCHES BY USING BRIDGED CRACK MODEL;642
7.2.253;STRUCTURAL RELIABILITY ANALYSIS OF PIPE SUBJECTED TO REELING;644
7.2.254;NETWORK SEISMIC CAPABILITY ASSESSMENT OF POWER HIGH VOLTAGE ELECTRIC EQUIPMENT;646
7.2.255;FKM GUIDELINE “FRACTURE MECHANICS PROOF OF STRENGTH FOR ENGINEERING COMPONENTS” – OVERVIEW AND EXTENSION TOPICS;648
7.2.256;STATIC AND DYNAMIC BEHAVIOR OF A 3D-PERIODIC STRUCTURE;650
7.2.257;ENVIRONMENTAL EFFECT ON PIPELINE STEELS: A FITNESS FOR SERVICE PERSPECTIVE;652
7.2.258;FINDING THE AUSTRALIAN RAILWAY LOAD SPECTRUM DESIGN AND ASSESSMENT OF LIGHT WEIGHT & DURABLE RAILWAY STRUCTURAL COMPONENTS;654
7.2.259;STRUCTURAL INTEGRITY ASSESSMENT OF COMPONETS WITH LOW CONSTRAINT;656
7.2.260;LIFE ASSESSMENT OF SUPERHEATER TUBES FABRICATED FROM 2.25CR-1MO STEEL;658
7.2.261;PREDICTING CLEAVAGE FRACTURE IN PRESENCE OF RESIDUAL STRESSES; A NUMERICAL CASE STUDY;660
7.2.262;A NECESSARY CONDITION FOR CLEAVAGE ON LABORATORY SPECIMENS AND STRUCTURES;662
7.2.263;SAFETY ASSESSMENT OF COMPONENTS WITH CRACK-LIKE DEFECTS;664
7.2.264;NUMERICAL ANALYSIS OF SURFACE CRACKS IN STEAM GENERATOR TUBES;666
7.2.265;TENSILE SIMULATION OF POLYMERIC MATERIAL CONSIDERING THE MESO-SCALE STRUCTURE;668
7.2.266;MICROFRACTURE AND STRAIN LOCALIZATION: A COMPUTATIONAL HOMOGENIZATION APPROACH;670
7.2.267;STRAIN AND FRACTURE AT MESOSCALE OF COATED MATERIALS;672
7.2.268;RELATING CLEAVAGE CRACK NUCLEATION TO CRACKED CARBIDES IN A533B STEEL;674
7.2.269;MICRO-ENERGY RATES FOR DAMAGE TOLERANCE AND DURABILITY OF COMPOSITE STRUCTURES;676
7.2.270;MICROMECHANICAL OBSERVATION OF FRACTURE PROCESS IN MORTARS;678
7.2.271;MICRO-FRACTURE MAPS IN PROGRESSIVELY DRAWN PEARLITIC STEELS;680
7.2.272;A BRIEF HISTORY OF FRACTOGRAPHY;682
8;C. SPECIAL SYMPOSIA/SESSIONS;798
8.1;C1. Nanomaterials and Nanostructures;684
8.1.1;SIZE EFFECTS IN LEAD FREE SOLDER-JOINTS;685
8.1.2;MICRO-SCALE SIMULATION OF IMPACT RUPTURE IN POLYSILICON MEMS;687
8.1.3;NANOINDENTATION OF CNT REINFORCED EPOXY NANOCOMPOSITES;689
8.1.4;DIFFUSION KINETICS AND MULTIVARIANT PHASE TRANSFORMATION IN SHAPE MEMORY ALLOYS;691
8.1.5;EBSD ANALYSIS ON DEFORMATION OF NANOCRYSTALS IN ECAP-PROCESSED COPPER;693
8.1.6;THE EFFECT OF EXTENSIONAL STRAINS ON MOLECULAR ORIENTATION, POLYMER FREE VOLUME DISTRIBUTION AND CRYSTALLIZATION;695
8.1.7;MICROROTATION-AUGMENTED ENERGY-MINIMIZATION FOR 3D NANOCRYSTALLINE CU STRUCTURES;697
8.1.8;MECHANICS AND ELECTROMECHANICS OF SINGLE CRYSTALLINE PIEZOELECTRIC NANOWIRES;699
8.1.9;MULTISCALE SIMULATION FOR HIGH SPPED PROPAGATION OF DISORDERED REGIONS;701
8.1.10;SURFACE-STRESS-DRIVEN PSEUDOELASTICITY AND SHAPE MEMORY EFFECT AT THE NANOSCALE;703
8.1.11;THERMOMECHANICAL BEHAVIOR OF ZINC OXIDE NANOBELTS;705
8.1.12;NATURAL MODES OF C60 CAGE VIA CARBON-CARBON BONDING ELEMENT;707
8.1.13;FRACTURE OF NANOCRYSTALLINE ALUMINUM;709
8.1.14;WEAR AND FATIGUE IN SILICON STRUCTURAL FILMS FOR MEMS APPLICATIONS;711
8.1.15;INDENTATION INDUCED THROUGH THICKNESS FILM FRACTURE ON ENGINEERING ALLOYS;713
8.1.16;SURFACE NANOSTRUCTURED ALUMINUM BY SEVERE PLASTICS DEFORMATION;715
8.1.17;CONTRIBUTION OF LOCALIZED DEFORMATION TO IGSCC AND IASCC IN AUSTENITIC STAINLESS STEELS;717
8.1.18;A STUDY OF CRACK-DISLOCATIONS INTERACTION WITH 3D DISCRETE DISLOCATION DYNAMICS;719
8.1.19;NUMERICAL SIMULATIONS AND MEASUREMENTS OF CRACKS PARALLEL AND NEAR INTERFACES IN GRADED STRUCTURES;721
8.1.20;DEFORMATION AND FAILURE PROCESSES OPERATING IN ULTRA-FINE GRAIN METALS;723
8.1.21;SIMULATION OF CROSS-SECTIONAL NANOINDENTATION IN INTERCONNECT STRUCTURES WITH COHESIVE ELEMENTS;725
8.1.22;FRACTURE BETWEEN TWO SELF-ASSEMBLED MONOLAYERS;727
8.1.23;NANOTUBE NANOACTUATOR;729
8.1.24;NANOCRACK DETECTION IN VIBRATING NANOWIRES;731
8.1.25;FRACTURE OF ATOMIC LAYER DEPOSITED NANOLAMINATE FILMS;733
8.1.26;INFLUENCE OF MICROSTRUCTURE, STRENGTH AND ADHESION ON AU ELECTRODEPOSITS;735
8.1.27;FRACTURE OF SUBMICRON THIN METAL FILMS DURING CYCLIC LOADING;737
8.1.28;MICROMECHANICS OF DAMAGE EVOLUTION IN SOLID PROPELLANTS;739
8.1.29;DEFORMATION AND FAILURE MECHANISMS IN METALLIC NANOLAYERED COMPOSITES;740
8.1.30;DISLOCATION SOURCE SENSITIVITY OF PLASTICITY AND FRACTURE IN TUNGSTEN;742
8.1.31;DELAMINATION OF THIN METAL FILMS ON POLYMERS;744
8.1.32;FRACTURE MECHANICS OF ONE-DIMENSIONAL NANOSTRUCTURES;746
8.1.33;EFFECTS OF STRUCTURE AND BONDING AT SURFACES AND INTERFACES ON FRACTURE;748
8.1.34;APPLICATION OF THE NEW STATIC PHOTOELASTIC EXPERIMENTAL HYBRID METHOD WITH NEW NUMERICAL METHOD TO THE PLANE FRACTURE MECHANICS;750
8.1.35;RISK ANALYSIS OF BURIED PIPELINE USING PROBABILISTIC METHOD;752
8.1.36;RELIABILITY ESTIMATION OF SOLDER JOINT BY ACCELERATED LIFE TESTS;754
8.1.37;ANALYSIS OF ENGINEERING PLASTIC BEHAVIORS IN THERMAL STRESS CONDITION;756
8.1.38;A MECHANISTIC MODEL FOR THE THERMAL FATIGUE BEHAVIOR OF THE LEAD-FREE SOLDER JOINTS;758
8.1.39;MECHANICAL BEHAVIOR OF METALLIC THIN FILM ON POLYIMIDE SUBSTRATE;760
8.1.40;MACRO-, MESO- AND MICRO-DAMAGE MODEL BASED ON SINGULARITY REPRESENTATION FOR ANTI-PLANE DEFORMATION;762
8.1.41;MULTISCALING EFFECTS IN TRIP STEELS;764
8.1.42;A HYPER-SURFACE FOR THE COMBINED RATE AND SIZE EFFECTS ON THE MATERIAL PROPERTIES;766
8.1.43;A NEW METHOD FOR LOCAL STRAIN FIELD ANALYSIS NEAR CRACKS IN MICRO- AND NANOTECHNOLOGY APPLICATIONS;768
8.1.44;EXPERIMENTAL INVESTIGATIONS FOR FRACTURE ANALYSIS OF SOLDER JOINTS IN MICROELECTRONIC AND MEMS APPLICATIONS;770
8.1.45;SIMULATION OF INTERFACE CRACKS IN MICROELECTRONIC PACKAGING;772
8.1.46;AFM BASED FRACTURE ANALYSIS IN MICRO- AND NANOMATERIALS;774
8.1.47;SIMULATION OF DEFORMATION AND FRACTURE BEHAVIOUR IN MICROELECTRONIC PACKAGING;776
8.1.48;MIXED-MODE FRACTURE MODELED THROUGH A DISCRETE COHESIVE ZONE MODEL-DCZM;778
8.1.49;SIGNIFINCE OF K-DOMINANCE IN DELAMINATION CRACKING IN COMPOSITE LAMINATES;780
8.1.50;EVALUATION OF INTERFACE TOUGHNESS BETWEEN SUBMICRON ISLAND AND SUBSTRATE;782
8.1.51;THREE-DIMENSIONAL THERMAL STRESS ANALYSIS CONSIDERING THE STRESS SINGULARITY FOR BONDED STRUCTURES;784
8.1.52;CENTER OF DILATATION AND PENNY-SHAPED CRACK IN VISCOELASTIC BIMATERIAL;786
8.1.53;FRACTURE ANALYSIS ON POPCORNING OF PLASTIC PACKAGES DURING SOLDER REFLOW;788
8.1.54;DELAMINATION OF PB-FREE FLIP CHIP UNDERFILL DURING 2ND LEVEL INTERCONNECT REFLOW;790
8.1.55;RELIABILITY OF INTERFACES BETWEEN COMPONENTS IN ADVANCED ELECTRONIC PACKAGES UNDER SOLDER REFLOW PROCESS;792
8.1.56;THREE-DIMENSIONAL STRESS INTENSITY FACTORS ANALYSES OF INTERFACE CRACKS BETWEEN DISSIMILAR ANISOTROPIC MATERIALS;794
8.1.57;MOLECULAR DYNAMICS OF INTERFACIAL FRACTURE;796
8.2;C2. Engineering Materials and Structures;798
8.2.1;NUCLEATION, GROWTH AND INSTABILITY OF THE CAVITATION IN RUBBER;799
8.2.2;ENGINEERING FRACTURE MECHANICS FOR CRACK TOUGHNESS CHARACTERISATION OF ELASTOMERS;801
8.2.3;MULTIAXIAL FATIGUE CRACK INITIATION ON FILLED RUBBERS: STATISTICAL ASPECTS;803
8.2.4;FRACTURE CRITERIA OF RUBBER-LIKE MATERIALS UNDER PLANE STRESS LOADINGS;805
8.2.5;PREDICTION OF RUBBER FATIGUE LIFE UNDER MULTIAXIAL LOADING;807
8.2.6;MODELING OF BIAXIAL FATIGUE OF NATURAL RUBBER;809
8.2.7;MODELING OF CRACK PROPAGATION IN ELASTOMERIC MATERIALS USING CONFIGURATIONAL FORCES;811
8.2.8;DETERMINATION OF INTER-FIBRE-FAILURE IN COMPLEX, REINFORCED COMPOSITES;813
8.2.9;THE TEST FREQUENCY DEPENDENCE OF THE FATIGUE BEHAVIOR OF ELASTOMERS;815
8.2.10;NONLINEAR MODEL FOR REINFORCED CONCRETE FRAMES LOADED BY SEISMIC FORCES;817
8.2.11;MONITORING THE DURABILITY PERFORMANCES OF CONCRETE AND MASONRY STRUCTURES BY ACOUSTIC EMISSION TECHNIQUE;819
8.2.12;BIFURCATION CONTROL OF PARAMETRIC RESONANCE IN AXIALLY EXCITED CANTILEVER BEAM;821
8.2.13;ADAPTIVE PROPERTIES OF DYNAMIC OBJECTS;823
8.2.14;INFLUENCE OF ADDENDUM MODIFICATION COEFFICIENT ON THE GEAR'S LOAD CAPACITY;825
8.2.15;MICROMECHANICAL MODELLING OF FRACTURE-INDUCED ANISOTROPY AND DAMAGE IN ORTHOTROPIC MATERIALS;827
8.2.16;VIBRATION CONTROL DEVICES AND THEIR APPLICATION;829
8.2.17;MEASUREMENTS OF DYNAMICAL SYSTEM INTEGRITY AND FRACTURE MECHANICS;831
8.2.18;MODELING OF THE SURFACE CRACKS AND FATIGUE LIFE ESTIMATION;833
8.2.19;STRUCTURAL DAMAGE DETECTION VIA THE SUBSPACE IDENTIFICATION METHOD;835
8.2.20;CLOCK MECHANISM AS BASE OF ARTILLERY SAFETY AND ARMING DEVICES;837
8.2.21;TWISTING DEFORMATION EVOLUTION OF DRILLING ROPES;839
8.2.22;HEREDITARY STRAIN THEORY OF SYNTETIC AND STEEL ROPES;841
8.2.23;BRITTLE AND DUCTILE FAILURE IN THERMOVISCOPLASTIC SOLIDS UNDER DYNAMIC LOADING;843
8.2.24;SOME ASPECTS OF DYNAMIC INTERFACIAL CRACK GROWTH;845
8.2.25;ON STABILITY PROBLEMS OF PERIODIC IMPACT MOTIONS;847
8.2.26;DYNAMICAL INTEGRITY OF NONLINEAR MECHANICAL OSCILLATORS;849
8.2.27;FATIGUE CRACK INITIATION AND PROPAGATION AT HIGH TEMPERATURE IN A SOFTENING MARTENSITIC STEEL;851
8.2.28;TRANSFERABILITY OF CLEAVAGE FRACTURE PARAMETERS BETWEEN NOTCHED AND CRACKED GEOMETRIES;853
8.2.29;RELATION BETWEEN CRACK VELOCITY AND CRACK ARREST;855
8.2.30;MECHANISMS OF DAMAGE AND FRACTURE IN TRIP ASSISTED MULTIPHASE STEELS;857
8.2.31;THE ROLE OF SUB-BOUNDARIES IN THE BRITTLE FRACTURE OF POLYCRYSTALLINE MATERIALS;859
8.2.32;THREE-DIMENSIONAL MODELLING OF FRACTURE IN POLYCRYSTALS;861
8.2.33;ANTI-WING CRACK GROWTH FROM SURFACE FLAW IN REAL ROCK UNDER UNIAXIAL COMPRESSION;863
8.2.34;MECHANICAL BEHAVIOR MODELING IN THE PRESENCE OF STRAIN AGING;865
8.2.35;ON THE LOCAL CONDITIONS FOR CLEAVAGE INITIATION IN FERRITIC STEELS;867
8.2.36;UNIFIED CONSTITUTIVE EQUATIONS TO DESCRIBE ELASTOPLASTIC AND DAMAGE BEHAVIOR OF X100 PIPELINE STEEL;869
8.2.37;ESTIMATION OF LOWER BOUND ENGINEERING FRACTURE TOUGHNESS IN THE DUCTILE TO BRITTLE TRANSITION REGIME;871
8.2.38;CLEAVAGE FRACTURE MICROMECHANISMS RELATED TO WPS EFFECT IN RPV STEEL;873
8.2.39;MODELLING OF FATIGUE DAMAGE IN ALUMINUM CYLINDER HEADS;875
8.2.40;LOCAL APPROACH TO HIGH TEMPERATURE DUCTILITY MODELING IN 6XXX ALUMINIUM ALLOYS;877
8.2.41;SMALL FATIGUE CRACK GROWTH IN STEEL -COMPRESSOR DISKS OF AIRCRAFT ENGINES.;879
8.2.42;MICROMECHANISMS OF DAMAGE IN MULTIAXIAL FATIGUE OF AN AUSTENITIC-FERRITIC STAINLESS STEEL;881
8.2.43;MULTISCALE MODELING OF FRACTURE AND PLASTICITY IN LAYERED STRUCTURES;883
8.2.44;CRITICAL AND FRACTURE PLANES OF 18G2A STEEL UNDER NONPROPORTIONAL COMBINED BENDING AND TORSION;885
8.2.45;SLIP PROCESSES AND FRACTURE IN IRON CRYSTALS;887
8.2.46;A DISCUSSION OF THE APPLICABILITY OF K-VALUES TO EXPLAIN THE FATIGUE CRACK GROWTH BEHAVIOUR OF SHORT CRACKS;889
8.2.47;SIMULATION OF CRACK GROWTH UNDER LOW CYCLE FATIGUE AT HIGH TEMPERATURE IN A SINGLE CRYSTAL SUPERALLOY;891
8.2.48;FATIGUE CRACK GROWTH FOR DIFFERENT RATIOS OF BENDING TO TORSION IN ALCU4MG1;893
8.2.49;DUCTILE DAMAGE MODELS APPLIED TO ANISOTROPIC FRACTURE OF AL2024 T351;895
8.2.50;FATIGUE AND FRACTURE PROCESSES IN SEVERE PLASTIC DEFORMED RAIL STEELS;897
8.2.51;DAMAGE EVOLUTION IN TORSION SPECIMENS DEFORMED AT FORGING TEMPERATURES;899
8.2.52;MICROSTRUCTURAL EFFECTS ON SHORT FATIGUE CRACK PROPAGATION AND THEIR MODELLING;901
8.2.53;MICROMECHANICAL ASPECTS OF TRANSGRANULAR AND INTERGRANULAR FAILURE COMPETITION;903
8.2.54;DEFECT IN ULTRA-FINE GRAINED MG-BASED ALLOYS DEFORMED BY HIGH-PRESSURE TORSION;905
8.2.55;MODELLING CRACK-TIP SHIELDING EFFECTS IN PARTICLE REINFORCED COMPOSITES 6, 180 µm d ;907
8.2.56;EARLY STAGES OF FATIGUE DAMAGE IN 316L STEEL;909
8.2.57;AB INITIO STUDY OF ELASTICITY AND STRENGTH OF NANO-FIBRE REINFORCED COMPOSITES;911
8.2.58;STRENGTH AND FRACTURE OF ULTRA-FINE GRAINED ALUMINUM 2024 ECAP METAL;913
8.2.59;FATIGUE LIFETIME OF BEARING STEEL IN ULTRA-HIGH-CYCLE REGION;915
8.2.60;CALCULATION OF K-FACTOR AND T-STRESS FOR CRACK AT ANISOTROPIC BIMATERIALS;917
8.2.61;INTERACTION OF MICROCRACKS WITH GRAIN BOUNDARIES: SYSTEMATICAL INVESTIGATION OF THE MECHANISMS;919
8.2.62;DISLOCATION ARRANGEMENTS IN CYCLICALLY STRAINED INCONEL 713LC;921
8.2.63;CRACK INITIATION AND FRACTURE OF METAL MATRIX COMPOSITES;923
8.2.64;MECHANICAL BEHAVIOUR OF ULTRA-FINE GRAINED AUSTENITIC STAINLESS STEEL;925
8.2.65;TRIBOLOGICAL PROPERTIES AND WEAR MECHANISMS OF WEAR RESISTANT THERMALLY SPRAYED COATINGS;927
8.2.66;CRACK PROPAGATION RESISTANCE AND DAMAGE MECHANISMS IN NUCLEAR GRAPHITE;929
8.2.67;ENVIRONMENT-ASSISTED CRACKING OF HIGH-STRENGTH MAGNESIUM ALLOYS WE43-T6;931
8.2.68;EFFECTS OF SURFACE FINISH ON THE FATIGUE LIMIT IN AUSTENITIC STAINLESS STEELS (MODELLING AND EXPERIMENTAL OBSERVATIONS);933
8.2.69;INTERGRANULAR STRESS CORROSION CRACK PROPAGATION IN SENSITISED AUSTENITIC STAINLESS STEEL (MICROSTRUCTURE MODELLING AND EXPERIMENTAL OBSERVATION).;935
8.2.70;IDEAL STRENGTH OF NANOSCALE THIN FILMS;937
8.2.71;TOUGHNESS VARIABILITY;939
8.2.72;THERMO-MECHANICAL BEHAVIOUR OF NANOSTRUCTURED COPPER;941
8.2.73;SOME INSIGHTS INTO FATIGUE CRACK INITIATION STAGE;943
8.2.74;FATIGUE BEHAVIOUR OF METALLIC MATERIALS EXPOSED TO HIGH PRESSURE HYDROGEN ENVIRONMENTS;945
8.2.75;IN-SITU INVESTIGATIONS OF THE FRACTURE MECHANISMS AT VARIOUS LENGTH SCALES;947
8.2.76;ENVIRONMENTAL ATTACK AT POLYMER/METAL INTERFACES;949
8.2.77;MODELLING OF ELASTIC-PLASTIC PEEL TESTS FOR STRUCTURAL ADHESIVES;951
8.2.78;AN ALTERNATING CRACK GROWTH IN ADHESIVELY BONDED JOINTS;953
8.2.79;MEASUREMENTS OF INTERFACE FRACTURE AND MECHANICAL PROPERTIES OF LOW-K DIELECTRIC THIN FILMS;955
8.2.80;INITIATION OF FRACTURE MECHANISMS AT THE FIBRE/MATRIX INTERFACE;957
8.2.81;EFFECTS OF PLASTICITY AND RESIDUAL STRESS FOR CRACKS NEAR INTERFACES;959
8.2.82;TOUGHNESS OF A ±450 INTERFACE;961
8.2.83;RESIDUAL STRESS INFLUENCE ON DISSIMILAR MATERIAL WELD JUNCTION FRACTURE;963
8.2.84;FRACTURE MECHANISMS OF A THIN ELASTIC PLASTIC LAMINATE;965
8.2.85;CRACK-TIP PARAMETERS IN POLYCRYSTALLINE PLATES WITH COMPLIANT GRAIN BOUNDARIES;967
8.2.86;EXTENDED FE SIMULATIONS OF CRACK GROWTH IN LAYERED AND FUNCTIONALLY GRADED MATERIALS;969
8.2.87;SIMULATION OF PLASTIC FATIGUE CRACK GROWTH BY A TWO SCALE EXTENDED FINITE ELEMENT METHOD;971
8.2.88;ACCURATE DETERMINATION OF COHESIVE CRACK TIP FIELDS USING XFEM AND ADMISSIBLE STRESS RECOVERY;973
8.2.89;A NEW GENERATION OF BOUNDARY ELEMENT METHOD FOR DAMAGE TOLERANCE ASSESSMENT OF AEROSTRUCTURES;975
8.2.90;ROBUST STRESS INTENSITY FACTORS EVALUATION FOR 3D FRACTURE MECHANICS WITH X-FEM;977
8.2.91;A MICRO-MACRO PARTITION OF UNITY METHOD FOR CRACK PROPAGATION;979
8.2.92;A DYNAMIC CRACK PROPAGATION CRITERIA FOR XFEM, BASED ON PATH-INDEPENDENT INTEGRAL EVALUATION;981
8.2.93;TRUSS MODEL AS SIMPLE COMPUTATIONAL TOOL IN FRACTURE MECHANICS;983
8.2.94;FINITE ELEMENT MODELING OF COHESIVE CRACKS BY NITSCHE’S METHOD;985
8.2.95;COMPUTING CRACK GROWTH IN QUASIPERIODIC ALLOYS;987
8.2.96;X-FEM FOR 3D CRACKS IN SHAFT WITH CONTACT;989
8.2.97;SOME IMPROVEMENTS FOR EXTENDED FINITE ELEMENT METHODS IN FRACTURE MECHANICS;991
8.2.98;FAILURE PREDICTION OF ADHESIVELY BONDED T-PEEL JOINTS;993
8.2.99;AN APPROACH FOR THE DETERMINATION OF MIXED MODE COHESIVE LAWS;995
8.2.100;THE USE OF CZM FOR COUPLED FATIGUE/PLASTICITY CRACK PROPAGATION SIMULATION;997
8.2.101;DYNAMIC CRACK GROWTH : ANALYTICAL AND NUMERICAL CZM APPROACHES;999
8.2.102;SIMULATION OF PRE-CRITICAL CRACKING IN CONCRETE USING 3D LATTICE MODEL;1001
8.2.103;EFFECT OF COHESIVE LAW AND TRIAXIALITY DEPENDENCE OF COHESIVE PARAMETERS IN DUCTILE TEARING;1003
8.2.104;MODELING QUASIBRITTLE MATERIAL CRACKING WITH COHESIVE CRACKS: EXPERIMENTAL AND COMPUTATIONAL ADVANCES;1005
8.2.105;PINWHEEL MESHES AND BRANCHING OF COHESIVE CRACKS;1007
8.2.106;A DYNAMIC CRACK GROWTH SIMULATION USING COHESIVE ELEMENTS;1009
8.2.107;A NEW COHESIVE ZONE MODEL FOR MIXED-MODE DECOHESION;1011
8.2.108;COHESIVE-ZONE MODELING OF CRACK GROWTH IN SPECIMENS WITH DIFFERENT CONSTRAINT CONDITIONS;1013
8.2.109;EFFECT OF ANISOTROPIC PLASTICITY ON MIXED MODE INTERFACE CRACK GROWTH;1015
8.2.110;CHARACTERISATION OF TG-SCC IN PURE MAGNESIUM AND AZ91 ALLOY;1017
8.2.111;HYDROGEN EMBRITTLEMENT AND CRACKING OF 18MN-4CR STEELS;1019
8.2.112;TRANSIENT STRESS AND EAC OF STEAM TURBINE DISC STEEL;1021
8.2.113;IRREVERSIBLE HYDROGEN TRAPPING IN WELDED BETA-21S TITANIUM ALLOY;1023
8.2.114;EAC IN HIGH STRENGTH STEELS FOR GAS TRANSPORTATION;1025
8.2.115;HIGH TEMPERATURE FATIGUE CRACK GROWTH IN TITANIUM MICROSTRUCTURES;1027
8.2.116;CORROSION DAMAGING AND CORROSION FATIGUE ASSESSMENT IN THREE-LAYERED METALLIC MATERIAL;1029
8.2.117;SIMULATION OF HYDROGEN ASSISTED STRESS CORROSION CRACKING USING A TIME DEPENDENT COHESIVE MODEL;1031
8.2.118;ENVIRONMENTAL STRESS CRACKING OF POLYETHYLENE PIPES IN WATER DISTRIBUTION NETWORKS;1033
8.2.119;FATIGUE CRACK PROPAGATION IN 2XXX ALUMINIUM ALLOYS AT 223K;1035
8.2.120;HYDROGEN ASSISTED CRACKING PATHS IN ORIENTED PEARLITIC MICROSTRUCTURES;1037
8.2.121;EFFECT OF RESIDUAL STRESS-STRAIN PROFILE ON HYDROGEN EMBRITTLEMENT SUSCEPTIBILITY OF PRESTRESSING STEEL WIRES;1039
8.2.122;HYDROGEN EMBRITTLEMENT OF AUSTENITIC STAINLESS STEELS AT LOW TEMPERATURES;1041
8.2.123;HYDROGEN DIFFUSION AND EAC OF PIPELINE STEELS UNDER CATHODIC PROTECTION;1043
8.2.124;INITIATION OF ENVIRONMENTALLY ASSISTED CRACKING IN LINE PIPE STEEL;1045
8.2.125;FATIGUE CRACK GROWTH BEHAVIOUR DEPENDING ON ENVIRONMENT IN MAGNESIUM ALLOYS;1047
8.2.126;ASSESSMENT OF HIGH-TEMPERATURE HYDROGEN DEGRADATION OF POWER EQUIPMENT STEELS;1049
8.2.127;STRESS CORROSION CRACKING OF 18MN-4CR GENERATOR ROTOR END-RETAINING RING STEEL;1051
8.2.128;NON CONTACTING STRESS MONITORING;1053
8.2.129;RAPID CALCULATION OF STRESS INTENSITY FACTORS;1055
8.2.130;VARIABLE AMPLITUDE CORROSION FATIGUE OF HIGH STRENGTH WELDABLE STEEL;1057
8.2.131;CRACK MONITORING USING ACFM;1059
8.2.132;FATIGUE BEHAVIOUR OF FIBER REINFORCED BONE CEMENT;1061
8.2.133;FRACTURE AND FATIGUE OF BONE AND BONE CEMENT: THE CRITICAL DISTANCE APPROACH;1063
8.2.134;FATIGUE FAILURE IN RECONSTRACTED ACETABULA – A HIP SIMULATOR STUDY;1065
8.2.135;DEFORMATION AND FRACTURE OF BIOACTIVE PARTICULATE COMPOSITES DEVELOPED FOR HARD TISSUE REPAIR;1067
8.2.136;FAILURE OF BIOMATERIALS IN IMPLANT FIXATION;1069
8.2.137;STRESS ANALISYS OF HIGH PRESSURE STEAMLINES IN THERMAL POWER PLANTS;1071
8.2.138;LAMINAR COMPOSITE MATERIALS DAMAGE MONITORING BY EMBEDDED OPTICAL FIBERS;1073
8.2.139;SOL GEL SYNTHESIS AND STRUCTURE OF HYBRID NANOMATERIALS WITH STRONG CHEMICAL BONDS;1075
8.2.140;AN ALTERNATIVE APPROACH TO CONVENTIONAL DATA PRESENTATION OF FATIGUE;1077
8.2.141;ABSORBERS OF SEISMIC ENERGY FOR DAMAGED MASONARY STRUCTURES;1079
8.2.142;NUMERICAL ANALYSIS OF TENSILE SPECIMEN FRACTURE WITH CRACK IN HAZ;1081
8.2.143;DETERMINATION OF JR-CURVE BY TWO POINTS METHOD;1083
8.2.144;MONITORING OF STRESS-STRAIN STATE OF BOILER DURING PESSURE TEST;1085
8.2.145;LOCAL VARIATION OF CRACK DRIVING FORCE IN A MISMATCHED WELD;1087
8.2.146;STRENGTH RECOVERY OF MACHINED ALUMINA BY SELF CRACK HEALING;1089
8.2.147;CRACK INITIATION AND GROWTH IN HAZ OF MICROALLOYED STEEL;1091
8.2.148;STRUCTURAL INTEGRITY AT ELEVATED TEMPERATURES - RESIDUAL SERVICE LIFE EVALUATION;1093
8.2.149;THE ANALYSIS OF SUPPORTING STRUCTURE OF PLANETARY GEAR BOX SATELLITE;1095
8.2.150;FAILURE PROBABILITY OF GEAR TEETH WEAR;1097
8.2.151;SOME ASPECTS OF ENGINEERING APPROACH TO STRUCTURAL INTEGRITY ASSESSMENT;1099
8.2.152;STRUCTURAL INTEGRITY ASSESSMENT APPLYING ULTRASONIC TESTING;1101
8.2.153;(CRACK-HEALING + PROOF-TEST): METHODOLOGY TO GUARANTEE THE RELIABILITY OF CERAMICS;1103
8.2.154;RISK BASED INTEGRITY ASSESSMENT OF CONCRETE STRUCTURES;1105
8.2.155;STRUCTURAL INTEGRITY ASSESSMENT BY LOCAL APPROACH TO FRACTURE;1107
8.2.156;BRITTLE AND DUCTILE FRACTURE IN SERVICE OF PRESSURE VESSELS;1109
8.2.157;MECHANISMS OF FRACTURE IN MEDIUM CARBON VANADIUM MICROALLOYED STEELS;1111
8.2.158;COMPUTATION AND EXPERIMENTAL INVESTIGATIONS OF NOTCHED COMPONENTS FATIGUE LIFE ESTIMATION;1113
8.2.159;FAILURE ANALYSIS OF LAYERED COMPOSITE STRUCTURES: COMPUTATION AND EXPERIMENTAL INVESTIGATION;1115
8.2.160;LOADING RATE EFFECT ON HSLA STEEL WELDED JOINTS FRACTURE RESISTANCE;1117
8.2.161;CASE STUDY OF SUPPORTING TUBES FAILURE;1119
8.2.162;STRUCTURE INTEGRITY OF PRESSURE VESELS REPAIR WELDING JOINTS;1121
8.2.163;EFFECT OF MICROALLOYED STEEL WELDING PROCEDURE ON FATIGUE CRACK GROWTH;1123
8.2.164;FRACTURE RESISTANCE OF HIGH-STRENGTH 7000 FORGING ALLOYS;1125
8.2.165;DOES A CHARACTERISTIC CRACK-TIP DISTANCE IMPLY DISCONTINUOUS CRACK PROPAGATION?;1127
8.2.166;SIZE EFFECTS FOR CRACK INITIATION AT BLUNT NOTCHES OR CAVITIES IN BRITTLE MATERIALS;1130
8.2.167;THE THEORY OF CRITICAL DISTANCES;1132
8.2.168;STRENGTH ANALYSIS OF COMPOSITE PINNED JOINTS;1134
8.2.169;APPLICATION OF THE THEORY OF CRITICAL DISTANCE TO FRETTING FATIGUE;1136
8.2.170;THE THEORY OF CRITICAL DISTANCES: APPLICATIONS IN FATIGUE;1138
8.2.171;FATIGUE ASSESSMENT USING AN INTEGRATED THRESHOLD CURVE METHOD - APPLICATIONS;1140
8.2.172;ANAYTICAL APPROACHES VS ATOMISTIC SIMULATIONS IN FRACTURE;1142
8.2.173;A COUPLED STRESS AND ENERGY CRITERION WITHIN FINITE FRACTURE MECHANICS;1144
8.2.174;LOCAL STRAIN ENERGY DENSITY ANDFATIGUE STRENGTH OF WELDED JOINTS;1146
8.2.175;AN IMPLICIT GRADIENT APPLICATION TO FATIGUE OF NOTCHES AND WELDMENTS;1148
8.2.176;USE OF JV TO PREDICT STATIC FAILURES IN NOTCHED COMPONENTS;1150
8.2.177;STANDARDIZATION OF STRENGTH EVALUATION METHODS USING CRITICAL DISTANCE STRESS;1152
8.2.178;APPLICATION OF POINT STRESS METHOD TO HYDRO-FRACTURING TECTONIC STRESS MEASUREMENT;1154
8.2.179;A UNIFIED FAILURE CRITERION FOR BRITTLE OR QUASI-BRITTLE MATERIALS UNDER ARBITRARY STRESS CONCENTRATION;1156
8.2.180;MORPHOLOGY OF STEP-WISE S-N CURVES DEPENDING ON NOTCH AND SURFACE ROUGHNESS IN HIGH STRENGTH STEEL;1158
8.2.181;VERY HIGH CYCLE FATIGUE BEHAVIOUR UNDER CYCLIC TORSION LOADING;1160
8.2.182;MODELLING OF FATIGUE CRACK GROWTH FROM EXFOLIATION AND PITTING CORROSION;1162
8.2.183;DOES COPPER UNDERGO SURFACE ROUGHENING DURING FATIGUE IN THE VH REGIME?;1164
8.2.184;CRACK INITIATION MECHANISM OF BEARING STEEL IN HIGH CYCLE FATIGUE;1166
8.2.185;VERY HIGH CYCLE FATIGUE BEHAVIOR OF HIGH STRENGTH STEELS;1168
8.2.186;FRACTURE TOUGHNESS OF HYDRIDED ZIRCALOY-4 EXPERIMENTAL AND NUMERICAL STUDY;1170
8.2.187;CRACK GROWTH BEHAVIOR IN A HIGHLY FILLED ELASTOMER;1172
8.2.188;CRACK TIP BEHAVIOR IN TIAL WHEN APPROACHING GRAIN BOUNDARY;1174
8.2.189;EFFECT OF LOADING RATE ON THE ENERGY RELEASE RATE IN A CONSTRAINED ELASTOMERIC DISK;1176
8.2.190;ANALYSES OF PROGRESSIVE DAMAGE AND FRACTURE OF PARTICULATE COMPOSITE MATERIALS USING S-FEM TECHNIQUE;1178
8.2.191;FRACTURE MECHANICS ON PVDF POLYMERIC MATERIAL : SPECIMEN GEOMETRY EFFECTS;1180
8.2.192;FRACTURE TOUGHNESS OF ALLOYED AUSTEMPERED DUCTILE IRON (ADI);1182
8.2.193;PREDICTION OF CRACK GROWTH UNDER RANDOM LOAD IN RAILWAY WHEEL;1184
8.2.194;PREDICTING THE EVOLUTION OF STRESS CORROSION CRACKS FROM PITS;1186
8.2.195;CORROSION PROBLEMS IN NUCLEAR INDUSTRY : LESSONS LEARNED AND PERSPECTIVES;1188
8.2.196;ALUMINIUM ALLOYS FATIGUE EVALUATION METHOD;1190
8.2.197;SINGULAR STRESS FIELDS SITUATIONS IN MODE-II AND MIXED-MODE LOADED CRACKS;1192
8.2.198;EVALUATION OF M-INTEGRAL FOR RUBBERY MATERIAL PROBLEMS CONTAINING MULTIPLE CRACKS;1194
8.2.199;USE OF A CRACK BOX TECHNIQUE FOR CRACK BIFURCATION IN DUCTILE MATERIAL;1196
8.2.200;MIXED MODE FRACTURE OF LINEAR ELASTIC MATERIALS WITH CUBIC SYMMETRY;1198
8.2.201;THREE-DIMENSIONAL EXPERIMENTAL AND NUMERICAL SIFS AND CRACK GROWTH;1200
8.2.202;AN ARBITRARILY ORIENTED CRACK NEAR A COATED FIBER;1202
8.2.203;SIMULATION OF THE MIXED MODE FRACTURE OF CONCRETE WITH COHESIVE MODELS;1204
8.2.204;MICROMECHANICAL ANALYSIS OF RUPTURE MECHANISMS IN MIXED MODE DUCTILE FRACTURE;1206
8.2.205;MODE I PRELOADING-MODE II FRACTURE IN WARM PRE-STRESSING;1208
8.2.206;PREDICTIONS OF MIXED MODE I/II FRACTURE TOUGHNESS FOR SOFT ROCKS;1210
8.2.207;AN INTERFACE MODEL FOR MIXED-MODE, BUCKLING-DRIVEN DECOHESION OF SUPERFICIAL LAYERS;1212
8.2.208;MXED-MODE FRACTURE ANALYSS OF ORTHOTROPC FUNCTONALLY GRADED MATERALS;1214
8.2.209;NEW SCHEME FOR FEA OF MIXED MODE STABLE CRACK GROWTH;1216
8.2.210;NUMERICAL SIMULATION OF NONLINEAR CRACK PROPAGATION UNDER MIXED-MODE IMPACT LOADING;1218
8.2.211;ELASTIC-PLASTIC BEHAVIOUR OF CRACK PROPAGATION UNDER BIAXIAL CYCLIC LOADING;1220
8.2.212;NUMERICAL ANALYSIS OF MIXED-MODE CRACKING IN CONCRETE DAMS;1222
8.2.213;SPECIES AND OTHER PHYSICAL EFFECTS ON PARAMETERS DESCRIBING A WOOD TOUGHNESS TEST.;1224
8.2.214;YEW AND SPRUCE WOOD: MECHANICAL PROPERTIES AND FRACTURE SURFACE STUDIES;1226
8.2.215;CRITICAL CRACK LENGTHS IN FRP REINFORCED GLULAM BEAMS;1228
8.2.216;FAILURE ANALYSIS OF ENGINEERING WOOD PRODUCTS;1230
8.2.217;MODELIZATION OF SLOW CRACK GROWTH IN WOOD CONSIDERED AS A DAMAGE VISCOELASTIC MATERIAL;1232
8.2.218;MODE I CRACK PROPAGATION IN SOFTWOOD, MICROANALYSES AND MODELING;1234
8.2.219;FRACTURE PROPERTIES OF PINE AND SPRUCE IN MODE I;1236
8.2.220;INFLUENCE OF THE SPECIMEN GEOMETRY ON R-CURVE: NUMERICAL INVESTIGATIONS.;1238
8.2.221;FRACTURE BEHAVIOUR AND CUTTING OF SMALL WOOD SPECIMENS IN RT-DIRECTION;1240
8.2.222;FRACTURING OF WOOD UNDER TORSIONAL LOADING: FRACTURE MECHANISMS AND MECHANICS;1242
8.2.223;ON THE INFLUENCE OF HUMIDITY CYCLING ON FRACTURE PROPERTIES OF WOOD;1244
8.2.224;DETERMINATION OF COHESIVE FRACTURE PARAMETERS FOR WOOD;1246
8.2.225;THE ROLE OF FRACTURE TOUGHNESS IN THE CUTTING OF WOOD;1248
8.2.226;SHORT FATIGUE CRACKS OF IN-SERVICE FATIGUED TURBINE BLADES;1250
8.2.227;RESISTANCE-CURVE METHOD FOR PREDICTING FATIGUE THRESHOLDS UNDER COMBINED LOADING;1253
8.2.228;THE GROWTH OF SHORT CRACKS FROM DEFECTS UNDER MULTI-AXIAL LOADING;1255
8.2.229;SHORT FATIGUE CRACKS IN NOTCHED AND UNNOTCHED SPECIMENS UNDER NON-PROPORTIONAL LOADING;1257
8.2.230;MICROCRACKS GROWTH IN PUSH-PULL AND REVERSED TORSION IN STAINLESS STEEL.;1259
8.2.231;HYDROGEN AND NOTCH EFFECTS ON TORSIONAL FATIGUE OF STAINLESS STEEL;1261
8.2.232;INFLUENCE OF MOVING TOOTH LOAD ON GEAR FATIGUE BEHAVIOUR;1263
8.2.233;COMPARISON OF SOLID SPUR GEAR FACE LOAD FACTORS;1265
8.2.234;PREDICTION OF CONTACT FATIGUE INTERNAL CRACK PROPAGATION IN HYPOID GEARS;1267
8.2.235;FATIGUE CRACK INITIATION ALONG INCLUSION INTERFACES OF CONTACTING MECHANICAL ELEMENTS;1269
8.2.236;ENERGY BASED GEAR FAULT DIAGNOSTICS;1271
8.2.237;CRACK PROPAGATION IN GEAR TOOTH ROOT;1273
8.2.238;EXPERIMENTAL EVALUATION OF STRESS INTENSITY FACTORS IN SPUR GEAR TEETH;1275
8.2.239;ISOTHERMAL AND THERMOMECHANICAL FATIGUE BEHAVIOR OF THE ODS SUPERALLOY PM1000;1277
8.2.240;FATIGUE-CREEP-ENVIRONMENT INTERACTIONS IN A DIRECTIONALLYSOLIDIFIED NI-BASE SUPERALLOY;1279
8.2.241;THE EFFECTS OF MICROSTRUCTURE, DEFORMATION MODE AND ENVIRONMENT ON FATIGUE;1281
8.2.242;COMPARING FATIGUE BEHAVIOUR OF TI6242 AND NOVEL TIAL INTERMETALLICS;1283
8.2.243;A TBC FAILURE MODEL BASED ON CRACK NUMBER DENSITY;1285
8.2.244;IMPACT INDUCED COMPOSITE DELAMINATION: STATE AND PARAMETER IDENTIFICATION VIA UNSCENTED KALMAN FILTER;1287
8.2.245;MODELLING IMPACT DAMAGE IN SANDWICH CONCEPT STRUCTURES;1289
8.2.246;PUNCH SHEAR BEHAVIOR OF COMPOSITES AT LOW AND HIGH RATES;1291
8.2.247;REPEATED IMPACT BEHAVIOUR AND DAMAGE PROGRESSION OF GLASS REINFORCED PLASTICS;1293
8.2.248;IMPACT BEHAVIOUR MODELLING OF A COMPOSITE LEADING EDGE STRUCTURE;1295
8.2.249;BENDING STRENGTH OF SANDWICH PANELS WITH DIFFERENT CORES AFTER IMPACT;1297
8.2.250;ENERGY ABSORBING ABILITY OF SANDWICH COMPOSITE STRUCTURES;1299
8.2.251;IMPACT BEHAVIOUR OF METAL FOAM CORED SANDWICH BEAMS;1301
8.2.252;STRESS GRADIENT AT NOTCH ROOTS USING VOLUMETRIC METHOD;1303
8.2.253;LOCAL APPROACH USE AT SOLUTION OF FRACTURE PARAMETERS TRANSFERABILITY;1305
8.2.254;DAMAGE IN RUBBER-MODIFIED POLYMERS : EXPERIMENTAL, MODELLING AND COMPUTATIONAL ASPECTS;1307
8.2.255;FAILURE ASSESSMENT DIAGRAMS BASED ON THE CRITERION OF AVERAGE STRESS ;1309
8.2.256;MATERIAL MODELS FOR DAMAGED COMPOSITE LAMINATES;1311
8.2.257;RAMAN SPECTROSCOPY ASSESSMENT OF STIFFNESS REDUCTION AND RESIDUAL STRAINS DUE TO MATRIX CRACKING IN ANGLE – PLY LAMINATES;1313
8.2.258;PHYSICAL MODELLING OF FAILURE PROCESSES IN COMPOSITE MATERIALS;1315
8.2.259;NCF CROSS-PLY LAMINATES: DAMAGE ACCUMULATION AND DEGRADATION OF ELASTIC PROPERTIES;1317
8.2.260;MATRIX CRACK INITIATION AND PROPAGATION IN LAMINATES WITH OFF-AXIS PLIES;1319
8.2.261;STRESS OSCILLATION AND INSTABILITY OF YIELDING IN POLYMERS AND NANOCOMPOSITES;1321
8.2.262;PREDICTION OF CYCLIC DURABILITY OF WOVEN COMPOSITE LAMINATES;1323
8.2.263;REPAIR OF CORRODED AEROSPACE ALUMINIUM PANELS USING ULTRASONIC IMPACT TREATMENT;1325
8.2.264;FATIGUE CRACK INITIATION IN STRESS CONCENTRATION AREAS;1327
8.2.265;HYDROGEN TRAPPING: DEFORMATION AND HEAT TREATMENT EFFECTS IN 2024 ALLOY;1329
8.2.266;AN INTEGRATED METHODOLOGY ASSESSING THE AGING BEHAVIOUR OF AIRCRAFT STRUCTURES;1331
8.2.267;NUMERICAL INVESTIGATION ON THE TENSILE BEHAVIOUR OF PRECORRODED 2024 ALUMINIUM ALLOY;1333
8.2.268;ASSESSMENT OF DEFECTS UNDER COMBINED PRIMARY AND RESIDUAL STRESSES;1335
8.2.269;EFFECT OF RESIDUAL STRESSES ON THE CRACK GROWTH IN ALUMINUM;1337
8.2.270;EFFECT OF THE CRYOGENIC WIRE BRUSHING ON THE SURFACE INTEGRITY AND THE FATIGUE LIFE IMPROVEMENT OF THE AISI 304 STAINLESS STEEL GROUND COMPONENTS;1339
8.2.271;INTERACTION OF RESIDUAL STRESS WITH MECHANICAL LOADING IN FERRITIC STEELS;1341
8.2.272;EVALUATION OF NOVEL POST WELD HEAT TREATMENT IN FERRITIC STEEL REPAIR WELDS BASED ON NEUTRON DIFFRACTION;1343
8.2.273;SURFACE CRACK DEVELOPMENT IN TRANSFORMATION INDUCED FATIGUE OF SMA ACTUATORS;1345
8.2.274;FINITE ELEMENT SIMULATION OF WELDING IN PIPES: A SENSITIVITY ANALYSIS;1347
8.2.275;RESIDUAL STRESS PREDICTION IN LETTERBOX-TYPE REPAIR WELDS;1349
8.2.276;EFFECT OF REFLECTION SHOT PEENING AND FINE GRAIN SIZE ON IMPROVEMENT OF FATIGUE STRENGTH FOR METAL BELLOWS;1351
8.2.277;VISCOSITY EFFECT ON DISPLACEMENTS AND STRESSES OF A TWOPASS WELDING PLAT;1353
8.2.278;SURFACE INTEGRITY IN HIGH SPEED MACHINING OF TI-6WT.%AL-4WT.%V ALLOY;1355
8.2.279;PHASE TRANSFORMATION AND DAMAGE ELASTOPLASTIC MULTIPHASE MODEL FOR WELDING SIMULATION;1357
8.2.280;THE PRESENT SANS INSTRUMENT AND THE NEW HFR-PETTEN SANS FACILITY BASED ON A COLD NEUTRON SOURCE;1359
8.2.281;RESIDUAL STRESS NUMERICAL SIMULATION OF TWO DISSIMILAR MATERIAL WELD JUNCTIONS;1361
8.2.282;IDENTIFICATION OF WELD RESIDUAL STRESS LENGTH SCALES FOR FRACTURE ASSESSMENT;1363
8.2.283;HIGH-RESOLUTION NEUTRON DIFFRACTION FOR PHASE AND RESIDUAL STRESS INVESTIGATIONS;1365
8.2.284;SENSITIVITY OF PREDICTED RESIDUAL STRESSES TO MODELLING ASSUMPTIONS;1367
8.2.285;WELDING EFFECTS ON THIN STIFFENED PANELS;1369
8.2.286;EVALUATION OF RESIDUAL STRESSES IN CERAMIC POLYMER MATRIX COMPOSITES USING FINITE ELEMENT METHOD;1371
8.2.287;TOWARDS DATA-DRIVEN MODELING AND SIMULATION OF MULTIPHYSICS DEGRADING SYSTEMS;1373
8.2.288;MATHEMATICAL MODELLING OF PIEZOCERAMIC TRANSDUCER PERFORMANCE IN THE PRESENCE OF MATERIAL DEFECTS;1375
8.2.289;A CONTINUUM APPROACH FOR IDENTIFYING ELASTIC MODULI OF COMPOSITES;1377
8.2.290;REGULARIZED IDENTIFICATION OF MATERIAL CONSTANTS USING MULTI-OBJECTIVE GRADIENT-BASED METHOD;1379
8.2.291;LOADING AND MATERIAL FEATURES INFLUENCE ON PIEZOELECTRIC MATERIAL PERFORMANCE;1381
8.2.292;MODELING OF PLASMA CHEMICAL DEPOSITION AND DEGRADATION OF SILICON THIN FILMS;1383
8.2.293;A FRACTAL APPROACH INTERPRETATION FOR THE INDENTATION SIZE EFFECT;1385
8.2.294;DESCRIPTION OF MULTI-SCALING POWER LAWS IN FRACTURE AND STRENGTH;1387
8.2.295;THE SPALLING FAILURE AROUND DEEP EXCAVATIONS IN ROCK MASSES;1389
8.2.296;SCALING IN MULTIAXIAL COMPRESSIVE FRACTURE;1391
8.2.297;FRACTURE OF ANTARCTIC FY SEA ICE;1393
8.2.298;MIXED MODE FRACTURE OF BRICKWORK MASONRY;1395
8.2.299;GEOMETRIC SCALING AND INSTABILITY IN FRP-CONCRETE DEBONDING;1397
8.2.300;A SIMPLIFIED MCFT FOR SHEAR CAPACITY SCALING OF R/C BEAMS;1399
8.2.301;INTERPLAY OF SOURCES OF SIZE EFFECTS IN CONCRETE SPECIMENS;1401
8.2.302;SCALE EFFECT IN ELASTIC AND STRENGTH PROPERTIES OF NANOSTRUCTURES;1403
8.2.303;FRACTURE TOUGHNESS ASSESSMENT OF A C-MN STEEL USING MINIATURE SPECIMENS;1405
8.2.304;SIZE EFFECT IN THE BONDING OF SMOOTH AND DEFORMED BARS: NSC VERSUS HPC;1407
8.2.305;SIZE EFFECT IN THE CRACKING OF DRYING SOIL;1409
8.2.306;MODELLING OF THE VOLUME EFFECTS RELATED TO THE UNIXIAL BEHAVIOUR OF CONCRETE. FROM A DISCONTINUOUS TO A MACROSCOPIC APPROACH.;1411
8.2.307;SIZE EFFECT AND R-CURVE IN QUASIBRITTLE FRACTURE;1413
8.2.308;BIFURCATION AND SIZE EFFECT IN A VISCOELASTIC NON-LOCAL DAMAGEABLE CONTINUUM;1415
8.2.309;ULTISCALE NECESSARY AND SUFFICIENT STRENGTH CRITERIA;1417
8.2.310;SIZE EFFECTS: MOVING FORWARDS;1419
8.2.311;AN EXPERIMENTAL STUDY ON RAPID SETTING CONCRETE REPAIR MATERIALS;1421
8.2.312;HIERARCHICAL FAILURE MODELING AND RELATED SCALE-INVARIANT PROBABILITY DISTRIBUTIONS OF STRENGTH;1423
8.2.313;INTERACTION OF TWO ADHESIVELY BONDED WEAK ZONES;1425
8.2.314;MULTIPLE CRACKING IN SURFACE-HARDENED TENSILE SPECIMENS AND THEIR FRACTURE MECHANISMS;1427
8.2.315;FRACTURE CRITERION OF CRACKS INITIATION AND GROWTH;1429
8.2.316;INTERFACIAL CRACKS EMANATING FROM PARTIALLY DEBONDED SUBSURFACE CIRCULAR ELASTIC INCLUSIONS;1431
8.2.317;MECHANICS OF BLOCK STRUCTURES AND ITS APPLICATIONS TO GEODYNAMICS;1433
8.2.318;STATIC AND DYNAMIC RESPONSE OF MULTIPLE DELAMINATIONS;1435
8.2.319;MODELING CRACK GROWTH IN STRUCTURE- NONHOMOGENEOUS MEDIUM UNDER COMPLEX STRESS STATE;1437
8.2.320;NONIDEAL INTERFACE OF A BIMATERIAL WITH DEFECTS UNDER THERMAL LOAD;1439
8.2.321;MULTIPLE CRACKING DEVELOPMENT AT THE PREFRUCTURE STAGE OF ION CRYSTALS;1441
9;Author Index;1443




