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Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials—3

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Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 1 Thermal Fatigue of an Yttrium-Modified Single-Crystal Superalloy
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    Chapter 2 High Temperature Fatigue Behaviour of a Mechanically Alloyed Ods Nickel Base Superalloy
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    Chapter 3 Thermo-Mechanical Fatigue of Metal Matrix Composites
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    Chapter 4 The Low Cycle Fatigue Behaviour of Titanium Alloys
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    Chapter 5 Fatigue Behavior of Ceramics Under Static and Cyclic Loading
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    Chapter 6 Cyclic Deformation and Low-Cycle Failure of Graphites
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    Chapter 7 The Effect of Waveform on Low Cycle Fatigue of PC
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    Chapter 8 Low Cycle Fatigue in WC-Co Cemented Carbides
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    Chapter 9 Redistribution of Residual Stresses During Fatigue
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    Chapter 10 Microstructure and Fatigue
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    Chapter 11 Low Cycle Fatigue of Nitrogen Alloyed Martensitic Stainless Steels
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    Chapter 12 Low Cycle Fatigue of a Duplex Stainless Steel Alloyed with Nitrogen
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    Chapter 13 Microstructurally-Based Simulation of Multiaxial Low-Cycle Fatigue Damage of 316L Stainless Steel in Terms of the Behaviour of a Crack Population
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    Chapter 14 Study on Metallography of Low Cycle Creep Fatigue Fracture of Type 316 Stainless Steels
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    Chapter 15 Elasto-plastic behaviour of in 718 containing the δ-Ni 3 Cb precipitation phase
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    Chapter 16 The Role of Microstructural Processes in the Application of the Incremental Step Test to Determine the Cyclic Stress-Strain Curve of an Aluminium Alloy
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    Chapter 17 The Influence of Mechanical Prehistory on the Cyclic Stress-Strain Response and Microstructure of Single-Phase Metallic Materials
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    Chapter 18 A Study of Fatigue Damage Using the Electrical Potential Method
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    Chapter 19 Quantitative Fractography of Fatigue Fracture in Nodular Iron
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    Chapter 20 The Effect of Microstructure on the Low-Cycle Fatigue Behavior of Ductile Cast Iron
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    Chapter 21 Quantitative Relations Between the Structure of Cast Iron and its Mechanical Properties Obtained by Means of Modified LCF-Method to Determine Allowable Strains
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    Chapter 22 Microstructural Effect Controlling Exhaustion of Ductility in Extremely Low Cycle Fatigue
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    Chapter 23 Microstructural Changes vs. Accumulation of Energy in Fatigue Tested Medium-Carbon Steel
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    Chapter 24 The Influence of Laser Transformation Hardening on Fatigue Crack Initiation of 40Cr Steel
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    Chapter 25 Microstructural Aspects of Low Cycle Fatigue of Pearlitic Steels
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    Chapter 26 Grain-Size Dependence of the Fatigue Properties of Ni-20AT.%Cr
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    Chapter 27 Influence of Time and Temperature on Crack Growth Rate in the P/M Nickelbase Alloy Udimet 700 With Three Different Microstructures
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    Chapter 28 Dynamics of Cyclic Plastic Straining in Copper Single Crystals
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    Chapter 29 Creep-Fatigue-Oxidation Interactions on the High Temperature Low-Cycle Fatigue Damage of Austenitic Stainless Steels: Past, Current and Future
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    Chapter 30 Thermal Fatigue of Pearlitic Nodular Cast Iron
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    Chapter 31 Duplex Steel under Thermal Cycling: Experiments and a Micromechanical Model
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    Chapter 32 Thermal Fatigue Anisotropy of the Oxide Dispersion Strengthened Nickel Base Superalloy Inconel MA 760
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    Chapter 33 Thermomechanical Fatigue on Turboengine Superalloys
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    Chapter 34 Mechanical Behaviour and Microstructure of an Ods-Superalloy Tested Under LCF and TMF Loading.
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    Chapter 35 Creep-Fatigue Damage Evaluation of Modified 9Cr-1Mo Steel Based on the Overstress Concept
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    Chapter 36 Crack Growth in Low Cycle Fatigue with Compressive Hold For 1Cr-Mo-V and 12Cr-Mo-V Steels
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    Chapter 37 A Physically Based Model for Predicting LCF Life Under Creep Fatigue Interaction
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    Chapter 38 Study on Fracture Mechanism and a Life Estimation Method for Low Cycle Creep-Fatigue Fracture of Type 316 Stainless Steels
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    Chapter 39 Creep-Fatigue Behaviour of Heat Resistant Steels Under Service-Type Long-Term Conditions
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    Chapter 40 Evaluation of Creep-Fatigue Interaction Based on Creep Damage Mode
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    Chapter 41 High Temperature Inelastic Deformation of in 738 LC Under Uniaxial and Multiaxial Loading
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    Chapter 42 High Temperature LCF Behaviors of DS Superalloys
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    Chapter 43 Fatigue and Short Crack Propagation Behaviour of Cast Nickel Base Alloys in 713 C and Mar-M-247 LC at High Temperatures
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    Chapter 44 Behaviour of Austenitic Steel in Plane Stress State Under Thermal Cycling
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    Chapter 45 Hold Time Influence on the Thermal Fatigue Behaviour of Austenitic and Martensitic Stainless Steels
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    Chapter 46 Three Dimensional Thermal Strain and Stress Analysis of Single Edge Wedge Specimens
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    Chapter 47 Low Cycle Thermal-Mechanical Fatigue on 316L Steel
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    Chapter 48 Creep Behaviour of the Superalloy in738LC Under Superimposed Creep-Fatigue Loading
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    Chapter 49 Low Cycle Fatigue Behaviour of in 738Lc at 1223 K
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    Chapter 50 Cyclic Deformation and Crack Initiation in Tubes Under Multiaxial Loading
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    Chapter 51 Cyclic Deformation and Fatigue Life Prediction of Anisotropic A1-6061-T6 Rods Under Biaxial Loadings
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    Chapter 52 Comparison of the Prediction Capability of Crack Initiation Life Prediction Methods for Biaxial Loading Conditions
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    Chapter 53 The Multiaxial Rainflow Method
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    Chapter 54 The Criterion of Thermal Fatigue in Biaxial Stress States
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    Chapter 55 Multiaxial Low Cycle Fatigue of Mar-M247LC DS Superalloy at Elevated Temperature
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    Chapter 56 Creep Relaxation from an Initial Biaxial Stress State
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    Chapter 57 Plastic Strain Energy in Low-Cycle Fatigue
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    Chapter 58 A Modeling of Fattgue Crack Growth in Notched Specimen Subjected to Complex Stresses and its Application to Life Assessment
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    Chapter 59 Multiaxial Low Cycle Fatigue of a Normalized Carbon Steel
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    Chapter 60 LCF-Experiments on Single- and Poly-Crystalline Metals — SRR99 and In 738 LC — Under Uniaxial And Multiaxial Strain Controlled Loading Conditions
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    Chapter 61 A Description of Dynamic Creep and a Failure Criterion of the AlMgSi Alloy In Biaxial Stress States
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    Chapter 62 Reinforced Concrete Beams Under Multiaxial Loading Weakness of Elasto-Plastic Idealizations
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    Chapter 63 A Constitutive Relation for Transient and Stable Cyclic Loading
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    Chapter 64 Constitutive Equations for Cyclic Damage Evolution
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    Chapter 65 Verification of a Microstructure-Related Constitutive Model by Optimized Identification of Material Parameters
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    Chapter 66 A Unified Model Approach Combining Rate-Dependent and Rate-Independent Plasticity
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    Chapter 67 Constitutive Equations for Elastic-Plastic Material Behaviour Under Extremely High Multiaxial Loads and Fatigue Loads
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    Chapter 68 Unified Inelastic Constitutive Equation for Cyclic Loading at High Temperature and its Application to 304 Stainless Steel and 2 1/4Cr-1mo Steel
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    Chapter 69 Cyclic Thermoviscoplasticity of an Aluminium Alloy AS5U3 Experiments and Modelization
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    Chapter 70 Generalization of the Kocks-Mecking Type Constitutive Model for Cyclic Deformation Description of Metals
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    Chapter 71 Concept to Improve the Approximation of Material Functions in Unified Models
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    Chapter 72 Constitutive Equations for Modelling Elasto — Plastic Cyclic Behaviour of Structural Materials.
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    Chapter 73 Application of a transient cyclic plasticity model for determination of the incremental step test material curve
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    Chapter 74 Description of the CSSc by a Certain Class of Elastic-Plastic Models
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    Chapter 75 Modelling Elastoplastic Deformations in Grey Cast Iron
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    Chapter 76 Hysteresis Energy and Fatigue Life of Selected Sintered Steels
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    Chapter 77 Constitutive Equations for Fiber Reinforced Polyamides
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    Chapter 78 Probabilistic Method of Evaluating Fatigue Life of Aircraft Structure Components
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    Chapter 79 Microcrack Density as an Indication of Accumulated Fatigue Damage
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    Chapter 80 A Description of Short Fatigue Crack Behaviour Based on Surface Strain Redistribution
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    Chapter 81 Short Crack Growth and Fatigue Life Evaluation
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    Chapter 82 Effects of Energy Dissipation and Energy Screening on Fatigue Crack Extension in Viscoelastic-plastic Solids
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    Chapter 83 The ΔJ-Integral and the Relation Between Deformation Behaviour and Microstructure in the LCF-Range
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    Chapter 84 Methods for Material Characterization in the Range of High Crack Growth Rates
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    Chapter 85 Small Crack Behavior and Assessment of High Temperature Fatigue Damage for 2.25Cr-1Mo Steel
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    Chapter 86 Transition from Small Crack to Large Crack on Creep-Fatigue Crack Propagation
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    Chapter 87 Naturally Initiated Fatigue Small Crack Growth in a Single Crystal Ni-Base Superalloy at Elevated Temperature.
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    Chapter 88 The Effect of the Compressive Stress-Strain Excursion on the Elastic-Plastic Small Crack Growth in Alloy 718 at 650°C
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    Chapter 89 The Effect of Superimposed Vibrational Stress on Low Cycle Fatigue Crack Propagation Behaviour
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    Chapter 90 Transient Effects in the Cyclic Crack Growth of Engineering Materials
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    Chapter 91 Computation of the Crack Extension Energy Rate in Elasto-plastic Fracture Mechanics and Applications in Engineering
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    Chapter 92 The Growth of Fatigue Short Cracks Emanating From Small Holes in 16Mn Steel Specimens
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    Chapter 93 Low-Cycle Fatigue of Cyclic Hardening and Softening Materials
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    Chapter 94 Crack Initiation and Low-Cycle Fatigue Behaviour of AlZnMgccu 1.5, X 10 Nicralti 32 20 and X 2 Nicomo 18 12
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    Chapter 95 Microcrack Growth in Al 2024 and its Effect on Fatigue Life in the LCF-Regime
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    Chapter 96 Low Cycle Fatigue Crack Initiation and Growth at Room and Elevated Temperatures
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    Chapter 97 Study on Fatigue Crack Propagation Rate in Welded Joints
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    Chapter 98 Numerical Study of Fatigue Crack in Welded Joints
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    Chapter 99 Effect of Hold Time and Crevice Corrosion on Lcf-Behaviour of Turbine Steels in Boiler Feed Water at 90 °C
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    Chapter 100 Fatigue and Fracture Behavior of Carbon Fiber Reinforced Plastic Under Combined Tensile and Torsional Stress and Influences of Water Absorption
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    Chapter 101 Mechanisms of Hydrogen Embrittlement During Low Cycle-Fatigue in Metastable Austenite
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    Chapter 102 The Effect of SO 2 Bearing Atmospheres on Fatigue Failure of SAF 2205 and 316 Stainless Steel at 700°C
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    Chapter 103 The Environment Enhanced Crack Growth Behaviour in Low Cycle Fatigue Regime at High Temperature
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    Chapter 104 A numerical procedure to calculate residual stresses and fatigue life of pressurized components after autofrettage
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    Chapter 105 Simulation of the Multiaxial Loading Influence on the Fatigue Life of Materials and Structures Under Operational Conditions
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    Chapter 106 The Effect of Minor Cycles on the Growth Rate of Small Cracks in a Turbine Disc Alloy
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    Chapter 107 LCF-Failure Analysis of an Aero-Engine Turbine Wheel
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    Chapter 108 Life Prediction and Microstructures of Dissimilar Metal Welds
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    Chapter 109 Case Studies on Utilizing J-Integral to Low-Cycle Fatigue Problems
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    Chapter 110 Elastic-Plastic Behaviour of a Simulated Transverse Fillet-Welded Lap Joint Subjected to in-Plane Tensile Loading
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    Chapter 111 Low Cycle Fatigue of Welded Joints in a Low Alloy Ferritic Steel at 565°C
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    Chapter 112 Low Cycle Fatigue Life Prediction of Fossil Plant Components
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    Chapter 113 A Model for Damage and Lifetime Prediction Taking into Account the Backstress
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    Chapter 114 Thermodynamic Analysis of Fatigue Damage Process
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    Chapter 115 The Fatigue Evolution of Fractal Defects in Metals
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    Chapter 116 Uncertainties in Low Cycle Fatigue Test Data and Reliability of Component Life Predictions
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    Chapter 117 LCF Behaviour of a Cast Steel
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    Chapter 118 Effect of Single Over-Straining on Surface Crack Growth Behaviour of Low Cycle Fatigue in Ti-6A1-4V Alloy
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    Chapter 119 Low-Cycle Fatigue Life Prediction of Circumferentially Notched Cylindrical Components
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    Chapter 120 Notch Fatigue Behaviour of Nickel Base Alloys
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    Chapter 121 Analysis of Local Stress-Strain State and Low-Cycle Fatigue of Components with Large Pad Stress-Coined Holes
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    Chapter 122 Estimation of Creep-Fatigue Life From Creep and Fatigue Data (Extrapolation of Best-Fit Equation of Sus304 to Other Materials)
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    Chapter 123 Effect of Local Fatigue Damage on High Temperature Slow Strain Rate Fracture Initiation
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    Chapter 124 Application of Viscoplastic Modelling to Creep-Fatigue Life Prediction
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    Chapter 125 Concept of Fatigue Effective Stress and Constitutive Equation of Damaged Material
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    Chapter 126 New Fatigue Life Equation and Elasticity Modulus Defect
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    Chapter 127 Life of Structural Steels Under Cyclic Loading at Complex Stress State
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    Chapter 128 Fatigue Maps and Mean Load Dependences
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    Chapter 129 Multiaxial Loading in the Program States for Assessment of Limit States
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    Chapter 130 Estimation of the Structural Members Low-Cycle Fatigue Durability
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    Chapter 131 Lifetime prediction for thermal fatigue: development of a stochastic model
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    Chapter 132 Bauschinger Effect During the Low Cycle Fatigue of Low Alloy and Pearlitic Steels and their Welds
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    Chapter 133 Fatigue Life Prediction in High Strength Steel Weldments
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    Chapter 134 Strength to Low Cycle Straining and Fracture of Mechanically Heterogenous Welded Joints
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    Chapter 135 Steels Durable Strength in the Presence of Cavitational Wear
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    Chapter 136 Crack Initiation Kinetics Prior to Tensile Specimens Fracture
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    Chapter 137 Cyclic Plastic Deformation of Two Rs Aluminium Alloys
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Title
Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials—3
Published by
Springer Netherlands, December 2012
DOI 10.1007/978-94-011-2860-5
ISBNs
978-9-40-105269-6, 978-9-40-112860-5
Editors

Rie, K.-T., Grünling, H. W., König, G., Neumann, P., Nowack, H., Schwalbe, K.-H., Seeger, T.

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The data shown below were compiled from readership statistics for 90 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
France 1 1%
Germany 1 1%
Unknown 88 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 22 24%
Student > Master 15 17%
Researcher 11 12%
Student > Doctoral Student 6 7%
Other 6 7%
Other 14 16%
Unknown 16 18%
Readers by discipline Count As %
Engineering 40 44%
Materials Science 25 28%
Agricultural and Biological Sciences 2 2%
Earth and Planetary Sciences 1 1%
Economics, Econometrics and Finance 1 1%
Other 1 1%
Unknown 20 22%