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Superalloys 2020

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Cover of 'Superalloys 2020'

Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 1 Advanced Modeling Tools for Processing and Lifing of Aeroengine Components
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    Chapter 2 Developing Alloy Compositions for Future High Temperature Disk Rotors
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    Chapter 3 Development of AGAT, a Third-Generation Nickel-Based Superalloy for Single Crystal Turbine Blade Applications
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    Chapter 4 Segregation of Solutes at Dislocations: A New Alloy Design Parameter for Advanced Superalloys
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    Chapter 5 Ni–Co-Based Wrought Superalloys Containing High W—Microstructure Design for a Balance of Properties
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    Chapter 6 On the Influence of Alloy Composition on Creep Behavior of Ni-Based Single-Crystal Superalloys (SXs)
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    Chapter 7 Platinum-Containing New Generation Nickel-Based Superalloy for Single Crystalline Applications
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    Chapter 8 Development and Application of New Cast and Wrought Ni-Base Superalloy M647 for Turbine Disk
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    Chapter 9 Alloy Design and Microstructural Evolution During Heat Treatment of Newly Developed Cast and Wrought Ni-Base Superalloy M647 for Turbine Disk Application
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    Chapter 10 γ′ Thermodynamic Simulation and Experimental Validation of Phase Stability in Ni-Based Superalloys
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    Chapter 11 Composition and Temperature Stability of η and δ Phases for Future Nickel-Base Superalloys for Turbine Disks Application
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    Chapter 12 Advanced Alloy Design Program and Improvement of Sixth-Generation Ni-Base Single Crystal Superalloy TMS-238
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    Chapter 13 Phase Equilibria Among A1/TCP/GCP Phases and Microstructure Formation in Ni–Cr–Mo System at Elevated Temperatures
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    Chapter 14 A New Co-free Ni-Based Alloy for Gas Turbine and Exhaust Valve Applications
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    Chapter 15 On the Influence of Alloy Chemistry and Processing Conditions on Additive Manufacturability of Ni-Based Superalloys
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    Chapter 16 Alloying Effects on the Competition Between Discontinuous Precipitation Versus Continuous Precipitation of δ/η Phases in Model Ni-Based Superalloys
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    Chapter 17 Precipitate Phase Stability and Mechanical Properties of Alloy 263 and Variants in Wrought or Cast Form
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    Chapter 18 Creep, Fatigue, and Oxidation Interactions During High and Very High Cycle Fatigue at Elevated Temperature of Nickel-Based Single Crystal Superalloys
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    Chapter 19 Fretting Fatigue Life Extension for Single Crystal Ni-Based Superalloy by Applying Optimized Surface Texturing
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    Chapter 20 Initiation of Fatigue Cracks in a Single-Crystal Nickel-Based Superalloy at Intermediate Temperature
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    Chapter 21 Effect of Re on Long-Term Creep Behavior of Nickel-Based Single-Crystal Superalloys for Industrial Gas Turbine Applications
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    Chapter 22 Evaluation and Comparison of Damage Accumulation Mechanisms During Non-isothermal Creep of Cast Ni-Based Superalloys
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    Chapter 23 High-Temperature Pre-deformation and Rejuvenation Treatment on the Microstructure and Creep Properties of Ni-Based Single-Crystal Superalloys
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    Chapter 24 Evidence of Short-Range Order (SRO) by Dislocation Analysis in Single-Crystal Ni-Based Matrix Alloys with Varying Re Content After Creep
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    Chapter 25 Rationalisation of the Micromechanisms Behind the High-Temperature Strength Limit in Single-Crystal Nickel-Based Superalloys
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    Chapter 26 Local Mechanical Properties at the Dendrite Scale of Ni-Based Superalloys Studied by Advanced High Temperature Indentation Creep and Micropillar Compression Tests
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    Chapter 27 Phenomenological Modeling of the Effect of Oxidation on the Creep Response of Ni-Based Single-Crystal Superalloys
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    Chapter 28 Prediction of Rafting Kinetics of Practical Ni-Based Single-Crystal Superalloys
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    Chapter 29 Creep Anisotropy in Single-Crystal Superalloy DD6 near the [001] Orientation
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    Chapter 30 Equations to Predict the Elastic Modulus of the Individual Gamma and Gamma-Prime Phases in Multi-component Ni-Base Superalloys
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    Chapter 31 Crystal Plasticity Mechanism of Temperature-Dependent Crack Propagation in a Single Crystal Nickel-Based Superalloy
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    Chapter 32 Micro-mechanisms of Cyclic Plasticity at Stress Concentrations in a Ni-Based Single-Crystal Superalloy
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    Chapter 33 Tensile, Low Cycle Fatigue, and Very High Cycle Fatigue Characterizations of Advanced Single Crystal Nickel-Based Superalloys
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    Chapter 34 Competing Mechanism of Creep Damage and Stress Relaxation in Creep-Fatigue Crack Propagation in Ni-Base Superalloys
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    Chapter 35 Microstructure and Material Properties of Alloy 718/713LC Joints Using Orbital Friction Welding
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    Chapter 36 Enhancing the Efficiency and Surface Integrity of Chemical Cleaning During Repair of Ni-Base Superalloy Rotating Disks
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    Chapter 37 HIP + ITF of SS-PREP® Superalloy Powder
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    Chapter 38 An Integrated HIP Heat-Treatment of a Single Crystal Ni-Base Superalloy
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    Chapter 39 3 Ton Melting with CaO Desulfurization of Ni-Base Single Crystal Superalloy TMS-1700, Simulating a Recycling of Used Turbine Blades
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    Chapter 40 On Optimising Ring-Rolling Manufacturability of C&W Nickel Superalloys for Aero-engine Turbine Disc
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    Chapter 41 High-Resolution Diffraction Imaging of Misorientation in Ni-Based Single Crystal Superalloys
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    Chapter 42 Assessment of Mechanical and Metallurgical Features of Inconel 680 Weld Metal
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    Chapter 43 Gamma Prime Precipitate Evolution During Hot Forging of a γ–γ′ Ni-Based Superalloy at Subsolvus Temperatures
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    Chapter 44 Dynamic and Post-dynamic Recrystallization During Supersolvus Forging of the New Nickel-Based Superalloy—VDM Alloy 780
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    Chapter 45 Aspects of High Strain Rate Industrial Forging of Inconel 718
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    Chapter 46 Tuning Strain Localization in Polycrystalline Nickel-Based Superalloys by Thermomechanical Processing
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    Chapter 47 Impact of Coarse γ′ Phase on Recrystallization Modeling in New Ni-Based Superalloy M647
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    Chapter 48 Development of a Prediction Model and Process–Microstructure–Property Database on Forging and Heat Treatment of Superalloy 720Li
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    Chapter 49 Phase-Field Modeling of γ′ and γ″ Precipitate Size Evolution During Heat Treatment of Ni-Based Superalloys
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    Chapter 50 Characteristic Flow Behaviour of γ + γʹ Duplex and Its Significant Applications in Hot Working Process of Superalloys
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    Chapter 51 Abnormal Grain Growth in the Presence of Grain Boundary Pinning Precipitates
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    Chapter 52 The Effect of Shot Peening on the Ductility and Tensile Strength of Nickel-Based Superalloy Alloy 720Li
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    Chapter 53 Metallurgical Mechanisms upon Stress Relaxation Annealing of the AD730TM Superalloy
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    Chapter 54 Metallurgical Analysis of Direct Aging Effect on Tensile and Creep Properties in Inconel 718 Forgings
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    Chapter 55 Experimental and Simulation Study of the Effect of Precipitation Distribution and Grain Size on the AD730TM Ni-Based Polycrystalline Superalloy Tensile Behavior
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    Chapter 56 Understanding the Effects of Alloy Chemistry and Microstructure on the Stress Relaxation Behavior of Ni-Based Superalloys
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    Chapter 57 Is the Carbon Content Really an Issue for the LCF Durability of Forged γ/γ′ Ni-Based Disk Alloys?
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    Chapter 58 High Temperature Dwell Fatigue Crack Growth in Cold-Worked and Direct-Aged 718PlusTM
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    Chapter 59 Contribution of Primary γ′ Precipitates in the Deformation Creep Mechanisms in the Ni-Based Polycrystalline AD730TM Superalloy
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    Chapter 60 Strengthening Mechanisms of Ni–Co–Cr Alloys via Nanotwins and Nanophases
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    Chapter 61 Role of Non-metallic Inclusions and Twins on the Variability in Fatigue Life in Alloy 718 Nickel Base Superalloy
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    Chapter 62 Effect of Nb Alloying Addition on Local Phase Transformation at Microtwin Boundaries in Nickel-Based Superalloys
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    Chapter 63 A New Approach to Strength Prediction of Ni-Base Disk Superalloys with Dual-Phase γ/γ′
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    Chapter 64 Crystal Plasticity Model for Nickel-Based Superalloy René 88DT at Elevated Temperature
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    Chapter 65 Deformation Mechanisms of γ′ and γ″ Co-precipitates in IN718
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    Chapter 66 High-Throughput Approaches to Establish Quantitative Process–Structure–Property Correlations in Ni-Base Superalloy
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    Chapter 67 An Approach Toward Understanding Unstable Gamma Prime Precipitate Evolution and Its Effect on Properties
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    Chapter 68 Modeling Creep of Ni-Base Superalloys for Applications in Advanced Ultra-supercritical Power Generation
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    Chapter 69 Stress-Induced Variant Selection of γ″ Phase in Inconel 718 During Service: Mechanism and Effects on Mechanical Behavior
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    Chapter 70 Enhancing the Creep Strength of Next-Generation Disk Superalloys via Local Phase Transformation Strengthening
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    Chapter 71 Characterization of the Benefit of APS Flash Coatings in Improving TBC Lifetime
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    Chapter 72 Hot Corrosion and Creep Properties of Ni-Base Single-Crystal Superalloys
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    Chapter 73 Investigation into the Effects of Salt Chemistry and SO2 on the Crack Initiation of CMSX-4 in Static Loading Conditions
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    Chapter 74 Using Rapid Thermal Annealing for Studying Early Stages of High-Temperature Oxidation of Superalloys
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    Chapter 75 Measurement and Evaluation of Co-existing Crack Propagation in Single-Crystal Superalloys in Hot Corrosion Fatigue Environments
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    Chapter 76 Critical Hafnium Content for Extended Lifetime of AM1 Single Crystal Superalloy
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    Chapter 77 Laboratory-Scale Replication of Deposit-Induced Degradation of High-Temperature Turbine Components
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    Chapter 78 Suppression of Sulfur Segregation at Scale/Substrate Interface for Sixth-Generation Single-Crystal Ni-Base Superalloy
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    Chapter 79 Development of a New Coating Compatible with Third-Generation Nickel-Based Superalloys and Thermal Barrier Coatings
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    Chapter 80 Recent Progress in Local Characterization of Damage Evolution in Thermal Barrier Coating Under Thermal Cycling
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    Chapter 81 Computational Methods to Accelerate Development of Corrosion Resistant Coatings for Industrial Gas Turbines
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    Chapter 82 The Influence of Hot Corrosion Damage on the Low Cycle Fatigue Fracture Modes of a Disk Superalloy
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    Chapter 83 Recent Developments in the Design of Next Generation γ′-Strengthened Cobalt–Nickel Superalloys
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    Chapter 84 Supersolvus Hot Workability and Dynamic Recrystallization in Wrought Co–Al–W-Base Alloys
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    Chapter 85 Effects of Al, Cr, and Ti on the Oxidation Behaviors of Multi-component γ/γʹ CoNi-Based Superalloys
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    Chapter 86 Microstructure and Tensile Properties of a CoNi-Based Superalloy Fabricated by Selective Electron Beam Melting
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    Chapter 87 Microstructural Effects on Creep Properties in a Co-Base Single Crystal Superalloy
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    Chapter 88 Castability and Recrystallization Behavior of γ′-Strengthened Co-Base Superalloys
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    Chapter 89 The Effect of Alloying on the Thermophysical and Mechanical Properties of Co–Ti–Cr-Based Superalloys
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    Chapter 90 Atomic Structure and Chemical Composition of Planar Fault Structures in Co-Base Superalloys
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    Chapter 91 Effects of Ti and Cr Additions in a Co–Ni–Al–Mo–Nb-Based Superalloy
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    Chapter 92 Machine Learning Assisted Design Approach for Developing γ′-Strengthened Co-Ni-Base Superalloys
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    Chapter 93 The Yield Strength Anomaly in Co–Ni Design Space
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    Chapter 94 Microstructure and Mechanical Properties of Additively Manufactured Rene 65
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    Chapter 95 Novel Approach for Suppressing of Hot Cracking Via Magneto-fluid Dynamic Modification of the Laser-Induced Marangoni Convection
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    Chapter 96 Effect of Carbide Inoculants Additions in IN718 Fabricated by Selective Laser Melting Process
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    Chapter 97 3D Characterization of the Columnar-to-Equiaxed Transition in Additively Manufactured Inconel 718
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    Chapter 98 Anisotropic Deformation and Fracture Mechanisms of an Additively Manufactured Ni-Based Superalloy
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    Chapter 99 Microstructural Control and Optimization of Haynes 282 Manufactured Through Laser Powder Bed Fusion
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    Chapter 100 Additive Manufacturability of Nickel-Based Superalloys: Composition-Process Induced Vapourization
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    Chapter 101 Strain Monitoring During Laser Metal Deposition of Inconel 718 by Neutron Diffraction
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    Chapter 102 Development of a New Alumina-Forming Crack-Resistant High-γ′ Fraction Ni-Base Superalloy for Additive Manufacturing
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    Chapter 103 The Effect of Heat Treatment on Tensile Yielding Response of the New Superalloy ABD-900AM for Additive Manufacturing
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    Chapter 104 Computational Design of Additively Printable Nickel Superalloys
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    Chapter 105 Mechanical Performance of a Non-weldable Ni-Base Superalloy: Inconel 738 Fabricated by Electron Beam Melting
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Title
Superalloys 2020
Published by
Springer International Publishing, January 2020
DOI 10.1007/978-3-030-51834-9
ISBNs
978-3-03-051833-2, 978-3-03-051834-9
Editors

Sammy Tin, Mark Hardy, Justin Clews, Jonathan Cormier, Qiang Feng, John Marcin, Chris O'Brien, Akane Suzuki

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