Fatigue of Materials III (eBook)
XV, 275 Seiten
Springer International Publishing (Verlag)
978-3-319-48240-8 (ISBN)
The Minerals, Metals & Materials Society (TMS) is a member-driven international professional society dedicated to fostering the exchange of learning and ideas across the entire range of materials science and engineering, from minerals processing and primary metals production, to basic research and the advanced applications of materials. Included among its nearly 13,000 professional and student members are metallurgical and materials engineers, scientists, researchers, educators, and administrators from more than 70 countries on six continents. For more information on TMS, visit www.tms.org.
The Minerals, Metals & Materials Society (TMS) is a member-driven international professional society dedicated to fostering the exchange of learning and ideas across the entire range of materials science and engineering, from minerals processing and primary metals production, to basic research and the advanced applications of materials. Included among its nearly 13,000 professional and student members are metallurgical and materials engineers, scientists, researchers, educators, and administrators from more than 70 countries on six continents. For more information on TMS, visit www.tms.org.
Cover 1
Title Page 3
Copyright Page 4
Table of Contents 5
Preface 8
About the Organizers 10
Aluminum 14
Improvement of Fatigue Properties of Cast Aluminum Alloy A356 by Warm Deformation 15
Role of Dispersoids on the Fatigue Behavior of Aluminum Alloys:A Review 23
A Study on Fatigue Crack Closure Behavior in Aluminum Alloy 7075 T6 35
Advanced Materials 43
Fatigue Behavior of Ultra-Fine Grained Ti-6AI-4V Alloy 44
Composites 63
Quasi-Static, Fatigue and Fracture Behavior of Aluminum Alloy Composite Used in Brake Drums 64
Effect of Cobalt Content on Fatigue Lifetimes and Short FatigueCrack Growth Behavior of Tungsten-Cobalt Cemented Carbides 86
Experimental and Numerical Studies on Multistage Strength Degradation inNotched Concrete Beams Under Repeated Loads: A Review 97
Strain Energy Diagram for Characterising Fatigue Behaviour in StructuralMembers and Machine Parts Subjected to Repeated Loads 115
Ferrous Materials 132
Cyclic Strain Resistance, Deformation and Fracture Behavior of a Novel Alloy Steel 133
Scanning Electron Microscopy of Hydrogen-Exposed 304 Stainless Steel Bending Fatigue Samples 152
Influence of Long Term Ageing on Fatigue Crack Growth Behavior of P91 Steel at Different Temperatures 160
Multistage Strength Degradation in S25C Steel Under Torsional Cyclic Loading and Its Engineering Applications 173
The Stress Controlled Cyclic Fatigue and Fracture Behavior of Alloy Steel300M 189
The Effects of Pre-Straining Conditions on Austenite Stability during Fatigue of Multiphase Trip Steels 208
Fatigue Characteristic of Medium Carbon Steel with DifferentGrain Structures 218
Modeling 227
On the Role of Plasticity-Induced Fatigue Crack Closure inHigh-Strength Steels 228
Fatigue Life Prediction in Aluminum Alloy 2618-T6 Using a Paris LawModification 239
Fatigue Crack Growth in Pre-Stressing Steel Wires: Transient andSteady-State Regimes 251
Evolution of Crack Aspect Ratio in Sheets Under Tension and BendingCyclic Loading 262
Author Index 272
Subject Index 274
| Erscheint lt. Verlag | 1.12.2016 |
|---|---|
| Reihe/Serie | The Minerals, Metals & Materials Series | The Minerals, Metals & Materials Series |
| Zusatzinfo | XV, 275 p. |
| Verlagsort | Cham |
| Sprache | englisch |
| Themenwelt | Technik ► Bauwesen |
| Technik ► Maschinenbau | |
| Schlagworte | Advanced materials • aluminum alloys • composite materials • ferrous materials • Modeling |
| ISBN-10 | 3-319-48240-8 / 3319482408 |
| ISBN-13 | 978-3-319-48240-8 / 9783319482408 |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
| Haben Sie eine Frage zum Produkt? |
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