Sonstiges, Englisch, 420 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g
Sonstiges, Englisch, 420 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g
ISBN: 978-3-908453-44-4
Verlag: Trans Tech Publications
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Weitere Infos & Material
The Fatigue Behavior of Steel Structures under Random Loading Low Cycle Fatigue Behavior and Microcracks Nucleation on Duplex Stainless Steels High Cycle Fatigue Behavior of Normalized 0.15% C Steel under Tension-Compression and Torsion Loading On the Cyclic Stability and Fatigue Performance of Ultrafine-Grained Interstitial-Free Steel under Mean StressFatigue Crack Growth Resistance of Special Nodular Cast IronsInternal Fatigue Failure Mechanism of High Strength Steels in Gigacycle RegimeAdvances in Cyclic Behavior and Lifetime Modeling of Tempered Martensitic Steels Based on Microstructural ConsiderationsThe Fatigue Properties of Duplex Stainless Steels: Role of MicrostructureComparison of the Fatigue Crack Propagation Resistance of a+? and ? Titanium AlloysHigh Cycle Fatigue Behavior of Magnesium Alloys under Corrosive EnvironmentThe Fretting Fatigue Behavior of Ti-6Al-4VCyclic Depth-Sensing Indentation of Gold WireThe High Cycle Fatigue and Fracture Behavior of Friction Stir Welded Aluminum Alloy 2024An Investigation of the High Cycle Fatigue and Final Fracture Behavior of Aluminum Alloy 2219Low Cycle Fatigue in Model Al-Si Alloys. A Contribution to the Understanding of Cyclic Damage in Two Phase MaterialsHigh Temperature Low-Cycle Fatigue, Deformation Microstructure and Final Fracture Behavior of a Nickel-Base SuperalloyAn Investigation of the Cyclic Fatigue and Final Fracture Behavior of a Titanium AlloyUnderstanding the Fatigue Behaviour of NiTiCu Shape Memory Alloy Wire Thermal ActuatorsMechanisms and Mechanics of Fatigue Crack Propagation in Zr-Based Bulk Metallic GlassDirect Comparisons of the Fatigue Behavior of Bulk-Metallic Glasses and Crystalline AlloysSurface Cracks in Round Bars under Cyclic Tension or BendingSome Applications of Fractal Fracture Mechanics to Describe the Fatigue Behaviour of MaterialsA Study of Fatigue (Cyclic Deformation) Behavior in FCC Metals Using Strain Rate Change TestsA Dissipated Energy Approach to Fatigue Crack Growth in Ductile Solids and Layered Materials