Fracture, Fatigue, Failure and Damage Evolution, Volume 7

Proceedings of the 2017 Annual Conference on Experimental and Applied Mechanics
 
 
Springer (Verlag)
  • erschienen am 7. August 2018
 
  • Buch
  • |
  • Softcover
  • |
  • VIII, 127 Seiten
978-3-319-87407-4 (ISBN)
 

Fracture, Fatigue, Failure and Damage Evolution , Volume 7 of the Proceedings of the 2017 SEM Annual Conference & Exposition on Experimental and Applied Mechanics, the seventh volume of nine from the Conference, brings together contributions to this important area of research and engineering.

Session organizers include: Jay Carroll, Shuman Xia, Allison Beese, Ryan Berke, Garrett Pataky, Samantha Daly, Kavan Hazeli, Antonios Kontsos, Omer Ozgur Capraz, Scott Grutzik, Onome Scott-Emaukpor

The collection presents early findings and case studies on a wide range of areas, including:

  • Mechanics of Energy & Energetic Materials
  • Vibration Effects in Fracture & Fatigue
  • Fracture & Fatigue of Additively Manufactured Materials
  • In Situ Techniques for Fatigue & Fracture
  • Microscale & Microstructural Effects on Mechanical Behavior
  • Fracture & Fatigue of Composites
  • Integration & Validation of Models with Experiments
  • Fracture & Fatigue in Extreme Environments
  • Novel Experimental Methods for Fatigue and Fracture
  • Fracture of Brittle & Ductile Materials
  • Interfacial Fracture

Softcover reprint of the original 1st ed. 2018
  • Englisch
  • Cham
  • |
  • Schweiz
Springer International Publishing
  • Für Beruf und Forschung
  • 30
  • |
  • 33 s/w Abbildungen, 87 farbige Abbildungen, 30 farbige Tabellen
  • |
  • 30 Tables, color; 87 Illustrations, color; 33 Illustrations, black and white; VIII, 127 p. 120 illus., 87 illus. in color.
  • Höhe: 27.9 cm
  • |
  • Breite: 21 cm
  • 373 gr
978-3-319-87407-4 (9783319874074)
10.1007/978-3-319-62831-8
weitere Ausgaben werden ermittelt
Chapter 1.Interface Mechanical Strength and Elastic Constants Calculations via Nano Impact and Nanomechanical Raman Spectroscopy.- Chapter 2.Effect of Strain Rate and Interface Chemistry on Failure in Energetic Material.- Chapter 3.Characterization of Crack Tip Plasticity in IN-617 Using Indentation and Nano-mechanical Raman Spectroscopy.- Chapter 4.The Two-Way Relationship between Residual Stress and Fatigue/Fracture.- Chapter 5.Designing Brittle Fracture Specimens to Investigate Environmentally Assisted Crack Growth.- Chapter 6.Flexible Energy Harvesting/Storage Structures for Flapping Wing Air Vehicles.- Chapter 7.The Influence of Formulation Variation and Thermal Boundary Conditions on the Near-Resonant Thermomechanics of Mock Explosives.- Chapter 8.Detecting Fatigue Crack Closure and Crack Growth Delays after an Overload Using DIC Measurements.- Chapter 9.In-situ Observation of Damage Evolution in Quasi-Isotropic CFRP Laminates.- Chapter 10.Contamination-induced Degradation/Enhancement of Interfacial Toughness and Strength in Polymer Matrix Composite Interfaces.- chapter 11.Simultaneous Extraction of Mixed-Mode Traction-Separation Relations.- Chapter 12.Damage Evolution in 304L Stainless Steel Partial Penetration Laser Welds.- Chapter 13.Cross-axis Coupling and Phase Angle Effects due to Multiaxial Vibration.- Chapter 14.Behavior of Steel-Concrete Composite Beams under Fatigue Loads.- Chapter 15.Studying the Fracture of Tropical Wood Species with the Grid Method.- Chapter 16.Generalization of Integral Parameters to Fatigue Loading in Room Temperature.- Chapter 17.Fracture Behavior of Unidirectional Composites Analyzed by Acoustic Emissions Technique.
Fracture, Fatigue, Failure and Damage Evolution, Volume 7 of the Proceedings of the 2017 SEM Annual Conference & Exposition on Experimental and Applied Mechanics, the seventh volume of nine from the Conference, brings together contributions to this important area of research and engineering.

Session organizers include: Jay Carroll, Shuman Xia, Allison Beese, Ryan Berke, Garrett Pataky, Samantha Daly, Kavan Hazeli, Antonios Kontsos,Omer Ozgur Capraz, Scott Grutzik, Onome Scott-Emaukpor

The collection presents early findings and case studies on a wide range of areas, including:

- Mechanics of Energy & Energetic Materials

- Vibration Effects in Fracture & Fatigue

- Fracture & Fatigue of Additively Manufactured Materials

- In Situ Techniques for Fatigue & Fracture

- Microscale & Microstructural Effects on Mechanical Behavior

- Fracture & Fatigue of Composites

- Integration & Validation of Models with Experiments

- Fracture & Fatigue in Extreme Environments

- Novel Experimental Methods for Fatigue and Fracture

- Fracture of Brittle & Ductile Materials

- Interfacial Fracture

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