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Fatigue Of Materials At Very High Numbers Of Loading Cycles: Experimental Techniques, Mechanisms, Modeling And Fatigue Life Assessment
Coles
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Fatigue Of Materials At Very High Numbers Of Loading Cycles: Experimental Techniques, Mechanisms, Modeling And Fatigue Life Assessment in Vernon, BC
By None
Current price: $189.95

Coles
Fatigue Of Materials At Very High Numbers Of Loading Cycles: Experimental Techniques, Mechanisms, Modeling And Fatigue Life Assessment in Vernon, BC
By None
Current price: $189.95
Loading Inventory...
Size: Hardcover
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This book represents the final reports of the scientific projects funded within the DFG-SPP1466 and, hence, provides the reader with the possibility to familiarize with the leading edge of VHCF research. It draws a balance on the existing knowledge and its enhancement by the joint research action of the priority program. Three different material classes are dealt with: structural metallic materials, long-fiber-reinforced polymers and materials used in micro-electro-mechanical systems. The project topics address the development of suitable experimental techniques for high-frequency testing and damage monitoring, the characterization of damage mechanisms and damage evolution, the development of mechanism-based models and the transfer of the obtained knowledge and understanding into engineering regulations and applications.
This book represents the final reports of the scientific projects funded within the DFG-SPP1466 and, hence, provides the reader with the possibility to familiarize with the leading edge of VHCF research. It draws a balance on the existing knowledge and its enhancement by the joint research action of the priority program. Three different material classes are dealt with: structural metallic materials, long-fiber-reinforced polymers and materials used in micro-electro-mechanical systems. The project topics address the development of suitable experimental techniques for high-frequency testing and damage monitoring, the characterization of damage mechanisms and damage evolution, the development of mechanism-based models and the transfer of the obtained knowledge and understanding into engineering regulations and applications.


















