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Engineering Against Fracture - pocketboek


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Engineering Against Fracture

This volume consists of selected papers from the first conference on Engineering Against Fracture, held in Patras, Greece, May 28-30, 2008.The book delivers a wealth of scientific works aiming to provide solutions to a number of engineering problems found in several industrial sectors including aeronautics, ship building, material fabrication etc. Following the unique conference concept, Engineering Against Fracture represents the interdisciplinary actions needed for conceptualising, establishing, testing and finally solving an engineering problem taking into account all the necessary interactions. This is the new model which drives engineering in the 21st century.

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EAN (ISBN-13): 9789048181193
ISBN (ISBN-10): 9048181194
Gebonden uitgave
pocket book
Verschijningsjaar: 2010
Uitgever: Springer
596 Bladzijden
Gewicht: 0,888 kg
Taal: eng/Englisch

Boek bevindt zich in het datenbestand sinds 2011-03-16T21:00:36+01:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2020-04-03T22:40:08+02:00 (Amsterdam)
ISBN/EAN: 9789048181193

ISBN - alternatieve schrijfwijzen:
90-481-8119-4, 978-90-481-8119-3
alternatieve schrijfwijzen en verwante zoekwoorden:
Auteur van het boek: pantel
Titel van het boek: non fracture, engineering against fracture

Gegevens van de uitgever

Auteur: S. G. Pantelakis; C. A. Rodopoulos
Titel: Engineering Against Fracture - Proceedings of the 1st Conference
Uitgeverij: Springer; Springer Netherland
581 Bladzijden
Verschijningsjaar: 2010-11-06
Dordrecht; NL
Gedrukt / Gemaakt in
Gewicht: 0,902 kg
Taal: Engels
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
XI, 581 p.

BC; Structural Materials; Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik; Materialwissenschaft; Verstehen; Retarder; alloy; crystal; damage; fatigue; fracture; fracture mechanics; magnesium; mechanics; modeling; polymer; simulation; stress; surfaces; thin films; Classical Mechanics; Solid Mechanics; Theoretical and Applied Mechanics; Engineering Design; Structural Materials; Classical Mechanics; Solid Mechanics; Engineering Mechanics; Engineering Design; Klassische Mechanik; Maschinenbau: Festkörpermechanik; Maschinenbau; Konstruktion, Entwurf

Keynote Dual Scale Fatigue Crack Monitoring Scheme Considering Random Material, Geometric and Load Characteristics, by G.C. Sih; Ball-Burnishing and Roller-Burnishing to Improve Fatigue Performance of Structural Alloys, by L. Wagner, T. Ludian and M. Wollmann; Exploitation of the TRIP Effect for the Development of Formable, Fracture and Fatigue Resistant Steels for Automotive Applications, by Gregory N. Haidemenopoulos; Multifunctional Materials Used in Automotive Industry: A Critical Review, by K. Salonitis, J. Pandremenos, J. Paralikas and G. Chryssolouris; Hybrid Metal Laminates for Low Weight Fuselage Structures, by M. Pacchione, and E. Hombergsmeier; Session 1 Engineering Properties: Effect of Talc Filler Content on Poly(Propylene) Composite Mechanical Properties, by Lubomir Lapcik Jr., Pavlina Jindrova and Barbora Lapcikova; Fracture Properties of Polypropylene Reinforced with Short Glass Fibres: The Influence of Temperature, Notch Length and Geometry, by Petr Elisek and Miroslav Raab; Influence of Width of Specimen on Tensile Properties of NiCo Thin Film, by Jun-Hyub Park, Joong-Hyok An, Yun-Bae Jeon, Yun-Jae Kim and Yong-Hak Huh; Session 2 Fatigue Damage Physics and Modeling: Dynamic Properties and Fatigue Failure of Aircraft Component, by S. Kuznetsov, E. Ozolinsh, I. Ozolinsh, I. Pavelko and V. Pavelko; Investigation of the Fatigue Behaviour of the Structural Magnesium Alloy AZ31, by Sp.G. Pantelakis, A.N. Chamos and V. Spiliadis; Session 3 Engineering Properties II: Coulomb Failure Surfaces in Ductile Nonlinear Elastic Materials, by N.P. Andrianopoulos, V.M. Manolopoulos and J.T. Dernikas; Effect of Stress on the Fire Reaction Properties of Polymer Composite Laminates, by A.E. Elmughrabi, M. Robinson and A.G. Gibson; Next Generation Composite Aircraft Fuselage Materials Under Post-crash Fire Conditions G. La Delfa, J.W. Luinge and A.G. Gibson Progressive Fracture Analysis of Planar Lattices and Shape-Morphing Kagome Structure Konstantinos I. Tserpes Session 4 Fatigue Damage (Experimental) Fatigue Behavior of Non-crimp Fabrics Peter Horst and Stephan Adden Fatigue Crack Growth Assessment of Corroded Aluminum Alloys Al.Th. Kermanidis and Sp.G. Pantelakis Fatigue Crack Growth Behavior Under Spectrum Loading D. Kujawski and S. Stoychev Thermo-Mechanical Methods for Improving Fatigue Performance of Wrought Magnesium Alloys Muhammad Shahzad and Lothar Wagner Small Crack in a Simulated Columnar Polycrystalline Aggregate with Random 2D and 3D Lattice Orientations I. Simonovski and L. Cizelj Session 5 Applied Fracture Mechanics Bonded Crack Retarders for Enhanced Fail Safety and Damage Tolerance in Aircraft Structures P.E. Irving, D. Figueroa-Gordon and X. Zhang, M. Boscolo Investigations on Fracture of Collector Copper Lamellas L. Marsavina, N. Faur, R. Susan-Resiga, and R. Negru The Regularities of Fatigue Crack Growth in Airframes Elements at Real Operation Conditions I. Pavelko and V. Pavelko Session 6 Engineering Applications Fracture in Electronics William J. Plumbridge Improving the Crashworthiness of Aluminium Rail Vehicles D. Zangani, M. Robinson and G. Kotsikos Information Fusion in Ad hoc Wireless Sensor Networks for Aircraft Health Monitoring Nikos Fragoulis, Vassilis Tsagaris and Vassilis Anastassopoulos Roll Forming of AHSS: Numerical Simulation and Investigation of Effects of Main Process Parameters on Quality K. Salonitis, J. Paralikas and G. Chryssolouris Session 7 Scale Effects and Modeling Dependency of Micro-mechanical Properties of Gold Thin Films on Grain

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