Experimental and Numerical Investigation of Advanced Materials and Structures

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This book presents the latest results related to experimental and numerical investigations of advanced materials and structures. It covers the fields of mechanical, civil and materials engineering.

The idea of this monograph is to present the latest results related to experimental and numerical investigations of advanced materials and structures. The contributions cover the field of mechanical, civil and materials engineering, ranging from new modelling and simulation techniques, advanced analysis techniques, optimization of structures and materials and constitutive modelling. Well known experts present their research on damage and fracture of material and structures, materials modelling and evaluation up to image processing and visualization for advanced analyses and evaluation.

Autorentext
Andreas Öchsner, born 1970, is Full Professor in the Department Solid Mechanics and Design at the University of Technology Malaysia (UTM), Malaysia and Head of the Advanced Materials and Structure Lab. Having obtained a Diploma Degree (Dipl.-Ing.) in Aeronautical Engineering at the University of Stuttgart (1997), Germany, he spent the time from 1997-2003 at the University of Erlangen-Nuremberg as a research and teaching assistant to obtain his Doctor of Engineering Sciences (Dr.-Ing.). From 2003-06, he worked as Assistant Professor in the Department of Mechanical Engineering and Head of the Cellular Metals Group affiliated with the University of Aveiro, Portugal. His research interests are related to experimental and computational mechanics, cellular metals and thin structures and interphases. His research activities were recognised in 2010 by the award of a higher doctorate degree (D.Sc.) by the University of Newcastle, Australia.

Inhalt
Neural Model for Prediction of Tires Eigenfrequencies.- Effect of Steady Ampoule Rotation on Radial Dopant Segregation in Vertical Bridgman Growth.- Discontinuity Detection in the Vibration Signal of Turning Machines.- Visualization of Global Illumination Variations in Motion Segmentation.- Evaluation of Fatigue Behavior of SAE 9254 Steel Suspension Springs Manufactured by Two Different Processes: Hot and Cold Winding.-Yield Criteria for Incompressible Materials in the Shear Stress Space V. A. Kolupaev, A. Bolchoun, H. Altenbach.- The Optimum Design of Laminated Slender Beams with Complex Curvature using a Genetic Algorithm.- A Finite Element Approach For the Vibration of Single-Walled Carbon Nanotubes.- Characteristics of Welded Thin Sheet AZ31 Magnesium Alloy.- Localization of Rotating Sound Sources using Time Domain Beamforming Code.- Mathematical Modelling of the Physical Phenomena in the Interelectrode Gap of the EDM Process by Means of Cellular Automata and Field Distribution Equations.- Free Vibration Analysis of Clamped-Free Composite Elliptical Shell with a Plate Supported By Two Aluminum Bars.- Vibration Analysis of Carbon Fiber T-Plates with Different Damage Patterns.- Mechanical Characteristics Of Aa5083 - Aa6013 Weldment Joined With AlSi12 And AlSi5 Wired.- Numeric Simulation of the Penetration of 7.62 mm Armour Piercing Projectile into Ceramic/Composite Armour.- In-situ TEM Observation of Deformations in a Single Crystal Sapphire During Nanoindentation.- The Effect of Nanotube Interaction on the Mechanical Behavior of Carbon Nanotube Filled Nanocomposites.- An Automatic Process to Identify Features on Boreholes Data by Image processing techniques.- An Optimization Procedure to Estimate the Permittivity of Ferrite-Polymer Composite

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Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783319005058
    • Editor Holm Altenbach, Andreas Öchsner
    • Sprache Englisch
    • Auflage 2013
    • Größe H241mm x B160mm x T20mm
    • Jahr 2013
    • EAN 9783319005058
    • Format Fester Einband
    • ISBN 3319005057
    • Veröffentlichung 30.08.2013
    • Titel Experimental and Numerical Investigation of Advanced Materials and Structures
    • Untertitel Advanced Structured Materials 41
    • Gewicht 588g
    • Herausgeber Springer International Publishing
    • Anzahl Seiten 280
    • Lesemotiv Verstehen
    • Genre Mathematik

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