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Nonlinear Homogenization and its Applications to Composites, Polycrystals and Smart Materials
Proceedings of the NATO Advanced Research Workshop, held in Warsaw, Poland, 23-26 June 2003
Taschenbuch von P. Ponte Castaneda (u. a.)
Sprache: Englisch

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Beschreibung
Although several books and conference proceedings have already appeared dealing with either the mathematical aspects or applications of homogenization theory, there seems to be no comprehensive volume dealing with both aspects. The present volume is meant to fill this gap, at least partially, and deals with recent developments in nonlinear homogenization emphasizing applications of current interest. It contains thirteen key lectures presented at the NATO Advanced Workshop on Nonlinear Homogenization and Its Applications to Composites, Polycrystals and Smart Materials. The list of thirty one contributed papers is also appended.

The key lectures cover both fundamental, mathematical aspects of homogenization, including nonconvex and stochastic problems, as well as several applications in micromechanics, thin films, smart materials, and structural and topology optimization. One lecture deals with a topic important for nanomaterials: the passage from discrete to continuum problems by using nonlinear homogenization methods. Some papers reveal the role of parameterized or Young measures in description of microstructures and in optimal design. Other papers deal with recently developed methods ¿ both analytical and computational ¿ for estimating the effective behavior and field fluctuations in composites and polycrystals with nonlinear constitutive behavior.

All in all, the volume offers a cross-section of current activity in nonlinear homogenization including a broad range of physical and engineering applications. The careful reader will be able to identify challenging open problems in this still evolving field. For instance, there is the need to improve bounding techniques for nonconvex problems, as well as for solving geometrically nonlinear optimum shape-design problems, using relaxation and homogenization methods.
Although several books and conference proceedings have already appeared dealing with either the mathematical aspects or applications of homogenization theory, there seems to be no comprehensive volume dealing with both aspects. The present volume is meant to fill this gap, at least partially, and deals with recent developments in nonlinear homogenization emphasizing applications of current interest. It contains thirteen key lectures presented at the NATO Advanced Workshop on Nonlinear Homogenization and Its Applications to Composites, Polycrystals and Smart Materials. The list of thirty one contributed papers is also appended.

The key lectures cover both fundamental, mathematical aspects of homogenization, including nonconvex and stochastic problems, as well as several applications in micromechanics, thin films, smart materials, and structural and topology optimization. One lecture deals with a topic important for nanomaterials: the passage from discrete to continuum problems by using nonlinear homogenization methods. Some papers reveal the role of parameterized or Young measures in description of microstructures and in optimal design. Other papers deal with recently developed methods ¿ both analytical and computational ¿ for estimating the effective behavior and field fluctuations in composites and polycrystals with nonlinear constitutive behavior.

All in all, the volume offers a cross-section of current activity in nonlinear homogenization including a broad range of physical and engineering applications. The careful reader will be able to identify challenging open problems in this still evolving field. For instance, there is the need to improve bounding techniques for nonconvex problems, as well as for solving geometrically nonlinear optimum shape-design problems, using relaxation and homogenization methods.
Zusammenfassung

Lectures cover both fundamental, mathematical aspects of homogenization, including nonconvex and stochastic problems, as well as several applications in micromechanics, thin films, smart materials, and structural and topology optimization

Inhaltsverzeichnis
Topology Optimization with the Homogenization and the Level-Set Methods.- Thin Films of Active Materials.- The Passage from Discrete to Continuous Variational Problems: a Nonlinear Homogenization Process.- Approaches to Nonconvex Variational Problems of Mechanics.- On G-Compactness of the Beltrami Operators.- Homogenization and Optimal Design in Structural Mechanics.- Homogenization and Design of Functionally Graded Composites for Stiffness and Strength.- Homogenization for Nonlinear Composites in the Light of Numerical Simulations.- Existence and Homogenization for the Problem ?div a(x, Du)=f When a(x, ?) is a Maximal Monotone Graph in ? for Every x.- Optimal Design in 2-D Conductivity for Quadratic Functionals in the Field.- Linear Comparison Methods for Nonlinear Composites.- Models of Microstructure Evolution in Shape Memory Alloys.- Stochastic Homogenization: Convexity and Nonconvexity.
Details
Erscheinungsjahr: 2004
Fachbereich: Analysis
Genre: Mathematik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Reihe: NATO Science Series II: Mathematics, Physics and Chemistry
Inhalt: xxi
355 S.
ISBN-13: 9781402026225
ISBN-10: 1402026226
Sprache: Englisch
Ausstattung / Beilage: Paperback
Einband: Kartoniert / Broschiert
Redaktion: Ponte Castaneda, P.
Gambin, B.
Telega, J. J.
Herausgeber: P Ponte Castaneda/J J Telega/B Gambin
Hersteller: Springer Netherland
Springer Netherlands
NATO Science Series II: Mathematics, Physics and Chemistry
Maße: 235 x 155 x 21 mm
Von/Mit: P. Ponte Castaneda (u. a.)
Erscheinungsdatum: 15.09.2004
Gewicht: 0,575 kg
Artikel-ID: 102327748
Zusammenfassung

Lectures cover both fundamental, mathematical aspects of homogenization, including nonconvex and stochastic problems, as well as several applications in micromechanics, thin films, smart materials, and structural and topology optimization

Inhaltsverzeichnis
Topology Optimization with the Homogenization and the Level-Set Methods.- Thin Films of Active Materials.- The Passage from Discrete to Continuous Variational Problems: a Nonlinear Homogenization Process.- Approaches to Nonconvex Variational Problems of Mechanics.- On G-Compactness of the Beltrami Operators.- Homogenization and Optimal Design in Structural Mechanics.- Homogenization and Design of Functionally Graded Composites for Stiffness and Strength.- Homogenization for Nonlinear Composites in the Light of Numerical Simulations.- Existence and Homogenization for the Problem ?div a(x, Du)=f When a(x, ?) is a Maximal Monotone Graph in ? for Every x.- Optimal Design in 2-D Conductivity for Quadratic Functionals in the Field.- Linear Comparison Methods for Nonlinear Composites.- Models of Microstructure Evolution in Shape Memory Alloys.- Stochastic Homogenization: Convexity and Nonconvexity.
Details
Erscheinungsjahr: 2004
Fachbereich: Analysis
Genre: Mathematik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Reihe: NATO Science Series II: Mathematics, Physics and Chemistry
Inhalt: xxi
355 S.
ISBN-13: 9781402026225
ISBN-10: 1402026226
Sprache: Englisch
Ausstattung / Beilage: Paperback
Einband: Kartoniert / Broschiert
Redaktion: Ponte Castaneda, P.
Gambin, B.
Telega, J. J.
Herausgeber: P Ponte Castaneda/J J Telega/B Gambin
Hersteller: Springer Netherland
Springer Netherlands
NATO Science Series II: Mathematics, Physics and Chemistry
Maße: 235 x 155 x 21 mm
Von/Mit: P. Ponte Castaneda (u. a.)
Erscheinungsdatum: 15.09.2004
Gewicht: 0,575 kg
Artikel-ID: 102327748
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