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Self-contained and well illustrated
Complete and comprehensive derivation of mechanical/mathematical results with emphasis on issues of practical importance
Combines classical subjects of fracture mechanics with modern topics such as microheterogeneous materials, piezoelectric materials, thin films, damage Mechanically and mathematically clear and complete derivations of results

Produktbeschreibung
Self-contained and well illustrated

Complete and comprehensive derivation of mechanical/mathematical results with emphasis on issues of practical importance

Combines classical subjects of fracture mechanics with modern topics such as microheterogeneous materials, piezoelectric materials, thin films, damage Mechanically and mathematically clear and complete derivations of results


Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.

Autorenporträt
Dietmar Gross studied Applied Mechanics and received his Engineering Diploma and Doctor of Engineering degree at the University of Rostock. He was Research Associate at the University of Stuttgart and since 1976 he is Professor of Mechanics at the Technische Universität Darmstadt. His research interests are mainly focused on modern solid mechanics including fracture processes on the macro and micro scale and the modeling of advanced materials.

Thomas Seelig studied Mechanics and received his PhD at TU Darmstadt. He spent some years as a researcher at the Fraunhofer Institute for Mechanics of Materials in Freiburg and since 2009 is Professor of Mechanics at Karlsruhe University. His research field is solid mechanics with an emphasis on fracture and micromechanics. His work has been concerned with the numerical simulation of dynamic fracture processes and currently focuses on the deformation and failure behaviour of polymer blends and composites.

Rezensionen
From the reviews:

"The book 'Fracture Mechanics with Introduction to Micromechanics' explains in an easy way fracture processes in homogenous and heterogeneous modern engineering materials with a partial insight into the underlying micromechanism. ... This book is essential for several reasons ... . In my opinion this excellent book can be recommended both for educational purposes (i.e. advanced courses on composite structures) as well as for scientists, engineers, and Ph. D. students." (Tomasz Sadowski, Zeitschrift für Angewandte Mathematik und Mechanik, Vol. 87 (1), 2007)

"This textbook is an extended English edition of three previous German editions. ... this textbook is a well brief presentation of modern concepts and methods of fracture mechanics in both macro- and microscales. The book may be recommended to students, researchers and industry practitioners interested in theoretical backgrounds of fracture mechanics." (I. A. Parinov, Zentralblatt MATH, Vol. 1110 (12), 2007)