Fracture Mechanics (eBook)
XXIII, 375 Seiten
Springer Netherlands (Verlag)
978-1-4020-4837-1 (ISBN)
This book presents, in a unified manner, a variety of topics in Continuum and Fracture Mechanics: energy methods, conservation laws, mathematical methods to solve two-dimensional and three-dimensional crack problems. Moreover, a series of new subjects is presented in a straightforward manner, accessible to under-graduate students. Emphasizing physical or experimental back-grounds, then analysis and theoretical results, this monograph is intended for use by students and researchers in solid mechanics, mechanical engineering and applied mathematics.
This book is an outgrowth of my involvement in two groups of research in solid mechanics, created in 1960 for the French nuclear energy program. At this time, it was decided that France, as a no-oil reservoir country, must be powered by nuclear energy, which represents today 80% of the total - tional energy supply. Long before the construction of the first nuclear plant at Fessenheim in 1973, Electricite de France (EdF) created its first solid mechanics laboratory, appointed researchers and sent them to the universities or abroad in order to learn about theories and new methods of assessment of the safety of structures. Working at EdF, I was training in Professor Jean Mandel's laboratory at Ecole Polytechnique (LMS), Paris. My friend Rene Labbens, working at Framatome (the builder of nuclear plants) was training at the Lehigh University, under the guidance of professors G. R. Irwin and G. C. Sih. We had to work hard, both academically at the u- versities laboratories and performing engineering tasks for our employer. This dual position was a great chance for many of us, since we discovered that real industrial problems are the source of new subjects and research problems to be solved by theoreticians in the universities and conversely we immediately knew if our theoretical work was good or not for appli- tions as revealed in our daily works conducted for our industrial employer.
Contents 7
Preface 13
Notations 17
Deformation and Fracture 23
Energetic Aspects of Fracture 51
Solutions of Crack Problems 82
Thermodynamics of Crack Propagation 117
Dynamic Fracture Mechanics 133
Non Linear Fracture Mechanics 191
The Fluid-Filled Crack 217
Crack Detection by Scattering of Waves 250
Tomographic Evaluation of Materials 269
The Reciprocity Gap Functional for Crack Detection 283
Methods of Solution to Inverse Problems 308
Residual Stresses in Fracture Mechanics 338
Weak Interface Singularities 344
Problems and Solutions 352
References 363
Index 384
Erscheint lt. Verlag | 3.1.2007 |
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Reihe/Serie | Solid Mechanics and Its Applications | Solid Mechanics and Its Applications |
Zusatzinfo | XXIII, 375 p. |
Verlagsort | Dordrecht |
Sprache | englisch |
Themenwelt | Mathematik / Informatik ► Mathematik ► Angewandte Mathematik |
Naturwissenschaften ► Physik / Astronomie ► Mechanik | |
Technik ► Bauwesen | |
Technik ► Maschinenbau | |
Schlagworte | Geometry • Linearity • mechanical engineering • Mechanics • Model • Plasticity • stability • thermodynamics |
ISBN-10 | 1-4020-4837-8 / 1402048378 |
ISBN-13 | 978-1-4020-4837-1 / 9781402048371 |
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