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Statistical Meso-Mechanics of Damage and Failure: How Microdamage Induces Disaster - Yilong Bai, Mengfen Xia, Fujiu Ke

Statistical Meso-Mechanics of Damage and Failure: How Microdamage Induces Disaster (eBook)

Series Publication of Multiscale Mechanics
eBook Download: PDF
2019 | 1st ed. 2019
XIV, 497 Seiten
Springer Singapore (Verlag)
978-981-329-192-8 (ISBN)
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149,79 inkl. MwSt
(CHF 146,30)
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This book introduces a trans-scale framework necessary for the physical understanding of breakdown behaviors and presents some new paradigm to clarify the mechanisms underlying the trans-scale processes. The book, which is based on the interaction of mechanics and statistical physics, will help to deepen the understanding of how microdamage induces disaster and benefit the forecasting of the occurrence of catastrophic rupture. It offers notes and problems in each part as interesting background and illustrative exercises.
Readers of the book would be graduate students, researchers, engineers working on civil, mechanical and geo-engineering, etc. However, people with various background but interested in disaster reduction and forecasting, like applied physics, geophysics, seismology, etc., may also be interested in the book. 



Yilong Bai graduated from the University of Science and Technology of China in 1963. Since graduation, he has been associate Professor and Professor at the Institute of Mechanics, Chinese Academy of Sciences. In 1991, he was elected Member of Chinese Academy of Sciences. His research involves in impact dynamics and damage mechanics.  Bai has published over 150 research papers and two monographs (Academic Press, London and Pergamon, Oxford).

Mengfen Xia graduated from the Department of Physics, Perking University (China) in 1962. After graduation, he continued his research there as an assistant Professor, associate Professor and Professor in the Department of Physics, Perking University. Since 1989, he is invited as a Visiting Professor by the Institute of Mechanics, Chinese Academy of Sciences. Xia has authored over 100 research papers on plasma physics, nonlinear science, and statistical microdamage mechanics.

Fujiu Ke graduated from the Department of Physics, Peking University (China) in 1967. From 1973 to 1987, she was working in the Institute of Physics, Chinese Academy of Sciences. Since 1987, she has been working in the Department of Physics, Beijing University of Aeronautics and Astronautics where she serves as Professor. Her research involves plasma physics, damage mechanics, and molecular simulations.


This book introduces a trans-scale framework necessary for the physical understanding of breakdown behaviors and presents some new paradigm to clarify the mechanisms underlying the trans-scale processes. The book, which is based on the interaction of mechanics and statistical physics, will help to deepen the understanding of how microdamage induces disaster and benefit the forecasting of the occurrence of catastrophic rupture. It offers notes and problems in each part as interesting background and illustrative exercises.Readers of the book would be graduate students, researchers, engineers working on civil, mechanical and geo-engineering, etc. However, people with various background but interested in disaster reduction and forecasting, like applied physics, geophysics, seismology, etc., may also be interested in the book. 
Erscheint lt. Verlag 3.9.2019
Zusatzinfo XIV, 497 p. 244 illus., 143 illus. in color.
Sprache englisch
Themenwelt Mathematik / Informatik Mathematik Angewandte Mathematik
Naturwissenschaften Biologie Ökologie / Naturschutz
Naturwissenschaften Geowissenschaften Geologie
Naturwissenschaften Physik / Astronomie Mechanik
Naturwissenschaften Physik / Astronomie Optik
Technik Maschinenbau
Schlagworte Breakdown Behavior • Catastrophic Disaster • catastrophic failure • Critical Catastrophe • Critical Sensitivity • Damage and Failure in Heterogeneous Media • Deformation in Media with Mesoscopic Heterogeneities • Evolution-Induced Catastrophe • Meso-Scale Mechanics • Micro-Damage Population • size effect
ISBN-10 981-329-192-3 / 9813291923
ISBN-13 978-981-329-192-8 / 9789813291928
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