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Dynamics of Waves and Fracture in Brittle Solid Materials

(Autor)

Buch | Softcover
240 Seiten
2024
Elsevier - Health Sciences Division (Verlag)
978-0-323-96108-0 (ISBN)
189,95 inkl. MwSt
Dynamics of Waves and Fracture in Brittle Solid Materials provides readers with a thorough understanding of the fundamental analytical, experimental, and numerical aspects of waves and dynamic fracture while also exploring the crucial relationship between dynamic fracture and wave motion. Beginning with the basic elastodynamics of waves and mechanics of fracture, the book later advances to discussion of fracture-induced waves and wave-induced fracture including practical case studies of previous seismic disasters and instances of unexpected fracture due to dynamic impact. Clear descriptions of complex dynamic phenomena involving the interaction of elastic waves and fracture in brittle solids is included throughout, as are mathematical equations needed for evaluating the effects of wave motion on fracture development and catastrophic structural and material failures.

Professor Uenishi’s research focuses on the fracture dynamics of solid materials using applied and experimental mechanics. Besides finding a universal condition for earthquake rupture nucleation, he has clarified in novel ways the generation mechanisms of previously unexpected and unrecognized catastrophic fracture phenomena in the field of mechanics and geophysics. He is co-author of Handbook of Blast Engineering; Glossary of Geotechnical Terms; and Geomaterial Testing (all published in Japanese).

1. Introduction to Wave Dynamics and Fracture in Solid Brittle Materials 2. Elastic Waves: Theoretical Background 3. Dynamic Fracture: Theoretical Aspects 4. Fracture-Induced Waves 5. Wave-Induced Fracture 6. Wave Dynamics and Fracture in Solid Brittle Materials Case Studies

Erscheinungsdatum
Verlagsort Philadelphia
Sprache englisch
Maße 151 x 229 mm
Themenwelt Naturwissenschaften Physik / Astronomie Mechanik
Technik Maschinenbau
ISBN-10 0-323-96108-8 / 0323961088
ISBN-13 978-0-323-96108-0 / 9780323961080
Zustand Neuware
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