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Dynamic Fracture Mechanics (Cambridge Monographs on Mechanics)
 
 
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Dynamic Fracture Mechanics (Cambridge Monographs on Mechanics) [Paperback]

L. B. Freund (Author)

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Book Description

Cambridge Monographs on Mechanics March 28, 1998
This volume emphasizes fundamental concepts, both on the development of mathematical models of fracture phenomena and on the analysis of these models. Cases involving stress waves impinging on cracks, tractions suddenly applied to the faces of cracks, and rapid crack growth and arrest are considered in detail. Most of the work is concerned with the behavior of nominally elastic materials, but available results on elastic-plastic and elastic-viscoplastic materials are included. Connections to experimental results and to applications in structural mechanics, seismology, and materials science are noted whenever possible.

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"This comprehensive review of a most difficult subject reflects the author's considerable experience and maturity in this area...Interesting directions for future research are suggested in the treatment of the topics." Applied Mechanics Reviews

Book Description

This volume emphasizes fundamental concepts, both on the development of mathematical models of fracture phenomena and on the analysis of these models. Cases involving stress waves impinging on cracks, tractions suddenly applied to the faces of cracks, and rapid crack growth and arrest are considered in detail. Most of the work is concerned with the behavior of nominally elastic materials, but available results on elastic-plastic and elastic-viscoplastic materials are included.

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Inside This Book (learn more)
First Sentence:
The field of fracture mechanics is concerned with the quantitative description of the mechanical state of a deformable body containing a crack or cracks, with a view toward characterizing and measuring the resistance of materials to crack growth. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
equilibrium stress intensity factor, stress intensity factor field, intensity factor history, crack tip speed, active plastic zone, stress work density, half plane crack, crack face loading, dilatational wavefront, cleavage crack growth, normalized crack speed, physical crack tip, crack tip motion, crack face pressure, stress wave loading, crack tip singular field, crack growth solutions, crack tip end, net stress intensity factor, stationary crack problem, steady crack growth, crack tip cohesive zone, energy flux integral, antiplane shear deformation, dynamic fracture phenomena
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Cagniard-de Hoop
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