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Mechanics of Fatigue (Mechanical and Aerospace Engineering Series) [Hardcover]

Vladimir V. Bolotin (Author)

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Book Description

June 24, 1999 0849396638 978-0849396632 1
Mechanics of Fatigue addresses the range of topics concerning damage, fatigue, and fracture of engineering materials and structures. The core of this resource builds upon the synthesis of micro- and macro-mechanics of fracture. In micromechanics, both the modeling of mechanical phenomena on the level of material structure and the continuous approach are based on the use of certain internal field parameters characterizing the dispersed micro-damage. This is referred to as continuum damage mechanics.

The author develops his own theory for macromechanics, called analytical fracture mechanics. This term means the system cracked body - loading or loading device - is considered as a mechanical system and the tools of analytical (rational) mechanics are applied thoroughly to describe crack propagation until the final failure.

Chapter discuss:
  • preliminary information on fatigue and engineering methods for design of machines and structures against failures caused by fatigue
  • fatigue crack nucleation, including microstructural and continuous models
  • theory of fatigue crack propagation
  • fatigue crack growth in linear elastic materials subject to dispersed damage
  • fatigue cracks in elasto-plastic material, including crack growth retardation due to overloading as well as quasistationary approximation
  • fatigue and related phenomena in hereditary solids
  • application of the theory fatigue crack growth considering environmental factors
  • unidirectional fiber composites with ductile matrix and brittle, initially continuous fibers
  • laminate composites

    Mechanics of Fatigue serves students dealing with mechanical aspects of fatigue, conducting research in fracture mechanics, structural safety, mechanics of composites, as well as modern branches of mechanics of solids and structures.

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    Inside This Book (learn more)
    First Sentence:
    In a narrow sense, the term fatigue of materials and structural components means damage and fracture due to cyclic, repeatedly applied stresses. Read the first page
    Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
    generalized resistance force, growth rate diagrams, nondamaged material, specific fracture work, crack growth diagrams, analytical fracture mechanics, thin plastic zone, crack growth histories, plastic zone model, deformative properties, hereditary media, fractographic picture, residual fracture toughness, resistance generalized forces, crack growth history, effective tip radius, generalized driving force, ruptured grains, microdamage accumulation, hereditary deformation, crack growth start, dispersed damage, cracked domain, crack trajectories, elliptical delamination
    Key Phrases - Capitalized Phrases (CAPs): (learn more)
    Crack Propagation Under Nonsteady Loading, First Kinking of Fatigue Cracks, Continuum Approach, Effects of Plastic Straining, Elliptical Planar Cracks, Randomization of Material Resistance, Some Generalizations of Griffith's Problem, Transport of Environmental Agents
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