The Theory of Materials Failure (häftad)
Format
Häftad (Paperback)
Språk
Engelska
Antal sidor
292
Utgivningsdatum
2016-10-27
Förlag
OUP Oxford
Illustrationer
75 b/w line illustrations
Dimensioner
245 x 170 x 15 mm
Vikt
480 g
Antal komponenter
1
ISBN
9780198794707

The Theory of Materials Failure

Häftad,  Engelska, 2016-10-27
666
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A complete and comprehensive theory of failure is developed for homogeneous and isotropic materials. The full range of materials types are covered from very ductile metals to extremely brittle glasses and minerals.
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Fler böcker av Richard M Christensen

  • Theory of Materials Failure

    Richard M Christensen

    A complete and comprehensive theory of failure is developed for homogeneous and isotropic materials. The full range of materials types are covered from very ductile metals to extremely brittle glasses and minerals. Two failure properties suffice t...

  • Mechanics of Composite Materials

    Richard M Christensen

    A comprehensive account of the basic theory of the mechanical behavior of heterogeneous media, this volume assembles, interprets, and interrelates contributions to the field of composite materials from theoretical research, laboratory developments...

Övrig information

Richard M. Christensen has over many years held positions of responsibility in industry, national laboratories, and academia. He has always been active in professional affairs and has held several leadership positions in professional societies. His technical responsibilities and research interests have been in the mechanics of materials for solids, structures, and non-Newtonian fluids. He holds five patents, has written two books and 100 archive journal papers. These are on the following and related topics: properties of polymers (viscoelasticity), composite materials, wave effects in heterogeneous materials, low density materials (extreme porosity), kinetic crack growth, life prediction and durability, failure criteria for isotropic and anisotropic solids.

Innehållsförteckning

1: The perspective on failure and direction of approach 2: History, conditions, and requirements 3: Isotropic baselines 4: The failure theory for isotropic materials 5: Isotropic materials failure behavior 6: Experimental and theoretical evaluation 7: Isotropic materials failure examples 8: The ductile/brittle transition for isotropic materials 9: Defining yield stress and failure stress (strength) 10: Fracture mechanics 11: Anisotropic, unidirectional fiber composites failure 12: Anisotropic, fiber composite laminates failure 13: Micromechanics failure analysis 14: Nanomechanics failure analysis 15: Damage, cumulative damage, creep, and fatigue failure 16: Probabilistic failure and probabilistic life prediction