Fracture mechanics of concrete: Structural application and numerical calculation

Structural Application and Numerical Calculation
Artikelnummer: 978-90-247-2960-9
Einband: Fester Einband
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Concrete has traditionally been known as a material used widely in the construction of roads, bridges and buildings. Since cost effectiveness has always been one of the more important aspects of design, concrete, when reinforced and/or prestressed, is finding more use in other areas of application such as floating marine structures, storage tanks, nuclear vessel containments and a host of other structures. Because of the demand for concrete to operate under different loading and environmen­ tal conditions, increasing attention has been paid to study concrete specimens and structure behavior. A subject of major concern is how the localized segregation of the constituents in concrete would affect its global behavior. The degree of nonhomogeneity due to material property and damage. by yielding and/or cracking depends on the size scale and loading rate under consideration. Segregation or clustering of aggregates at the macroscopic level will affect specimen behavior to a larger degree than it would to a large structure such as a dam. Hence, a knowledge of concrete behavior over a wide range of scale is desired. The parameters governing micro-and macro-cracking and the techniques for evaluating and observing the damage in concrete need to be better understood. This volume is intended to be an attempt in this direction. The application of Linear Elastic Fracture Mechanics to concrete is discussed in several of the chapters.


Concrete has traditionally been known as a material used widely in the construction of roads, bridges and buildings. Since cost effectiveness has always been one of the more important aspects of design, concrete, when reinforced and/or prestressed, is finding more use in other areas of application such as floating marine structures, storage tanks, nuclear vessel containments and a host of other structures. Because of the demand for concrete to operate under different loading and environmen­ tal conditions, increasing attention has been paid to study concrete specimens and structure behavior. A subject of major concern is how the localized segregation of the constituents in concrete would affect its global behavior. The degree of nonhomogeneity due to material property and damage. by yielding and/or cracking depends on the size scale and loading rate under consideration. Segregation or clustering of aggregates at the macroscopic level will affect specimen behavior to a larger degree than it would to a large structure such as a dam. Hence, a knowledge of concrete behavior over a wide range of scale is desired. The parameters governing micro-and macro-cracking and the techniques for evaluating and observing the damage in concrete need to be better understood. This volume is intended to be an attempt in this direction. The application of Linear Elastic Fracture Mechanics to concrete is discussed in several of the chapters.


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VerlagSpringer
EinbandFester Einband
Erscheinungsjahr1984
Seitenangabe292 S.
AusgabekennzeichenEnglisch
MasseH24.1 cm x B16.0 cm x D2.1 cm 606 g
ReiheEngineering Applications of Fracture Mechanics
AutorSih, George C. (Hrsg.) / Ditomasso, A. (Hrsg.)

Alle Bände der Reihe "Engineering Applications of Fracture Mechanics"

Über den Autor George C. (Hrsg.) Sih

George C. Sih, Office of Theoretical and Applied Fracture Mechanics, East China University of Science and Technology Moussa Nait-Abdelaziz, Lille University of Sciences and Technology, Polytech Lille, France Toan Vu-Khanh, Universite du Quebec, Ecole de technologie superieure

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