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Mechanics of Fracture Initiation and Propagation: Surface and Volume Energy Density Applied as Failure Criterion (Softcover Reprint of the Original 1s

Mechanics of Fracture Initiation and Propagation

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"Mechanics of Fracture Initiation and Propagation" by George C. Sih is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

The assessment of crack initiation and/or propagation has been the subject of many past discussions on fracture mechanics. Depending on how the chosen failure criterion is combined with the solution of a particular theory of continuum mechanics, the outcome could vary over a wide range. Mod elling of the material damage process could be elusive if the scale level of observation is left undefined. The specification of physical dimension alone is not sufficient because time and temperature also play an intimate role. It is only when the latter two variables are fixed that failure predictions can be simplified. The sudden fracture of material with a pre-existing crack is a case in point. Barring changes in the local temperature,* the energy released to create a unit surface area of an existing crack can be obtained by considering the change in elastic energy of the system before and after crack extension. Such a quantity has been referred to as the critical energy release rate, G e, or stress intensity factor, K Ie. Other parameters, such as the crack opening displacement (COD), path-independent J-integral, etc. , have been proposed; their relation to the fracture process is also based on the energy release concept. These one-parameter approaches, however, are unable simultaneously to account for the failure process of crack initiation, propagation and onset of rapid fracture. A review on the use of G, K I, COD, J, etc. , has been made by Sih [1,2].

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Best For: Students and professionals in physics and engineering focusing on fracture mechanics and material failure.
Focus: Application of surface and volume energy density as criteria for fracture initiation and propagation.
Covers: Theoretical approaches to crack initiation and propagation within continuum mechanics frameworks.
Why It Matters: Provides a detailed examination of failure criteria that influence the modeling of material damage processes in engineering materials.

"Mechanics of Fracture Initiation and Propagation" by George C. Sih is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

Topic: Dynamics

Author: George C. Sih

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

The assessment of crack initiation and/or propagation has been the subject of many past discussions on fracture mechanics. Depending on how the chosen failure criterion is combined with the solution of a particular theory of continuum mechanics, the outcome could vary over a wide range. Mod elling of the material damage process could be elusive if the scale level of observation is left undefined. The specification of physical dimension alone is not sufficient because time and temperature also play an intimate role. It is only when the latter two variables are fixed that failure predictions can be simplified. The sudden fracture of material with a pre-existing crack is a case in point. Barring changes in the local temperature,* the energy released to create a unit surface area of an existing crack can be obtained by considering the change in elastic energy of the system before and after crack extension. Such a quantity has been referred to as the critical energy release rate, G e, or stress intensity factor, K Ie. Other parameters, such as the crack opening displacement (COD), path-independent J-integral, etc. , have been proposed; their relation to the fracture process is also based on the energy release concept. These one-parameter approaches, however, are unable simultaneously to account for the failure process of crack initiation, propagation and onset of rapid fracture. A review on the use of G, K I, COD, J, etc. , has been made by Sih [1,2].

AuthorGeorge C. Sih
PublisherSpringer
Published2012-09-24
ISBN-139789401056601
BindingPaperback
LanguageEnglish
SubjectsScience
TopicDynamics
SeriesEngineering Applications of Fracture Mechanics

Format: Paperback

Language: English

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