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Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry Book

Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry
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Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry, Fracture and 'slow' crack growth reflect the response of a material (i.e., its microstructure) to the conjoint actions of mechanical and chemical driving forces and are affected by temperature. There is therefore a need for quantitative understanding and , Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry
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  • Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry
  • Written by author Robert Wei
  • Published by Cambridge University Press, 11/17/2010
  • Fracture and 'slow' crack growth reflect the response of a material (i.e., its microstructure) to the conjoint actions of mechanical and chemical driving forces and are affected by temperature. There is therefore a need for quantitative understanding and
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Book Categories

Authors

1 Introduction 1

2 Physical Basis of Fracture Mechanics 9

3 Stress Analysis of Cracks 26

4 Experimental Determination of Fracture Toughness 50

5 Fracture Considerations for Design (Safety) 72

6 Subcritical Crack Growth: Creep-Controlled Crack Growth 86

7 Subcritical Crack Growth: Stress Corrosion Cracking and Fatigue Crack Growth (Phenomenology) 103

8 Subcritical Crack Growth: Environmentally Enhanced Crack Growth under Sustained Loads (or Stress Corrosion Cracking) 120

9 Subcritical Crack Growth: Environmentally Assisted Fatigue Crack Growth (or Corrosion Fatigue) 158

10 Science-Based Probability Modeling and Life Cycle Engineering and Management 183

App Publications By R. P. Wei and Colleagues 199


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Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry, Fracture and 'slow' crack growth reflect the response of a material (i.e., its microstructure) to the conjoint actions of mechanical and chemical driving forces and are affected by temperature. There is therefore a need for quantitative understanding and , Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry

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Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry, Fracture and 'slow' crack growth reflect the response of a material (i.e., its microstructure) to the conjoint actions of mechanical and chemical driving forces and are affected by temperature. There is therefore a need for quantitative understanding and , Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry

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Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry, Fracture and 'slow' crack growth reflect the response of a material (i.e., its microstructure) to the conjoint actions of mechanical and chemical driving forces and are affected by temperature. There is therefore a need for quantitative understanding and , Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry

Fracture Mechanics: Integration of Mechanics, Materials Science and Chemistry

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