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Introduction to Fracture Mechanics

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Introduction to Fracture Mechanics presents an introduction to the origins, formulation and application of fracture mechanics for the design, safe operation and life prediction in structural materials and components. The book introduces and informs the reader on how fracture mechanics works and how it is so different from other forms of analysis that are used to characterize mechanical properties. Chapters cover foundational topics and the use of linear-elastic fracture mechanics, involving both K-based characterizing parameter and G-based energy approaches, and how to characterize the fracture toughness of materials under plane-strain and non plane-strain conditions using the notion of crack-resistance or R-curves. Other sections cover far more complex nonlinear-elastic fracture mechanics based on the use of the J-integral and the crack-tip opening displacement. These topics largely involve continuum mechanics descriptions of crack initiation, slow crack growth, eventual instability by overload fracture, and subcritical cracking.

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  • Vægt290 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Cleavage Fatigue Rice Ceramics Fracture mechanics Stress corrosion Fracture Corrosion fatigue Creep Hydrogen embrittlement Hutchinson Stress Intensity Factor Damage Tolerant Design Variable Amplitude Loading Composites Fracture Toughness Cyclic plasticity Constraint Microstructural Effects Steady-State Creep J-Integral Polymeric Materials Fatigue crack growth Strain Energy Release Rate Nondestructive evaluation Metallic materials Leak-before-break JIC Small cracks 1/r Active-path corrosion CTOD as a fracture criterion Crack-tip opening displacement (CTOD) singularity Deflected cracks Creep Crack Growth Crack-tip opening angle C*Ceramic fatigue Characterizing parameter approach Environmentally assisted cracking Crack Closure Crack-growth toughness Crack resistance curves Fatigue Striations Environmentally assisted fracture fracture mechanisms Crack-tip constraint Crack-tip shielding Crack-tip stress singularity Damage-tolerant life prediction Interface Cracks Ideal fracture strength J-based resistance curves Intrinsic vs. extrinsic toughening kic Energy approach to fracture Failure by yielding versus fracture Metal fatigue Fatigue Threshold KIc fracture toughness Measurement of growth rates Mechanical heart valves Medical prostheses Measurement of CTOD Micromechanics modeling Microvoid Coalescence Mixed-mode fracture mechanics Orowan fracture theory Paris law Griffith fracture theory J-solutions Intergranular cracking KIscc Relationship to J-integral RKR model for stress-controlled brittle fracture Rosengren (HRR) singularity load ratio Inclined cracks Two-parameter fracture mechanics Model for strain-controlled ductile fracture Pre-tensioned bolts Quasi-cleavage Plane stress vs. plane strain Prandtl field T-stress Static modes
    Machine Name: SAXO081