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Lecture
Fracture Mechanics: Energy Balance Approach
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Related lectures (31)
Toughness of Materials
Covers the concept of toughness of materials, emphasizing resistance to crack propagation and plastic deformation.
Fracture and Toughness of Materials
Explores fracture, toughness, and crack propagation in materials, emphasizing surface energy and material resistance.
Fracture and Toughness of Materials
Covers stress intensity, fracture, and toughness of materials, including the behavior of ductile and brittle materials.
Fracture Mechanics: Defects and Energy
Explores fracture mechanics, defects, stress factors, and energy release in material fracture.
Crack Tip Plasticity in Materials
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Explores crack tip plasticity in materials, emphasizing the importance of the plastic zone in crack resistance.
Fracture Mechanics: Crack Growth and Stability
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Explores crack propagation, stability, cohesive zones, and fatigue crack growth in materials.
Elastic Plastic Fracture Mechanics
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Explores elastic plastic fracture mechanics, energy balance for crack advance, 'R curve' analysis, and path independence of the J-integral.
Fracture Mechanics: Materials Behavior Analysis
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Delves into fracture mechanics, stress intensity factor, crack tip plasticity, and practical J testing for crack advance detection.
Fracture of Materials: Revision
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Covers fracture mechanics, stress intensity factor, rubber testing, and high-speed testing in materials.
Fracture of Materials: Review of Exercises
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Covers exercises on fracture of materials, statistical failure analysis, Weibull model, and microcrack size analysis.
Fracture Mechanics: Energy Analysis
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Explores energy analysis in fracture mechanics, emphasizing unstable crack growth and the importance of compliance in structural behavior.
Fracture of Materials: Review of Exercises
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Covers the review of exercises related to fracture of materials and estimating crack length.
Macromechanics of Orthotropic Composites
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Explores the behavior of orthotropic composites under plane stresses and the elasticity of anisotropic materials.
Fracture Mechanics: Crack Growth and Stress Intensity Factor
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Explores crack growth, stress intensity factor, and fracture toughness in materials.
Fracture of Composite Materials
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Explores fracture mechanics of composite materials, discussing fiber characteristics, failure modes, and testing methods.
Fracture Mechanics: Crack Growth and Weakest Link
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Explores fracture mechanics, crack growth, and the weakest link theory, emphasizing the statistical distribution of crack sizes and the significance of the largest crack in material failure.
Fracture Analysis: Energy and Mechanics
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Explores macroscopic energy analysis of fracture, focusing on unstable crack growth and energy mechanics.
Fracture Mechanics Fundamentals
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Covers the basics of fracture mechanics, including key concepts and historical examples.
Fracture of Materials: Review of Exercises 8
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Reviews exercises on fracture concepts like essential work and tearing energy.
Fracture Mechanics: Time-Dependent Behavior
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Explores time-dependent fracture mechanics and creep in materials, including ductile-brittle transitions and pressure testing of pipes.
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