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Related lectures (31)
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Fracture Mechanics: Materials Behavior Analysis
Delves into fracture mechanics, stress intensity factor, crack tip plasticity, and practical J testing for crack advance detection.
Mechanical Properties of Materials: Toughness and Hardness
Explores toughness, hardness, and material properties, including critical crack length and hardness testing methods.
Fracture Mechanics: High-Speed Testing
Explores high-speed fracture testing and the importance of kinetic effects in fracture mechanics.
Seismic Engineering: Failure Mechanisms
Explores the failure mechanisms of reinforced concrete walls in seismic engineering and the capacity design of steel and RC wall buildings.
Fracture of Materials: Review of Exercises
Covers exercises on fracture of materials, statistical failure analysis, Weibull model, and microcrack size analysis.
Fracture Mechanics: Introduction and Crack Growth Analysis
Covers the basics of fracture mechanics, including crack shape and growth analysis.
Fracture Mechanics: Toughening Mechanisms and Resistance Curve
Explores toughening mechanisms, resistance curves, stress intensity analysis, and energy dissipation in fracture mechanics and fiber-reinforced composites.
Mechanical Tests: Creep and Fracture Mechanics
Explores creep tests, deformation, and fracture mechanics in mechanical tests.
Materials Fatigue: Fracture and Toughness
Explores fatigue, fracture toughness, stress intensity, and crack propagation in materials.
Crack Tip Plasticity in Materials
Explores crack tip plasticity in materials, emphasizing the importance of the plastic zone in crack resistance.
Fracture of Materials: Exercises Review
Covers a review of exercises related to fracture of materials, including rate-dependent fracture and ductile-brittle transitions.
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