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Lecture
Fracture Mechanics: Cohesive Zone Model
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Related lectures (58)
Fracture and Toughness of Materials
Covers stress intensity, fracture, and toughness of materials, including the behavior of ductile and brittle materials.
Toughness of Materials
Covers the concept of toughness of materials, emphasizing resistance to crack propagation and plastic deformation.
Materials Fatigue: Fracture and Toughness
Explores fatigue, fracture toughness, stress intensity, and crack propagation in materials.
Flexible Probes: Mechanics and Design
Explores critical strain, bending mechanics, and strain calculation in flexible probes.
Fracture Mechanics: Stress Intensity Factor
Explores stress intensity factor in fracture mechanics, crack propagation prediction, and material ténacité.
Fatigue Phenomenon: Material Level
Explores crack development stages in fatigue phenomenon at the material level.
Fracture and Toughness of Materials
Explores fracture, toughness, and crack propagation in materials, emphasizing surface energy and material resistance.
Mechanical Tests: Creep and Fracture Mechanics
Explores creep tests, deformation, and fracture mechanics in mechanical tests.
Fracture Mechanics: Elliptical Cracks
Analyzes elliptical cracks in materials under different loading modes and discusses the influence of stress state and material toughness.
Fracture Mechanics: Defects and Energy
Explores fracture mechanics, defects, stress factors, and energy release in material fracture.
Deformation and Creep in Materials
Explores deformation, creep, material properties, mechanical tests, ceramics, polymers, metals, and atomic bonds.
Mechanical Properties of Materials: Toughness and Hardness
Explores toughness, hardness, and material properties, including critical crack length and hardness testing methods.
Fracture Mechanics: Cohesive Zone Modeling
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Explores crack-tip energy dissipation, cohesive zone modeling, stress intensity, and small-scale yielding in fracture mechanics.
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: Stress Intensity Factor and Crack Growth
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Explores stress intensity factors, crack-tip energy dissipation, and the effect of cracks on modulus in fracture mechanics.
Failure Criteria: Ductile and Brittle Materials
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Covers strain hardening, stress, fracture, yield strength, failure theories for ductile and brittle materials, and safety factors.
Fracture of Materials: Revision
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Covers fracture mechanics, stress intensity factor, rubber testing, and high-speed testing in materials.
Fracture Mechanics: Crack Growth and Stress Intensity Factor
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Explores crack growth, stress intensity factor, and fracture toughness in materials.
Crack Growth: Stress Intensity and Fracture Mechanics
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Explores crack growth, stress intensity factors, and fracture mechanics in materials, emphasizing energy considerations and critical stress intensity for crack growth onset.
Fracture Mechanics: Energy Release Rate and Stress Field Analysis
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Covers crack growth conditions, stress field analysis, crack solutions, modulus effects, and crack-tip energy dissipation.
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