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Materials: Introduction and Classification
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Related lectures (38)
Flexible Probes: Mechanics and Design
Explores critical strain, bending mechanics, and strain calculation in flexible probes.
Fracture and Toughness of Materials
Covers stress intensity, fracture, and toughness of materials, including the behavior of ductile and brittle materials.
Sustainable Materials: Lifecycle, Properties, and Design
Explores material lifecycle, properties, sustainability, and design, emphasizing the importance of auditing products for sustainability and discussing the evaluation of consumer products like LEGO.
Deformation and Creep in Materials
Explores deformation, creep, material properties, mechanical tests, ceramics, polymers, metals, and atomic bonds.
Chemistry: Atomic Structure and Thermodynamics
Covers atomic structure, thermodynamics, material properties, and ideal gas law.
Fracture and Toughness of Materials
Explores fracture, toughness, and crack propagation in materials, emphasizing surface energy and material resistance.
Comsol: Parallel plate capacitor
Focuses on modeling a parallel plate capacitor using Comsol, emphasizing clear project ideas and group collaboration.
Fracture Mechanics: Stress Intensity Factor
Explores stress intensity factor in fracture mechanics, crack propagation prediction, and material ténacité.
Fatigue: Material Response to Repeated Stress
Explores how materials respond to repeated stress cycles, leading to potential rupture and the distinction between high-cycle and low-cycle fatigue.
Materials Choice: Properties, Selection Criteria, and Technological Progress
Explores the significance of materials in industries, selection criteria, and technological advancements.
Toughness of Materials
Covers the concept of toughness of materials, emphasizing resistance to crack propagation and plastic deformation.
A Random Walk Through Random Materials
Explores random materials, solutes, and their impact on mechanical performance, including strength, toughness, and fatigue.
Atomic Bonding: Course Introduction and Chapter 1
Covers course organization, historical material influence, and dislocation interaction processes.
Materials: From Chemistry to Properties
Covers the history, consumption, and recycling of materials, emphasizing their properties and selection criteria for sustainability.
Normal Stresses: Internal Stress and Strain
Introduces internal stress and strain, material properties, and design considerations for axial loads and direct shear.
Properties of Materials: Structures Art
Discusses stress, strain, tension, compression, material properties, and construction materials.
Anisotropic Elasticity: Examples
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Covers anisotropic elasticity with examples of materials having varying properties in different directions.
Mechanical Behavior of Materials: Deformation & Fatigue
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Explores deformation mechanisms, cyclic loading, and fatigue phenomena in materials.
Shock Waves and Brittle Material Response
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Covers shock waves, brittle material response, phase transformation, and Hugoniot relationships in materials under stress.
Dislocation Mechanics
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Explores the mechanics of dislocations in materials, including their movement, interaction, and impact on material properties.
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