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Lecture
Materials Science: Introduction
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Related lectures (30)
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Introduction to Optimization Process in Material Selection
Introduces manufacturing technologies, covers research examples, explores material selection using Ashby plots, and provides instructions for a reverse engineering project.
Materials Choice: Properties, Selection Criteria, and Technological Progress
Explores the significance of materials in industries, selection criteria, and technological advancements.
Materials Science: Basics and Classification
Covers the basics of materials science, including classification and selection criteria for different materials.
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.
Anisotropic Elasticity: Examples
Covers anisotropic elasticity with examples of materials having varying properties in different directions.
Concrete: Material Properties and Future Implications
Covers the properties of concrete, its applications, and the importance of sustainable practices for future generations.
Mechanical Behavior of Materials: Deformation & Fatigue
Explores deformation mechanisms, cyclic loading, and fatigue phenomena in materials.
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.
Materials Science Overview
Covers the history and modern applications of materials, focusing on polymers, ceramics, metals, and composites.