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Metals and Alloys: Resources and Reserves
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Related lectures (35)
Metals Recycling & Energy Model
Explores the challenges and energy aspects of metal recycling, including the composition of Earth's crust, extraction methods, and energy requirements for aluminum production.
Resource-Constrained World: Metals, Energy, and Sustainability
Explores challenges in a resource-constrained world, focusing on metals, energy, and sustainability, including recycling rates and low-tech solutions.
Deformation and Creep in Materials
Explores deformation, creep, material properties, mechanical tests, ceramics, polymers, metals, and atomic bonds.
Metals and Alloys: Properties and Production
Covers stress-strain curves, specific moduli, and energy footprint of metals production.
Metals and Alloys: Microstructures and Transformations
Explores metals and alloys, focusing on microstructures, transformations, energy footprints, and extraction processes.
Metals and Alloys: Properties and Applications
Explores the properties, extraction, and applications of metals and alloys, including historical evolution and recycling rates.
Plasticity: Mechanisms of Metals and Polymers
Covers the plasticity mechanisms of metals and polymers, including dislocations, solid solution hardening, and work hardening.
Metals: from atom to solid
Explores the properties and applications of metals, emphasizing optimization of microstructures and mechanical behaviors.
Martensitic Transformation: Metals and Alloys
Explores the martensitic transformation in metals and alloys, emphasizing the role of carbon atoms and contrasting with diffusive transformations.
Metals and Alloys: Transformations and Properties
Explores the kinetics and properties of metals and alloys, emphasizing phase transitions and hardening mechanisms.
Fatigue of Materials: Stress and Endurance Limits
Explores stress in material fatigue, endurance limits, crack propagation, and real-world applications.
Structure of Materials: Metals, Ceramics, Polymers
Covers the structure of metals, ceramics, and polymers, discussing coordination, defects, and polymer classification.
Pressure Tank Design
Explores the design of a pressure tank, emphasizing material selection, wall thickness, and safety aspects in pressure vessel design.
Mechanical Properties of Materials: Elastic Limit and Dislocations
Covers the elastic limit, dislocations, and plasticity mechanisms of materials.
Introduction to Materials Science: Mechanical Engineering Fundamentals
Covers yield strength, hardness, defects, dislocations, plasticity mechanisms, and hardening in materials science for mechanical engineering.
Electrical Conductivity of Metals
Explores electrical conductivity in metals, semiconductors, and the optical properties of semiconductors.
Phase Transformations in Alloys
Explores phase transformations in metals and alloys, discussing kinetics, structural hardening, and dislocation movement obstacles.
Materials Science: Basics and Classification
Covers the basics of materials science, including classification and selection criteria for different materials.
Time-Dependent Fracture in Materials
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Explores the impact of rate effects on material toughness and the time-temperature equivalence in viscoelastic polymers.
Introduction to Materials Science
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Covers the history, classification, properties, impact, and development of materials, emphasizing the importance of materials choice and comparison.
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