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Lecture
Precious Metals: Properties, Alloys, and Applications
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Related lectures (34)
Phase Transformations in Alloys
Explores phase transformations in metals and alloys, discussing kinetics, structural hardening, and dislocation movement obstacles.
Metallurgical Processes: Hardening and Maturation
Explores metallurgical hardening processes and microstructure evolution in metals and alloys through heat treatment.
Metals and Alloys: Transformations and Properties
Explores the kinetics and properties of metals and alloys, emphasizing phase transitions and hardening mechanisms.
Metals and Alloys: Microstructures and Transformations
Explores metals and alloys, focusing on microstructures, transformations, energy footprints, and extraction processes.
Precious Metals Refining: Processes and Challenges
Explores the refining processes of precious metals, their supply and demand, and the challenges faced in the industry.
Metallurgy Fundamentals
Covers the fundamentals of metallurgy, including world reserves of metals, shaping processes, heat treatments, and steel properties.
Martensitic Transformation: Metals and Alloys
Explores the martensitic transformation in metals and alloys, emphasizing the role of carbon atoms and contrasting with diffusive transformations.
Precipitation Hardening in Alloys
Explores precipitation hardening in alloys, emphasizing the control of precipitation kinetics and the role of dislocations in strengthening mechanisms.
Metals and Alloys: Properties and Applications
Explores the properties, extraction, and applications of metals and alloys, including historical evolution and recycling rates.
Metals and Alloys: Properties and Production
Covers stress-strain curves, specific moduli, and energy footprint of metals production.
Metals and Alloys: Fe-C System
Explores the equilibrium phase diagram of the Fe-C system and the structures formed in steels and cast irons.
Introduction to Materials Science: Mechanical Engineering Fundamentals
Covers yield strength, hardness, defects, dislocations, plasticity mechanisms, and hardening in materials science for mechanical engineering.
Materials Properties: Ductility, Hardness, Toughness
Explores materials' ductility, hardness, and toughness, covering dislocations, hardening mechanisms, and polymer behavior.
Metal Alloys: Hardening Mechanisms
Explores the modes of hardening metal alloys and their industrial implications, emphasizing the effects of dislocations and grain size.
Mechanical Properties of Materials: Elastic Limit and Dislocations
Covers the elastic limit, dislocations, and plasticity mechanisms of materials.
Plasticity: Mechanisms of Metals and Polymers
Covers the plasticity mechanisms of metals and polymers, including dislocations, solid solution hardening, and work hardening.
Precious Metals: Properties and Applications
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Explores the properties, uses, and metallurgy of precious metals like gold, silver, palladium, platinum, iridium, ruthenium, rhodium, and osmium.
Precious Metals: Properties, Uses, and Alloys
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Explores the properties, uses, and alloys of precious metals like ruthenium, rhodium, and platinum, as well as the metallurgy of gold and silver.
Precious Metals: Overview and Properties
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Covers the overview, properties, and separation of precious metals like gold, silver, platinum, and more.
Metallurgy of Aluminum Alloys: Properties and Applications
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Discusses the metallurgy of aluminum alloys, focusing on their properties, applications, and the effects of alloying and heat treatment processes.
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