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Treatise on Process Metallurgy: Volume One, Process Fundamentals provides academics with the fundamentals of the manufacturing of metallic materials, from raw materials into fini… Read more
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Immediately download your ebook while waiting for your print delivery. No promo code needed.
Treatise on Process Metallurgy: Volume One, Process Fundamentals provides academics with the fundamentals of the manufacturing of metallic materials, from raw materials into finished parts or products. In these fully updated volumes, coverage is expanded into four volumes, including Process Fundamentals, encompassing process fundamentals, structure and properties of matter; thermodynamic aspects of process metallurgy, and rate phenomena in process metallurgy; Processing Phenomena, encompassing interfacial phenomena in high temperature metallurgy, metallurgical process phenomena, and metallurgical process technology; Metallurgical Processes, encompassing mineral processing, aqueous processing, electrochemical material and energy processes, and iron and steel technology, non-ferrous process principles and production technologies, and more.
The work distills the combined academic experience from the principal editor and the multidisciplinary four-member editorial board.
Chapter 1: Introduction
1.1 Process Metallurgy: An Argosy Through Time
1.2 Introduction to Metallurgical Processing
Chapter 2: Structure and Properties of Matter
2.1 Structure and Properties of Matter
2.2 Structure and Properties of Molten Metals
2.3 The Structure and Properties of Slags
2.4 Modelling properties and phenomena at high temperatures: atomistic and phase field approaches
Chapter 3: Thermodynamic Aspects of Process Metallurgy
3.1 Thermodynamic Aspects of Process Metallurgy: Introduction to Thermodynamics of Metallurgical Processes
3.2 First, Second and Third Laws of Thermodynamics
3.3 Phase Rule
3.4 Ellingham Diagram
3.5 Solution Thermochemistry
3.6 Thermodynamic Basis for Phase Diagrams
3.7 Ternary phase diagrams
3.8 Dilute Solutions
3.9 Thermodynamics of Slags
3.10 Slag capacities
3.11 Examples of Steelmaking Thermochemistry
3.12 Thermodynamics of Aqueous Phases
3.13 Thermodynamic Basis of Electrolysis and Electrochemistry; overpotentials and double layer concepts
3.14 Some experimental techniques in High temperature thermodynamic measurements.
3.15 Computerized thermodynamics: Thermodynamic Model
3.16 Thermodynamic Packages and Databases
3.17 Slag Viscosity Models
3.18 Applications of Thermodynamic Database to the Ironmaking and Steelmaking process
Chapter 4: Rate Phenomena in Process Metallurgy
4.1 Rate Phenomena in Process Metallurgy: Introduction
4.2 Heat, mass, momentum and charge transport
4.3 Reaction Kinetics
4.4 Rate Phenomena Measurement Techniques in Process Metallurgy
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Sridhar Seetharaman is the Fulton Professor of Industrial Decarbonization at Arizona State University. He received his undergraduate degree from the Royal Institute of Technology and his PHD from MIT. He is a Distinguished Member and Fellow of the Association for Iron and Steel Technology.
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