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A wide-ranging, one-stop resource, the Materials Processing Handbook provides groundbreaking coverage of processes applied to a myriad of solid materials. It presents the fundamentals of materials processing by emphasizing the processing-structure-property relationship. Organized into six sections, this handbook covers fundamentals and applications of processes that convert one phase into another, materials processes that change only the microstructure within a solid phase, shape changes that modify the microstructure and properties of materials, joining processes, and the basics of processes integration.
Joannar R. Groza, James F. Shackelford, Enrique J. Lavernia, Michael T. Powers
SMALL-SCALE (ATOMIC/CLUSTER/ NANOSCALE) PROCESSES. Controlled Processes for Growth of Carbon Nanotube Structures. Controlled Self-Assembly. Ion-Beam Processing. Spinodal Decomposition. Ostwald Ripening in Materials Processing. Crystallization of Amorphous Material. Far-from-Equilibrium Processing of Nanostructured Ceramics. DEPOSITION PROCESSES. Physical and Chemical Vapor Deposition Processes. Epitaxial Processes. Ion Beam Assisted Deposition. Spray Deposition and Coating Processes. DISLOCATION-BASED PROCESSES. Metalworking. Mechanical Alloying and Severe Plastic Deformation. Superplasticity and Superplastic Forming. MICROSTRUCTURE CHANGE PROCESSES. Single Crystal Growth. Casting and Solidification. Amorphization, Rapid Solidification, Bulk Metallic Glass Processing and Properties. Diffusion-Based Processes. Basic Phase Transformations in Heat Treatment. Transformation Toughening. Bonding Processes. Electrolytic Processes. MACROPROCESSES. Glass Processing. Ceramic Processing. Powder Processing. Layer-Based Additive Manufacturing Technologies. Solidification Macroprocesses. MULTISCALE PROCESSES. Processing Nanoscale Structures to Macrocomposites. Thermomechanical Processing. Multiscale Processing of Polymers and Nanocomposites. Multiscale Processes in Surface Deformation.