The aim of Modeling and Simulation of Microstructure Evolution in Solidifying Alloys is to describe in a clear mathematical language the physics of the solidification structure evolution of cast alloys. The concepts and methodologies presented here for the net-shaped casting and the ingot remelt processes can be applied, with some modifications, to model other solidification processes such as welding and deposition processes.
Another aim of the book is to provide simulation examples of the solidification structure modeling in some crucial commercial casting technologies as well as to provide practical techniques for controlling the structure formation during the solidification processes.
Le informazioni nella sezione "Riassunto" possono far riferimento a edizioni diverse di questo titolo.
Length-Scales and Generations of Modeling Methodologies for Predicting the Evolution of the Solidification Structure.- Deterministic Macro-Modeling: Transport of Energy, Momentum, Species, Mass, and Hydrodynamics During the Solidification Processes.- Deterministic Micro-Modeling: Mathematical Models for Evolution of Denritic and Eutectic Phases.- Stochastic/Mesoscopic Modeling of Solidification Structure.- Solute Transport Effects on Macrosegregation and Solidification Structure.- Micro-Solute Transport Effects on Microstructure and Micro Segregation.- Probabilistic (Monte Carlo) Modeling of Solidification Structure.- Modeling and Simulation of Solidification Structure in Shaped and Centrifugal Castings.- Modeling and Simulation of Ingot Solidification Structure in Primary and Secondary Remelt Processes.- Practical Techniques with Simulation Examples for Controlling the Solidification Structure.
Book by Nastac Laurentiu
Le informazioni nella sezione "Su questo libro" possono far riferimento a edizioni diverse di questo titolo.
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Condizione: New. Describes the physics of the solidification structure evolution of cast alloys. This book shows how the concepts and methodologies presented here for the net-shaped casting and the ingot remelt processes can be applied, with some modifications, to model other solidification processes such as welding and deposition processes. Series: Mathematics and its Applications. Num Pages: 289 pages, biography. BIC Classification: TGM. Category: (G) General (US: Trade); (P) Professional & Vocational; (U) Tertiary Education (US: College). Dimension: 240 x 162 x 23. Weight in Grams: 602. . 2004. Hardback. . . . . Codice articolo V9781402078316
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Hardcover. Condizione: new. Hardcover. The aim of Modeling and Simulation of Microstructure Evolution in Solidifying Alloys is to describe in a clear mathematical language the physics of the solidification structure evolution of cast alloys. The concepts and methodologies presented here for the net-shaped casting and the ingot remelt processes can be applied, with some modifications, to model other solidification processes such as welding and deposition processes. Modeling and simulation of solidification structure evolution requires complex multi-scale computational techniques, from computational fluid dynamics macroscopic modeling, through mesoscopic to microscopic modeling, as well as strategies to link various length-scales that emerge in modeling of microstructural evolution. Another aim of the book is to provide simulation examples of the solidification structure modeling in some crucial commercial casting technologies as well as to provide practical techniques for controlling the structure formation during the solidification processes. The simulation codes (PC versions) for 2D (includes fluid flow computations) and 3D mesoscale dendrite growth models (for 2D and 3D simple casting geometries) written in Visual For The aim of Modeling and Simulation of Microstructure Evolution in Solidifying Alloys is to describe in a clear mathematical language the physics of the solidification structure evolution of cast alloys. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Codice articolo 9781402078316
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