Solidification and Crystallization 1st Edition by Dieter Herlach – Ebook PDF Instant Download/Delivery: 9783527310111, 3527310118
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Product details:
ISBN 10: 3527310118
ISBN 13: 9783527310111
Author: Dieter M. Herlach
Current interest in research of solidification of melts is focussed to understand crystal nucleation and crystal growth. They determine the solidified product with its physical properties. A detailed description of these processes lead to the development and validation of physical models, which may form the basis of quantitative modelling of solidification routes in e.g. casting and foundry processes in order to develop a predictive capability in the design of materials during solidification.
This book, based on a symposium held at EUROMAT 2003 aims to gives an overview on current developments in the research of solidification and crystallisation of liquids. The materials of interest range from metals and their alloys over semiconductors and isolators to organic substances.
Table of contents:
Chapter 1: Complex Structures: A Symbiosis of Experiments and Numerical Studies
Chapter 2: Thermal Roughening of a Solid-on-Solid Model with Elastic Interaction
Chapter 3: A Phase-Field Model for Crystallization into Multiple Grain Structures
Chapter 4: Scaling Relations for Dendritic Solidification in Binary Alloys
Chapter 5: Modeling the Spatial Phase Separation Process in Hypermonotectic Alloys
Chapter 6: Modeling of the Solidification of Immiscible Alloys
Chapter 7: Phase-Field Modeling of Dendritic Solidification: Verification for the Model Predictions with Latest Experimental Data
Chapter 8: Phase-Field Modeling of Phase Transitions in Ternary Alloys
Chapter 9: Modeling of Heat and Solute Flows during Solidification of Droplets
Chapter 10: Thermo-Physical and Physical Properties for Use in Solidification Modelling of Multi-Component Alloys
Chapter 11: Determination of Solidification Curves Based on DSC Experiments with Improved Heat-Transfer Model
Chapter 12: Measurement of the Surface Tension of Undercooled Melts by the Oscillating Drop Method in An Electrostatic Levitator
Chapter 13: Liquid-Liquid Interfacial Tension and Wetting in Immiscible Al-Based Systems
Chapter 14: In-Situ Optical Determination of Fraction Solid
Chapter 15: Magnetic Effects on the Nucleation in Undercooled Co-Pd Melts
Chapter 16: Identification of the Substrate of Heterogeneous Nucleation in Zn-Al Alloy Inoculated with ZnTi-Based Master Alloy
Chapter 17: Undercooling and Solidification of Liquid Silicon
Chapter 18: Two-Phase Equilibrium in Binary Alloy Nano Particles
Chapter 19: Three-Dimensional Reconstruction of Experimentally Grown Xenon Dendrites
Chapter 20: Mechanically Deformed Primary Dendritic Structures Observed During the Solidification of Undercooled Melts
Chapter 21: Effect of Hydrodynamics on Microstructure Evolution of Nd-Fe-B Alloys
Chapter 22: Effect of the Fluid Convection Driven by a Rotating Magnetic Field on the Solidification of a PbSn Alloy
Chapter 23: Grain Sedimentation and Melt Convection Phenomena During Globular Equiaxed Solidification
Chapter 24: Metastable Primary Solidification Modes in the Fe-Cr-Ni System During Laser Welding
Chapter 25: Crystallization of the Nd2Fe14B Peritectic Phase from the Undercooled Melt by Containerless Processing
Chapter 26: Thermomagnetic Analyses of Nd-Fe-B Bulk Alloys Solidified from the Undercooled Melt
Chapter 27: Analysis of the Solidification Microstructure of Multi-Component Gamma Titanium Aluminide Alloys
Chapter 28: Formation of Eutectic Cells in Ternary Al-Cu-Ag Alloys
Chapter 29: Lamellar Pattern Formation during 2D-Directional Solidification of Ternary Eutectic Alloys
Chapter 30: Simulation of Stray Grain Formation in Investment Cast Turbine Blades
Chapter 31: Laser Cladding Applications to Combinatorial Materials Science
Chapter 32: Control of Morphological Features in Micropatterned Ultrathin Films
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