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Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Edition by D Raabe ISBN 3527307605 9783527307609

  • SKU: BELL-2141880
Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Edition by D Raabe ISBN 3527307605 9783527307609
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Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Edition by D Raabe ISBN 3527307605 9783527307609 instant download after payment.

Publisher: Wiley-VCH
File Extension: PDF
File size: 28.68 MB
Pages: 890
Author: Dierk Raabe, Franz Roters, Frédéric Barlat, Long-Qing Chen
ISBN: 3527307605, 9783527307609
Language: English
Year: 2004
Edition: 1

Product desciption

Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Edition by D Raabe ISBN 3527307605 9783527307609 by Dierk Raabe, Franz Roters, Frédéric Barlat, Long-qing Chen 3527307605, 9783527307609 instant download after payment.

Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Edition by D Raabe - Ebook PDF Instant Download/Delivery: 3527307605, 9783527307609
Full download Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Edition after payment

Product details:

ISBN 10: 3527307605 
ISBN 13: 9783527307609
Author: D Raabe

Presents the knowledge and understanding of continuum-based concepts behind computational methods used for microstructure and process simulation of engineering materials above the atomic scale.

Continuum Scale Simulation of Engineering Materials Fundamentals Microstructures Process Applications 1st Table of contents:

  1. Fundamentals and Basic Methods

  2. Computational Thermodynamics and Kinetics without Phase Fields

  3. Phase Field Method

  4. Fluid Materials Dynamics

  5. Cellular Automata and Lattice Gas Automata

  6. Dislocation Dynamics

  7. Potts Type Models

  8. Crystal Plasticity

  9. Artificial Neural Networks

  10. Scaling, Coarse Graining and Renormalization

  11. Application to Engineering Microstructures

  12. Phase Field Simulation of Solidification

  13. Modeling Dendritic Structures

  14. Numerical Simulation of Continuous and Investment Casting

  15. Phase Field Simulation of Solid-State Phase Transformations and Strain/Stress-Dominated Microstructure Evolution

  16. From Microscopic to Semi-Macroscopic Polymer Simulations

  17. Statistical Theory of Grain Growth

  18. Curvature Driven Grain Growth

  19. Potts Modeling of Grain Growth and Recrystallization

  20. Cellular Automaton Simulation

  21. Vertex Grain Boundary Modeling

  22. Thermal Activation in Discrete Dislocation Dynamics

  23. 3D Discrete Dislocation Dynamics

  24. Discrete Dislocation Dynamics in Thin Layers

  25. Coarse Graining of Dislocation Dynamics

  26. Statistical Dislocation Modeling

  27. Taylor-Type Homogenization Methods for Texture and Anisotropy

  28. Micromechanics of Filled Polymers

  29. Continuum Thermodynamic Modelling of Additional Hardening

  30. Strain Gradient Theory

  31. Yield Surface Plasticity

  32. Crystal Plasticity Finite Element Method

  33. Texture Component Crystal Plasticity Finite Element Method

  34. Creep Simulation (Turbine)

  35. Micromechanical Simulation of Composites

  36. 3D Elastodynamics of Cracking

  37. Computational Fracture Mechanics

  38. Application to Materials Processes

  39. Artificial Neural Networks

  40. Integration of Physically Based Materials Concepts

  41. The Multiphysics Modeling of Solidification and Melting Processes

  42. Simulation of Casting and Solidification Processes

  43. Integrated Simulation of Multistep Rolling Processes

  44. Forming Analysis and Design

  45. Extrusion

  46. Sheet Springback

  47. Sheet Forming

  48. Forging

  49. Simulation of Welding

  50. Simulation of Polymer Materials Processing

  51. Process Simulation Using Artificial Neural Networks

  52. Large Structure Failure Simulation

  53. Computational Materials Selection

  54. Computational Materials Design

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Tags: D Raabe, Continuum, Simulation

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