Material Modeling with the Visco Plastic Self Consistent VPSC Approach

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  • Publisher : Elsevier
  • Release : 01 June 2022
  • ISBN : 9780128207208
  • Page : 320 pages
  • Rating : 4.5/5 from 103 voters

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Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach: Theory and Practical Applications provides readers with both a foundational knowledge of material viscoplasticity as well as a robust modeling approach for predicting plastic deformation of crystal aggregates. Visco-Plastic Self-Consistent (VPSC) is the identifier of a computer code developed by the authors based on the specific mechanical regime addressed (visco-plastic: VP) and the approach used (self-consistent: SC) meant to simulate large plastic deformation of aggregates, thermo-elastic material deformation, as well as predict stress-strain response, texture evolution of aggregates, and stress-strain state inside grains. This approach is very versatile, able to tackle arbitrary material symmetry (cubic, hexagonal, trigonal, orthorhombic, monoclinic, triclinic), twinning, and multiphase aggregates. It accounts for hardening, reorientation, and shape change of individual grains, and can be applied to deformation of metals, inter-metallics, and geologic aggregates. Readers will have access to a companion website from where they can download the code and modify its input/output or add subroutines covering specific simulation research needs. Highlights a modeling approach that allows readers to accurately predict stress-strain response, texture evolution of aggregates, and internal stress states inside grains while also accounting for hardening, reorientation, and shape change of individual grains Features modeling techniques that can be applied to deformation of metals, inter-metallics, and geologic aggregates Covers the theoretical aspects of homogeneous effective medium models as they apply to the simulation of plasticity and elasticity Provides several practical examples and applications of materials of different symmetry subjected to different deformation conditions Includes access to a companion website from where readers can download the code and modify its input/output or add subroutines covering specific simulation research needs

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Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach

Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach
  • Author : Carlos Tome,Ricardo Lebensohn
  • Publisher : Elsevier
  • Release Date : 2022-06-01
  • ISBN : 9780128207208
GET THIS BOOKMaterial Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach

Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach: Theory and Practical Applications provides readers with both a foundational knowledge of material viscoplasticity as well as a robust modeling approach for predicting plastic deformation of crystal aggregates. Visco-Plastic Self-Consistent (VPSC) is the identifier of a computer code developed by the authors based on the specific mechanical regime addressed (visco-plastic: VP) and the approach used (self-consistent: SC) meant to simulate large plastic deformation of aggregates, thermo-elastic material deformation, as well as predict

Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach

Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach
  • Author : Carlos Tome,Ricardo Lebensohn
  • Publisher : Elsevier
  • Release Date : 2022-06-15
  • ISBN : 0128207132
GET THIS BOOKMaterial Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach

Material Modeling with the Visco-Plastic Self-Consistent (VPSC) Approach: Theory and Practical Applications provides readers with both a foundational knowledge of material viscoplasticity as well as a robust modeling approach for predicting plastic deformation of crystal aggregates. Visco-Plastic Self-Consistent (VPSC) is the identifier of a computer code developed by the authors based on the specific mechanical regime addressed (visco-plastic: VP) and the approach used (self-consistent: SC) meant to simulate large plastic deformation of aggregates, thermo-elastic material deformation, as well as predict

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  • Publisher : John Wiley & Sons
  • Release Date : 2006-03-06
  • ISBN : 9783527604210
GET THIS BOOKContinuum Scale Simulation of Engineering Materials

This book fills a gap by presenting our current knowledge and understanding of continuum-based concepts behind computational methods used for microstructure and process simulation of engineering materials above the atomic scale. The volume provides an excellent overview on the different methods, comparing the different methods in terms of their respective particular weaknesses and advantages. This trains readers to identify appropriate approaches to the new challenges that emerge every day in this exciting domain. Divided into three main parts, the first

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  • Release Date : 2021-09-17
  • ISBN : 9781351435741
GET THIS BOOKLarge Plastic Deformations: Fundamental Aspects and Applications to Metal Forming

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  • Release Date : 2015-10-17
  • ISBN : 9783319214948
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The book presents a series of concise papers by researchers specialized in various fields of continuum and computational mechanics and of material science. The focus is on principles and strategies for multiscale modeling and simulation of complex heterogeneous materials, with periodic or random microstructure, subjected to various types of mechanical, thermal, chemical loadings and environmental effects. A wide overview of complex behavior of materials (plasticity, damage, fracture, growth, etc.) is provided. Among various approaches, attention is given to advanced non-classical

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This book groups the main advances in material forming, considering different processes, both conventional and non-conventional. It focuses on polymers, composites and metals, which are analyzed from the state of the art. Special emphasis is devoted to the contributions of the European Scientific Association for Material Forming (ESAFORM) during the last decade and in particular the ones coming from its annual international conference.

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  • Publisher : Springer Science & Business Media
  • Release Date : 2013-04-17
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