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Representative Volume Elements and Unit Cells

- Concepts, Theory, Applications and Implementation

About Representative Volume Elements and Unit Cells

Representative Volume Elements and Unit Cells: Concepts, Theory, Applications and Implementation clearly explains how representative volume elements and unit cells should to be accurately constructed in terms of finite element analysis, the imposition of boundary conditions, prescription of loads, meshing and post-processing. The theoretical background for using FEA in materials characterization is given in full, hence readers will gain a clear and detailed understanding of the underlying principles that they can use in the development of their own models. Full derivations for some commonly used unit cells are presented so that users can directly apply them in their own developments. Finally, a piece of code designed as an add-on to Abaqus software, UnitCells©, is provided on a companion site for the material characterization of some of the common types of composites. in addition, a user manual and relevant templates are included. Give users the information they need to feel more confident when using REV/UC models to analysis large structures with accuracy and efficiencyIncludes systematic explanations of REV and UC theories, as well as their applications in compositesIllustrates, in detail, how to set up unit cell models and provides the open source code to implement via Abaqus

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  • Language:
  • English
  • ISBN:
  • 9780081026380
  • Binding:
  • Paperback
  • Pages:
  • 482
  • Published:
  • November 19, 2019
  • Dimensions:
  • 226x152x29 mm.
  • Weight:
  • 756 g.
Delivery: 1-2 weeks
Expected delivery: December 5, 2024

Description of Representative Volume Elements and Unit Cells

Representative Volume Elements and Unit Cells: Concepts, Theory, Applications and Implementation clearly explains how representative volume elements and unit cells should to be accurately constructed in terms of finite element analysis, the imposition of boundary conditions, prescription of loads, meshing and post-processing. The theoretical background for using FEA in materials characterization is given in full, hence readers will gain a clear and detailed understanding of the underlying principles that they can use in the development of their own models. Full derivations for some commonly used unit cells are presented so that users can directly apply them in their own developments.
Finally, a piece of code designed as an add-on to Abaqus software, UnitCells©, is provided on a companion site for the material characterization of some of the common types of composites. in addition, a user manual and relevant templates are included.
Give users the information they need to feel more confident when using REV/UC models to analysis large structures with accuracy and efficiencyIncludes systematic explanations of REV and UC theories, as well as their applications in compositesIllustrates, in detail, how to set up unit cell models and provides the open source code to implement via Abaqus

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