Computational Plasticity In Powder Forming Processes

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Author: Amir Khoei
Publisher: Elsevier
ISBN: 9780080529707
Size: 21.50 MB
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Computational Plasticity In Powder Forming Processes by Amir Khoei

Original Title: Computational Plasticity In Powder Forming Processes

The powder forming process is an extremely effective method of manufacturing structural metal components with high-dimensional accuracy on a mass production basis. The process is applicable to nearly all industry sectors. It offers competitive engineering solutions in terms of technical performance and manufacturing costs. For these reasons, powder metallurgy is developing faster than other metal forming technology. Computational Plasticity in Powder Forming Proceses takes a specific look at the application of computer-aided engineering in modern powder forming technologies, with particular attention given to the Finite Element Method (FEM). FEM analysis provides detailed information on conditions within the processed material, which is often more complete than can be obtained even from elaborate physical experiments, and the numerical simulation makes it possible to examine a range of designs, or operating conditions economically. * Describes the mechanical behavior of powder materials using classical and modern constitutive theories. * Devoted to the application of adaptive FEM strategy in the analysis of powder forming processes. * 2D and 3D numerical modeling of powder forming processes are presented, using advanced plasticity models.

Extended Finite Element Method

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Author: Amir R. Khoei
Publisher: John Wiley & Sons
ISBN: 1118869680
Size: 71.14 MB
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Extended Finite Element Method by Amir R. Khoei

Original Title: Extended Finite Element Method

Introduces the theory and applications of the extended finite element method (XFEM) in the linear and nonlinear problems of continua, structures and geomechanics Explores the concept of partition of unity, various enrichment functions, and fundamentals of XFEM formulation. Covers numerous applications of XFEM including fracture mechanics, large deformation, plasticity, multiphase flow, hydraulic fracturing and contact problems Accompanied by a website hosting source code and examples

Advanced Computational Materials Modeling

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Author: Miguel Vaz Junior
Publisher: John Wiley & Sons
ISBN: 3527632336
Size: 79.38 MB
Format: PDF, Mobi
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Advanced Computational Materials Modeling by Miguel Vaz Junior

Original Title: Advanced Computational Materials Modeling

With its discussion of strategies for modeling complex materials using new numerical techniques, mainly those based on the finite element method, this monograph covers a range of topics including computational plasticity, multi-scale formulations, optimization and parameter identification, damage mechanics and nonlinear finite elements.

Computational Plasticity

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Author: Eugenio Oñate
Publisher: Springer Science & Business Media
ISBN: 9781402065774
Size: 18.15 MB
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Computational Plasticity by Eugenio Oñate

Original Title: Computational Plasticity

This book contains 14 invited contributions written by distinguished authors who participated in the VIII International Conference on Computational Plasticity held at CIMNE/UPC ( from 5-8 September 2005, in Barcelona, Spain. The chapters present recent progress and future research directions in the field of computational plasticity.

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