Constitutive Modeling of Engineering Materials

Constitutive Modeling of Engineering Materials
Author: Vladimir Buljak,Gianluca Ranzi
Publsiher: Academic Press
Total Pages: 330
Release: 2021-02-18
Genre: Technology & Engineering
ISBN: 9780128146972

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Constitutive Modeling of Engineering Materials provides an extensive theoretical overview of elastic, plastic, damage, and fracture models, giving readers the foundational knowledge needed to successfully apply them to and solve common engineering material problems. Particular attention is given to inverse analysis, parameter identification, and the numerical implementation of models with the finite element method. Application in practice is discussed in detail, showing examples of working computer programs for simple constitutive behaviors. Examples explore the important components of material modeling which form the building blocks of any complex constitutive behavior. Addresses complex behaviors in a wide range of materials, from polymers, to metals and shape memory alloys Covers constitutive models with both small and large deformations Provides detailed examples of computer implementations for material models

Mechanical Constitutive Models for Engineering Materials

Mechanical Constitutive Models for Engineering Materials
Author: Behzad Rohani
Publsiher: Unknown
Total Pages: 190
Release: 1977
Genre: Elasticity
ISBN: UOM:39015095009265

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Modelling of Engineering Materials

Modelling of Engineering Materials
Author: C. Lakshmana Rao,Abhijit P. Deshpande
Publsiher: John Wiley & Sons
Total Pages: 264
Release: 2014-07-02
Genre: Technology & Engineering
ISBN: 9781118919583

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Modelling of Engineering Materials presents the background that is necessary to understand the mathematical models that govern the mechanical response of engineering materials. The book provides the basics of continuum mechanics and helps the reader to use them to understand the development of nonlinear material response of solids and fluids used in engineering applications. A brief review of simplistic and linear models used to characterize the mechanical response of materials is presented. This is followed by a description of models that characterize the nonlinear response of solids and fluids from first principles. Emphasis is given to popular models that characterize the nonlinear response of materials. The book also presents case studies of materials, where a comprehensive discussion of material characterization, experimental techniques and constitutive model development, is presented. Common principles that govern material response of both solids and fluids within a unified framework are outlined. Mechanical response in the presence of non-mechanical fields such as thermal and electrical fields applied to special materials such as shape memory materials and piezoelectric materials is also explained within the same framework.

Constitutive Equations for Engineering Materials

Constitutive Equations for Engineering Materials
Author: Wai-Fah Chen,Atef F. Saleeb
Publsiher: Elsevier
Total Pages: 594
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 9781483101965

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Constitutive Equations for Engineering Materials, Volume 1: Elasticity and Modeling, Revised Edition focuses on theories on elasticity and plasticity of engineering materials. The book first discusses vectors and tensors. Coordinate systems, vector algebra, scalar products, vector products, transformation of coordinates, indicial notation and summation convention, and triple products are then discussed. The text also ponders on analysis of stress and strain and presents numerical analysis. The book then discusses elastic stress-strain relations. Basic assumptions; need for elastic models; isotropic linear stress-strain relations; principle of virtual work; strain energy and complementary energy density in elastic solids; and incremental relations grounded on secant moduli are described. The text also explains linear elasticity and failure criteria for concrete and non-linear elasticity and hypoelastic models for concrete. The selection further tackles soil elasticity and failure criteria. Mechanical behavior of soils; failure criteria of soils; and incremental stress-strain models based on modification of the isotropic linear elastic formulation are considered. The text is a good source of data for readers interested in studying the elasticity and plasticity of engineering materials.

Constitutive Equations for Engineering Materials Elasticity and modeling

Constitutive Equations for Engineering Materials  Elasticity and modeling
Author: Wai-Fah Chen
Publsiher: Unknown
Total Pages: 604
Release: 1994
Genre: Continuum mechanics
ISBN: UCSD:31822018712950

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Constitutive Equations for Engineering Materials

Constitutive Equations for Engineering Materials
Author: Wai-Fah Chen,Atef F. Saleeb
Publsiher: Elsevier Publishing Company
Total Pages: 568
Release: 1994
Genre: Continuum mechanics
ISBN: 0444884084

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Hardbound. Volume 2 extends the elasticity-based stress-strain models to the plastic range and develops plasticity-based models for engineering applications and is divided into four parts. Parts one and two contain a sufficient comprehensive treatment of the classical theory of plasticity and its applications to metal structures. Parts three and four present a state-of-the-art coverage of concrete plasticity and soil plasticity.

Continuum Mechanics

Continuum Mechanics
Author: Franco M. Capaldi
Publsiher: Cambridge University Press
Total Pages: 359
Release: 2012-06-18
Genre: Science
ISBN: 9781107011816

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Designed for continuum mechanics courses and features both the theoretical framework and numerical methods required to model continuous material behaviour.

The Mechanics of Constitutive Modeling

The Mechanics of Constitutive Modeling
Author: Niels Saabye Ottosen,Matti Ristinmaa
Publsiher: Elsevier
Total Pages: 700
Release: 2005-09-28
Genre: Science
ISBN: 9780080525693

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Constitutive modelling is the mathematical description of how materials respond to various loadings. This is the most intensely researched field within solid mechanics because of its complexity and the importance of accurate constitutive models for practical engineering problems. Topics covered include: Elasticity - Plasticity theory - Creep theory - The nonlinear finite element method - Solution of nonlinear equilibrium equations - Integration of elastoplastic constitutive equations - The thermodynamic framework for constitutive modelling – Thermoplasticity - Uniqueness and discontinuous bifurcations • More comprehensive in scope than competitive titles, with detailed discussion of thermodynamics and numerical methods. • Offers appropriate strategies for numerical solution, illustrated by discussion of specific models. • Demonstrates each topic in a complete and self-contained framework, with extensive referencing.