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Nonlinear continuum mechanics = an e...
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Agelet de Saracibar, Carlos.
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Nonlinear continuum mechanics = an engineering approach /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Nonlinear continuum mechanics/ by Carlos Agelet de Saracibar.
Reminder of title:
an engineering approach /
Author:
Agelet de Saracibar, Carlos.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
xx, 344 p. :ill. (chiefly color), digital ;24 cm.
[NT 15003449]:
Chapter 1: Tensor Algebra -- Chapter 2: Tensor Analysis -- Chapter3: Kinematics -- Chapter 4: Stresses -- Chapter 5: Balance Principles -- Chapter 6: Finite Deformation Hyperelasticity -- Chapter 7: Finite Deformation Plasticity -- Chapter 8: Finite Deformation Coupled Thermoplasticity -- Chapter 9: Finite Deformation Contact Mechanics -- Chapter 10: Variational Methods.
Contained By:
Springer Nature eBook
Subject:
Continuum mechanics. -
Online resource:
https://doi.org/10.1007/978-3-031-15207-8
ISBN:
9783031152078
Nonlinear continuum mechanics = an engineering approach /
Agelet de Saracibar, Carlos.
Nonlinear continuum mechanics
an engineering approach /[electronic resource] :by Carlos Agelet de Saracibar. - Cham :Springer International Publishing :2023. - xx, 344 p. :ill. (chiefly color), digital ;24 cm.
Chapter 1: Tensor Algebra -- Chapter 2: Tensor Analysis -- Chapter3: Kinematics -- Chapter 4: Stresses -- Chapter 5: Balance Principles -- Chapter 6: Finite Deformation Hyperelasticity -- Chapter 7: Finite Deformation Plasticity -- Chapter 8: Finite Deformation Coupled Thermoplasticity -- Chapter 9: Finite Deformation Contact Mechanics -- Chapter 10: Variational Methods.
This textbook on Continuum Mechanics presents 9 chapters. Chapters 1 and 2 are devoted to Tensor Algebra and Tensor Analysis. Part I of the book includes the next 3 chapters. All the content here is valid for both solid and fluid materials. At the end of Part I, the reader should be able to set up in local spatial/material form, the fundamental governing equations and inequalities for a Continuum Mechanics problem. Part II of the book, Chapters 6 to 10, is devoted to presenting some nonlinear constitutive models for Nonlinear Solid Mechanics, including Finite Deformation Hyperelasticity, Finite Deformation Plasticity, Finite Deformation Coupled Thermoplasticity, and Finite Deformation Contact Mechanics. The constitutive equations are derived within a thermodynamically consistent framework. Finite deformation elastoplasticity models are based on a multiplicative decomposition of the deformation gradient and the notion of an intermediate configuration. Different formulations based on the intermediate configuration, the current or spatial configuration, and the material configuration are considered. The last chapter is devoted to Variational Methods in Solid Mechanics, a fundamental topic in Computational Mechanics. The book may be used as a textbook for an advanced Master's course on Nonlinear Continuum Mechanics for graduate students in Civil, Mechanical or Aerospace Engineering, Applied Mathematics, or Applied Physics, with an interest in Continuum Mechanics and Computational Mechanics.
ISBN: 9783031152078
Standard No.: 10.1007/978-3-031-15207-8doiSubjects--Topical Terms:
535472
Continuum mechanics.
LC Class. No.: QA808.2 / .A34 2023
Dewey Class. No.: 531.7
Nonlinear continuum mechanics = an engineering approach /
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Chapter 1: Tensor Algebra -- Chapter 2: Tensor Analysis -- Chapter3: Kinematics -- Chapter 4: Stresses -- Chapter 5: Balance Principles -- Chapter 6: Finite Deformation Hyperelasticity -- Chapter 7: Finite Deformation Plasticity -- Chapter 8: Finite Deformation Coupled Thermoplasticity -- Chapter 9: Finite Deformation Contact Mechanics -- Chapter 10: Variational Methods.
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This textbook on Continuum Mechanics presents 9 chapters. Chapters 1 and 2 are devoted to Tensor Algebra and Tensor Analysis. Part I of the book includes the next 3 chapters. All the content here is valid for both solid and fluid materials. At the end of Part I, the reader should be able to set up in local spatial/material form, the fundamental governing equations and inequalities for a Continuum Mechanics problem. Part II of the book, Chapters 6 to 10, is devoted to presenting some nonlinear constitutive models for Nonlinear Solid Mechanics, including Finite Deformation Hyperelasticity, Finite Deformation Plasticity, Finite Deformation Coupled Thermoplasticity, and Finite Deformation Contact Mechanics. The constitutive equations are derived within a thermodynamically consistent framework. Finite deformation elastoplasticity models are based on a multiplicative decomposition of the deformation gradient and the notion of an intermediate configuration. Different formulations based on the intermediate configuration, the current or spatial configuration, and the material configuration are considered. The last chapter is devoted to Variational Methods in Solid Mechanics, a fundamental topic in Computational Mechanics. The book may be used as a textbook for an advanced Master's course on Nonlinear Continuum Mechanics for graduate students in Civil, Mechanical or Aerospace Engineering, Applied Mathematics, or Applied Physics, with an interest in Continuum Mechanics and Computational Mechanics.
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EB QA808.2 .A34 2023
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