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Viscoelasticity of Polymers = Theory...
~
Cho, Kwang Soo.
Viscoelasticity of Polymers = Theory and Numerical Algorithms /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Viscoelasticity of Polymers/ by Kwang Soo Cho.
Reminder of title:
Theory and Numerical Algorithms /
Author:
Cho, Kwang Soo.
Description:
XIV, 612 p. 91 illus., 83 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Polymers . -
Online resource:
https://doi.org/10.1007/978-94-017-7564-9
ISBN:
9789401775649
Viscoelasticity of Polymers = Theory and Numerical Algorithms /
Cho, Kwang Soo.
Viscoelasticity of Polymers
Theory and Numerical Algorithms /[electronic resource] :by Kwang Soo Cho. - 1st ed. 2016. - XIV, 612 p. 91 illus., 83 illus. in color.online resource. - Springer Series in Materials Science,2410933-033X ;. - Springer Series in Materials Science,200.
I Fundamental Principles -- 1 Preliminary Mathematics -- 2 Continuum Thermo-Mechanics -- 3 Statistical Mechanics -- 4 Polymer Physics -- II Linear Viscoelasticity -- 5 Theory of Linear Viscoelasticity -- 6 Numerical Methods -- 7 Viscoelastic Spectrum -- 8 Time-Temperature Superposition -- 9 Applications to Polymer Systems -- III Nonlinear Viscoelasticity -- 10 Nonlinear Constitutive Equations -- 11 Large Amplitude Oscillatory Shear -- Appendix -- Subject Index.
This book offers a comprehensive introduction to polymer rheology with a focus on the viscoelastic characterization of polymeric materials. It contains various numerical algorithms for the processing of viscoelastic data, from basic principles to advanced examples which are hard to find in the existing literature. The book takes a multidisciplinary approach to the study of the viscoelasticity of polymers, and is self-contained, including the essential mathematics, continuum mechanics, polymer science and statistical mechanics needed to understand the theories of polymer viscoelasticity. It covers recent achievements in polymer rheology, such as theoretical and experimental aspects of large amplitude oscillatory shear (LAOS), and numerical methods for linear viscoelasticity, as well as new insights into the interpretation of experimental data. Although the book is balanced between the theoretical and experimental aspects of polymer rheology, the author’s particular interest in the theoretical side will not remain hidden. Aimed at readers familiar with the mathematics and physics of engineering at an undergraduate level, the multidisciplinary approach employed enables researchers with various scientific backgrounds to expand their knowledge of polymer rheology in a systematic way. .
ISBN: 9789401775649
Standard No.: 10.1007/978-94-017-7564-9doiSubjects--Topical Terms:
1253577
Polymers .
LC Class. No.: QD380-388
Dewey Class. No.: 541.2254
Viscoelasticity of Polymers = Theory and Numerical Algorithms /
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I Fundamental Principles -- 1 Preliminary Mathematics -- 2 Continuum Thermo-Mechanics -- 3 Statistical Mechanics -- 4 Polymer Physics -- II Linear Viscoelasticity -- 5 Theory of Linear Viscoelasticity -- 6 Numerical Methods -- 7 Viscoelastic Spectrum -- 8 Time-Temperature Superposition -- 9 Applications to Polymer Systems -- III Nonlinear Viscoelasticity -- 10 Nonlinear Constitutive Equations -- 11 Large Amplitude Oscillatory Shear -- Appendix -- Subject Index.
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This book offers a comprehensive introduction to polymer rheology with a focus on the viscoelastic characterization of polymeric materials. It contains various numerical algorithms for the processing of viscoelastic data, from basic principles to advanced examples which are hard to find in the existing literature. The book takes a multidisciplinary approach to the study of the viscoelasticity of polymers, and is self-contained, including the essential mathematics, continuum mechanics, polymer science and statistical mechanics needed to understand the theories of polymer viscoelasticity. It covers recent achievements in polymer rheology, such as theoretical and experimental aspects of large amplitude oscillatory shear (LAOS), and numerical methods for linear viscoelasticity, as well as new insights into the interpretation of experimental data. Although the book is balanced between the theoretical and experimental aspects of polymer rheology, the author’s particular interest in the theoretical side will not remain hidden. Aimed at readers familiar with the mathematics and physics of engineering at an undergraduate level, the multidisciplinary approach employed enables researchers with various scientific backgrounds to expand their knowledge of polymer rheology in a systematic way. .
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