Creep And Relaxation Of Nonlinear Viscoelastic Materials Findley Pdf
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Findley, W. June 1, June ; 44 2 :
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Creep and Relaxation of Nonlinear Viscoelastic Materials
Preface Chapter 1. Introduction 1. Historical Survey of Creep 2. State of Stress and Strain 3. Mechanics of Stress and Deformation Analyses 4. Linear Viscoelastic Constitutive Equations 5. Linear Viscoelastic Stress Analysis 6.
Multiple Integral Representation 7. Conversion and Mixing of Nonlinear Creep and Relaxation Effect of Temperature on Nonlinear Viscoelastic Materials Nonlinear Viscoelastic Stress Analysis Experimental Methods List of Symbols Appendix A2. Laplace Transformation A4. Creep and Relaxation of Nonlinear Viscoelastic Materials with an Introduction to Linear Viscoelasticity deals with nonlinear viscoelasticity, with emphasis on creep and stress relaxation. It explains the concepts of elastic, plastic, and viscoelastic behavior, along with creep, recovery, relaxation, and linearity.
It also describes creep in a variety of viscoelastic materials, such as metals and plastics. Organized into 13 chapters, this volume begins with a historical background on creep, followed by discussions about strain and stress analysis, linear viscoelasticity, linear viscoelastic stress analysis, and oscillatory stress and strain. It methodically walks the reader through topics such as the multiple integral theory with simplifications to single integrals, incompressibility and linear compressibility, and the responses of viscoelastic materials to stress boundary conditions creep , strain boundary conditions relaxation , and mixed stress and strain boundary conditions simultaneous creep and relaxation.
The book also looks at the problem of the effect of temperature, especially variable temperature, on nonlinear creep, and describes methods for the characterization of kernel functions, stress analysis of nonlinear viscoelastic materials, and experimental techniques for creep and stress relaxation under combined stress.
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By William N. Findley and Francis A. This Dover edition, first published in , is an unabridged, corrected republication of the work originally published in by North-Holland Publishing Company, Amsterdam, as Volume 18 in the North-Holland Series in Applied Mathematics and Mechanics. A new section of additional literature relating to Chapter 2 has been added in this edition at the end of the bibliography. Findley, James S. Lai, Kasif Onaran.
A method to predict the stress relaxation response of nonlinear thermoviscoelastic materials from known creep data is presented. For given nonlinear creep properties, and creep compliance represented by the Prony series, it is shown that the Schapery creep model can be transformed into a set of first order nonlinear differential equations. By solving these equations the nonlinear stress relaxation curves for different strain and temperature levels are established. This is a preview of subscription content, access via your institution. Rent this article via DeepDyve.
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Preface Chapter 1. Introduction 1. Historical Survey of Creep 2. State of Stress and Strain 3.
Polymer Engineering Science and Viscoelasticity pp Cite as. A casual glance at the stressstrain response of polycarbonate given in Fig. Obviously, polycarbonate as well as other polymers with similar behavior cannot be considered to be linear for such circumstances. For these reasons, it is appropriate to have basic understanding of nonlinear processes in order to be able to design structures made of polymeric materials. The intent here is to give basic definitions that will assist in identifying nonlinear effects when they occur and to review several nonlinear approaches.
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Read Creep and Relaxation of Nonlinear Viscoelastic Materials by William N. Findley,Francis A. Davis with a free trial. Read unlimited* books and audiobooks.
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