
- 778 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
About this book
Rheology: Theory and Applications, Volume 1 is a compilation of papers contributed by experts in the field of rheology - the science of deformation and flow. The collection provides the general concepts and laws of rheology. This volume contains chapters that discuss the concepts of rheology from the standpoint of physics and engineering; phases of the deformation of solids; mechanism of liquid flow, large elastic deformations, viscoelasticity, and melt flow; the rheology of disperse systems; and acoustic responses of liquids. Materials scientists, geophysicists, physiologists, biologists, and pharmacists will find the book very informative.
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Yes, you can access Rheology V1 by Frederick Eirich in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Mechanics. We have over one million books available in our catalogue for you to explore.
Information
Table of contents
- Front Cover
- Rheology: Theory and Applications
- Copyright Page
- Table of Contents
- Preface
- Contributors to Volume I
- Chapter 1. Introduction
- Chapter 2. Phenomenological Macrorheology
- Chapter 3. Finite Plastic Deformation
- Chapter 4. Stress-Strain Relations in the Plastic Range of MetalsâExperiments and Basic Concepts
- Chapter 5. Mechanical Properties and Imperfections in Crystals
- Chapter 6. Dislocations in Crystal Lattices
- Chapter 7. Mechanical Properties of Metals
- Chapter 8. Some Rheological Properties Under High Pressure
- Chapter 9. Theories of Viscosity
- Chapter 10. Large Elastic Deformations
- Chapter 11. Dynamics of Viscoelastic Behavior
- Chapter 12. Viscosity Relationships for Polymers in Bulk and in Concentrated Solution
- Chapter 13. The Statistical Mechanical Theory of Irreversible Processes in Solutions of Macromolecules
- Chapter 14. The Viscosity of Colloidal Suspensions and Macromolecular Solutions
- Chapter 15. Streaming and Stress Birefringence
- Chapter 16. Non-Newtonian Flow of Liquids and Solids
- Chapter 17. Acoustics and the Liquid State
- APPENDIX
- AUTHOR INDEX
- SUBJECT INDEX