Polymer and composite rheology
- Title
- Polymer and composite rheology / Rakesh K. Gupta.
- Published by
- New York : Marcel Dekker, 2000.
- Author
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Displaying 1 item
Status | Format | Access | Call number | Item location |
---|---|---|---|---|
Status | FormatText | AccessUse in library | Call numberTA455.P58 G88 2000 | Item locationOff-site |
Details
- Description
- xiii, 390 pages : illustrations; 24 cm.
- Series statement
- Plastics engineering ; 58
- Uniform title
- Plastics engineering (Marcel Dekker, Inc.) ; 58.
- Subject
- Contents
- Rheology -- Material Functions in Viscometric Flows -- Extensional Flow -- The Stress Tensor -- The Rate of Strain Tensor -- Instruments for Shear Rheology -- Capillary Viscometers -- Coaxial Cylinder Viscometers -- Cone-and-Plate Viscometers -- Parallel-Plate Viscometers -- Sliding-Plate Viscometers -- Other Viscometers -- Shear Viscosity of Melts of Flexible Chain Polymers -- Zero-Shear Viscosity -- Shear Rate-Dependent Viscosity -- Shear Viscosity of Polymer Solutions -- Intrinsic Viscosity--The Limit of Infinite Dilution -- Zero-Shear Viscosity as a Function of Molecular Weight and Concentration -- Influence of Structural Factors, Temperature, and Pressure on the Zero-Shear Viscosity -- Shear Rate-Dependent Viscosity -- Viscosity of Polyelectrolytes -- Surfactant Solutions and Associative Thickeners -- Normal Stress Differences in Polymers During Shear Flow -- Low-Shear-Rate Behavior of the First Normal Stress Difference -- Measurement of N[subscript 1] at High Shear Rates -- Measurement of the Second Normal Stress Difference -- Dynamic Mechanical Properties -- Dependence of Polymer Melt Dynamic Mechanical Properties on Temperature, Molecular Weight, and Polymer Structure -- Boltzmann Superposition Principle -- Stress Relaxation Modulus -- Dynamic Rheological Properties of Solutions -- Relevance to Nonlinear Viscoelasticity -- Extensional Viscosity -- Low-Stretch-Rate Behavior of Extensional Viscosity -- Extensional Viscosity at High Stretch Rates -- Rigid-Rod and Liquid-Crystal Polymer Rheology.
- Owning institution
- Princeton University Library
- Bibliography (note)
- Includes bibliographical references and index.