Polymer viscoelasticity stress and strain in practice
Showcasing vital engineering applications to transient and dynamic pertubations of macromolecular materials, structural recovery's role in mechanical responses in the glassy state, and viscoelastic parameters that condition the non-Newtonian behaviour of polymers, this work presents a systemati...
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| Format: | Book |
| Language: | English |
| Published: |
New York, NY
Marcel Dekker
2000
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| Series: | Plastics engineering (Marcel Dekker, Inc.)
55 |
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| 039 | 9 | |a 201408061225 |b zul |c 201404221646 |d azraai |y 200910081444 |z VLOAD | |
| 040 | |a UPNM | ||
| 090 | |a TA 455.P58 |b P694 2000 | ||
| 245 | 0 | 0 | |a Polymer viscoelasticity |b stress and strain in practice |c Evaristo Riande ... [et al.] |
| 260 | |a New York, NY |b Marcel Dekker |c 2000 | ||
| 300 | |a xv, 879 p. |b ill. |c 24 cm. | ||
| 490 | 1 | |a Plastics engineering |v 55 | |
| 504 | |a Includes bibliographical references and index | ||
| 505 | |a Structure of Polymers -- Crystalline and Amorphous States in Polymers -- Rubber Elasticity -- Stress - Strain Relations for Ideal Solids and Ideal Liquids -- Linear Viscoelasticity and Viscoelastic Functions -- Dynamic Viscoelastic Functions -- Experimental Determination of Viscoelastic Properties -- Viscoelastic Behavior of Polymers Above T[subscript g] -- Retardation and Relaxation Spectra -- Viscoelastic Models -- Molecular Models of Viscoelastic Polymers -- Viscoelasticity of Glassy and Semicrystalline Polymers -- Flow Behavior of Polymer Melts and Solutions -- Yield Crazing and Fracture -- Reinforced Polymers -- Multiaxial Analysis of Linear Viscoelastic Stress -- Flexion and Torsion of Viscoelastic Beams and Rods | ||
| 520 | |a Showcasing vital engineering applications to transient and dynamic pertubations of macromolecular materials, structural recovery's role in mechanical responses in the glassy state, and viscoelastic parameters that condition the non-Newtonian behaviour of polymers, this work presents a systematic account of the responses of macromolecular materials to mechanical force fields. It focuses on the most important features of the linear stress-strain relationships for ideal solids and liquids. | ||
| 650 | 0 | |a Polymers |x Viscosity | |
| 650 | 0 | |a Viscoelasticity | |
| 700 | 1 | |a Riande, Evaristo | |
| 830 | 0 | |a Plastics engineering (Marcel Dekker, Inc.) |v 55 | |
| 999 | |a vtls000007349 |c 7144 |d 7144 | ||


