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Materials science of polymers for engineers

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This book introduces engineering properties of polymeric materials to students and engineers from a material science perspective. It begins with a presentation of the chemistry of polymers, followed by an extensive description of their non-mechanical properties. The rheology of polymer melts is covered. The solidification processes of thermoplastic and thermosetting materials are discussed. Examples illustrate the effects of processing conditions on the dimensional integrity and properties of plastic components. This is followed by a presentation of the mechanical behavior of polymer parts, with an emphasis on creep, relaxation, fatigue and viscoelasticity. Partial Contents: Principles. Structure of Polymers. Thermal Properties. Influence of Processing. Rheology of Polymer Melts. Mixing. Anisotropy Developing During Processing. Solidification. Engineering Design. Mechanical Behavior. Failure. Electrical and Optical Properties. Permeability. Acoustic Properties. Reviews: „... highly recommended.“—Polymer News „ ... recommended for upper-division undergraduates and graduates.“ —Choice

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Materials science of polymers for engineers, Tim A. Osswald

Język
Rok wydania
1995
Oprawa
(twarda)
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Tytuł
Materials science of polymers for engineers
Język
niemiecki
Rok wydania
1995
Oprawa
twarda
ISBN10
3446172610
ISBN13
9783446172616
Seria
Tagi
Ocena
4 z 5
Opis
This book introduces engineering properties of polymeric materials to students and engineers from a material science perspective. It begins with a presentation of the chemistry of polymers, followed by an extensive description of their non-mechanical properties. The rheology of polymer melts is covered. The solidification processes of thermoplastic and thermosetting materials are discussed. Examples illustrate the effects of processing conditions on the dimensional integrity and properties of plastic components. This is followed by a presentation of the mechanical behavior of polymer parts, with an emphasis on creep, relaxation, fatigue and viscoelasticity. Partial Contents: Principles. Structure of Polymers. Thermal Properties. Influence of Processing. Rheology of Polymer Melts. Mixing. Anisotropy Developing During Processing. Solidification. Engineering Design. Mechanical Behavior. Failure. Electrical and Optical Properties. Permeability. Acoustic Properties. Reviews: „... highly recommended.“—Polymer News „ ... recommended for upper-division undergraduates and graduates.“ —Choice