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Kategorie szczegółowe BISAC

Polymer Materials: Macroscopic Properties and Molecular Interpretations

ISBN-13: 9780470616192 / Angielski / Twarda / 2011 / 432 str.

Jean-Louis Halary
Polymer Materials: Macroscopic Properties and Molecular Interpretations Halary, Jean Louis 9780470616192 John Wiley & Sons - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Polymer Materials: Macroscopic Properties and Molecular Interpretations

ISBN-13: 9780470616192 / Angielski / Twarda / 2011 / 432 str.

Jean-Louis Halary
cena 594,85
(netto: 566,52 VAT:  5%)

Najniższa cena z 30 dni: 588,77
Termin realizacji zamówienia:
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Bez gwarancji dostawy przed świętami

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Advanced reviews for Polymer Materials "Molecular modeling of polymers ... is a subject that cannot be found in any other book] in any appreciable detail. ... T]he detailed chapters on specific polymer systems is a great idea." -- Gregory Odegard, Michigan Technological University "The polymer community needs a text book which can connect the macroscopic mechanics with mesoscopic and molecular aspects of polymer." -- Liangbin Li, University of Science and Technology of China This book takes a unique, multi-scale approach to the mechanical properties of polymers, covering both the macroscopic and molecular levels unlike any other book on the market. Based on the authors' extensive research and writing in the field, Polymer Materials emphasizes the relationships between the chemical structure and the mechanical behavior of polymer materials, providing authoritative guidelines for assessing polymer performance under different conditions and the design of new materials. Key features of this book include:

  • Experimental results on selected examples precede and reinforce the development of theoretical features
  • In-depth discussions of a limited number of polymer systems instead of a brief overview of many
  • Self-contained chapters with a summary of their key points
  • Comprehensive problems and a solutions manual for the different parts of the book
  • Coverage of the basics with an emphasis on polymer dynamics
An indispensable resource for polymer scientists and students alike, Polymer Materials is also highly useful for material scientists, engineers, chemists, and physicists in industry and academia.

Kategorie:
Nauka, Chemia
Kategorie BISAC:
Science > Chemia - Fizyczna
Technology & Engineering > Chemical & Biochemical
Wydawca:
John Wiley & Sons
Język:
Angielski
ISBN-13:
9780470616192
Rok wydania:
2011
Ilość stron:
432
Waga:
1.30 kg
Wymiary:
27.69 x 21.34 x 2.79
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Bibliografia
Wydanie ilustrowane

"The book is well readable, extremely well structured, and very informative – simply this is an indispensable, excellent textbook. Everybody interested in the molecular interpretation of the physical behavior of polymers should have it on the desk. The book will likely be a "must" for university teachers in polymer physics in the future." (Materials Views, 1 August 2011)

 

PREFACE.

LIST OF SYMBOLS.

Introduction to Polymer Materials.

PART I.

1 The Four Classes of Polymer Materials.

2 The Macromolecular Chain in the Amorphous Bulk Polymer: Static and Dynamic Properties.

3 The Glass Transition.

4 Secondary Relaxations in Amorphous Polymers.

5 Entanglements in Bulk Un–Cross–Linked Polymers.

6 Semicrystalline Polymers.

PART II.

7 Elastic and Hyperelastic Behaviors.

8 Linear Viscoelastic Behavior.

9 Anelastic and Viscoplastic Behaviors.

10 Damage and Fracture of Solid Polymers.

PART III.

11 Mechanical Properties of Poly(Methyl Methacrylate) and Some of Its Random Copolymers.

12 Mechanical Properties of Bisphenol–A Polycarbonate.

13 Mechanical Properties of Epoxy Resins.

14 Polyethylene and Ethylene–a–olefi n Copolymers.

15 High–Modulus Thermoplastic Polymers.

PART IV.

16 Mechanical Tests for Studying Impact Behavior.

17 High–Impact Polystyrene.

18 Toughened Poly(Methyl Methacrylate).

19 Toughened Aliphatic Polyamides.

20 Toughened Epoxy Resins.

PART V.

21 Chemically Cross–Linked Elastomers.

22 Reinforcement of Elastomers by Fillers.

23 Thermoplastic Elastomers.

Appendix: Problems.

INDEX.

JEAN–LOUIS HALARY, PhD, is a professor at the Laboratory of Physico–Chemistry of Polymers and Dispersed Media at ESPCI ParisTech. He has published book chapters and numerous articles in international journals, presented over 150 communications in conferences and laboratories, and is the holder of two patents. Dr. Halary has coauthored the books De la Macromolécule au Matériau Polymère and Mécanique des Matériaux Polymères.

FRANÇOISE LAUPR TRE, PhD, is Professor Emeritus at the University Paris 12 Val de Marne in the Laboratory of Polymer Research. She has published numerous articles in scientific journals and a number of book chapters, and has lectured in many international conferences. Dr. Laupr¿tre has coauthored the books De la Macromolécule au Matériau Polymère and Mécanique des Matériaux Polymères.

LUCIEN MONNERIE, PhD, is Professor and Honorary Director of Studies of the ESPCI ParisTech. He has published hundreds of articles in scientific journals as well as a number of book chapters, and has lectured at many international meetings. Dr. Monnerie is coauthor of Mécanique des Matériaux Polymères.

"Molecular modeling of polymers . . . is a subject that cannot be found in any other [book] in any appreciable detail. . . . The detailed chapters on specific polymer systems are a great idea." Gregory Odegard, Michigan Technological University

"The polymer community needs a textbook that can connect macroscopic mechanics with the mesoscopic and molecular aspects of polymers." Liangbin Li, University of Science and Technology of China

This book takes a unique, multiscale approach to the mechanical properties of polymers, covering both the macroscopic and molecular levels unlike any other book on the market. Based on the authors′ extensive research and writing in the field, Polymer Materials emphasizes the relationships between the chemical structure and the mechanical behavior of polymer materials, providing authoritative guidelines for assessing polymer performance under different conditions and the design of new materials.

The authors focus on a few representative polymer systems polystyrene, poly(methyl methacrylate), aliphatic polyamides, and epoxy resins using them to investigate and demonstrate the different deformation and fracture mechanisms of pure polymers and also their toughening by fillers. The specific deformation and fracture mechanisms active in pure and filled elastomers are also explained in detail.

Key features of this book include:

  • Experimental results on selected examples that precede and reinforce the development of theoretical features

  • In–depth discussion of a limited number of polymer systems instead of a brief overview of many

  • Self–contained chapters with a summary of their key points

  • Comprehensive problems and a solutions manual for the different parts of the book

  • Coverage of the basics with an emphasis on polymer dynamics

An indispensable resource for polymer scientists and students alike, Polymer Materials is also highly useful for materials scientists, engineers, chemists, and physicists in industry and academia.



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