Rheology for Polymer Melt Processing ( Volume 5 )

Publication series :Volume 5

Author: Piau   J. -M.;Agassant   J. -F.  

Publisher: Elsevier Science‎

Publication year: 1996

E-ISBN: 9780080540566

P-ISBN(Paperback): 9780444822369

P-ISBN(Hardback):  9780444822369

Subject: O631 polymer physics and physical chemistry of polymers

Language: ENG

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Description

This book presents the main results obtained by different laboratories involved in the research group Rheology for polymer melt processing which is associated with French universities, schools of engineering, and the CNRS (Centre National de la Recherche Scientifique - France). The group comprises some 15 research laboratories of varied disciplines (chemistry, physics, material sciences, mechanics, mathematics), but with a common challenge viz. to enhance the understanding of the relationships between macromolecular species, their rheology and their processing. Some crucial issues of polymer science have been addressed: correlation of viscoelastic macroscopic bulk property measurements and models, slip at the wall, extrusion defects, correlation between numerical flow simulations and experiments.

Features of the book:

• The book is unique in that it allows one to grasp the key issues in polymer rheology and processing at once through a series of detailed state-of-the-art contributions, which were previously scattered throughout the literature.

• Each paper was reviewed by experts and the book editors and some coordination was established in order to achieve a readable and easy access style.

• Papers have been grouped in sections covering successively: Molecular dynamics, Constitutive equations and numerical modelling, Simple and complex flows.

• Each paper can be read independently.

Since the book is intended as an introduction to the main topics in

Chapter

Front Cover

pp.:  1 – 4

Coppyright Page

pp.:  5 – 8

Preface

pp.:  6 – 12

Contents

pp.:  8 – 6

PART I: MOLECULAR DYNAMICS

pp.:  12 – 152

PART II: CONSTITUTIVE EQUATIONS AND NUMERICAL MODELLING

pp.:  152 – 268

PART III: SIMPLE AND COMPLEX FLOWS

pp.:  268 – 432

SUBJECT INDEX

pp.:  432 – 436

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