Rheological Fundamentals of Polymer Processing edited by J.A. Covas, J.F. Agassant, A.C. Diogo, J. Vlachopoulos, K. Walters.

Experts in rheology and polymer processing present up-to-date, fundamental and applied information on the rheological properties of polymers, in particular those relevant to processing, contributing to the physical understanding and the mathematical modelling of polymer processing sequences. Basic c...

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Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Covas, J.A (Editor), Agassant, J.F (Editor), Diogo, A.C (Editor), Vlachopoulos, J. (Editor), Walters, K. (Editor)
Format: eBook
Language:English
Published: Dordrecht : Springer Netherlands : Imprint: Springer, 1995.
Edition:1st ed. 1995.
Series:Nato Science Series E:, Applied Sciences, 302
Springer eBook Collection.
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Online Access:Click to view e-book
Holy Cross Note:Loaded electronically.
Electronic access restricted to members of the Holy Cross Community.
Description
Summary:Experts in rheology and polymer processing present up-to-date, fundamental and applied information on the rheological properties of polymers, in particular those relevant to processing, contributing to the physical understanding and the mathematical modelling of polymer processing sequences. Basic concepts of non-Newtonian fluid mechanics, micro-rheological modelling and constitutive modelling are reviewed, and rheological measurements are described. Topics with practical relevance are debated, such as linear viscoelasticity, converging and diverging flows, and the rheology of multiphase systems. Approximation methods are discussed for the computer modelling of polymer melt flow. Subsequently, polymer processing technologies are studied from both simulation and engineering perspectives. Mixing, crystallization and reactive processing aspects are also included. Audience: An integrated and complete view of polymer processing and rheology, important to institutions and individuals engaged in the characterisation, testing, compounding, modification and processing of polymeric materials. Can also support academic polymer processing engineering programs.
Physical Description:XII, 464 p. online resource.
ISBN:9789401585712
ISSN:0168-132X ;
DOI:10.1007/978-94-015-8571-2