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Nonlinear Polymer Rheology

Nonlinear Polymer Rheology
Author: Shi-Qing Wang
Publisher: John Wiley & Sons
Total Pages: 664
Release: 2018-01-02
Genre: Technology & Engineering
ISBN: 111902904X

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Integrating latest research results and characterization techniques, this book helps readers understand and apply fundamental principles in nonlinear polymer rheology. The author connects the basic theoretical framework with practical polymer processing, which aids practicing scientists and engineers to go beyond the existing knowledge and explore new applications. Although it is not written as a textbook, the content can be used in an upper undergraduate and first year graduate course on polymer rheology. • Describes the emerging phenomena and associated conceptual understanding in the field of nonlinear polymer rheology • Incorporates details on latest experimental discoveries and provides new methodology for research in polymer rheology • Integrates latest research results and new characterization techniques like particle tracking velocimetric method • Focuses on the issues concerning the conceptual and phenomenological foundations for polymer rheology • Has a companion website for readers to access with videos complementing the content within several chapters


Non-Linear Rheology of Polymer Melts

Non-Linear Rheology of Polymer Melts
Author: Gholamhossein Sodeifian
Publisher: LAP Lambert Academic Publishing
Total Pages: 152
Release: 2011-08
Genre:
ISBN: 9783845405698

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In order to study non-linear viscoelasticity behavior polymer blends in shear flow, the experiments of steady shear, start up steady shear and step strain are necessary. Using suitable constitutive equations one can allows understanding nonlinearity phenomena and then comparing results to experimental data. In most of polymer processing, such as injection molding and extrusion, polymer melts are subjected to high deformations. To study nonlinear viscoelastic properties, it is necessary to have a rheometer to generate high shear rates. A sliding parallel plate rheometer incorporating a shear stress transducer has been developed. This rheometer has been equipped with a robust servohydraulic linear actuator which can generate shear rates and frequencies up to 900 (1/S) and 500 (Hz) respectively, compared with maximum 500 (1/S) and 100 (Hz), used in the latest rheometers. Using this system, one can generate different strain histories such as small amplitude oscillatory strain, large amplitude oscillatory strain, step strain, multistep strain and sequential strain.


Investigation of Non-linear Rheological Behaviors of Entangled Polymer Melts in Complex Geometries

Investigation of Non-linear Rheological Behaviors of Entangled Polymer Melts in Complex Geometries
Author: Xiangyang Zhu
Publisher:
Total Pages: 137
Release: 2012
Genre: Deformations (Mechanics)
ISBN:

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Nonlinear rheology of polymer melts has been of central interest in polymer science and engineering for the last four decades. Recent particle-tracking velocimetric (PTV) observations have revealed strain localization either during startup shear, beyond the stress overshoot, or after stepwise shear of entangled solutions and melts. Strain localization under rate-controlled shear shows that yielding, i.e., transition from elastic deformation to flow, has taken place. Under controlled stress, i.e. creep, entangled polymers also exhibit breakdown of the entanglement network in the form of an entanglement-disentanglement transition (EDT). Characterization of structural changes during creep has been performed for entangled polymer solutions undergoing EDT. The PTV method was employed to probe yielding and strain localization under large, fast external deformation of polymeric melts in uniaxial extension and capillary extrusion. Shear yielding through chain disentanglement is anticipated despite the fact that these two modes of deformation are not simple shear. During uniaxial extension, we are able to identify different failure modes of tensile decohesion and necking failure initiated by shear yielding. During capillary extrusion, entry pressure loss due to shear yielding also has been systematically studied in the fast flow region. Through Bagley extrapolation or flow curves obtained in a Couette device, the magnitude of pressure loss was determined. It was found to be proportional to one third power of the volumetric flow rate.


Polymer Melt Rheology

Polymer Melt Rheology
Author: F N Cogswell
Publisher: Elsevier
Total Pages: 195
Release: 1981-01-01
Genre: Science
ISBN: 0857092987

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This book explores the ways in which melt flow behaviour can be exploited by the plastics engineer and technician for increased efficiency of processing operation, control of end product properties and selection and development of polymers for specific purposes. (reissued with minor corrections 1994)


Nonlinear Rheology of Long-chain Branched Polymers

Nonlinear Rheology of Long-chain Branched Polymers
Author: Gengxin Liu
Publisher:
Total Pages: 134
Release: 2015
Genre: Polymer melting
ISBN:

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Entangled polymers show significant nonlinear rheological behaviors. Those studies on the mechanical behaviors of polymer melts and solutions not only promote our understanding on polymer dynamics, but also guide the application of polymers and establish principals to design polymeric materials. Recently emerged interpretations on nonlinear rheology of linear polymers proposed by Dr. Shi-Qing Wang emphasize the network nature of entangled polymers. This dissertation studies the nonlinear rheology of long-chain branched (LCB) polymers. A new synthetic method is developed and implemented to overcome the limitation of previous methods for not being able to synthesize long enough branches. This method can produce ultra-high molecular weight LCB polymers with branches of identical length and uniform spacing between branch points. Polymers with multiple long branches show remarkable resistance to the elastic-driven decohesion comparing to linear polymers. In startup uniaxial extension, they are extraordinarily more stretchable. An empirical rule shows that the failure of entangled network, as characterized by the overshoot of engineering stress, is proportional to the square root of number of entanglements. Polymers with LCB are also more resistant to failure in stepwise extension (withstand a larger stretching ratio), which would be part of film blowing process. Historically, strain hardening stands for the upward deviation of transient extensional viscosity comparing to zero-rate transient viscosity, which typically shows up on branched polymers. Under the newly emerged conceptual framework, such behavior is due to three factors: firstly, the shrinking cross-section area leads to a factor of extension ratio in calculating true stress and transient extensional viscosity; secondly, the introduction of branches suppresses the breakdown of entangled network; lastly, the entanglement network is strengthened at sufficient high Hencky rates during extension. Entangled polymeric liquids have so far only shown strain softening upon startup shear, signified by stress overshoot. However, solutions of polystyrenes with LCB exhibit strain hardening upon startup shear at high shear rates, undergoing non-Gaussian chain stretching and reaching finite extensibility limit. The stronger than linear increase of the shear stress ends with a sharp decline, forming a cusp. At intermediate shear rates, stress overshoots always occur at the same strain, which is explained also by the length of backbone. The LCB polymers show a rich variety of transient responses to startup shear at different rates and open a large window of dynamics to meet practical applications.


Polymer Melt Rheology and Flow Birefringence

Polymer Melt Rheology and Flow Birefringence
Author: Hermann Janeschitz-Kriegl
Publisher: Springer Science & Business Media
Total Pages: 538
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 3642688225

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The present monograph is intended as an introduction into a field which certainly did not receive proper attention in the past. It is one of the aims of this book to verify this suppo sition. The author hopes to show that the technique of the measurement of flow birefringence can fulfil an important com plementary task in polymer melt rheology. From this point it is expected that the present monograph will attract the atten tion of polymer scientists in general, and of rheologists and process engineers in particular. Certainly, the fourth chapter will appeal to the latter group. As a teacher in polymer science and technology the author wants to address also the group of the graduate students. In fact, the standard knowledge acquired during usual university studies in chemistry, physics or engineering does not enable a quick start of research activities in the field of polymer melt rheology. Certainly, in this typically interdisciplinary field everyone can lay emphasis on matters which are familar to hirn because of his preceding education. Significant research activities, however, can only be generated on the basis of a more universal knowledge. In the absence of this knowledge beginners have to rely upon the guidance of their supervisors for an unduly long period. Otherwise they take the risk of losing too much of their costly time. This holds in particular for the experimentalists who cannot be dispensed from being familiar with the necessary theoretical background.


Nonlinear Polymer Rheology

Nonlinear Polymer Rheology
Author: Shi-Qing Wang
Publisher: John Wiley & Sons
Total Pages: 470
Release: 2018-02-06
Genre: Technology & Engineering
ISBN: 0470946989

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Integrating latest research results and characterization techniques, this book helps readers understand and apply fundamental principles in nonlinear polymer rheology. The author connects the basic theoretical framework with practical polymer processing, which aids practicing scientists and engineers to go beyond the existing knowledge and explore new applications. Although it is not written as a textbook, the content can be used in an upper undergraduate and first year graduate course on polymer rheology. • Describes the emerging phenomena and associated conceptual understanding in the field of nonlinear polymer rheology • Incorporates details on latest experimental discoveries and provides new methodology for research in polymer rheology • Integrates latest research results and new characterization techniques like particle tracking velocimetric method • Focuses on the issues concerning the conceptual and phenomenological foundations for polymer rheology • Has a companion website for readers to access with videos complementing the content within several chapters


Rheology for Polymer Melt Processing

Rheology for Polymer Melt Processing
Author: J.-M. Piau
Publisher: Elsevier
Total Pages: 435
Release: 1996-10-10
Genre: Technology & Engineering
ISBN: 0080540562

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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 polymer processing, it will be of interest to graduate students as well as to scientists in academic and industrial laboratories.


Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids

Nonlinear Phenomena in Flows of Viscoelastic Polymer Fluids
Author: A.I. Leonov
Publisher: Springer Science & Business Media
Total Pages: 492
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9401112584

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This monograph presents theoretical and experimental studies of flows of elastic liquids. Falling into this category are particularly the melts and concentrated solutions of such flexible-chain polymers as polyethylene, polyisobutylene and polypropylene, all of which are widely used in polymer processing. These polydisperse polymers vary greatly, from batch to batch, in their mechanical properties and 20% variation in a property is believed to be good enough. l 7 All recent books - devoted to the rheology of polymers do not answer the question of which constitutive equations should be used for solving the fluid mechanic problems of polymer processing in the usual case of an appreciable nonlinear region of deformation where nonlinear effects of shear and extensional elasticity are very important. Viscoelastic constitut ive equations cited commonly (see, e.g. Refs 5 and 6) do not describe simultaneously even the simplest cases of deformations, viz. simple shear and uniaxial extension. Moreover, some of them are internally inconsist ent and sometimes display highly unstable behaviour in simple flows without any fundamental reasons. Even more respected molecular ap free from these defects.