Rabu, 02 Oktober 2013

Download Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation

Download Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation

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Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation

Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation


Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation


Download Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation

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Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation

From the Back Cover

Polymers are long string-like molecules. At high molecular weights, the long molecules are heavily intertwined, leading to unique viscoelastic behavior due to chain entanglement. Under large deformation, entangled polymers show a rich variety of nonlinear rheological responses including strain localization. Nonlinear Polymer Rheology offers new, significant insights to students and research professionals. All aspects of nonlinear polymer rheology are described within one common framework. The author explains why yielding, i.e., the transition from elastic response to irreversible deformation (flow), always takes place when entangled polymeric liquids are subjected to a variety of different forms of large deformation. Integrating latest research results and characterization techniques, Nonlinear Polymer Rheology helps readers understand and apply basic principles of nonlinear polymer rheology. The book connects the theoretical framework with practical polymer processing, aiding practicing scientists and engineers to go beyond existing knowledge and explore innovative applications.

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About the Author

SHI-QING WANG, PhD, is Kumho Professor of Polymer Science at the University of Akron. He has been teaching at the university level for more than 28 years and has over 150 peer reviewed publications. Dr. Wang is a reviewer for many journals and a Fellow of both the American Physical Society (APS) and American Association for the Advancement of Science (AAAS).

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Product details

Hardcover: 464 pages

Publisher: Wiley; 1 edition (February 6, 2018)

Language: English

ISBN-10: 0470946989

ISBN-13: 978-0470946985

Product Dimensions:

7 x 1.2 x 10.1 inches

Shipping Weight: 2.2 pounds (View shipping rates and policies)

Average Customer Review:

5.0 out of 5 stars

3 customer reviews

Amazon Best Sellers Rank:

#2,838,278 in Books (See Top 100 in Books)

The book itself is groundbreaking and is worth a purchase for anyone in the polymer rheology field. It offers a new perspective to unexplained shortcoming in nonlinear polymer rheology and proposes logical explanation based on experimental work and molecular simulations for a new fundamental theory. The book is broken down into three main sections phenomenology, experimental, and theoretical. The first section of phenomenology outlines the history and current state of rheology and presents gaps in knowledge. The experimental section compiles experiments that cannot be fully explained by the widely accepted theories of polymer rheology specifically the tube model. The theoretical section builds a new holistic model based on the experimental works and the author proposes new model to replace the tube model and tests the new model by experimental work.The take home message of the book is to not just blindly trust the status quo in nonlinear rheology, challenge it, and propose a new model that help to shine light in darkness. Sciences only progress when ideas are challenged to find truth.

In my view, one ultimate goal of nonlinear polymer rheology is to build up robust and reliable constitutive equations for polymer processing and manufacturing. Unfortunately, all current constitutive equations fail to capture the characteristics of the evolvement of stress with respect to deformation, including the constitutive equations derived from the Doi-Edwards tube model. In this book, the author summarizes a large number of their experimental observations of entangled polymer melts and polymer solutions upon large deformation of different kinds, including simple shear, planar shear, extension, capillary extrusion, etc. These observations will certainly serve as the foundation of new molecular theories and new constitutive equations in nonlinear polymer rheology. I found the part of Wall slip is especially interesting and fascinating. Graduate students who work in the field of polymer rheology should definitely read this book.

This book provides a new system of polymer rheology which explains lots of problem that conventional theory cannot. It contains both detailed theoretical explanation and experimental data, and they confirmed each other very well. And also, This book does not highly rely on assumptions compare with others, which indicates it is more close to the real truth.In total, This book provides a better, more concise rheology system. And it is the best polymer rheology book.

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Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation PDF
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