Rheology Abstracts F
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Rheology of Polymer Blends and Nanocomposites
Author | : Sabu Thomas |
Publisher | : Elsevier |
Total Pages | : 326 |
Release | : 2019-09-08 |
Genre | : Technology & Engineering |
ISBN | : 0128169567 |
Rheology of Polymer Blends and Nanocomposites: Theory, Modelling and Applications focuses on rheology in polymer nanocomposites. It provides readers with a solid grounding in the fundamentals of rheology, with an emphasis on recent advancements. Chapters explore potential future applications for nanocomposites and polymer blends, giving readers a thorough understanding of the specific features derived from rheology as a tool for the study of polymer blends and nanocomposites. This book is ideal for industrial and academic researchers in the field of polymer blends and nanocomposites, but is also a great resource for anyone who wants to learn about the applications of rheology. - Sets out the principles of rheology as it is applied to polymer blends and nanocomposites - Demonstrates how rheological techniques are best applied to different classes of nanocomposites - Assesses the opportunities and major challenges of rheological approaches to polymer blends and nanocomposites
Abstracts of the Journal
Author | : Institute of Petroleum (Great Britain) |
Publisher | : |
Total Pages | : 518 |
Release | : 1947 |
Genre | : Petroleum |
ISBN | : |
Solid-Liquid Separation in the Mining Industry
Author | : Fernando Concha A. |
Publisher | : Springer Science & Business Media |
Total Pages | : 441 |
Release | : 2013-12-19 |
Genre | : Technology & Engineering |
ISBN | : 3319024841 |
This book covers virtually all of the engineering science and technological aspects of separating water from particulate solids in the mining industry. It starts with an introduction to the field of mineral processing and the importance of water in mineral concentrators. The consumption of water in the various stages of concentration is discussed, as is the necessity of recovering the majority of that water for recycling. The book presents the fundamentals under which processes of solid-liquid separation are studied, approaching mixtures of discrete finely divided solid particles in water as a basis for dealing with sedimentation in particulate systems. Suspensions, treated as continuous media, provide the basis of sedimentation, flows through porous media and filtration. The book also considers particle aggregations, and thickening is analyzed in depth. Lastly, two chapters cover the fundamentals and application of rheology and the transport of suspensions. This work is suitable for researchers and professionals in laboratories and plants, and can also serve as additional reading for graduate courses on solid liquid separation as well as for advanced undergraduate and graduate level students for courses of fluid mechanics, solid-liquid separation, thickening, filtration and transport of suspensions in tubes and channels.