A comprehensive exposition of micro and nanofiber forming, this text provides a unified framework of all these processes (melt and solution blowing, electrospinning, and so on) and describes their foundations, development and applications. It provides an up-to-date, in-depth physical and mathematical treatment, and discusses a wide variety of applications in different fields, including nonwovens, energy, healthcare and the military. It further highlights the challenges and outstanding issues from an interdisciplinary perspective of science and technology, incorporating both fundamentals and applications. Ideal for researchers, engineers and graduate students interested in the formation of micro and nanofibers and their use in functional smart materials.
"synopsis" may belong to another edition of this title.
Alexander L. Yarin is a Professor of Mechanical Engineering at the University of Illinois, Chicago and concurrently a Professor of the College of Engineering at Korea University in Seoul, South Korea.
Behnam Pourdeyhimi is a Distinguished Chaired Professor of Materials in the College of Textiles and the Executive Director of the Nonwovens Institute.
Seeram Ramakrishna is a Professor of Materials Engineering and Director of the Center for Nanofibers and Nanotechnology at the National University of Singapore.
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Seller: Labyrinth Books, Princeton, NJ, U.S.A.
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Hardcover. Condition: Like New. Immediate dispatch from Somerset. Nice book in great condition. Pages in excellent condition. Hardcover. English. See images for condition. About the book >.>.> Fiber-forming processes and the resulting fibers have become a key element is many modern technologies. Today, practically everyone is directly or indirectly using these fibers. Manmade macroscopic fibers are widely used in our garments and many other items of everyday life. On the other hand, much smaller microscopic and, especially, nanofibers are only beginning their path to prominence. The chemical, physical and technological aspects of manufacturing of sach fibers are still weakly linked and not fully understood. Two main processes associated with formation of micro- and nanofibers are melt or solution blowing and electrospinning. They require concerted interaction of synthetic chemistry, responsible for polymers used as raw materials, polymer physics, providing a link to their viscoelastic behavior, rheological characterization of flow proper ties, non-Newtonian fluid dynamics of polymer solutions and melts, aerodynamics, asso ciated with gas blowing, and electrohydrodynamics, in the case of electrospinning. T. Seller Inventory # Batch-FM633-LN-13165
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Hardcover. Condition: new. Hardcover. A comprehensive exposition of micro and nanofiber forming, this text provides a unified framework of all these processes (melt and solution blowing, electrospinning, and so on) and describes their foundations, development and applications. It provides an up-to-date, in-depth physical and mathematical treatment, and discusses a wide variety of applications in different fields, including nonwovens, energy, healthcare and the military. It further highlights the challenges and outstanding issues from an interdisciplinary perspective of science and technology, incorporating both fundamentals and applications. Ideal for researchers, engineers and graduate students interested in the formation of micro and nanofibers and their use in functional smart materials. A comprehensive exposition of micro and nanofiber forming, this text provides a unified framework of these processes (melt and solution blowing, electrospinning, and so on) and describes their foundations, development and applications. Ideal for researchers, engineers and graduate students interested in formation of micro and nanofibers and their use in functional smart materials. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9781107060296
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Hardcover. Condition: Brand New. 443 pages. 9.00x6.00x1.00 inches. In Stock. This item is printed on demand. Seller Inventory # __110706029X
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