Shape-Memory Polymer Device Design discusses the latest shape-memory polymers and the ways they have started to transition out of the academic laboratory and into devices and commercial products. Safranski introduces the properties of shape-memory polymers and presents design principles for designing and manufacturing, providing a guide for the R&D engineer/scientist and design engineer to add the shape memory effect of polymers into their design toolbox.
This is the first book to focus on applying basic science knowledge to design practical devices, introducing the concept of shape-memory polymers, the history of their use, and the range of current applications. It details the specific design principles for working with shape-memory polymers that don't often apply to mechanically inactive materials and products.
Material selection is thoroughly discussed because chemical structure and thermo-mechanical properties are intrinsically linked to shape-memory performance. Further chapters discuss programming the temporary shape and recovery through a variety of activation methods with real world examples. Finally, current devices across a variety of markets are highlighted to show the breadth of possible applications.
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David L. Safranski, Ph.D., is the Director of Basic Research at MedShape, Inc., an Atlanta-based orthopaedic device company. His current research focuses on both the basic science and translational aspects of designing shape-memory polymers and textiles for medical applications. He has authored numerous peer-reviewed articles and book chapters on shape-memory polymers and functional biomaterials and holds several patents around shape-memory polymers and devices. Dr. Safranski received his Ph.D. from the School of Materials Science and Engineering at the Georgia Institute of Technology, where he also serves as an adjunct faculty member.
Jack C. Griffis III, M.S., is the Senior Vice President of Advanced Research and Technology at MedShape, Inc., an Atlanta-based orthopaedic device company. He is the recipient of five national design excellence awards in medical device engineering and has cleared more than 50 different medical technologies with the FDA. In 2013, he was inducted into the National Academy of Inventors, and has been awarded 39 US patents in biomedical technologies. Mr. Griffis received his M.S. in mechanical engineering from the Georgia Institute of Technology.
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Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Germania
Buch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Shape-Memory Polymer Device Design discusses the latest shape-memory polymers and the ways they have started to transition out of the academic laboratory and into devices and commercial products. Safranski introduces the properties of shape-memory polymers and presents design principles for designing and manufacturing, providing a guide for the R&D engineer/scientist and design engineer to add the shape memory effect of polymers into their design toolbox. This is the first book to focus on applying basic science knowledge to design practical devices, introducing the concept of shape-memory polymers, the history of their use, and the range of current applications. It details the specific design principles for working with shape-memory polymers that don't often apply to mechanically inactive materials and products. Material selection is thoroughly discussed because chemical structure and thermo-mechanical properties are intrinsically linked to shape-memory performance. Further chapters discuss programming the temporary shape and recovery through a variety of activation methods with real world examples. Finally, current devices across a variety of markets are highlighted to show the breadth of possible applications. 246 pp. Englisch. Codice articolo 9780323377973
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Da: Grand Eagle Retail, Bensenville, IL, U.S.A.
Hardcover. Condizione: new. Hardcover. Shape-Memory Polymer Device Design Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Codice articolo 9780323377973
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Da: AHA-BUCH GmbH, Einbeck, Germania
Buch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Shape-Memory Polymer Device Design discusses the latest shape-memory polymers and the ways they have started to transition out of the academic laboratory and into devices and commercial products. Safranski introduces the properties of shape-memory polymers and presents design principles for designing and manufacturing, providing a guide for the R&D engineer/scientist and design engineer to add the shape memory effect of polymers into their design toolbox. This is the first book to focus on applying basic science knowledge to design practical devices, introducing the concept of shape-memory polymers, the history of their use, and the range of current applications. It details the specific design principles for working with shape-memory polymers that don't often apply to mechanically inactive materials and products. Material selection is thoroughly discussed because chemical structure and thermo-mechanical properties are intrinsically linked to shape-memory performance. Further chapters discuss programming the temporary shape and recovery through a variety of activation methods with real world examples. Finally, current devices across a variety of markets are highlighted to show the breadth of possible applications. Codice articolo 9780323377973
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Da: Revaluation Books, Exeter, Regno Unito
Hardcover. Condizione: Brand New. 229 pages. 9.50x6.25x1.00 inches. In Stock. Codice articolo x-0323377971
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Hardcover. Condizione: new. Hardcover. Shape-Memory Polymer Device Design Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Codice articolo 9780323377973
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Da: Kennys Bookstore, Olney, MD, U.S.A.
Condizione: New. Series: Plastics Design Library. Num Pages: 224 pages. BIC Classification: TDCP. Category: (P) Professional & Vocational. Dimension: 229 x 152. . . 2017. 1st Edition. hardcover. . . . . Books ship from the US and Ireland. Codice articolo V9780323377973
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Da: Kennys Bookshop and Art Galleries Ltd., Galway, GY, Irlanda
Condizione: New. Series: Plastics Design Library. Num Pages: 224 pages. BIC Classification: TDCP. Category: (P) Professional & Vocational. Dimension: 229 x 152. . . 2017. 1st Edition. hardcover. . . . . Codice articolo V9780323377973
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