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Titlebook: Bio-inspired Structured Adhesives; Biological Prototype Lars Heepe,Longjian Xue,Stanislav N. Gorb Book 2017 Springer International Publishi

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期刊全稱Bio-inspired Structured Adhesives
期刊簡(jiǎn)稱Biological Prototype
影響因子2023Lars Heepe,Longjian Xue,Stanislav N. Gorb
視頻videohttp://file.papertrans.cn/187/186399/186399.mp4
發(fā)行地址Showcases fascinating biological prototypes.Provides new inspirations for materials science and technology.Addresses state-of-the-art technologies for fabricating micro- and nanostructures.Written for
學(xué)科分類Biologically-Inspired Systems
圖書封面Titlebook: Bio-inspired Structured Adhesives; Biological Prototype Lars Heepe,Longjian Xue,Stanislav N. Gorb Book 2017 Springer International Publishi
影響因子.This book deals with the adhesion, friction and contact mechanics of living organisms. Further, it presents the remarkable adhesive abilities of the living organisms which inspired the design of novel micro- and nanostructured adhesives that can be used in various applications, such as climbing robots, reusable tapes, and biomedical bandages. The technologies for both the synthesis and construction of bio-inspired adhesive micro- and nanostructures, as well as their performance, are discussed in detail..?Representatives of several animal groups, such as insects, spiders, tree frogs, and lizards, are able to walk on (and therefore attach to) tilted, vertical surfaces, and even ceilings in different environments. Studies have demonstrated that their highly specialized micro- and nanostructures, in combination with particular surface chemistries, are responsible for this impressive and reversible adhesion. These structures can maximize the formation of large effective contact areason surfaces of varying roughness and chemical composition under different environmental conditions..
Pindex Book 2017
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Roughness Versus Chemistry: Effect of Different Surface Properties on Insect Adhesion,le and female beetles were systematically measured on eight types of surface, each with different chemical and topographical properties. Three of these surfaces were smooth with different surface wettabilities, including two types of hydrophobic monolayers, with alkyl- and perfluoroalkyl-terminated
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The Role of Effective Elastic Modulus in the Performance of Structured Adhesives,e two basic structures, which can greatly reduce the effective elastic modulus of the adhesive pads. Inspired by the natural structured adhesives, various artificial structures possessing adhesive abilities have been developed. In this contribution, after the introduction of concepts of elastic modu
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