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Electromechanically active polymers[...
~
Carpi, Federico.
Electromechanically active polymers[electronic resource] :a concise reference /
紀錄類型:
書目-電子資源 : Monograph/item
杜威分類號:
620.19204297
書名/作者:
Electromechanically active polymers : a concise reference // edited by Federico Carpi.
其他作者:
Carpi, Federico.
出版者:
Cham : : Springer International Publishing :, 2016.
面頁冊數:
xx, 798 p. : : ill. (some col.), digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Polymers - Electric properties.
標題:
Materials Science.
標題:
Optical and Electronic Materials.
標題:
Polymer Sciences.
標題:
Biomedical Engineering.
標題:
Mechatronics.
標題:
Soft and Granular Matter, Complex Fluids and Microfluidics.
標題:
Materials Engineering.
ISBN:
9783319315300
ISBN:
9783319315287
內容註:
From the Contents: Introduction to the EAP Field -- Overview and classification of EAPs -- History of EAPs -- Polymer Gels -- Polymer gels as EAPs: fundamentals -- Ionic Polymer-metal Composites -- IPMCs as EAPs: fundamentals -- Conducting polymers as EAPs: fundamentals and materials -- Conducting polymers as EAPs: device configurations -- Electroresponsive Carbon Based Materials -- Electrochemically-driven carbon based materials: fundamentals and device configurations -- Piezoelectric and Electrostrictive Polymers -- Polymer Electrets and Ferroelectrets -- Polymer electrets and ferroelectrets as EAPs: fundamentals.
摘要、提要註:
This book provides a comprehensive and clearly structured introduction to the broad field of transducers and artificial muscles based on electromechanically active polymers (EAP), the goal being to present basic concepts and established knowledge in an accessible form. Its tutorial style and structure make this book an easy-to-use reference guide for students, researchers and practitioners alike. Different sections cover all categories of EAP materials, with separate chapters addressing the fundamentals, materials, device configurations, models, and applications, as well as operative guidelines on how to get started in experimentation with electromechanically active polymers. The functional and structural properties of EAP transducers are described and explained, and their broad range of applications in optics, acoustics, haptics, fluidics, automotive systems, robotics, orthotics, medical tools, artificial organs and energy harvesting is illustrated. Prepared under the aegis of the 'European Scientific Network for Artificial Muscles', the book is the product of extensive collaborative efforts led by European researchers and involving respected experts from around the globe.
電子資源:
http://dx.doi.org/10.1007/978-3-319-31530-0
Electromechanically active polymers[electronic resource] :a concise reference /
Electromechanically active polymers
a concise reference /[electronic resource] :edited by Federico Carpi. - Cham :Springer International Publishing :2016. - xx, 798 p. :ill. (some col.), digital ;24 cm. - Polymers and polymeric composites: a reference series. - Polymers and polymeric composites..
From the Contents: Introduction to the EAP Field -- Overview and classification of EAPs -- History of EAPs -- Polymer Gels -- Polymer gels as EAPs: fundamentals -- Ionic Polymer-metal Composites -- IPMCs as EAPs: fundamentals -- Conducting polymers as EAPs: fundamentals and materials -- Conducting polymers as EAPs: device configurations -- Electroresponsive Carbon Based Materials -- Electrochemically-driven carbon based materials: fundamentals and device configurations -- Piezoelectric and Electrostrictive Polymers -- Polymer Electrets and Ferroelectrets -- Polymer electrets and ferroelectrets as EAPs: fundamentals.
This book provides a comprehensive and clearly structured introduction to the broad field of transducers and artificial muscles based on electromechanically active polymers (EAP), the goal being to present basic concepts and established knowledge in an accessible form. Its tutorial style and structure make this book an easy-to-use reference guide for students, researchers and practitioners alike. Different sections cover all categories of EAP materials, with separate chapters addressing the fundamentals, materials, device configurations, models, and applications, as well as operative guidelines on how to get started in experimentation with electromechanically active polymers. The functional and structural properties of EAP transducers are described and explained, and their broad range of applications in optics, acoustics, haptics, fluidics, automotive systems, robotics, orthotics, medical tools, artificial organs and energy harvesting is illustrated. Prepared under the aegis of the 'European Scientific Network for Artificial Muscles', the book is the product of extensive collaborative efforts led by European researchers and involving respected experts from around the globe.
ISBN: 9783319315300
Standard No.: 10.1007/978-3-319-31530-0doiSubjects--Topical Terms:
452601
Polymers
--Electric properties.
LC Class. No.: TA455.P58
Dewey Class. No.: 620.19204297
Electromechanically active polymers[electronic resource] :a concise reference /
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This book provides a comprehensive and clearly structured introduction to the broad field of transducers and artificial muscles based on electromechanically active polymers (EAP), the goal being to present basic concepts and established knowledge in an accessible form. Its tutorial style and structure make this book an easy-to-use reference guide for students, researchers and practitioners alike. Different sections cover all categories of EAP materials, with separate chapters addressing the fundamentals, materials, device configurations, models, and applications, as well as operative guidelines on how to get started in experimentation with electromechanically active polymers. The functional and structural properties of EAP transducers are described and explained, and their broad range of applications in optics, acoustics, haptics, fluidics, automotive systems, robotics, orthotics, medical tools, artificial organs and energy harvesting is illustrated. Prepared under the aegis of the 'European Scientific Network for Artificial Muscles', the book is the product of extensive collaborative efforts led by European researchers and involving respected experts from around the globe.
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