Materials and Devices for Smart Systems II

Materials and Devices for Smart Systems II
Author: Yasubumi Furuya,Ji Su,Ichiro Takeuchi,Vijay K. Varadan,John Ulicny
Publsiher: Cambridge University Press
Total Pages: 398
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 1107408903

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Smart/intelligent systems is a primary technology for present and future applications in areas ranging from everyday life to aerospace missions, from civil to military environments, from robots to information technology. Smart materials are the critical foundation for high-performance smart devices, and smart devices are fundamental components for smart systems. The three cannot be separated. This book bridges the fields of smart materials, sensing and actuating devices, and intelligent systems, and provides an opportunity for researchers from all three arenas to channel information into a coherent, interdisciplinary community. Topics include: piezoelectric actuators; novel devices and systems; shape memory alloys and magnetostrictive devices; nanometer-scale processing and properties; piezoelectric materials; sensor materials and devices; and electroactive polymer actuators.

Materials and Devices for Smart Systems

Materials and Devices for Smart Systems
Author: Anonim
Publsiher: Unknown
Total Pages: 408
Release: 2005
Genre: Dielectric devices
ISBN: UOM:39015069135617

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Materials for Smart Systems II Volume 459

Materials for Smart Systems II  Volume 459
Author: Easo P. George,Rolf Gotthardt,Kazuhiro Otsuka,Susan Trolier-McKinstry,Marilyn Wun-Fogle
Publsiher: Materials Research Society
Total Pages: 0
Release: 1997-04-22
Genre: Technology & Engineering
ISBN: 1558993630

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Smart systems can both sense a change in the environment and respond to that change in a useful way. Central to the operation of smart systems are materials that can serve as sensors and actuators: shape-memory, piezoelectric, and magnetostrictive materials, to name but a few. This book addresses materials issues related to smart systems including: shape-memory alloys and their applications; magnetostrictive materials and their applications; piezoelectric sensors and actuators; electrically/magnetically actuated materials; thin-film sensors; optical systems; damping materials; novel materials and mechanisms; and characterization and modelling. Papers on alternative sensing and actuating mechanisms are featured. Materials for gas sensors, electrochromic devices, magnetorheological fluids and thermoplastic elastomers are described.

Micro and Smart Devices and Systems

Micro and Smart Devices and Systems
Author: K. J. Vinoy,G. K. Ananthasuresh,Rudra Pratap,S. B. Krupanidhi
Publsiher: Springer
Total Pages: 508
Release: 2014-05-21
Genre: Technology & Engineering
ISBN: 9788132219132

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The book presents cutting-edge research in the emerging fields of micro, nano and smart devices and systems from experts working in these fields over the last decade. Most of the contributors have built devices or systems or developed processes or algorithms in these areas. The book is a unique collection of chapters from different areas with a common theme and is immensely useful to academic researchers and practitioners in the industry who work in this field.

Ferroic Materials for Smart Systems

Ferroic Materials for Smart Systems
Author: Jiyan Dai
Publsiher: John Wiley & Sons
Total Pages: 262
Release: 2020-04-27
Genre: Technology & Engineering
ISBN: 9783527344765

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Presents state-of-the-art knowledge?from basic insights to applications?on ferroic materials-based devices This book covers the fundamental physics, fabrication methods, and applications of ferroic materials and covers bulk, thin films, and nanomaterials. It provides a thorough overview of smart materials and systems involving the interplays among the mechanical strain, electrical polarization, magnetization, as well as heat and light. Materials presented include ferroelectric, multiferroic, piezoelectric, electrostrictive, magnetostrictive, and shape memory materials as well as their composites. The book also introduces various sensor and transducer applications, such as ultrasonic transducers, surface acoustic wave devices, microwave devices, magneto-electric devices, infrared detectors and memories. Ferroic Materials for Smart Systems: Fabrication, Devices and Applications introduces advanced measurement and testing techniques in ferroelectrics, including FeRAM and ferroelectric tunnelling based resistive switching. It also looks at ferroelectricity in emerging materials, such as 2D materials and high-k gate dielectric material HfO2. Engineering considerations for device design and fabrication are examined, as well as applications for magnetostrictive devices. Multiferroics of materials possessing both ferromagnetic and ferroelectric orders is covered, along with ferroelastic materials represented by shape memory alloy and magnetic shape memory alloys. -Brings together physics, fabrication, and applications of ferroic materials in a coherent manner -Discusses recent advances in ferroic materials technology and applications -Covers dielectric, ferroelectric, pyroelectric and piezoelectric materials -Introduces electrostrictive materials and magnetostrictive materials -Examines shape memory alloys and magneto-shape-memory alloys -Introduces devices based on the integration of ferroelectric and ferromagnetic materials such as multiferroic memory device and ME coupling device for sensor applications Ferroic Materials for Smart Systems: Fabrication, Devices and Applications will appeal to a wide variety of researchers and developers in physics, materials science and engineering.

Materials and Devices for Smart Systems III

Materials and Devices for Smart Systems III
Author: Ji Su,Li-Peng Wang,Yasubumi Funruya,Susan Trolier-Mckinstry,Jinsong Leng
Publsiher: Cambridge University Press
Total Pages: 382
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 1107408415

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Smart/intelligent systems employ active materials as sensors/actuators to respond to environmental conditions for next-generation machines and structures - applications ranging from everyday life to space exploration missions, from civilian products to military needs, from robots to information/communication technology. It is not surprising, then, that the development of smart materials systems and structures demand higher performance sensors/actuators with new and reliable functions and a fully integrated composite system design. This requires the combination of active and passive materials systems, often including the coupling of relevant mechanical, electrical, magnetic, thermal or other physical/chemical properties. This book bridges the fields of smart materials, sensing and actuating devices, and intelligent/smart systems, and provides an opportunity for researchers from related disciplines to build an interdisciplinary research field and community. Topics include: ferroelectrics and piezoelectrics; nanomaterials and nanofabrication; shape-memory alloys and magnetomaterials; active polymers and soft matters; and other materials, devices and characterization.

Surface Modification of Biomaterials

Surface Modification of Biomaterials
Author: Rachel Williams
Publsiher: Elsevier
Total Pages: 438
Release: 2010-11-25
Genre: Medical
ISBN: 9780857090768

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The surface modification of biomaterials plays a significant role in determining the outcome of biological-material interactions. With the appropriate modification a material’s surface can be tailored to improve biocompatibility, adhesion and cell interactions. Consequently surface modification is vital in the development and design of new biomaterials and medical devices. Surface modification of biomaterials reviews both established surface modifications and those still in the early stages of research and discusses how they can be used to optimise biological interactions and enhance clinical performance.Part one begins with chapters looking at various types and techniques of surface modification including plasma polymerisation, covalent binding of poly (ethylene glycol) (PEG), heparinisation, peptide functionalisation and calcium phosphate deposition before going on to examine metal surface oxidation and biomaterial surface topography to control cellular response with particular reference to technologies, cell behaviour and biomedical applications. Part two studies the analytical techniques and applications of surface modification with chapters on analysing biomaterial surface chemistry, surface structure, morphology and topography before moving onto discuss modifying biomaterial surfaces to optimise interactions with blood, control infection, optimise interactions with soft tissues, repair and regenerate nerve cells, control stem cell growth and differentiation and to optimise interactions with bone.The distinguished editor and international team of contributors to Surface modification of biomaterials have produced a unique overview and detailed chapters on a range of surface modification techniques which will provide an excellent resource for biomaterials researchers and scientists and engineers concerned with improving the properties of biomaterials. It will also be beneficial for academics researching surface modification. Reviews both established surface modifications and those still in the early stages of research and how they can be used to optimise biological interactions and enhance clinical performance Studies analytical techniques and applications of surface modification with chapters assessing biomaterial surface chemistry, surface structure, morphology and topography Discusses modifying biomaterial surfaces to optimise interactions with blood and soft tissues and also to repair and regenerate nerve cells and control infection

Smart Material Systems and MEMS

Smart Material Systems and MEMS
Author: Vijay K. Varadan,K. J. Vinoy,S. Gopalakrishnan
Publsiher: John Wiley & Sons
Total Pages: 418
Release: 2006-11-02
Genre: Technology & Engineering
ISBN: 9780470093627

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Presenting unified coverage of the design and modeling of smart micro- and macrosystems, this book addresses fabrication issues and outlines the challenges faced by engineers working with smart sensors in a variety of applications. Part I deals with the fundamental concepts of a typical smart system and its constituent components. Preliminary fabrication and characterization concepts are introduced before design principles are discussed in detail. Part III presents a comprehensive account of the modeling of smart systems, smart sensors and actuators. Part IV builds upon the fundamental concepts to analyze fabrication techniques for silicon-based MEMS in more detail. Practicing engineers will benefit from the detailed assessment of applications in communications technology, aerospace, biomedical and mechanical engineering. The book provides an essential reference or textbook for graduates following a course in smart sensors, actuators and systems.