Polymer Based Smart Materials Processes Properties And Application Volume 1134


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Polymer-Based Smart Materials - Processes, Properties and Application: Volume 1134


Polymer-Based Smart Materials - Processes, Properties and Application: Volume 1134

Author: Siegfried Bauer

language: en

Publisher:

Release Date: 2009-10-28


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The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Polymer-Based Smart Materials - Processes, Properties and Application:


Polymer-Based Smart Materials - Processes, Properties and Application:

Author: Siegfried Bauer

language: en

Publisher: Cambridge University Press

Release Date: 2014-06-05


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Smart materials convert energy from one form to another, particularly into electrical energy but also into mechanical and thermal forms, making them an important type of material, from fundamental physics to device applications. Smart polymer materials are very attractive due to their flexibility, low-cost production and easy processability. In fact, many newly developed polymer-based smart materials exhibit better performance than inorganic materials, with higher strain responses and energy density. Recent developments in electronics, however, challenge smart polymer materials in areas such as dielectric and electric properties in nano- and microscale. This volume presents recent research on polymer-based smart materials, as well as commercial advances and needs. It focuses on materials development, characterization, processing, manufacturing, analysis, design and applications. Topics include: new materials and characterization; device application; new materials and devices; and E-NSF and new materials.

Microelectromechanical Systems: Volume 1139


Microelectromechanical Systems: Volume 1139

Author: Srikar Vengallatore

language: en

Publisher: Cambridge University Press

Release Date: 2009-06-23


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Microelectromechanical systems (MEMS) have transitioned from a technology niche to a role of major industrial significance. The worldwide market for MEMS is now approximately $10 billion, and the total value of systems enabled by MEMS is several orders of magnitude higher than this figure. As the market has grown, the material and process sets have broadened and departed from their semiconductor roots. In addition to engineering materials, there is now great interest in integrating multifunctional nanomaterials, smart materials and biomaterials within MEMS/NEMS to enhance functionality, performance and reliability. The opportunities created by this integration have generated a vibrant research community working on new materials and processes. This book reflects the breadth of topics currently under investigation in the field. Novel materials and accompanying processes are discussed, as are more conventional materials and processes. Consistent themes are the need for accurate material property assessment at the relevant length scales and for suitable metrology tools to support the introduction of new materials.