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Piezo-Particulate Composites, 1st ed. 2019 Manufacturing, Properties, Applications Springer Series in Materials Science Series, Vol. 283

Langue : Anglais

Auteurs :

Couverture de l’ouvrage Piezo-Particulate Composites

This book provides an overview of the current state of the art in novel piezo-composites based on ferroelectrics. Covering aspects ranging from theoretical materials simulation and manufacturing and characterization methods, to the application and performance of these materials, it focuses on the optimization of the material parameters.

Presenting the latest findings on modern composites and highlighting the applications of piezoelectric materials for sensors, transducers and hydro-acoustics, the book addresses an important gap in the physics of active dielectrics and materials science and describes new trends in the research on ferroelectric composites.

Piezo-active Composites: Classification and Effective Physical Properties.- Aspects of Composite Manufacturing.- Experimental Studies on Effective Properties and Related Parameters of Piezo-particulate Composites.- Modelling of the Composite Structure Formation During Dielectrophoresis.- Prediction of Effective Properties of Composites Based on Ferroelectric Ceramics.- From Microgeometry to Improved Properties of Piezo-particulate Composites.

Hamideh Khanbareh received her BSc degree, in 2008, in Materials Science and Engineering from University of Tehran. In 2012 she received her Cumlaude MSc degree in Aerospace Engineering from Delft University of Technology, Netherlands. Her final project concerned fractal analysis of microstructures of ultra-high strength aluminium alloys for aerospace applications. She then pursued her PhD in Novel Aerospace Materials group, at Delft University of Technology working on functionally graded ferroelectric composites. During her PhD she also worked as a visiting scientist at the Molecular Electronics Research Group at Max Planck Institute for Polymers (MPIP), in Mainz, Germany. In June 2016 she obtained her PhD degree from Delft University of Technology and subsequently was appointed as a Prize Fellow at the Materials and Structures Research Centre, within the Department of Mechanical Engineering at University of Bath. Dr Khanbareh’s main research interests are in materials design, modelling, fabrication and application of piezo- and pyroelectrics in sensing and energy harvesting. Heterogeneous polymer-ceramic composites, offering a wide range of compositional and microstructural design flexibility, are the target of her current research. Dr Khanbareh has authored 21 peer-reviewed journal papers and 10 conference papers. She has been a member of IOM3 SMART MATERIALS & SYSTEMS COMMITTEE (SMASC), Institute of Electrical and Electronics Engineers (IEEE) Ferroelectrics as well as Royal Society of Chemistry.

Vitaly Yuryevich Topolov was born in Rostov-on-Don, Russia (former USSR) on November 8th, 1961. He earned the qualification “Physicist. Educator” (honours degree) in 1984 along with the degrees “Candidate of Sciences (Physics and Mathematics)” and “Doctor of Sciences (Physics and Mathematics)” in 1987 and 2000, respectively, all from the Rostov State University, Russia. Since 2000, he has been a Professor of the same Department. Since Decemb
Presents novel ferroelectric piezo-active composites Provides information to manufacturing, theoretical modelling and physical material properties Highlights the role of microgeometry in forming the piezoelectric response of composites Sketches applications of piezoelectric materials

Date de parution :

Ouvrage de 160 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

Prix indicatif 158,24 €

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Date de parution :

Ouvrage de 160 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

158,24 €

Ajouter au panier