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A01=Marzie Majidi
A01=Masoud Asgari
Age Group_Uncategorized
Age Group_Uncategorized
Author_Marzie Majidi
Author_Masoud Asgari
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Category1=Non-Fiction
Category=P
Category=TBC
Category=TGB
Category=TGM
Category=THR
Category=TJF
COP=United Kingdom
Delivery_Pre-order
Language_English
PA=Not yet available
Price_€50 to €100
PS=Forthcoming
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Advances in Dielectric Elastomer Composites: A Nonlinear Elasticity Framework

English

By (author): Marzie Majidi Masoud Asgari

This is a comprehensive guide to dielectric elastomer composites (DECs), which play an integral role in new electromechanically active smart-material technologies.

Introducing the basic concepts behind DECs, the book is accessible to readers at all levels. It demonstrates how to implement practical problem-solving methods through nonlinear continuum mechanics and also discusses fibre-reinforced anisotropic DE composites and the electromechanically coupled behaviour of anisotropic fibre-reinforced DEs. Using practical examples throughout, it proposes models which utilise the strain energy function, nonlinear electro-elasticity, and nonlinear continuum mechanics. It presents clear guidelines for creating practical nonlinear finite element code, and introduces the reader to hyperelasticity.

The book will be an accessible reference guide for students, researchers and engineers in the field of mechanical engineering, bioengineering, materials science, aeronautics, and robotics.

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Current price €99.74
Original price €104.99
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A01=Marzie MajidiA01=Masoud AsgariAge Group_UncategorizedAuthor_Marzie MajidiAuthor_Masoud Asgariautomatic-updateCategory1=Non-FictionCategory=PCategory=TBCCategory=TGBCategory=TGMCategory=THRCategory=TJFCOP=United KingdomDelivery_Pre-orderLanguage_EnglishPA=Not yet availablePrice_€50 to €100PS=Forthcomingsoftlaunch

Will deliver when available. Publication date 30 Jan 2025

Product Details
  • Dimensions: 152 x 229mm
  • Publication Date: 30 Jan 2025
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9781032945644

About Marzie MajidiMasoud Asgari

Masoud Asgari is a distinguished academic known for his expertise in Mechanical Engineering. Currently serving as an Associate Professor at K. N. Toosi University of Technology in Tehran Iran he has made significant strides in both academia and industry. Dr. Asgari completed his academic journey with excellent achievements earning his PhD from Amirkabir University of Technology (Tehran Polytechnic) where he also excelled during his undergraduate study and master's study at Sharif University of Technology. His dissertation and thesis were both awarded the highest grades reflecting his dedication and scholarly prowess. Throughout his academic career Dr. Asgari has held pivotal roles at K. N. Toosi University of Technology including Vice Chancellor in Educational Affairs and Head of the Automotive Engineering Department. He has been instrumental in advancing research in Lightweight Construction Additive Production Processes and the Invention of Functional Materials. Dr. Asgari's research contributions extend internationally having undertaken research visits at institutions such as the University of Modena and Reggio Emilia in Italy and Bern University of Applied Sciences in Switzerland. Recognized as one of the top minds in his field Dr. Asgari has received some awards including being listed in the Stanford-Elsevier Ranking of Top 2% Highly-cited Scientists in 2022. Dr. Asgari's commitment to advancing the field of Mechanical Engineering is further evidenced by his role as a reviewer for esteemed journals indexed in Web of Science where he contributes to the dissemination of knowledge and quality research.Marzie Majidi received her Ph.D. degree in mechanical engineering K. N. Toosi University of Technology in Tehran Iran in 2023. Her research focused on modeling dielectric and magnetorheological elastomers key materials for innovative actuators. Dr. Majidi is currently at Saipa Automative Industries Research Innovative Center (AIRIC) working on Noise Vibration and Harshness (NVH) analysis as a CAE expert. She received the M.Sc. and B.Sc. degrees in mechanical engineering from University of Tehran (UT) in 2017 and Buali Sina university in 2014. Her research has been on modeling of dielectric and magnetorheological elastomers Topological Interlocking Material (TIMs) finite element methods and automative NVH analysis.

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