High Temperature Polymer Dielectrics

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Provides a complete overview of the state-of-the-art high temperature polymer dielectrics, with a focus on fundamental background and recent advances.

Autorentext
Jun-Wei Zha is currently Professor at University of Science and Technology Beijing, China. He received his PhD degree from Beijing University of Chemical Engineering in 2010. He studied as Jiont-Ph.D in the Electrical Power Engineering at University of Southampton from 2009 to 2010. He worked as Senior Associate Researcher in the Department of Physics and Materials Science at City University of Hong Kong (CityU) from 2013 to 2014. He selected as "Hong Kong Scholar" and worked at CityU from 2014 to 2016. He has won the first prize of Natural Science of the Ministry of Education in 2019 and Young Scientist Award of Chinese Society for Composite Materials in 2021. He also serves as the Subject editor of IET Nanodielectrics, guest editor/editorial board member of Energy & Environmental Science, High Voltage Engineering and editorial board member of Chinese Physics Letters, etc.
Zhi-Min Dang is currently Professor in Department of Electrical Engineering, Tsinghua University, China. He received his Ph.D. degree in electrical engineering from Xi'an Jiaotong University in 2001. His current research interests focus on Advanced Energy/Electrical Materials and Devices. He was elected a Fellow of the Institution of Engineering and Technology (IET), serves as the Editor-in-Chief of an International Journal of IET Nanodielectrics, and is an international board member for several journals.


Klappentext

High Temperature Polymer Dielectrics Overview on how to achieve polymer dielectrics at high temperatures, with emphasis on diverse applications in various electrical insulation fields High Temperature Polymer Dielectrics: Fundamentals and Applications in Power Equipment systematically describes the latest research progress surrounding high-temperature polymer dielectric (HTPD) materials and their applications in electrical insulation fields such as high-temperature energy storage capacitors, motors, packaging, printed circuit board, new energy power equipment, and aerospace electrical equipment. The comprehensive text provides a description of the market demand and theoretical research value of HTPDs in electrical equipment and enables readers to improve the performance and design of existing HTPD materials, and to develop efficient new high temperature polymer dielectric materials in general. Specific sample topics covered in High Temperature Polymer Dielectrics include:

  • Thermal and electrical properties of high-temperature polymers, and the excellent thermal stability, mechanical properties, and long service life of polymer dielectrics
  • Why fluorinated polymers are more thermally stable than their corresponding hydrogen-substituted polymers
  • Static Thermomechanical Analysis (TMA), a technique for measuring the functional relationship between the deformation of the materials and the temperature and time under different actions
  • Polyetheretherketone (PEEK), a semi-crystalline polymer material with ether bonds and ketone carbonyl groups in molecular chains Providing a complete overview of the state-of-the-art high temperature polymer dielectrics, with a focus on fundamental background and recent advances, High Temperature Polymer Dielectrics is an essential resource for materials scientists, electrical engineers, polymer chemists, physicists, and professionals working in the chemical industry as a whole.

    Inhalt
    OVERVIEW OF HIGH TEMPERATURE POLYMERS
    BASIC PRINCIPLE OF DIELECTRICS
    HIGH TEMPERATURE ENERGY STORAGE POLYMER DIELECTRICS FOR CAPACITORS
    HIGH TEMPERATURE POLYMER DIELECTRICS FOR WIRE AND CABLE INSULATION
    HIGH TEMPERATURE POLYMER DIELECTRICS FOR PACKAGING
    HIGH TEMPERATURE POLYMER DIELECTRICS FOR PRINTED CIRCUIT BOARD
    HIGH TEMPERATURE POLYMER DIELECTRICS FOR NEW ENERGY POWER EQUIPMENT
    HIGH TEMPERATURE POLYMER DIELECTRICS FOR AEROSPACE ELECTRICAL EQUIPMENT
    SMART HIGH TEMPERATURE POLYMER DIELECTRICS
    THE FUTURE DEVELOPMENT OF HIGH TEMPERATURE POLYMER DIELECTRICS

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783527351824
    • Genre Chemistry
    • Auflage 1. Auflage
    • Editor Jun-Wei Zha, Zhi-Min Dang
    • Sprache Englisch
    • Lesemotiv Verstehen
    • Anzahl Seiten 400
    • Herausgeber Wiley-VCH GmbH
    • Größe H27mm x B176mm x T252mm
    • Jahr 2023
    • EAN 9783527351824
    • Format Fester Einband
    • ISBN 978-3-527-35182-4
    • Titel High Temperature Polymer Dielectrics
    • Untertitel Fundamentals and Applications in Power Equipment
    • Gewicht 898g

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