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Polymer Composites for Electrical and Electronic Engineering Application

Polymer Composites for Electrical and Electronic Engineering Application

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Polymer composite materials have attracted great interest for the development of electrical and electronic engineering and technology, and have been widely applied in electrical power systems, electrical insulation equipment, electrical and electronic devices, etc. Due to the significant expansion in the use of newly developed polymer composite materials, it is necessary to understand and accurately describe the relationship between composite structure and material properties, as only based on thorough laboratory characterization is it possible to estimate the properties for their future commercial applications. This book focuses on polymer composites applied in the field of electrical and electronic equipment, including but not limited to synthesis and preparation of new polymeric materials, structure–properties relationship of polymer composites, evaluation of materials application, simulation and modelling of material performance.

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Keywords

  • active product
  • alumina nanoplates
  • antioxidant 4010NA
  • aramid nanofiber
  • arcing
  • breakdown field strength
  • breakdown strength
  • carbon nanotubes
  • corona discharge
  • creepage distance
  • curved profiles
  • damping performance
  • dielectric elastomer
  • droplet vibration
  • electric breakdown strength
  • electro-thermal dissociation
  • Electromagnetic shielding
  • Energy harvesting
  • epoxy resin
  • epoxy resins
  • Eucommia ulmoides gum
  • frequency
  • Graphene
  • graphene oxide
  • graphitic carbon nitride nanosheets
  • high voltage insulator
  • History of engineering & technology
  • honeycomb sandwich composites
  • hydrogen bonds
  • interfacial interaction
  • intrinsic property
  • Langmuir
  • low frequency
  • Materials science
  • Mechanical engineering & materials
  • mechanical strength
  • metamaterial
  • micro-nano compound
  • microwave absorbing material
  • molecular dynamics simulation
  • molecular simulation
  • nitrile-butadiene rubber
  • partial discharge
  • polydopamine
  • polyimide
  • polyimide polymer
  • polymeric surface
  • prediction
  • radar stealth
  • reactive molecular dynamics
  • SiC crystal form
  • silicone rubber coating
  • space charge
  • streamer discharge
  • streamer propagation path
  • streamer propagation velocity
  • streamer propagation “stability” field
  • surface properties
  • surface streamer discharge
  • Technology, engineering, agriculture
  • Technology: general issues
  • temperature
  • Terahertz
  • thermal conductivity
  • thermally stimulated current method
  • three-electrode arrangement
  • unipolar electrical stress

Links

DOI: 10.3390/books978-3-0365-4067-2

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