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Experimental investigation on the impulse force characteristics in EIDI system

  • Guangchao Li*
  • , Jiang He
  • , Guiping Lin
  • *Corresponding author for this work
  • School of Aeronautic Science and Engineering
  • Beihang University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Electro-impulse de-icing (EIDI) system has become one of the important part of aviation de-icing technology, because of its advantages in low power consumption, light weight, convenient maintenance, well reliability, little expense and so on. Electrodynamics analysis is the fundamental basis of the EIDI system design, providing impulse force characteristics for the ensuing stage of structural dynamics analysis and icing region prediction. Since electrodynamics analysis deals with the coupling of electric field, magnetic field and structure deformation, it is incontinent to setup mathematical-physical model close to reality. Therefore, the present work developed a prototype of EIDI system, and investigated the impulse force characteristics experimentally. The feasibility and validity of the EIDI prototype has been verified, and the effect of charging voltage, coil-to-skin gap, skin thickness and conductivity onto the maximum impulse force with has been studied. Moreover, a correlation between the maximum impulse force and the induced peak current intensity is proposed.

Original languageEnglish
Title of host publicationProceedings of the 2011 6th IEEE Conference on Industrial Electronics and Applications, ICIEA 2011
Pages2558-2562
Number of pages5
DOIs
StatePublished - 2011
Event2011 6th IEEE Conference on Industrial Electronics and Applications, ICIEA 2011 - Beijing, China
Duration: 21 Jun 201123 Jun 2011

Publication series

NameProceedings of the 2011 6th IEEE Conference on Industrial Electronics and Applications, ICIEA 2011

Conference

Conference2011 6th IEEE Conference on Industrial Electronics and Applications, ICIEA 2011
Country/TerritoryChina
CityBeijing
Period21/06/1123/06/11

Keywords

  • electric impulse deicing system
  • electrodynamics analysis
  • impulse force
  • piezoelectric force sensor

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