Title :
Saw-tooth pole solenoid actuator for aerospace applications
Author :
Mahajan, Deepak P. ; Narayanaswamy, Renukaprasad ; Bavisetti, Siva
Author_Institution :
Honeywell Technol. Solutions, Inc., Bangalore, India
Abstract :
Solenoid is an electromagnetically operated actuator. The classical solenoids employ armatures which are either flat or conical pole with various cone angles based on the force requirement. This paper describes a novel method of introducing surface features at an appropriate location in the solenoid geometry in order to reduce the reluctance in the working air gap and decrease the leakage flux which also means increasing the Magneto Motive Force (MMF) into working air gap is discussed in this paper. The idea is to do minimal changes to the solenoid in order to extend its usability to more than one application. Infolytica MagNet® tool is used for performance comparison of conventional and proposed solenoid keeping same applied MMF and simulation parameters for both classical and proposed geometries. This analysis considers worst case solenoid geometry and it also includes method of modeling the practical non-idealities that exists due to manufacturing and assembly process. This analysis also provides input for refinement of solenoid part dimensions and tolerance stack up.
Keywords :
air gaps; avionics; electric potential; electromagnetic actuators; magnetic flux; solenoids; Infolytica MagNet tool; MMF; aerospace applications; air gap; armatures; conical pole; electromagnetic actuator; flat pole; leakage flux reduction; magnetomotive force; reluctance reduction; saw-tooth pole solenoid actuator; simulation parameters; solenoid geometry; tolerance stack up refinement; Actuators; Air gaps; Atmospheric modeling; Coils; Force; Magnetic flux; Solenoids; actuator; aerospace; finite element methods; solenoid; surface features;
Conference_Titel :
Industrial Electronics and Applications (ICIEA), 2013 8th IEEE Conference on
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4673-6320-4
DOI :
10.1109/ICIEA.2013.6566577