Loss Analysis of a Double-Sided Permanent Magnet (DSPM) radial-flux eddy current coupler The current study is investigating the radial type of Eddy current coupler for a Double-Sided Permanent Magnet (DSPM) configuration. It is composed of two concentric radially polarized PM arrangement and alternating in the direction of magnetization. Inner and outer iron yokes are supporting the PM arrangement where a conductor cylindrical sheet is placed between them.

WEBINARS


Electro-thermo-mechanical simulation of Eddy Current Braking Systems in EMS for SOLIDWORKS

Wednesday, May 26, 2021
Session 1: 03:00 PM CEST, 01:00 PM GMT
Session 2: 02:00 PM EDT, 06:00 PM GMT

REGISTER

 
 

PAST WEBINARS

Streamlined Design of mmWave Array Antennas for 5G

Watch Now

 

Simulating electromagnetic couplers in SOLIDWORKS using EMS

Watch Now

 

Boost Your Permanent Magnet Motor Design using MotorWizard for SOLIDWORKS

Watch Now

 

APPLICATION NOTE


Loss Analysis of a Double-Sided Permanent Magnet (DSPM) radial-flux eddy current coupler

Loss Analysis of a Double-Sided Permanent Magnet (DSPM) radial-flux eddy current coupler The current study is investigating the radial type of Eddy current coupler for a Double-Sided Permanent Magnet (DSPM) configuration. It is composed of two concentric radially polarized PM arrangement and alternating in the direction of magnetization. Inner and outer iron yokes are supporting the PM arrangement where a conductor cylindrical sheet is placed between them. EMS transient magnetic solver was coupled to SOLIDWORKS Motion and this simulation was used to predict the torque and the eddy losses quantities when an angular speed of 800 rpm is applied to the PM rotors for a simulation time of 75 ms. Some of the obtained results are shown in the following screenshots. More Details

 
   

EMWorks Inc.

150 Montreal-Toronto Blvd, Suite 120,
Montreal, Quebec, H8S 4L8, Canada.