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Revision 8 as of 2009-10-19 16:46:31
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Editor: HaixingMiao
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Revision 9 as of 2012-01-03 23:02:41
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attachment:model_4x4_mag_force.mph [[attachment:model_4x4_mag_force.mph]]
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attachment:model_4x4_mag_force_z.m [[attachment:model_4x4_mag_force_z.m]]
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attachment:model_4x4_mag_torque.mph [[attachment:model_4x4_mag_torque.mph]]
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attachment:model_4x4_mag_torque_y.m [[attachment:model_4x4_mag_torque_y.m]]
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attachment:model_4x4_mag_torque_z.m [[attachment:model_4x4_mag_torque_z.m]]

In this page, we show the results for the 4x4 configuration. Apart from the magnitude, the behavior of the forces and toques are almost the same as the 1x1 case, and we are able to achieve soft vibrations in all six degrees of freedom.

Model and Specification

fig_4x4_mag_config_new.JPG

Vertical Direction

The force and the corresponding rigidity in the z-direction are shown by the following two figures:

F_z_4x4_mag.JPG

K_z_4x4_mag.JPG

Horizontal Direction

The force and the corresponding rigidity in the y-direction are shown by the following two figures:

F_y_4x4_mag.JPG

K_y_4x4_mag.JPG

The specifications for each magnet are identical to the 1x1 case. The Comsol and m-files for producing the above results are:

model_4x4_mag_force.mph

model_4x4_mag_force_z.m

model_4x4_mag_force_y.m

Torque of tilt

The torque in the horizontal direction as a function of the tilt angle is shown by the figure below:

torque_4x4_mag.JPG

The corresponding rigidity of the tile is the following:

K_theta_4x4_mag.JPG

Toque of rotation

The torque and its rigidity in the axial direction as a function of the rotation angle is shown by the following figure:

z_torque_4x4_mag.JPG

K_phi_4x4_mag.JPG

The Comsol and m-files for producing the above results are:

model_4x4_mag_torque.mph

model_4x4_mag_torque_y.m

model_4x4_mag_torque_z.m

Suspensions/MagneticSuspension/Modelingresults/4x4mag (last edited 2012-01-03 23:02:41 by localhost)