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Overunity Machines Forum



New design, LaFonte Group, animation, Balanced Rings Rotary Magnet Motor

Started by Butch LaFonte, March 25, 2009, 11:22:53 PM

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Butch LaFonte


Butch LaFonte

See drawing and simulations attached. I was hoping that the attraction force of the rotor and fixed stator magnets to the rings would be the same when they were seperated and when they were lined up with each other, but to my suprise the pull is greater, almost double is some simulations when the rotor and stator magnets are lined up. That is when the rings snap inward which is exactly what I need for overunity ultra high torque operation. It has finally all come together.
Thanks,
Butch LaFonte

Butch LaFonte

I have removed the outer flat ring from the design. It help the magnets have more attraction pulling the side rings in than when the rings move back out.
Thanks,
Butch

Butch LaFonte

The side rings have to be a ferromagnetic material that is a nonelectrical conductor so as to eliminate eddy current drag.
Thanks,
Butch

Butch LaFonte

1. Rings open, rotor magnets 20 degrees from fixed stator magnets. Super strong attraction between fixed NIB stator magnets and NIB rotor magnets.
2. Rotor magnets are pulled to stator magnets and line up with them, but two degrees before lining up side rings snap in leaving a .010" air gap between side ring and magnets. Ring movement inward is complete as rotor magnets line up directly under fixed stator magnets.
3. Rotor magnets are now free to rotate around to start sequence again. The side rings snap open when rotor magnets are 20 degrees from fixed stator magnets.
4. Side rings have force cancellation system incorporated so there is no resistance to inward or outward movement due to magnetic forces.
5. See LaFonte Group Youtube site > http://www.youtube.com/user/LaFonteGroup  < for information on this cancellation system and an animation of the machine in operation.
6. Note: 16 or more rotor magnets with 16 or more stator magnets can be incorporated in this design for ultra high torque.
Thanks,
Butch LaFonte