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Overunity Machines Forum



Magnetic flux control idea

Started by Low-Q, December 06, 2018, 05:11:23 PM

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Low-Q

Oops! Need to adjust horizontal size compensation a bit negtive. The hole is too small. Measured 21mm, not 22...


Vidar

Belfior

I need to fix the 3D printer at work. Using wooden shelves and drills to make stuff :(

telecom

Quote from: Low-Q on December 17, 2018, 04:06:51 PM
Oops! Need to adjust horizontal size compensation a bit negtive. The hole is too small. Measured 21mm, not 22...


Vidar
Looks awesome!
What make  of the printer you have?

conradelektro

Many people missunderstand Magnetic shielding. There is no shielding just redistribution of magnetic lines. The fluid holds the rod more strongly when there is more fluid although there is less holding of the rods by the magnet. In sum the holding of the rods is the same with or without the fluid.

Low-Q

@Belfior:
Yes, fix that 3D printer and start building stuff :)


@telecom:
Thanks! The printer is a RepRap based one, that is built from scratch. Using Marlin firmware. No fixed or locked settings. I can do whatever I want regarding printer settings :)


@conradelektro:
I have no overunity intentions. This is a closed system, so it cannot (according to established theories) produce its own energy.
I build it just to verify a problem that I cannot solve with my mind :)
The shield is redistributing magnetic fields, and that is the problem I need an answer to.
The stationary "shield" is preferred by the magnet more at the wide side than the narrow side, because it is more magnetic mass at the wide side. However, at the narrow side I got exposed moveable magnetic rods, that also is attracted to the magnet. Since these can move, but the stationary shield cannot move, I cannot figure out how the wheels will encounter equilibrium anyways. Because, as I think, the wide side where the rods are hidden, and the stationary "shield" is the closest magnetic path, attraction between rods and magnet is least. On the contrary, the narrow side has little stationary magnetic mass, but more rotational magnetic mass.
My main goal is to learn more about magnetism. Nothing else :)


Vidar