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Overunity Machines Forum



TD replications

Started by Floor, November 18, 2016, 11:14:23 AM

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0 Members and 1 Guest are viewing this topic.

gotoluc

The below is test 3 Input Torque curve chart.
Keep in mind these are Foot Grams measured on the 12 inch torque arms.


Luc

gotoluc

And here is test 3 Output Torque curve chart.
Keep in mind these are Foot Grams measured on the 12 inch torque arms.

Luc

DrJones

  Good work, Luc!
It is indeed curious.  I've been thinking of ways to convert the action here to a continuous motion, using gravity to drop an upper magnet (at right angles) in close proximity to the lower magnet prior to the "twisting phase" - then using energy from the twisting phase to raise the upper magnet back up to the starting height then turn it 90deg to the starting position. That is the more difficult action to resolve (for me). 


This would be a small model involving oscillating (engage-disengage) as well as rotary (torque) motions ... 
A small test device that would keep moving would be an awesome Christmas present to the world!

Floor

@luc

1. A few degrees of rotation  of RO toward 90 deg. off from parallel with SL
(3 to 5 deg. ?)... is the optimal starting position for RO (in the same direction
it will rotate when RO's force is measured).

2.  But also RO must hit it's stop at 90 deg. off from parallel to SLand no farther.

A full 90 degs. of rotation will not be acheived.

3. Im not certain that the counter weight on the RO scale indicator as is.....
is giving the needed effect.

If it is, then,
      when there are no magnetic force interactions Between RO and SL (one magnet removed ?)
the RO scale indicator will ballance (have no tendancy to rotate by gravity's pull at any
degree of it's rotation).

                       Don't rush it man......
                          It's bound to take some time to dial it all in.

                    Nice work
                           floor

gotoluc

Quote from: DrJones on December 03, 2016, 10:10:22 PM
  Good work, Luc!
It is indeed curious.  I've been thinking of ways to convert the action here to a continuous motion, using gravity to drop an upper magnet (at right angles) in close proximity to the lower magnet prior to the "twisting phase" - then using energy from the twisting phase to raise the upper magnet back up to the starting height then turn it 90deg to the starting position. That is the more difficult action to resolve (for me). 


This would be a small model involving oscillating (engage-disengage) as well as rotary (torque) motions ... 
A small test device that would keep moving would be an awesome Christmas present to the world!


Thanks Dr Jones for your post and thinking of ways to convert this action into continuous motion.

Luc