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Overunity Machines Forum



Sjack Abeling Gravity Wheel and the Worlds first Weight Power Plant

Started by AquariuZ, April 03, 2009, 01:17:07 PM

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AquariuZ

(cont)

         Each of the weights 3 is movable in a radial direction in an accompanying guiding
10      track 8. Towards that end the weights 3 as shown in the example are installed in pairs. Every
      weight 3 has a joining bar 10 which connects both weight parts 11 and is held by guiding track 8.
15      These joining bars 10 move in a radial direction in guiding track 8.
      
      In an alternative setup of the conversion unit the edges 212 of each guiding track 208 have a
20      serrated surface to minimize friction as the weights make their sliding motion (fig. 6). The joining
      bars 210 of the weights are ovally shaped here to ensure regulated motion over the serrated
      surface 212. It should be noted that this setup shows that the guiding tracks 208 can be
25      distributed non uniformly around axle 206.

AquariuZ

(cont)

In the example show the guiding materials 4 consist of two installed
      rings 13 which are installed on both sides of carrier 2, along which the weights 3 are movable.
30      These rings 13 in this example have been cut out of side plates 5. The rings 13 run in a horizontal
      direction which is eccentrically in relation to the rotational axle A of carrier 2, and have a slightly
      oval shape, whereby the long axle is aimed vertically. In fact the rings 13 have the shape of


               ( 8 )

      an indented circle. Because of the shape of the rings 13 every weight 3 when it reaches the pinnacle
      of its path around axle A, or slightly before, is accelerated strongly in a radial direction. Because of
5      this a lot of energy is released. The long axle of every ring 13 is slightly tilted in such a way that the       weights 3 are forced back inwards even before they reach the lowest point of their path.

AquariuZ

(cont)
         The conversion unit 1 in the example shown is furthermore fitted with secundary
10      bearing means 14, which are fitted around the circumference of carrier 2. These secundary bearing
      means 14 consist of a number of spacers 15 which run from carrier 2 to each of the side plates 5,
15      and a bearing ring 16 which houses the spacers 15.
      Each bearing ring 15 (16?) runs on the outside with a spacing around guiding ring 13 (fig. 3).
            
            The path each of the weights 3 takes during the rotation of carrier 2 around
20      the axle line A is represented in fig. 4. Assuming the position on the top right (indicated as 3°) the
      weight moves down under the influence of gravity, whereby it will attempt to move away from axial
      line A in a radial direction along its guiding path 8 while influenced by the centrifugal force.

AquariuZ

(cont)


25      This radial movement is restricted by guiding rings 13. When the weight almost reaches its lowest
      position 3-5 the radius of guiding ring 13 starts to diminish, which causes weight 3 on its upwards
30      motion to be forced into a radial direction towards axial line A. At around the level of axial line A
      the radius of guiding ring 13 starts to increase again, which causes weight 3 to move outwards
      again starting at position 3-12. This means in essence that weight 3 is being "hurled".