The present invention relates to a modified classical spinning top (using permanent magnets and no mechanical restraints) that can be horizontally driven without the modification of the rotation movement.
It is well known that people like the classical toys: spinning tops, gyroscopes and permanent magnets.
Spinning tops are old toys. They are built from wood, metals, or plastics in different shapes, colors and dimensions. Recently some of them produce a sound or/and light. Not much has been changed since the beginning. Once it is put into rotation we just look at its movement. No possibility to change the movement, to interact with it.
Gyroscopes are well known toys and devices. They fascinate how the direction is kept constant.
Permanent magnets are used to obtain different configurations using balls, nails, ferromagnetic powder, magnetic fluids. Once the configuration is achieved nothing can happen more, no more fun.
The idea of combining the rotation movement of a gyroscope and permanent magnets has been advanced by I. Grosu in Romania Patent No. 91 857 from 28 Feb. 1987. A classical gyroscope is modified by using two permanent magnets on the rotation axis, coaxial with it. So the gyroscope has an angular momentum and a magnetic moment. A uniform external magnetic field generated by a coil determines a rotation that is the Larmor precession. This device is didactic and can show how the Larmor precession is obtained. Such a gyroscope simulates the spin of the electron with angular momentum and magnetic moment.
An interesting use of permanent magnets in spinning tops is the Levitron: U.S. Pat. No. 4,382,245 and U.S. Pat. No. 5,404,062. The disk of the spinning top is a permanent magnet above a second permanent magnet in the repulsion configuration. The spinning top can levitate if some conditions are fulfilled. The levitation is not so easy to be obtained. Levitron is produced by: www.supermagnete.de.
Another toy—Magnetic UFO Spinning Top—has a small permanent magnet at the bottom that is in contact with a ferromagnetic planar piece. During rotation the bottom of the spinning top moves the planar piece in an interesting manner.
Using the site www.espacenet.com with the keywords toy AND top AND magnet there are selected the patents: US 2004198152, US 2003064660, GB2389321, CN1326800 that presents tops with permanent magnets. It should be emphasized that all patents refer to tops with uncontrollable dynamics.
The present invention is directed to a spinning top with a controllable horizontal motion. The dynamics of the classical spinning top can not be changed because any action on it is equivalent with a torque N that will modify the rotation motion according to the angular momentum theorem:
dL/dt=N
where L, N are the angular momentum and torque respectively. To move the top horizontally it is necessary to act on it with a force that passes the rotation axis (to have a torque equal with zero). This can be realized by the interaction of attraction of the two permanent magnets; one on the axis of rotation, coaxial with it and another one above the top. Everything will be better understood following the drawings, detailed description and claims.
As it was mentioned above all combinations top and permanent magnets did not achieve a controllable dynamics for tops. The dynamics of a modified gyroscope (I. Grosu, Romania Patent No. 91 857) is controllable by using an external magnetic field. This idea, in a modified version, is used here. The key idea is to modify a classical spinning top by using a permanent magnet on the rotation axis, at its upper part, coaxial with it. An external permanent magnet, manually moved above the top, attracts the first magnet moving the top horizontally. The rotation motion is not changed because the torque of the attraction force between two permanent magnets is zero. This happens because the direction of this force passes the rotation axis. So the horizontal translation motion of the top can be controlled by the motion of the external permanent magnet. The top with a controllable dynamics has much more interest and fun and educational and scientific achievements.
Following
The top with controllable dynamics can be used to realize several games. I propose here 3 variants.
First one refers to the dynamics of the top. It can be experimented how quick should be the motion 7 in order to obtain a movement 6. A too quick move 7 fails to obtain a movement 6. Two tops can collide 8 when they are close enough (
Secondly a collision can be obtained between a hexagonal shaped top 9 and a cylindrical shaped one 1 (
Thirdly a competition game can be realized by using a hexagonal shaped top 9 and a ball 10. The ball 10 moves horizontally. Two players each having a hexagonal shaped top 9 hit the ball (
Others games can be imagined using the driven spinning top with a controllable dynamics.
Number | Date | Country | Kind |
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A 2006 00504 | Jun 2006 | RO | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/RO06/00023 | 12/13/2006 | WO | 00 | 12/16/2008 |