SYSTEM AND METHOD FOR ACHIEVING CONTROLLED MOVEMENT OF AT LEAST ONE MAGNET
20180256969 ยท 2018-09-13
Inventors
- Tobias Linkjendal (Dr?bak, NO)
- Juul Arthur Ribe Rudihagen (Olso, NO)
- Hanna Agersborg Aanjesen (Kongshavn, NO)
Cpc classification
A63F7/0005
HUMAN NECESSITIES
A63F7/40
HUMAN NECESSITIES
International classification
A63F7/40
HUMAN NECESSITIES
Abstract
System for achieving controlled movement of at least one first magnet. The movement is caused by a repulsive force from at least one second magnet. Before movement of the first magnet, the magnet and one of the at least one second magnets are aligned in such a way that a line E-E running through both centers C, D of the magnets, is not perpendicular to the magnetic axis A-A, B-B of any of the magnets. A method for controlled movement of at least one first magnet includes aligning the at least one first magnet and the at least one second magnet in such a way that a line E-E running through both centers C, D of the magnets, are not perpendicular to the magnetic axis A-A, B-B of the magnets. The magnets are aligned close to each other while they are retained, and the first magnet is released.
Claims
1-10. (canceled)
11. A system for achieving controlled movement of at least one first magnet (108; 202), wherein the movement is caused by a repulsive force from at least one second magnet (103, 104, 105; 204), comprising maintaining the first magnet in alignment with one of the at least one second magnets (103, 104, 105; 204) such that a line (E-E) running through both centers (C, D) of the magnets, is not perpendicular to the magnetic axis (A-A, B-B) of any of the magnets prior to movement of the first magnet (108; 202).
12. The system of claim 11, wherein the first magnet and one of the at least one second magnets (103, 104, 105; 204) are aligned on a common basis (102; 206) in such a way that a distance from the basis (102; 206) to a center (C) of the first magnet (108; 202) is different than a distance from the same basis to a center (D) of the second magnet (103, 104, 105; 204) prior to movement of the first magnet (108; 202).
13. The system of claim 12, wherein a distance from the center (D) of the second magnet (204) to a common basis (206) of the magnets, is larger than a distance from the center (C) of the first magnet (202) to the common basis, for achieving a movement parallel to the basis.
14. The system of claim 12, wherein a distance from the center (C) of the first magnet (202) to a common basis (206) of the magnets is larger than the distance from the center (D) of the second magnet (204) to the common basis, for achieving a movement not parallel to the basis.
15. The system of claim 11, wherein the at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) are encapsulated with a non-magnetic material to form an encapsulation on each of the at least one first magnet and at least one second magnet.
16. The system of claim 15, wherein the encapsulation on at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) is not symmetrical.
17. The system of claim 15, wherein at least two second magnets (103, 104, 105) are encapsulated by the same material (106) such that the at least two second magnets are encapsulated in a singular piece (100).
18. The system of claim 16, wherein at least two second magnets (103, 104, 105) are encapsulated by the same material (106) such that the at least two second magnets are encapsulated in a singular piece (100).
19. The system of claim 12, wherein the at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) are encapsulated with a non-magnetic material to form an encapsulation on each of the at least one first magnet and at least one second magnet.
20. The system of claim 19, wherein the encapsulation on at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) is not symmetrical.
21. The system of claim 13, wherein the at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) are encapsulated with a non-magnetic material to form an encapsulation on each of the at least one first magnet and at least one second magnet.
22. The system of claim 21, wherein the encapsulation on at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) is not symmetrical.
23. The system of claim 13, wherein the at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) are encapsulated with a non-magnetic material to form an encapsulation on each of the at least one first magnet and at least one second magnet.
24. The system of claim 23, wherein the encapsulation on at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) is not symmetrical.
25. The system of claim 14, wherein the at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) are encapsulated with a non-magnetic material to form an encapsulation on each of the at least one first magnet and at least one second magnet.
26. The system of claim 25, wherein the encapsulation on at least one first magnet (108; 202) and at least one second magnet (103, 104, 105; 204) is not symmetrical.
27. A method for controlling movement of at least one first magnet (108; 202), wherein the movement is caused by a repulsive force from at least one second magnet (103, 104, 105; 204), comprising the following steps: aligning the at least one first magnet (108; 202), and the at least one second magnet (103, 104, 105; 204) such that a line (E-E) running through a center (C) of the first magnet and a center (D) of the second magnet, is not perpendicular to the magnetic axes (A-A, B-B) of any of the magnets, placing the at least one first magnet (108; 202) in close proximity to the at least one second magnet (103, 104, 105; 204) while retaining the respective magnets, and releasing the first magnet (108, 202).
28. The method of claim 27, comprising: aligning the at least one first magnet (108; 202), and the at least one second magnet (103, 104, 105; 204) on a common basis (102; 206) such that a distance from the center (D) of the second magnet (103, 104, 105; 204) to the basis (102; 206) is larger than a distance from the center (C) of the first magnet (108; 202) to the basis (102; 206), thereby achieving a movement parallel to said common basis (102; 206).
29. The method of claim 27, comprising: aligning the at least one first magnet (108; 202) and the at least one second magnet (103, 104, 105; 204) on a common basis (102; 206) such that a distance from the center (C) of the first magnet (108; 202) to the basis (102; 206), is larger than a distance from the center (D) of the second magnet (103, 104, 105; 204) to the basis, thereby achieving a movement not parallel the common basis (102; 206),
30. A method of playing a game, comprising the steps of claim 27, wherein the first magnet is to be moved to reach a target.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022]
[0023]
DETAILED DESCRIPTION
[0024] The invention will now be described with the help of the enclosed figures, showing a principle diagram of a system according to the present invention. The different parts of the figure are not necessarily in scale to each other, as the figure is merely for illustrating the invention.
[0025] The following description of an exemplary embodiment refers to the figures, and the following detailed description is not meant or intended to limit the invention. Instead, the scope of the invention is defined by the appended claims.
[0026] Reference throughout the specification to one embodiment or an embodiment means that a particular feature, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of the subject matter disclosed. Thus, the appearance of the phrases in one embodiment or in an embodiment in various places throughout the specification is not necessarily referring to the same embodiment. Further, the particular features, structures or characteristics may be combined in any suitable manner in one or more embodiments.
[0027] The following disclosure describes preferred embodiments and possible configurations for controlling the movement and trajectory of a playing piece.
[0028] Many of the details, dimensions, angles and other features shown in the figures are merely illustrative for particular embodiments of the invention. Accordingly, other embodiments can have other details, dimensions, angles and other features without departing from scope of the present invention. Furthermore, additional embodiments of the invention can be practiced without several details described below.
[0029] In the figures, identical reference numbers identify identical or at least generally similar elements.
[0030]
[0031] A shooting device 100 has in this embodiment three magnets 103, 104, 105, enclosed by a non-magnetic material 106 and designed in such a way that the shooting device has a cavity 107 formed to accommodate a playing piece 101. A playing piece 101 in this embodiment has one magnet 108 enclosed by a non-magnetic material 109. The magnets in the shooting device 100 and the magnet in a playing piece 101 are arranged on the playing area to repel each other. In the shown embodiment a playing piece 101 is held in the cavity 107 of the shooting device 100 and is ready to be released. In other embodiments the shooting device 100 can have fewer or more magnets than indicated. The cavity 107 in the shooting device 100 can be larger, missing or having a different shape.
[0032]
[0033] The center C of the first magnet is a point along the magnetic axis A-A, being in equal distance from both the magnetic poles. The center D of the second magnet is a point along the magnetic axis B-B, being in equal distance from both the magnetic poles. The playing piece 200 and the shooting device 203 are arranged in such a way that a line E-E drawn through the center C of the first magnet 202 and the center D of the second magnet 204 is not perpendicular to any of the magnetic axes A-A or B-B. In the embodiment shown in
[0034] In the shown preferred embodiments the first magnet 202 of the playing piece 200 and the second magnet 204 of the shooting device 203 are the same type magnet, being neodymium magnets having a diameter of 20 mm and a thickness of 2 mm. The non-magnetic material 201, 205 encapsulating the first magnet 202 and the second magnet 204 are plastic. By having different thickness of encapsulation between the first magnet 202 and the common basis, and between the second magnet 204 and the common basis 206, the desired arrangement of the magnets giving the line E-E not being perpendicular to any of the magnetic axes is achieved. The shooting device 203 and the playing piece 200 are aligned and retained close to each other. When the playing piece 200 is released it will move parallel to the common basis 206.
[0035] In another (not shown) embodiment, the playing piece 200 and the shooting device 203 can be a combination of magnets with or without encapsulation. The desired arrangement of the magnets giving the line E-E not being perpendicular to the magnetic axis may be achieved by using a first magnet 202 and a second magnet 204 of different size, or combinations of encapsulation and size, and any other combinations or properties of the first magnet 202 and the second magnet 204 being obvious to a person skilled in the art.