This application is related to and claims priority from provisional application Ser. No. 60/481,879, filed Jan. 10, 2004, which provisional application is incorporated by reference herein.
The present invention relates to structure providing magnetic support for an arrow, as the arrow is being drawn and released by a bow, and to components of that structure.
When an archery arrow is drawn and released by a bow, it is conventional to physically support the arrow on a support shelf that is often attached to the riser of the bow. Thus, as the arrow is coupled to the bow string and drawn by the bow string, the arrow can ride along the support shelf to position the arrow on the bow. When the bow string is released, the arrow may effectively slide along the support shelf as the arrow is projected toward a target.
In applicants' experience, a physical support on the riser of a bow, while providing support and guidance for an arrow that is being drawn by the bow string, can also interfere with proper projection of the arrow, due to the physical contact that may occur between the arrow and the support shelf. The balance of the arrow, the configuration of the arrow, the manner and orientation of the arrow relative to the support shelf as the arrow is drawn and released, and the amount and nature of the contact between the material of the arrow and the material of the support shelf, can all contribute to whether the arrow will have the projection intended by the archer.
Thus, applicants believe that structure that can provide support and guidance for an arrow that is being drawn and released by a bow, but in a way that avoids physical contact between the structure and the arrow, would be useful and desirable to an archer.
The present invention provides a new and useful structure for supporting and guiding an arrow that is being drawn and released by a bow, in a way that avoids physical contact between the structure and the arrow. Moreover, the present invention provides new and useful components for such structure.
Applicants' preferred structure comprises a support magnet for a bow, and an arrow with an arrow magnet in a predetermined position on the arrow. The support magnet is configured to establish a magnetic field that supports and guides the arrow as the arrow is being drawn by a bow. The arrow magnet is disposed in a predetermined position on the arrow, and is configured to react with the magnetic field established by the support magnet, to cause the arrow to be magnetically supported and guided by the support magnet, without physical contact between the arrow and the support magnet, at least partially as the arrow is drawn by a bow and released toward a target.
The present invention also provides new and useful components for such structure. Specifically, the present invention provides new and useful arrow magnet structure, and new and useful support magnet structure. The arrow magnet may be a magnet that is attached to the arrow point, or the arrow magnet material may be used to form a component of the arrow (e.g. the point or a component of the arrow point, component of the arrow). The support magnet can form a part of the bow, or can be attached to the bow, and preferably comprises a ring shaped magnet with a central opening through which the arrow can pass without physical interference, and which can magnetically support and guide the arrow by its interaction with the arrow magnet as the arrow is being drawn and released by the bow. Thus, the support magnet forms an arrow rest, as well as a guide for the arrow as the arrow is being drawn and released by the bow.
These and other features of the present invention will become further apparent from the following detailed description and the accompanying drawings.
As described above, the present invention provides a new and useful structure for supporting and guiding an arrow that is being drawn and released by a bow, in a way that avoids physical contact between the structure and the arrow. Moreover, the present invention provides new and useful components for such structure. The principles of the present invention are described herein in connection with some examples of the structure and components for supporting and guiding an arrow that is being drawn and released by a bow. However, from that description, the manner in which the principles of the invention can be used to form various types of structure and components for supporting and guiding an arrow will be apparent to those in the art.
The arrow 100 can have various types of configurations that are known to those in the art. Typically, the arrow 100 would include a shaft 118 with a point component 120 at a front end, and a series of fletching 122 near the rear end. The rear end is also configured with a knock 123 (
According to the present invention, an arrow magnet 126 forms a part of the arrow point, and is located in a predetermined position on the arrow. For example, as schematically shown in
The arrow magnet 124 can be formed of magnetic material (i.e. that comprises a permanent magnet) or from material that can be magnetized as an electromagnet. If the arrow point 125 is formed from (i.e. in one piece with) the material that forms the arrow magnet 124, the material must be of a type (e.g. steel) that enables it to also function as an arrow point.
The support magnet 110 can form a part of the bow, or can be secured to the bow as illustrated in the Figures. Specifically, the support magnet 110 is secured to the bow, preferably to the riser 106 of the bow (e.g. by a bracket, clip or other form of connection). The support magnet 110 is configured to establish a magnetic field that interacts with the arrow magnet 124 and supports the arrow 100 as the arrow is being drawn and released by a bow 102, so that the arrow is magnetically supported and in part by the interaction between the support magnet 110 and the arrow magnet 124 as the arrow is drawn by the bow and released toward a target. Thus, the support magnet 110 also forms an arrow rest for the arrow 100.
The support magnet 110 preferably comprises a ring with a central opening 110a configured so that the arrow can be at least partially drawn through the central opening and then projected at least partially through the central opening without physical interference from the central opening as the arrow is drawn by a bow and then released toward a target. The ring 110 is also preferably formed of one or more components, that are either magnetic material or of material that can be magnetized as an electromagnet.
A support magnet 110 that is ring shaped is preferred because it is relatively steady, and creates a magnetic field that surrounds the arrow magnet as the arrow is being drawn and released by a bow.
In addition, when the support magnet 110 is ring shaped, the support magnet should have sufficient strength to withstand the physical and magnetic forces thereon as an arrow is drawn and projected by the bow, and the central opening 110a should be relatively close to the arrow 110, but with sufficient clearance that the arrow should not physically contact the ring 110 as the arrow is drawn by the bow and projected toward a target. For use with a typical hunting arrow, the preferred dimension of the ring shaped support magnet 110 is 2 inch outer diameter, 1.4 inch inner diameter, and 3/4 inch thickness.
Thus, it should be clear to those in the art that with the foregoing structure, the orientation of the arrow 100 will be magnetically affected by the magnetic field of the support magnet 110, as the arrow is being drawn and released. The support magnet 110 is configured to establish a magnetic field in a predetermined orientation to the bow, to magnetically affect the orientation of an arrow magnet 124 forming part of an arrow that is being drawn and released by the bow. The support magnet preferably includes the central opening 110a, and the magnetic field incorporates at least a portion of the central opening. The central opening 100a is configured to allow the arrow 100 to extend through the central opening without physical interference from the support magnet as the arrow is being drawn and released by the bow. The support magnet preferably comprises a ring shaped magnet. Moreover, the ring shaped magnet can be formed of magnetic material.
Additionally, it should be noted that the arrow magnet and/or the support magnet can be formed in different ways, and still perform according to the principles of the present invention. For example, the arrow magnet and/or the support magnet can be formed of magnetic material, and thereby configured as a permanent magnet. Alternatively, the arrow magnet and/or the support magnet can be configured of material that can be magnetized, as with an electromagnet. In addition, while the preferred embodiment contemplates that the arrow magnet 124 is in predetermined relation to the point component of the arrow, it is contemplated that an arrow magnet may be located at other predetermined locations on the arrow, and still achieve the objectives of the present invention. Moreover, while the support magnet 110 is shown as attached to the bow, it is contemplated that the support magnet can form a part of the bow.
Accordingly, the principles of the present invention have been described above in connection with several preferred forms of arrow magnets and a preferred form of support magnet. However, from the description, it will be clear how the present invention can also be used in connection with various types of bow and arrow structures, and for the individual components (e.g. support magnet, arrow magnet) that can be used in such a structure, in accordance with the principles of the present invention. With the foregoing disclosure in mind, there will be other modifications and developments that will be apparent to those in the art.
Number | Date | Country | |
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60481879 | Jan 2004 | US |