The present invention relates to the use of dampeners and/or stabilizers in an archery bow and, in particular, various structures for releasably mounting at least one dampener and/or stabilizer to an archery bow for effectively absorbing energy from the release of the archery bow.
The archery bow is a simple mechanical device used to store energy derived from the archer during the drawing of the archery bow. When the archer releases the bow string or cable, the archery bow's energy is rapidly released. The greater portion of this energy is spent on launching the arrow, and much of the remaining energy is directed to the archery bow wherein the excess energy results in noise or is simply lost in the transfer process. Some of the energy directed back into the archery bow returns to its original undrawn state; however, much of this energy goes into excessive movement of various archery bow components, resulting in archery bow hand shock and system vibrations.
Because the trajectory of the arrow may be affected by any movement or vibration of the archery bow during the arrow's launch, it is desirable to reduce and/or eliminate such vibrations to the greatest extent possible by absorbing the energy in the archery bow. Thus, stabilizers and dampeners for archery bows have been designed and utilized in the archery field for many years. Such stabilizers and dampeners help absorb the shock and vibration that occur during the launch and release of an arrow from the archery bow.
Certain shock and vibration dampening devices have been created using lightweight materials, such as rubber and plastics. These devices have been mounted directly to the archery bows in an attempt to absorb such shock and vibration from the archery bow. However, the placement of these devices on the archery bow can be critical as to how well the dampening device operates. Many of these shock and dampening devices are mounted permanently to the archery bow, and therefore, the dampening device cannot be moved or changed. This is a disadvantage since an archer is unable to change the location or type of dampening device based on the performance characteristics of the dampening device.
Thus, it would be desirable to provide an apparatus that allowed for the effective and removable mounting of a dampener and/or stabilizer to an archery bow for absorbing energy from a released archery bow.
The present invention provides an apparatus for mounting at least one dampener and/or stabilizer to an archery bow. The apparatus of the present invention provides an elongated support structure releasably connectable to the at least one dampener and/or stabilizer. A releasable fastener is connected to one end of the support structure, and the fastener is releasably connectable to the archery bow such that the support structure is extendible in a cantilevered position relative to the archery bow.
The support structure of the present invention may have a substantially oval configuration having an outer frame with cross supports extending across the frame. The frame and the cross supports may be connectable to the at least one dampener and/or stabilizer. The cross supports may have a honeycomb configuration or a cross-hatch configuration.
The support structure of the present invention may also provide at least one substantially elongated cylindrical rod. A pair of end caps may be connected to the opposite ends of the at least one rod. The releasable fastener may be connected to one of the pair of end caps. The other of said pair of end caps may be connectable to the at least one dampener and/or stabilizer. The at least one dampener and/or stabilizer may be releasably connectable to the at least one rod and may be positioned between the pair of end caps. The at least one dampener and/or stabilizer may be spaced axially along the at least one rod and/or positioned at different angles with respect to the at least one rod.
The at least one rod may have at least two substantially elongate cylindrical rods extending parallel to one another. A casing for supporting each of the at least one dampener and/or stabilizer has an aperture extending through the casing for receiving one of the at least two rods. The casing also has at least one boss having an aperture extending through the boss for receiving a second of the at least one rod.
At least one bracket may be connected to and extend from the at least one rod. Each of the at least one bracket is releasably connectable to the at least one dampener and/or stabilizer. The at least one bracket extends radially outward from a longitudinal axis of the at least one rod, wherein the at least one dampener and/or stabilizer are connectable to a free end of the at least one bracket such that the at least one dampener and/or stabilizer are circumferentially spaced relative to the longitudinal axis of the at least one rod. A releasable fastener is connected to each of the at least one brackets for providing rotational and axial adjustment of the at least one bracket relative to the at least one rod. The at least one bracket may have at least two brackets axially and/or circumferentially spaced along the longitudinal axis of the at least one rod. The at least one brackets may have an arcuate configuration and a free end releasably connectable to the at least one dampener and/or stabilizer.
The at least one rod may have a metallic braided overlay connected to and extending over the outer surface of the at least one rod.
The various features, advantages and other uses of the present apparatus will become more apparent by referring to the following detailed description and drawings in which:
Referring to the drawings, the present invention will now be described in detail with reference to the disclosed embodiments.
As seen in
In order to mount the dampener 12 and/or the stabilizer 14 in a position that will effectively absorb residual energy from the archery bow 16, the apparatus 10 of the present invention provides several embodiments. As seen in
In another embodiment, the support structure 18 of the apparatus 10 of the present invention may utilize a plurality of substantially cylindrical rods 32 connected to a pair of end caps 34, 36. The end caps 34 shown in
Specialized outer casings 38 may be provided for securing the dampener 12 and/or the stabilizer 14 to the rods 32. The casings 38 are substantially cylindrical and allow the dampener 12 or the stabilizer 14 to snap into and out of the casing 38. The casings 38 have an aperture 39 extending there through for receiving one of the rods 32. A pair of bosses 40 having an aperture extending there through are integrally formed on the casing 38 for allowing a second rod 32 to extend through the casing 38. A set screw 42 may be provided in the casing 38 wherein the set screw 42 is threaded against the rod 32 to secure the casing 38 in a set position relative to the rods 32. The casings 38 may be mounted at various angles and at a various longitudinal spacing with respect to the rods 32 to provide various energy-absorbing characteristics. The rods 32 may be fabricated from any high strength, lightweight material, such as various polymeric and metallic materials, and the end caps 34, 36 and the casings 38 may be formed of any high strength, lightweight material, such as polymeric materials.
In yet another embodiment, the support structure 18 of the apparatus 10 of the present invention may provide an elongated cylindrical rod 44 having a pair of end caps 46, 48 connected to each end of the rod 44, as seen in
To secure at least one of the dampeners 12 and/or the stabilizers 14 to the apparatus 10, the support structure 18 of the apparatus 10 may provide arcuate shaped brackets 54 connected to the rod 44. One end of the brackets 54 has a substantially cylindrical configuration that is formed by a pair of semi-circular portions 56 that overlap and are connected to the rod 44. The pair of semi-circular portions 56 of the bracket 54 is secured to the rod 44 through the use of a pair of conventional fasteners 58 that extend through corresponding apertures provided in bosses 60 formed on each of the pair of semi-circular portions 56 of the bracket 54. By loosening and tightening the fasteners 58 on the bracket 54, the position of the bracket 54, and thus the position of the dampeners 12 and the stabilizers 14, can be adjusted along a longitudinal axis of the rod 44 and can be rotated with respect to the longitudinal axis of the rod 44. At the opposite, free end 61 of the bracket 54, an aperture is integrally formed in the bracket 54 for receiving the dampener 12 and/or the stabilizer 14. A snap fit or friction fit is provided in the aperture in the free end 61 of the bracket 54 for connecting the dampener 12 and/or the stabilizer 14 to the bracket 54. This also allows the archer to replace the dampener 12 and/or the stabilizer 14 with dampeners 12 and/or stabilizers 14 having the desired performance characteristics. The rod 44, the end caps 46, 48, and the brackets 54 may be fabricated from a lightweight, high strength material, such as a metallic or a polymeric material.
In use, the archer selects the apparatus 10 and threadably connects one of the embodiments of the apparatus 10 of the present invention to the archery bow 16. The archer may exchange the dampeners 12 and/or the stabilizers 14 with various other dampeners 12 and stabilizers 14 to provide various energy absorption characteristics in the archery bow 16. In addition, the archer may position the dampeners 12 and/or the stabilizers 14 in various positions, depending on the embodiment utilized in the present invention and depending on the desired characteristic of the apparatus 10.
While the invention has been described in connection with what is presently considered to be the most practical and preferred embodiment, it is to be understood that the invention is not to be limited to the disclosed embodiments but, on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims, which scope is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures as is permitted under the law.
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Number | Date | Country | |
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20140060515 A1 | Mar 2014 | US |