1. Field of the Invention
The present invention relates generally to bow presses for maintenance of archery bows, and more particularly, to a manual and electrically-powered compound bow press that lies outside of the radius of the bow and that compresses a compound bow from the ends of the bow limbs.
2. Description of the Related Art
Bow presses are used in maintenance of archery bows, and in particular, are necessary for the maintenance of compound bows, where the force required to compress the bow in order to remove the bow string(s) and perform other operations can require hundreds of pounds of force.
A typical shop-installed bow press has a form and operation such as that described in U.S. Pat. No. 6,968,834, in which the bow is stabilized at multiple points along its curvature and wherein the force applied to compress the bow is applied by a crank along the direction of the nock and perpendicular to the radius of curvature of the bow. The press is located outside of the curvature of the bow limbs, so that the bow press structure does not interfere with the operator's access to the bowstring and other components while working on the bow. Such bow presses require practice and training in order to properly compress a bow without damaging the riser or limbs. Some bow presses require adjustment of multiple jacks in order to start compressing a bow.
Other bow presses for field use such as those described in U.S. Pat. No. 7,089,923, provide a lightweight and highly portable structure that contracts a bow via tension applied from the inside of the curvature of the bow limbs, and only from the ends of the bow limbs, but the tensioning structure lies in or near the path of the bow string(s) and further is not designed to operated as a secured fixture, as is desirable for use in a bow maintenance shop environment.
It is highly desirable to contract a bow from the ends of the bow limbs, as devices such as that described in the above-referenced U.S. Pat. No. 6,968,834 must necessarily apply force to points along the riser of the bow and other points along the bow limbs other than the bow limb ends. Present-day compound bows are designed to be lightweight and are typically be made of ductile metals and/or fragile composites. In order to lighten such compound bows, as much material as possible is typically removed from the limbs and body of the bow, and such designs vary greatly from manufacturer to manufacturer. Therefore, there is no guarantee that any point along the bow will have sufficient structural strength or elasticity to tolerate a force applied at that point.
However, the ends of the limbs of a bow must be able to tolerate a force along the direction of the bow string at least equal to that applied by the bow string(s) at the point of maximum draw, as that force is applied to the bow in use. Therefore, compound bows typically will be strong at the bow limb ends and most certainly tolerant of a force applied along the direction of the bow string and cable at the bow limb ends, as that force is applied when the bow string is drawn.
Therefore, it would be desirable to provide a maintenance bow press, and in particular a press for compound bows, that contracts the bow by applying force only at the bow limb ends. It is further desirable to provide a bow press that is simple to use and requires little training or effort to service a compound bow without damaging the bow.
The objective of providing a maintenance bow press for compound bows that applies the contracting force only at the bow limb ends is provided in a bow press and its method of operation.
The bow press includes a retractable frame member and two bow limb end fixtures attached to the ends of the frame member. The bow limb end fixtures define slots for accepting the pulleys at ends of a compound bow and can include both vertical and horizontal restraining portions that secure the bow limb ends at their junction, so that then the retractable frame is retracted, a bow inserted in the bow press is thereby secured during compression.
A central worm gear can be supplied within a telescoping frame to provide for compressing and releasing the bow limb ends, and may be driven by an electric motor.
The foregoing and other objectives, features, and advantages of the invention will be apparent from the following, more particular, description of the preferred embodiment of the invention, as illustrated in the accompanying drawings.
The novel features believed characteristic of the invention are set forth in the appended claims. The invention itself, however, as well as a preferred mode of use, further objectives, and advantages thereof, will best be understood by reference to the following detailed description of an illustrative embodiment when read in conjunction with the accompanying drawings, wherein like reference numerals indicate like components, and:
The present invention is a bow press that provides for compressing a compound archery bow from outside of the bow limb convex curvature. The press contacts the bow only at the bow limb ends, avoiding damage to the riser and/or limbs of the bow that can be caused by forces applied to the middle portions of the bow, in particular, the bow riser, which can account for up to 50% of the value of the bow.
Referring now to
The illustrated bow press includes a telescoping frame member composed of two sections 10A and 10B, which may be made from extruded steel tube with a square cross section, with section 10B having suitable external dimensions to fit within section 10A and slide within section 10B, while retaining lateral stability. A worm gear 16 is included within sections 10A and 10B and is rotatably affixed to section 10B through an internal flange 15 and a lock nut 17, on the opposing end of section 10A a crank handle 18 is attached to worm gear 16 through a suitable collet (not shown). By turning crank handle 18 the telescoping frame member is expanded or collapsed and is shown in the expanded position for receiving bow 1. Stand legs 19 and flanges 19A are provided for mounting the bow press to a workbench or stand. Holes may be provided through flanges 19A for this purpose and may be patterned to accept through-bolts of a prefabricated stand.
Extension arms 10AA and 10BB of frame members 10A and 10B, respectively, provide for the placement of bow 1 away from the central portion of the bow press, so that bow 1 does not interfere with frame members 10A and 10B as the bow is compressed. A set of bow limb end fixtures 14 is provided on extension arms 10AA and 10BB to retain the bow limb ends of bow 1 in the bow press and may be particularly adapted for different types of bow ends as will be described below in further detail. The only force applied from the depicted bow press to bow 1 is a force applied to the bow limb ends 6A and 6B, with no contact made between the bow press and riser 2 or the portion of bow limbs 3 that is substantially away from bow limb ends 6A and 6B.
Referring now to
In the depicted embodiment, the compressive force is applied by a motor 28 rather than the crank handle 18 of
To operate the bow press, the operator positions bow 1 in the bow press as shown, and activates switch 21 in the forward (closing) direction until bow 1 is sufficiently compressed to remove cable 7A and bow string 7B. After servicing is complete, switch 21 is activated in the reverse direction, releasing the compression applied to the bow by frame members 10A and 10B, until the bow limb end fixtures 14 are sufficiently separated that bow 1 can be easily removed.
Referring now to
Further, some bows have features at or beyond the end of the bow limb ends that cannot be contacted with the force applied to the bow by the bow press of the present invention. Therefore, special bow limb end fixtures are used for such bow ends. Bow limb end fixture 14B illustrates such a fixture that can be used when compressing a bow that includes an adjustment knob 4B for cam 4A that provides for rotation of cam 4A. Bow limb end fixture 14B has only the perpendicular surface 32A, the tip of which is used to contact bow limb end 6B to apply the compressive force, avoiding contact with adjustment knob 4B. Generally, only one such bow limb end fixture 14B is needed on one side of the bow under such circumstances, and a bow limb end fixture such as bow limb end fixture 14A as shown in
While the invention has been particularly shown and described with reference to the preferred embodiment thereof, it will be understood by those skilled in the art that the foregoing and other changes in form, and details may be made therein without departing from the spirit and scope of the invention. For example, the telescoping frame member provided by the above-illustrated frame member sections 10A and 10B may be replaced with other suitable design choices that provide a retractable support for bow limb end fixtures 14 so that compressive force can be applied to the bow. Therefore the invention should not be understood to pertain to a particular design depicted in the illustrations, which are exemplary of a particular mechanism that can provide for compressing a bow from the bow limb ends with a rigid structure outside of the primary curvature of the bow. As another example, extension arms 10AA and 10BB can be fabricated to extend upward from frame members 10A and 10B at sufficient height that bow 1 will not ever contact frame members 10A and 10B, at the sacrifice of compactness of the bow press.
This application claims priority under 35 U.S.C. §119(e) to U.S. Provisional Patent Application Ser. No. 60/740,119, filed on Nov. 29, 2005.
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| Number | Date | Country | |
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