SPEED NOCK
An archery system includes a riser with a first end and a second end and configured to be gripped by a user, a first limb extending from the first end of the riser and a second limb extending from the second end of the riser, a bowstring extending between and operably coupled with a second end of the first limb and a second end of the second limb and one or more speed nocks coupled with the bowstring each including a first end, a second end, an outer wall, an inner wall opposite the outer wall, at least one relief extending into the outer wall and a longitudinally-extending gap extending between the first and second ends of the speed nock, where the speed nock is deformable between an open configuration and a closed configuration wherein the inner wall impinges on the bowstring.
This application claims priority to U.S. 63/672,081, filed on Jul. 16, 2024, entitled “IMPROVED BOWSTRING NOCK,” the disclosure of which is hereby incorporated herein by reference in its entirety.
FIELD OF THE DISCLOSUREThe present disclosure generally relates to the field of archery and speed nocks for coupling with a bowstring of an archery system to impact the speed of the bowstring when the archery system is fired.
BACKGROUND OF THE DISCLOSUREA speed nock can be coupled with a bowstring of an archery system to control the speed at which certain portions of the bowstring return to their natural state after a user fires the archery system. Coupling one or more speed nocks to the bowstring will reduce the speed of the portion of the bowstring coupled with the one or more speed nocks. As such, the fastest portion of the bowstring can be specified by the user. The fastest portion of the bowstring may be specified at the portion of the bowstring in contact with the arrow. In such a configuration, the force generated by the transition of the components of the archery system to their respective natural states after firing will be concentrated at the portion of the bowstring in contact with the arrow, thereby allowing for the energy exerted by the user to be efficiently transferred to the arrow. To install the speed nock to the archery system, an operator must apply a crimping pressure to fix the speed nock to the bowstring. Repeated installations result in strain and potential stress injuries to the operator because of the amount of force required to produce the necessary crimping pressure.
SUMMARY OF THE DISCLOSUREOne embodiment as described and shown herein includes an archery system that includes a riser with a first end and a second end configured to be gripped by a user, a first limb extending from the first end of the riser, a second limb extending from the second end of the riser, a bowstring extending between and operably coupled with a second end of the first limb and a second end of the second limb, and one or more speed nocks coupled with the bowstring. Each speed nock may include a first end, a second end, an outer wall, an inner wall opposite the outer wall, at least one relief extending into the outer wall and longitudinally along the outer wall at least a majority of a distance between the ends of the speed nock, wherein the at least one relief is substantially aligned with a longitudinal axis of the speed nock, and a longitudinally-extending gap extending between the first and second end of the speed nock. The speed nock is deformable between an open configuration where the bowstring may be received through the gap, and a closed configuration wherein the inner wall impinges on the bowstring and prevents the speed nock from moving along a length of the bowstring, and is configured to deform from the open configuration to the closed configuration under a radially-applied force.
Another embodiment as described and shown herein may further or alternatively include an archery system that includes a speed nock, that includes a first end, a second end, an outer wall, an inner wall opposite the outer wall, at least one relief extending into the outer wall and longitudinally along the outer wall at least a majority of a distance between the ends of the speed nock, wherein the at least one relief is substantially aligned with a longitudinal axis of the speed nock, and a longitudinally-extending gap extending between the first and second ends of the speed nock. The speed nock is deformable between an open configuration where the bowstring may be received through the gap, and a closed configuration wherein the inner wall impinges on the bowstring and prevents the speed nock from moving along a length of the bowstring, and is configured to deform from the open configuration to the closed configuration under a radially-applied force of less than or equal to about 4 lbs/gr resulting in the inner wall of the speed nock exerting a force on the bowstring of between about 403 psi and about 134 psi when the speed nock is in the closed configuration.
The drawings are of illustrative embodiments. They do not illustrate all embodiments. Other embodiments may be used in addition or instead. Details which may be apparent or unnecessary may be omitted to save space or for more effective illustration. Some embodiments may be practiced with additional components or steps and/or without all of the components or steps which are illustrated. When the same numeral appears in different drawings, it refers to the same or like components or steps.
Reference will now be made in detail to the present preferred embodiments of the disclosure, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numerals will be used throughout the drawings to refer to the same or like parts. In the drawings, the depicted structural elements are not to scale and certain components are enlarged relative to the other components for purposes of emphasis and understanding.
As required, detailed embodiments of the present disclosure are disclosed herein; however, it is to be understood that the disclosed embodiments are merely exemplary of the disclosure that may be embodied in various and alternative forms. The figures are not necessarily to a detailed design; some schematics may be exaggerated or minimized to show function overview. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a representative basis for teaching one skilled in the art to variously employ the present disclosure.
For purposes of description herein, the terms “upper,” “lower,” “right,” “left,” “rear,” “front,” “vertical,” “horizontal,” and derivatives thereof shall relate to the concepts as oriented in
The present illustrated embodiments reside primarily in combinations of method steps and apparatus components related to a speed nock for an archery system. Accordingly, the apparatus components and method steps have been represented, where appropriate, by conventional symbols in the drawings, showing only those specific details that are pertinent to understanding the embodiments of the present disclosure so as not to obscure the disclosure with details that will be readily apparent to those of ordinary skill in the art having the benefit of the description herein. Further, like numerals in the description and drawings represent like elements.
In this document, relational terms, such as first and second, top and bottom, and the like, are used solely to distinguish one entity or action from another entity or action, without necessarily requiring or implying any actual such relationship or order between such entities or actions. The terms “comprises,” “comprising,” or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element preceded by “comprises . . . a” does not, without more constraints, preclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
As used herein, the term “about” means that amounts, sizes, formulations, parameters, and other quantities and characteristics are not and need not be exact, but may be approximate and/or larger or smaller, as desired, reflecting tolerances, conversion factors, rounding off, measurement error and the like, and other factors known to those of skill in the art. When the term “about” is used in describing a value or an end-point of a range, the disclosure should be understood to include the specific value or end-point referred to. Whether or not a numerical value or end-point of a range in the specification recites “about,” the numerical value or end-point of a range is intended to include two embodiments: one modified by “about,” and one not modified by “about.” It will be further understood that the end-points of each of the ranges are significant both in relation to the other end-point, and independently of the other end-point.
The terms “substantial,” “substantially,” and variations thereof as used herein are intended to note that a described feature is equal or approximately equal to a value or description. For example, a “substantially planar” surface is intended to denote a surface that is planar or approximately planar. Moreover, “substantially” is intended to denote that two values are equal or approximately equal.
As used herein the terms “the,” “a,” or “an,” mean “at least one,” and should not be limited to “only one” unless explicitly indicated to the contrary. Thus, for example, reference to “a component” includes embodiments having two or more such components unless the context clearly indicates otherwise.
The reference numeral 1 (
The speed nock 12 (
Referring still to
Each end flange or portion 21 includes a planar inner surface 24, an arcuate exterior surface 25, and a beveled edge 26. The planar inner surface 24 of each of the end flanges 21 faces towards the longitudinally-extending gap 29. The planar inner surfaces 24 extend substantially parallel with one another and are juxtaposed directly across the longitudinally-extending gap 29. The arcuate exterior surface 25 of each of the end flanges 21 faces away from the longitudinally-extending gap 29. The beveled edge 26 of each end flange 21 extends along the length of each of the end flanges 21 and connects the planar inner surface 24 with the arcuate exterior surface 25.
Each of the plurality of inner flanges 22 includes an arcuate inner surface 27 and an arcuate exterior surface 28. The arcuate inner surface 27 of each of the plurality of inner flanges 22 faces towards the longitudinally-extending gap 29 while the arcuate exterior surface 28 of each of the plurality of arcuate flanges 22 faces away from the longitudinally-extending gap 29.
The outer wall 17 (
The speed nock 12 includes a plurality of yielding regions 32 (
Referring still to
The speed nock 12 (
The relief 23 has a first cross-sectional configuration when in the open configuration A and a second cross-sectional configuration when in the closed configuration B, where the second configuration is different from the first configuration, and where the relief 23 is configured to deform from the open configuration A to the closed configuration B. Each of the yielding regions 32 has a first cross-sectional configuration when in the open configuration A and a second cross-sectional configuration when in the closed configuration B, where the second configuration is different from the first configuration, and where each of the yielding regions 32 is configured to deform from the open configuration A to the closed configuration B.
To deform the speed nock 12 from the open configuration A to the closed configuration B, the speed nock 12 bends at each of the yielding regions 32 as the radially-applied force is incrementally exerted against the speed nock 12 over a period of time. As the radially-applied force is exerted to the outer wall 17 of the speed nock 12 about a periphery of the speed nock 12, each of the yielding regions 32 bends such that a plurality of dimensions of each of the reliefs 23 is altered.
The speed nock 12 is configured to be deformed from the open configuration A to the closed configuration B through the exertion of the radially-applied force against the outer wall 17 of the speed nock 12. The radially-applied force may be a crimping pressure exerted against the speed nock 12 by a user, wherein the crimping pressure applies a force across the outer wall 17 of the speed nock 12 to deform each of the one or more yielding regions 32 to pinch the speed nock 12 to the bowstring 10. The speed nock 12 may be configured to transition from the open configuration A to the closed configuration B only when the crimping pressure applied to the speed nock 12 is greater than or equal to 2 lbs/gr, wherein the weight of the speed nock 12 is measured in grains. The speed nock 12 is preferably configured to deform from the open configuration A to the closed configuration B under a radially-applied force of less than or equal to about 4 lbs/gr, more preferably of between about 3 lbs/gr and about 3.3 lbs/gr, and most preferably of between about 2.7 lbs/gr and about 2.9 lbs/gr wherein a force exerted on the bowstring 10 by the inner wall 19 of the speed nock 12 when the speed nock 12 is in the closed configuration B is preferably between about 269 psi and about 403 psi, more preferably of between about 202 psi and about 269 psi, and most preferably of between about 134 psi and about 202 psi. The speed nock 12 may be a one stack speed nock 12 with a weight of 7.5 grains, a two stack speed nock 12 with a weight of 15 grains, a three stack speed nock with a weight of 22.5 grains, a four stack speed nock 12 with a weight of 30 grains, or a five stack speed nock 12 with a weight of 37.5 grains, where the length of the speed nock 12 proportionately increases with the increase in weight.
It is to be understood that variations and modifications can be made on the aforementioned structure without departing from the concepts of the present disclosure, and further it is to be understood that such concepts are intended to be covered by the following claims unless these claims by their language expressly state otherwise.
Claims
1. An archery system, comprising:
- a riser with a first end and a second end and configured to be gripped by a user;
- a first limb extending from the first end of the riser;
- a second limb extending from the second end of the riser;
- a bowstring extending between and operably coupled with a second end of the first limb and a second end of the second limb; and
- one or more speed nocks coupled with the bowstring, each speed nock comprising: a first end; a second end; an outer wall; an inner wall opposite the outer wall; at least one relief extending into the outer wall and longitudinally along the outer wall at least a majority of a distance between the ends of the speed nock, wherein the at least one relief is substantially aligned with a longitudinal axis of the speed nock; and a longitudinally-extending gap extending between the first and second ends of the speed nock; wherein the speed nock is deformable between an open configuration where the bowstring may be received through the gap, and a closed configuration wherein the inner wall impinges on the bowstring and prevents the speed nock from moving along a length of the bowstring; and wherein the speed nock is configured to deform from the open configuration to the closed configuration under a radially-applied force.
2. The archery system of claim 1, further comprising:
- a first cam coupled with a distal portion of the first limb; and
- a second cam coupled with a distal portion of the second limb;
- wherein the first and second cams operably couple the bowstring with the second end of the first limb and the second end of the second limb.
3. The archery system of claim 1, wherein the at least one relief comprises a plurality of reliefs spaced radially about the outer wall.
4. The archery system of claim 1, wherein the at least one relief defines a yielding region between a vertex of the at least one relief and the inner wall, and wherein a yield strength of the yielding region is less than a yield strength of the speed nock at a location circumferentially spaced from the at least one relief.
5. The archery system of claim 1, wherein the at least one relief extends entirely between the first and second ends of the speed nock.
6. The archery system of claim 1, wherein the speed nock comprises brass.
7. The archery system of claim 1, wherein the speed nock is configured to deform from the open configuration to the closed configuration under a radially-applied force of less than or equal to about 4 lbs/gr.
8. The archery system of claim 7, wherein a force exerted on the bowstring by the inner wall of the speed nock when the speed nock is in the closed configuration is between about 134 psi and about 403 psi.
9. The archery system of claim 7, wherein the radially-applied force is between about 2.9 lbs/gr and about 2.7 lbs/gr.
10. The archery system of claim 9, wherein the force exerted on the bowstring by the inner wall of the speed nock when the speed nock is in the closed configuration is between about 134 psi and 202 psi.
11. An archery system, comprising:
- a speed nock, comprising: a first end; a second end; an outer wall; an inner wall opposite the outer wall; at least one relief extending into the outer wall and longitudinally along the outer wall at least a majority of a distance between the ends of the speed nock, wherein the at least one relief is substantially aligned with a longitudinal axis of the speed nock; and a longitudinally-extending gap extending between the first and second ends of the speed nock; wherein the speed nock is deformable between an open configuration where the bowstring may be received through the gap, and a closed configuration wherein the inner wall impinges on the bowstring and prevents the speed nock from moving along a length of the bowstring; wherein the speed nock is configured to deform from the open configuration to the closed configuration under a radially-applied force of less than or equal to about 4 lbs/gr resulting in the inner wall of the speed nock exerting a force on the bowstring of between about 403 psi and about 134 psi when the speed nock is in the closed configuration.
12. The archery system of claim 11, further comprising:
- a riser with a first end and a second end and configured to be gripped by a user;
- a first limb extending from the first end of the riser;
- a second limb extending from the second end of the riser; and
- a bowstring extending between and operably coupled with a second end of the first limb and a second end of the second limb.
13. The archery system of claim 12, further comprising:
- a first cam coupled with a distal portion of the first limb; and
- a second cam coupled with a distal portion of the second limb;
- wherein the first and second cams operably couple the bowstring with the second end of the first limb and the second end of the second limb.
14. The archery system of claim 11, wherein the at least one relief comprises a plurality of reliefs spaced radially about the outer wall.
15. The archery system of claim 11, wherein the at least one relief defines a yielding region between a vertex of the at least one relief and the inner wall, and wherein a yield strength of the yielding region is less than a yield strength of the speed nock at a location radially spaced from the at least one relief.
16. The archery system of claim 11, wherein the at least one relief extends entirely between the first and second ends of the speed nock.
17. The archery system of claim 11, wherein the speed nock comprises brass.
18. The archery system of claim 11, wherein the speed nock comprises aluminum.
19. The archery system of claim 11, wherein the radially-applied force is between about 2.9 lbs/gr and about 2.7 lbs/gr.
20. The archery system of claim 19, wherein the force exerted on the bowstring by the inner wall of the speed nock when the speed nock is in the closed configuration is between about 134 psi and about 202 psi.
Type: Application
Filed: Jan 10, 2025
Publication Date: Jan 22, 2026
Applicant: STRONGLINE ENGINEERED SYNTHETICS LLC. (Minneapolis, MN)
Inventor: Mark Pederson (Little Canada, MN)
Application Number: 19/016,488