The disclosure relates to a hand guard for a firearm, and more particularly relates to a hand guard assembly for quickly, easily, securely attaching a hand guard radial adjustability to a firearm using a cam.
A hand guard attachment system is disclosed herein comprising in one example a barrel nut configured to be attached to a firearm. The barrel nut having an outer surface; and cooperating with a cam lever rotatable from a first position allowing the hand guard to be longitudinally positioned about the barrel nut to a second position clamping the hand guard onto the barrel nut.
The hand guard attachment system may be arranged wherein the hand guard is rotationally adjustable without indexing relative to the barrel nut.
The hand guard attachment system may comprise a longitudinal locking system cooperating with the clamping system and prohibiting longitudinal movement of the hand guard relative to the barrel nut when engaged.
Disclosed herein is a firearm handguard system 120 configured to be attached to a firearm. The hand guard system 120 employing a new attachment which allows for radial adjustment, ease in installation, ease in removal, and ease in replacement of the hand guard 120 to the firearm.
In the field of firearms, it is often desired to grasp the portion of the firearm surrounding the barrel and/or gas tube, to attach accessories to this same area, to protect the barrel from impact, and to protect clothing, skin etc. from the barrel which may become hot from use and is often too small in diameter to grasp and may have a smooth surface not easily held.
Thus, hand guards of varying configurations have been disclosed including that disclosed in U.S. Pat. No. 8,561,335 incorporated herein by reference.
In assault-style firearms 22, a grip 40 is often provided, generally extending from the receiver 28 and grasped by the operator in one hand such that the trigger 32 may be reached by the operator while the grip 40 is held in the same hand as used to manipulate the trigger. The operator's other hand often grasps the firearm 22 around the hand guard 42. The hand guard 42 having a proximal end 44 attached to the receiver 28 in one of many ways known in the art.
Hand guards 42 often are vented, and often have attachment systems for lights, accessories, sights, etc.
Often these hand guard attachment systems employ an attachment system, such as a barrel nut 48 having a female threaded surface 52A is attached to the male threaded surface 52B of the receiver 28 of the firearm 22. An indexing surface 50 provides for circumferential positioning of the hand guard 42 relative to the upper receiver 30. This system and other indexed adjustment systems are not rotationally adjustable, they also require removal of one or more threaded components, such as barrel nut 48 and a lock nut to remove the barrel 38 and hand guard 42.
Thus is disclosed herein a novel hand guard system 120 allowing for easy attachment of a hand guard 122 without any specialized tools. This attachment may be accomplished quickly, easily, and in one example the attachment structure allows for circumferential adjustment of the hand guard 122 relative to the receiver 28. This adjustment may be provided without index surfaces, allowing for analog (non-indexed) circumferential adjustment of the hand guard 122 relative to the firearm 22. The system 120 also provides quick and easy removal and replacement of the hand guard 122 from the receiver 28. For example, a user may wish to replace the hand guard 122 with a shorter hand guard 122 or with a hand guard 122 having a different configuration or design.
Looking to
The barrel nut 124 of this example comprises an outer surface 134 which slides into an inner surface 136 of the hand guard 122. In one example the sliding engagement of these surfaces allows rotation of the hand guard 122 around the barrel nut 124. The positioning of an engaging surface 166 of the cam lever 140 to a groove 162 in the barrel nut 124 substantially restricts longitudinal movement along the axis of the barrel 38.
To lock position of the hand guard 122 relative to the barrel nut 124, a clamping or latching system 138 is provided. The latching system 138 of this example comprising the cam lever 140 which rotates about a cam pin 142. The cam lever 140 having an eccentric surface 144 which slides against a surface 146 of the hand guard 122. By rotation of the cam lever 140 relative to the hand guard 122, the cam pin 142 places a tension screw 148 in tension and compresses a first side 150 of the latching system 138 towards a second side 152, reducing the diameter of the inner surface 136 of the hand guard 122 against the outer surface 134 of the barrel nut 124 thus locking position of the hand guard 122 relative to the barrel nut 124.
Looking to the bottom view shown in
In the example shown in
In
In one example, the inner surface 136 is in sliding contact with the outer surface 134 of the barrel nut 124 as the hand guard 122 is longitudinally slid onto the barrel nut 124 as a sliding fit. A sliding fit provides minimal clearances (in one example on the order of 0.001″ to 0.0026″) for high accuracy requirements, which can be easily assembled and will turn & slide freely—e.g. guiding of shafts, sliding gears, crankshaft journals. As the cam lever 140 is rotated to the latched position, the hand guard 122, the inner surface 136 circumferentially compresses against the outer surface 134 of the barrel nut 124, thus holding the components in place relative to each other. In some applications the side surfaces 178, 180, and/or top surface 182 comprise rail mounts 184. Deformation of a rail mount 184 may cause the rail mount to cease to function for its intended purpose. Thus is disclosed a radial recess 186 extending radially outward from the barrel nut 124 such that elasticity is provided on either circumferential side of the recess 186. To accomplish this, in one example the circumferential sides 188 and 190 may be of a thinner material than the circumferential wall 192 of the hand guard 122.
In one example, circumferential protrusions 194 are provided. A surface of these protrusions 194 are in contact with the outer surface of the barrel nut 124 and extend from the point 196 where a line 198 extending from the sides 188/190 crosses the outer surface 134 of the barrel nut 188. These protrusions 194 add additional material to the hand guard 122 and result in less detrimental deformation of the hand guard 122, especially at the rail mounts 184.
In one example, the cam lever 140 is formed of a malleable and/or friction reducing material such as nylon, homopolymer resin, high density polyethylene, or equivalents.
To ensure the cam lever 140 does not release the hand guard 122 from the barrel nut 188, a latching system 200 may be utilized to hold the cam lever 140 in position against undesired release. In one example, the cam lever 140 as shown in
In one example this latching system comprises surfaces most easily seen in
While the present invention is illustrated by description of several embodiments and while the illustrative embodiments are described in detail, it is not the intention of the applicants to restrict or in any way limit the scope of the appended claims to such detail. Additional advantages and modifications within the scope of the appended claims will readily appear to those sufficed in the art. The invention in its broader aspects is therefore not limited to the specific details, representative apparatus and methods, and illustrative examples shown and described. Accordingly, departures may be made from such details without departing from the spirit or scope of applicants' general concept. The invention illustratively disclosed herein suitably may be practiced in the absence of any element which is not specifically disclosed herein.
This application claims priority of U.S. Provisional Patent Application Ser. No. 62/850,463 filed on May 20, 2019 incorporated herein by reference.
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| Number | Date | Country | |
|---|---|---|---|
| 62850463 | May 2019 | US |