The present invention is directed to a gun forearm cushion and its method of use, and in particular, to a camouflage-covered resilient sleeve sized to slide over a gun barrel and around the gun forearm to muffle noise during hunting.
In the prior art, it is common for hunters to occupy shooting houses during hunting season. Generally, the houses are wooden, have one or more windows, and are sparsely furnished, if furnished at all. In cases where the houses are empty, noises made by the hunter in the house reverberate greatly and can be an impediment to successful hunting.
One particular noise problem occurs when a hunter lays his/her rifle on the windowsill of the window in the shooting house. If the hunter is not careful or is inexperienced, the gun forearm will bump against the windowsill and generate an obtrusive noise. In instances where the shooting house is bare inside, the noise reverberates in the house, and can distract game in the vicinity.
As such, a need exists to reduce noise during hunting, particularly when in the confines of an empty shooting house.
The prior art has proposed different solutions in connection with these types of problems. U.S. Pat. No. 5,332,185 Walker III discloses a gun rest made of sand bags designed to rest on a window jamb.
U.S. Pat. No. 5,964,435 to Peltier discloses a wall or window mounted gun support, including a cushioning material.
The problem with both of these devices is that they are cumbersome. Further, while Peltier may disclose a device having a cushioning material, Peltier provides other materials of construction that can generate noise. For example, the hunter could bump into the Peltier apparatus and generate noise, even though the gun forearm may not generate any noise.
Thus, there is still a need for improved devices for muffling sound in shooting houses. The present invention solves this need by providing a gun forearm cushion that easily slides over the gun barrel, is lightweight and inexpensive to manufacture, and does not provide another noise generating surface as in the Peltier apparatus.
It is a first object of the present invention to provide a gun forearm cushion.
Another object of the invention is to provide a method of reducing noise generation in a shooting house.
One other object is a cushion device that has a foam or resilient material body that has an outer camouflage surface thereon and means to facilitate sliding of the body onto a gun forearm and maintaining the device in place once properly positioned.
Other objects and advantages of the present invention will become apparent as a description thereof proceeds.
In one aspect, the invention is an improvement in hunting methods wherein a gun is disposed on a windowsill in a shooting house. According to this aspect of the invention, a generally cylindrical cushion device is slid over a gun barrel and the cushion device is positioned on the gun forearm to reduce noise generation from the gun forearm striking the windowsill. The cushion device comprises a resilient body with camouflage on at least on outer surface thereof, and means for securing the body around the gun forearm. The securing means, in one mode, further comprises a band of elastic running along a length of the cylindrical cushion device and interconnecting opposing longitudinal ends of the resilient body. The securing means can also be fasteners, such as hook and loop fasteners connecting the opposing ends of the resilient body. In another mode, the cushion device can be an expandable sleeve made of a resilient material and a camouflage material surrounding the resilient material. The camouflage material can be either on the outer surface of the resilient material or be a separate and expandable material surrounding the resilient material.
The invention also entails the combination of a gun and the cushion device, wherein the cushion device is expandable to slide over a barrel of the gun and to be positioned around the gun forearm. This combination reduces noise generation from the gun forearm striking a supporting surface such as a windowsill in a shooting house.
The invention also includes the cushion device itself as it is sized to slip over a gun barrel and surround a gun forearm.
Reference is now made to the drawings of the invention wherein:
The present invention enhances the ability of successful hunting when using a hunting structure that involves resting a gun forearm on a part of the structure. In these situations, the gun forearm can accidentally bump against the supporting structure, thereby generating noise and scaring game away. This problem is particularly prevalent in shooting houses, which are often times empty and susceptible to reverberation when noise is made.
The present invention helps alleviate such noises by providing a cushion around the gun forearm, so that when the forearm is rested against a hard surface such as the windowsill of a shooting house, impact is minimal and no or little noise is generated.
The inventive cushion device is lightweight so that it can be easily carried by hunters, installs and is removed in seconds, and is easily-manufactured and therefore low in purchase cost.
One embodiment of the inventive cushion device is designated by reference numeral 10 in FIG. 1. The device 10 is generally cylindrical in shape and has a body 1 made of a foam rubber, or other resilient material such as a polyurethane foam. In fact, any resilient material that would be capable of absorbing the impact of the gun forearm on a supporting structure can be utilized as the body material. If a foam material is used, the density of the foam could vary as long as the foam provides sufficient cushion to absorb impact and deaden noise generation. Non-foam but compressible materials such as rubber are also within the scope of the invention.
Still referring to the
The elastic 7 can be sewn into the resilient body as represented by the stitching 11. However, other ways of securing the elastic material to the ends of the resilient material can also be employed, e.g., adhesives, combinations of sewing and adhesives, hook and loop fasteners, other types of fasteners such as staples, or other like means. While one strip of elastic is shown, a number of strips could be used if desired.
The resilient body 1 can include camouflage as surface 13. The surface 13 can be an integral part of the resilient body 1, or can be a separate material 15 as shown in FIG. 2. This material 15 can be sown as shown by the lines 17 into the resilient body 1, can surround the body 1 and be sewn to itself, or can be secured to the resilient body in another conventional fashion. Other means of attaching or producing the camouflage effect on the device 10 can be employed as well, e.g., merely coating the resilient body 1, e.g., painting, stenciling, etc.
While an elastic band 7 is one preferred mode of providing flexibility in the cushion device to fit over different size guns, other means can be used to surround the gun forearm with the resilient body 1 that would keep the body 1 in place during gun use. Referring to
Similar to
In use and referring to
In this way, if the gun 23 is raised and then lowered against the windowsill 25, the resilient body 1 compresses and cushions the impact, and noise generation from the forearm striking the windowsill is stifled. The reverberation effect prevalent in empty shooting houses is also avoided by eliminating the noise source. Thus, game in the area are not warned of the hunter's presence.
If so desired and in another variation, the camouflage could be made part of the elastic material 7 providing that no significant loss occurs in the stretchability of the elastic for fitting onto guns.
Given the expandability of the device 10, virtually any type of rifle or shotgun or other shooting implement could be used. Further, the device 10 could be made in different sizes as well, so that the opening 9 in the un-stretched condition could vary.
In yet another embodiment as shown in
While different thicknesses for the resilient body can be employed preferred thicknesses ranges up to one to two inches thick. The thickness can vary depending on the compressibility of the resilient body, a more compressible material can have a greater thickness. The opening 9 should be sized to fit over a gun barrel but be sized generally smaller than the outer circumference of the gun forearm, so that when the device retracts around the gun forearm after being expanded to slide over the forearm, the device stays in place. In general, opening would not be large enough to fit around a person's exterior limb.
As such, an invention has been disclosed in terms of preferred embodiments thereof which fulfills each and every one of the objects of the present invention as set forth above and provides new and improved cushioning device for reducing or eliminating the sounds caused by gun forearms striking supporting structures.
Of course, various changes, modifications and alterations from the teachings of the present invention may be contemplated by those skilled in the art without departing from the intended spirit and scope thereof. It is intended that the present invention only be limited by the terms of the appended claims.
This application claims priority under 35 USC 119(3) based on provisional patent application No. 60/296,133 filed on Jun. 7, 2001.
Number | Name | Date | Kind |
---|---|---|---|
35456 | Leverich | Jun 1862 | A |
397719 | Heikes | Feb 1889 | A |
2104129 | Kress | Jan 1938 | A |
2364340 | Bogg | Dec 1944 | A |
2510953 | Brose et al. | Jun 1950 | A |
2554199 | Lewis | May 1951 | A |
2932334 | Steen | Apr 1960 | A |
3574965 | Seiger | Apr 1971 | A |
3665990 | Hefner, Jr. | May 1972 | A |
4105220 | Pacific | Aug 1978 | A |
4247115 | Nikoden, Jr. | Jan 1981 | A |
4380093 | Morgan | Apr 1983 | A |
4433500 | Kunevicius | Feb 1984 | A |
4580483 | Garbini | Apr 1986 | A |
4754498 | Stinemates | Jul 1988 | A |
RE32752 | Kiang | Sep 1988 | E |
4832010 | Lerman | May 1989 | A |
4860479 | Easter | Aug 1989 | A |
4922642 | Ohlhauser | May 1990 | A |
5014358 | Matumori | May 1991 | A |
5048217 | Easter | Sep 1991 | A |
5265366 | Thompson | Nov 1993 | A |
5332185 | Walker, III | Jul 1994 | A |
5333829 | Bell et al. | Aug 1994 | A |
5410833 | Paterson | May 1995 | A |
5511445 | Hildebrandt | Apr 1996 | A |
5669168 | Perry | Sep 1997 | A |
5678344 | Jones et al. | Oct 1997 | A |
5833308 | Strong et al. | Nov 1998 | A |
5850706 | Evans | Dec 1998 | A |
5871269 | Chien | Feb 1999 | A |
5964435 | Peltier | Oct 1999 | A |
6206261 | McCrary | Mar 2001 | B1 |
6516550 | Schnyder et al. | Feb 2003 | B1 |
6517133 | Seegmiller et al. | Feb 2003 | B2 |
Number | Date | Country | |
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20020184692 A1 | Dec 2002 | US |
Number | Date | Country | |
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60296133 | Jun 2001 | US |