The embodiments herein relate generally firearms and more particularly to a method of making a non-segmented, continuous, fiber-wrap sheath over a steel riffled barrel liner for a gas-operated firearm.
Since the advent of the firearm, mankind has expended great effort in making firearms lighter and easier to use. The difficulty in this effort is that, by nature, a firearm must contain a controlled explosion of a propellant charge, such as gunpowder, to launch a projectile with usually lethal force. Even at this time, only metals can be readily relied upon to contain these repeated explosions. As such, firearm barrels are most often made of metals.
One method of making barrels lighter, especially as developments in both metallurgy and propellants advances, is to make a steel barrel liner and then wrap it in some form of composite outer layer, usually fiberglass or reinforced polymer. Prior to embodiments of the disclosed invention the steel barrel liners were wrapped with composite fibers in divided segments. Divided segments permit a location in which to create a gas port for the extraction of hot, high-pressure gas from the fired cartridge to power the mechanism of ejection and reloading of the system. High-temperature gasses can degrade the composite structure if not ported completely through the steel. Unfortunately, by using divided segments, at least one hinge point is created which adversely affects the barrel weight, strength, and accuracy of the firearm. Embodiments of the disclosed invention solve this problem.
A method of making a continuous fiber barrel wrap sheath onto a steel rifled barrel liner of a gas-operated firearm is described. A wrap made of composite fiber is wrapped onto a steel riffled barrel liner in a continuous fashion from near chamber end to near muzzle end with no interruption within the steel liner. After joining the composite wrap to the steel barrel liner, either by mechanical or chemical procedures, one or more slots are formed by carving out a top and/or a bottom of the composite. A gas key insert is then placed in the made slots and retained by mechanical or chemical procedure. Finally, a gas port is drilled through at least one key insert.
The more important features of the invention have thus been outlined in order that the more detailed description that follows may be better understood and in order that the present contribution to the art may better be appreciated. Additional features of the invention will be described hereinafter and will form the subject matter of the claims that follow.
Many objects of this invention will appear from the following description and appended claims, reference being made to the accompanying drawings forming a part of this specification wherein like reference characters designate corresponding parts in the several views.
Before explaining at least one embodiment of the invention in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangements of the components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced and carried out in various ways. Also, it is to be understood that the phraseology and terminology employed herein are for description and should not be regarded as limiting.
As such, those skilled in the art will appreciate that the conception, upon which this disclosure is based, may readily be utilized as a basis for the designing of other structures, methods, and systems for carrying out the several purposes of the present invention. It is important, therefore, that the claims be regarded as including such equivalent constructions insofar as they do not depart from the spirit and scope of the present invention.
With reference now to the drawings, a preferred embodiment of the composite barrel is herein described. It should be noted that the articles “a”, “an”, and “the”, as used in this specification, include plural referents unless the content clearly dictates otherwise. The following reference numerals are used throughout the specification to denote the following components in all of the drawings:
With reference to
Turning to these steps in more detail and in some embodiments, it is useful to provide a corrosion preventative layer 12 between the barrel liner 11 and composite sheath 13 (
A composite fiber sheath 13 with unidirectional or multidirectional fiber placement is wrapped around a steel barrel liner 11. The sheath 13 can also be wrapped around a mandrel and later pressed onto the barrel. The sheath 13 is wrapped in a continuous fashion to avoid adding weight from a segmented steel liner and to increase the rigidity of the overall device. Thus, the continuous wrapping provides longitudinal strength to the steel liner 11, and maximizing structure harmonics which are advantageous to accuracy of the barrel 10. Carbon fiber is a preferred material for the sheath 14, though any other sufficiently light and strong material may be used.
When finished wrapping, a final aesthetic layer 14 should be applied to the sheath 13. This final layer 14 may also add to the structural integrity of the barrel 10 and may also provide additional weather proofing. The aesthetic layer 14 may also take any form, color or texture that may be readily applied to the composite barrel 10 (
A slot 15 is carved out on the top and/or the bottom sides of the composite through the aesthetic layer 14, sheath 13, corrosion layer 12, and partially in the steel barrel liner 11. The slot 15 may measure anywhere from ⅛-inch wide to ⅜-inch wide and between ½-inch long to three inches long, whatever is sufficient to receive a gas key insert 16. By forming slot 15 in the barrel, the hinge point caused by the use of divided segments is avoiding; thus improving the efficiency of the firearm by introducing longitudinal stiffness and harmonic dampening of vibrations.
A steel gas key insert 16 is then placed into the slots via mechanical or chemical procedure to provide a path for a highly pressurized gas from the fired cartridge to a pressure vessel to operate the firearm. This prevents gas leak into the composite. The gas key insert 16 may be joined to the liner 11 by using induction brazing. Other mechanical or chemical procedures such as laser, high-temperature adhesive and welding may be used to join the gas key insert 16 to the liner 11 (
This invention may be applicable to other technologies such as oil and gas explorations and harvesting, designing ladders, sports equipment, and motorsports.
Although the present invention has been described with reference to preferred embodiments, numerous modifications and variations can be made and still the result will come within the scope of the invention. No limitation with respect to the specific embodiments disclosed herein is intended or should be inferred.
This application claims priority based on prior file U.S. Provisional Application No. 62/364,203, filed Jul. 19, 2016, and incorporated the same by reference herein in its entirety.
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Number | Date | Country | |
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20180023913 A1 | Jan 2018 | US |
Number | Date | Country | |
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62364203 | Jul 2016 | US |