Integrally suppressed firearm utilizing segregated expansion chambers
11054207 ยท 2021-07-06
Inventors
Cpc classification
F41A21/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A21/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Methods and systems for limiting the sudden expansion of propellant gasses, products of combustion when firing a gun, exiting a barrel of a gun, which otherwise would result in a very loud noise, sharp recoil of the gun, and a pronounced muzzle flash if released unrestricted. By utilizing two or more completely segregated, or partially segregated, expansion chambers, the gasses can be allowed to sequentially expand and cool under tightly controlled conditions governed by the size and location of holes, or passageways, in the barrel which communicate with the interior of the expansion tube that encompasses the barrel. The expanding gasses are further controlled by the locations and volumes of each segregated expansion chamber, and holes in the structural vertical and horizontal bulkheads of the expansion tube, which can steer the gasses in order to achieve easy expansion as well as gas flow disruption goals by design.
Claims
1. A firearm suppressor comprising: a rifled barrel consisting of lands and grooves defining a bore through which a projectile travels; selected holes placed into the grooves of said barrel allowing communication between the bore of said barrel and the exterior of said barrel; a tubular shaped gas tight structure encompassing in entirety the said barrel and fixtures as further described attached thereto; a plurality of vertical baffles fixed orthogonal and gas tight to the barrel extending radially to an interior aspect of said tubular shaped gas tight structure, with selected through holes placed into selected vertical baffles to allow passage of expanding gasses; a plurality of horizontal baffles fixed parallel to the bore of said barrel, extending transversely to an interior aspect of said gas tight encompassing tubular structure, with selected through holes placed into selected horizontal baffles to allow passage of expanding gasses; a proximal end cap bulkhead fixed gas tight to said barrel at a proximal end of the said encompassing tubular shaped structure, sealing off said encompassing tubular shaped structure; a distal end cap bulkhead fixed at a distal end of said encompassing tubular structure fixed gas tight to said barrel in which a hole is placed allowing the exit of said projectile from the barrel, selected through holes formed in said distal end cap bulkhead allowing venting of expanding gasses to the atmosphere; wherein a plurality of chambers are formed by said vertical baffles, said horizontal baffles, and said tubular shaped gas tight structure, wherein said selected through holes in said vertical and horizontal baffles selectively direct the expanding gasses of the products of combustion rearward, forward, up, and down.
2. The firearm suppressor of claim 1 further comprising a primary expansion chamber of selected volume formed by: a) a primary segregation bulkhead without any through hole, placed distal to a first set of said selected holes placed into the grooves of said barrel, b) an upper and lower horizontal baffle; c) said encompassing tubular structure, and d) the said proximal gas tight end cap, wherein said primary segregation bulkhead is configured to force expanding gases backwards towards the rear of said primary expansion chamber into adjacent chambers through selected through holes placed in said vertical and horizontal baffles all the way to said proximal end cap bulkhead, said expanding gases are then configured to vent upward above the upper horizontal baffle and back towards said distal end cap bulkhead and into the atmosphere.
3. The firearm suppressor of claim 1 further comprising a secondary segregation bulkhead fixed gas tight orthogonally to said barrel forming an expansion chamber of selected volume without said holes formed into said barrel with selected holes formed into said secondary segregation bulkhead to allow passage of expanding gas from said chambers located rearward of said secondary segregation bulkhead to be directed rearward to collide with forward traveling expanding gas and allow passage of expanding gas forward into subsequent chambers ultimately venting to atmosphere.
4. The firearm suppressor of claim 1 further comprising a set of openings in selected vertical baffles to allow gas expansion pressure to flow thru an existing tube of a direct impingement gas operating system to a generally proximal portion of a firearm.
5. The firearm suppressor of claim 1, further comprising a set of openings in selected vertical baffles to allow mechanical movement of a mechanical reloading drive rod to a generally proximal portion of the firearm.
6. The firearm suppressor of claim 4 wherein the said openings and said selected holes are circular, slot-shaped, triangle, square, or any other polygon shape.
7. The firearm suppressor of claim 1 wherein said suppressor is configured to be mounted to a firearm barrel such that the suppressor does not exceed the length of the firearm barrel.
8. The firearm suppressor of claim 1 wherein said suppressor configured to be mounted to a firearm barrel such that the suppressor does not exceed a selected distal portion length of the firearm barrel.
9. The firearm suppressor of claim 1 wherein said suppressor is thread mounted to a firearm barrel.
10. The firearm suppressor of claim 1, where said suppressor is oval, square, rectangular or an odd shape designed into a special purpose gun.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Both the foregoing brief overview and the following detailed description provide examples and are explanatory only. Accordingly, the foregoing brief overview and the following detailed description should not be considered to be restrictive. Further, features or variations may be provided in addition to those set forth herein. For example, embodiments may be directed to various feature combinations and sub-combinations described in the detailed description.
(2) The accompanying drawings, which are incorporated in and constitute a part of this disclosure, illustrate various embodiments of the present disclosure. In addition, the drawings may contain other marks owned by third parties and are being used for illustrative purposes only. All rights to various trademarks and copyrights represented herein, except those belonging to their respective owners, are vested in and the property of the Applicant/s.
(3) The Applicant/s retain and reserve all rights in their trademarks and copyrights included herein, and grant permission to reproduce the material only in connection with reproduction of the granted patent and for no other purpose.
(4) Furthermore, the drawings and their brief descriptions below may contain text or captions that may explain certain embodiments of the present disclosure. This text is included for illustrative, non-limiting, explanatory purposes of certain embodiments detailed in the present disclosure. In the drawings:
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DETAILED DESCRIPTION
(21) As a preliminary matter, it will readily be understood by one having ordinary skill in the relevant art that the present disclosure has broad utility and application. As should be understood, any embodiment may incorporate only one or a plurality of the above-disclosed aspects of the disclosure and may further incorporate only one or a plurality of the above-disclosed features. Furthermore, any embodiment discussed and identified as being preferred is considered to be part of a best mode contemplated for carrying out the embodiments of the present disclosure. Other embodiments also may be discussed for additional illustrative purposes in providing a full and enabling disclosure. Moreover, many embodiments, such as adaptations, variations, modifications, and equivalent arrangements, will be implicitly disclosed by the embodiments described herein and fall within the scope of the present disclosure.
(22) Now therefore, while embodiments are described herein in detail in relation to one or more embodiments, it is to be understood that this disclosure is illustrative and exemplary of the present disclosure, and are made merely for the purposes of providing a full and enabling disclosure. The detailed disclosure herein of one or more embodiments is not intended, nor is to be construed, to limit the scope of patent protection afforded in any claim of a patent issuing here from, which scope is to be defined by the claims and the equivalents thereof. It is not intended that the scope of patent protection be defined by reading into any claim a limitation found herein that does not explicitly appear in the claim itself.
(23) Thus, for example, any sequence(s) and/or temporal order of stages of various processes or methods that are described herein are illustrative and not restrictive.
(24) Accordingly, it should be understood that, although stages of various processes or methods may be shown and described as being in a sequence or temporal order, the stages of any such processes or methods are not limited to being carried out in any particular sequence or order, absent an indication otherwise. Indeed, the stages in such processes or methods generally may be carried out in various different sequences and orders while still falling within the scope of the present disclosure. Accordingly, it is intended that the scope of patent protection is to be defined by the issued claim(s) rather than the description set forth herein.
(25) Additionally, it is important to note that each term used herein refers to that which an ordinary artisan would understand such term to mean based on the contextual use of such term herein. To the extent that the meaning of a term used herein (as understood by the ordinary artisan based on the contextual use of such terms) differs in any way from any particular dictionary definition of such term, it is intended that the meaning of the term as understood by the ordinary artisan should prevail.
(26) Regarding applicability of 35 U.S.C. 112, 6, no claim element is intended to be read in accordance with this statutory provision unless the explicit phrase means for or stage for is actually used in such claim element, whereupon this statutory provision is intended to apply in the interpretation of such claim element.
(27) The following detailed description refers to the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the following description to refer to the same or similar elements. While many embodiments of the disclosure may be described, modifications, adaptations, and other implementations are possible. For example, substitutions, additions, or modifications may be made to the elements illustrated in the drawings, and the methods described herein may be modified by substituting, reordering, or adding stages to the disclosed methods.
(28) Accordingly, the following detailed description does not limit the disclosure. Instead, the proper scope of the disclosure is defined by the appended claims. The present disclosure contains headers. It should be understood that these headers are used as references and are not to be construed as limiting upon the subjected matter disclosed under the header.
(29) The present disclosure includes many aspects and features. Moreover, while many aspects and features relate to, and are described in, the context of, embodiments of the present disclosure are not limited to use only in this context.
(30) In at least one embodiment, the present invention discloses a system and a method for limiting the sudden expansion of propellant gasses, products of combustion when firing a gun, exiting a barrel of a gun, which otherwise would result in a very loud noise, sharp recoil of the gun, and a pronounced muzzle flash if released unrestricted. By utilizing two or more completely segregated, or partially segregated, expansion chambers, the gasses can be allowed to sequentially expand and cool under tightly controlled conditions governed by the size and location of holes, or passageways, in the barrel which communicate with the interior of the expansion tube that encompasses the barrel. The expanding gasses are further controlled by the locations and volumes of each segregated expansion chamber, and holes in the structural vertical and horizontal bulkheads of the expansion tube, which can steer the gasses in order to achieve easy expansion as well as gas flow disruption goals by design.
(31) The said suppressor assembly comprises a tube, extending more or less the length of the barrel, which is divided internally by vertical bulkheads that segregate the expansion chambers. Gastight, or nearly gastight, horizontal bulkheads provide either unhindered or baffled large expansion volume and may serve to establish mechanical integrity of the silencer baffle assembly, as well as to provide a venue to purposely direct the gasses by means of holes installed into selected horizontal and vertical baffles, which may be configured to sequentially bleed off the gasses into the atmosphere. For example, the gasses of two or more chambers could be directed to collide with each other and the resultant gasses allowed to exit the encompassing tube by a separate small tube which exits the tube at the barrel end. In another example, a main expansion chamber may enclose a shelf that is open at the rear so that gasses may expand to the rear and up through the opening so that those gasses travel up and forward over the top of the shelf. By this method of holes allowing communication between the bore of a barrel and the encompassing expansion tube, segregating vertical and horizontal bulkheads purposely constructed as necessary for a given gunpowder charge, bullet weight, diameter of a given bullet, and desired exit velocity of the bullet, the present invention makes possible the expansion and cooling of combusted gunpowder gasses in a highly controlled environment to meet required goals of reduction or elimination of the noise, recoil, and muzzle flash of a gunshot.
(32) In the present invention, as a bullet is driven down a barrel propelled by the expanding gasses of the combusted gunpowder, selected holes which may have been cut or drilled into the bore of the barrel allow expanding gasses to release and cool into at least two or more expansion chambers, segregated one from the other(s). The said plurality of expansion chambers and baffles are fitted over the barrel of the gun and are thus effectively sealed from each other, giving the capability of steering barrel vented gasses from one chamber to another as desired by prearranged holes in the said baffles and predetermined areas of the said gun barrel. As previously stated, instead of capturing and interfering with the expanding gasses after exiting the barrel as seen in prior art designs, relatively small holes may be placed perpendicularly through the barrel and into the bore of the said barrel over which an expansion tube and baffle assembly is mounted. The gun barrel length may be approximately that of an unsuppressed gun. Ideally, the said suppressor encompasses the entire external portion of the said barrel, which holes may be segregated by vertical and horizontal bulkheads (see
(33) The enclosed volume of the expansion tube, being approximately the length of the barrel, fourteen or so inches on a sixteen and a half inch barrel, for example, and two and three eighth inches outside diameter, is on the order of thirty seven cubic inches, the volume of the barrel, typically three quarters of an inch or so in diameter, being accounted for and subtracted.
(34) Thus, with a greatly increased volume of enclosed expansion space available, this present invention is certain to substantially reduce any acoustic signature of the gunshot over that of a suppressor mounted external to the barrel. Because in this present invention, the overall length of the gun is unchanged, the gun is less unwieldy than it would be with a suppressor mounted at the end, such as, e.g., the distal portion of a barrel.
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First Embodiment of the Present Invention
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(38) Final venting is performed in zone C where the pressure is the lowest of the three zones. Zone C may comprise one or more vent holes 325 near the muzzle portion, or bullet exit point, of the barrel 315. The purpose of these holes is to reduce the exhaust pressure to a minimum thus greatly reducing the loud bang when the bullet leaves the muzzle; however, careful consideration may be taken to not slow the bullet down significantly since this can affect the bullet's spin and may result in projectile instability.
(39) In some embodiments, in addition to the circumferential vent holes 325, one or more sets of holes oriented longitudinally axial, such as seen in barrel hole 319 and barrel hole 320 of zone A and barrel hole 323 and barrel hole 324 of zone B of
(40) In some embodiments, barrel hole 319, barrel hole 320, and barrel hole 323, barrel hole 324, and vent holes 325 may comprise openings that are angled or curved to facilitate disruptive gas release patterns during operation, e.g., when a bullet is fired. The holes may be circular, slot-shaped (extended circular), triangle, square, or any other polygon shape. Determination of hole-pattern configuration, orientation, shape, and quantity may be based on specifications of the firearm and bullet with which the suppressor will be attached and operated.
(41) A threaded section 329 is shown on the barrel 315 at distal portion of said barrel 315. There may be more threaded sections on the barrel 315 but they are not shown for purposes of simplicity of the teaching. In fact, the threaded fastening method shown is only an example. To those skilled in the art, there may be other methods of fastening the said silencer assembly and are hereby incorporated by reference.
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(43) In this example embodiment, seven hole 434s are provided, one for each of the vertical baffles for precise fitting over a corresponding hole that is cut or drilled into gun barrel 215 as shown in
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(45) When a tubular enclosure 640 (see
(46) When the trigger 218 (shown in
(47) So far, all the chambers of the silencer assembly 430 have been utilized with the exception of the mid and lower chamber 6-7. When the aforementioned bullet passes vent holes 525 in zone C, a sudden further venting is performed by the multiple vent holes 525, causing gasses to flow freely into mid and lower chamber 6-7 thru baffle hole 595, and then out into the atmosphere thru vent hole 599, as before, the said arrows showing the general direction.
(48) In summary, expanding and cooling propellant gasses from a gun barrel may be steered, or directed, into expansion chambers completely separated from other expansion chambersor commingled with other expansion chambersas needed for maximum expansion and cooling for a given cartridge. In addition, the separate expansion chambers can be vented to atmosphere completely independent of other expansion chambers, or commingled as best suited for maximum expansion and cooling.
(49) It might be said at this juncture that the illustrating arrows are only there for illustration; in reality there are violent gas turbulences and pressure waves occurring. In the various figures the said seven vertical baffles are shown essentially equidistantly spaced and vertical. In actual practice, they may be non-equidistantly spaced and non-perfectly vertical to mitigate any sonic resonances that may be generated by the combustion gas pressure fronts. This technique is known in the art, but is not illustrated here. As the bullet leaves the muzzle, there is very little noise since most of the high pressure has been vented and cooled by expansion. Using separate chambers for venting to the atmosphere is a unique feature of the present invention.
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(51) In some embodiments, a modular baffle assembly of the present invention may be divided into multiple parts, such as, e.g., three or five, and each part may comprise an internal threaded portion for separately fastening to a gun barrel, e.g., each internal threaded portion corresponds to a matching external threaded portion on the gun barrel such that the baffle assembly is joined together to define a continuous bore configured to be coaxially aligned with the gun barrel. Seals may be used to prevent leakages between the parts when they are assembled on a gun barrel and during operation of the firearm. Adjoining edges of each part may be configured to mate and lock, such as comprising a groove and tongue mechanism which may be mated by twisting the parts together onto the barrel. In addition or in substitution, a tension force may be used to couple and stabilizes adjoining pairs of the modular assembly parts, such as, e.g., a nut may be fastened to the distal end of the baffle assembly. An amount of the tension force applied to the modular assembly may depend on the degree to which the nut is rotated, e.g., threaded onto the distal end of the suppressor.
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Second Embodiment of the Present Invention
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(57) Vent hole 1153 and vent hole 1155 are shown on the bullet exit baffle 1160 along with the bullet exit hole 1154. Note that vertical baffle 1156 and exit baffle 1160 have bullet hole 1154 sized for the exiting bullet to pass thru.
(58) Now the muzzle of gun barrel 1159 noses into chamber 1157. This design may be desirable to reduce the remaining muzzle blast exiting the said barrel 1159 as the bullet leaves the said firearm, especially when large energy rounds are fired.
(59) This example is shown for the completeness of this disclosure, though it is not necessarily the most desirable since the first embodiment does not allow the bullet to ever be affected by suppressor combustion gasses but leaves the barrel in a normal manner as in an unsuppressed firearm.
Third Embodiment of the Present Invention
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(61) Gas ejection is commonly used in most modern firearms including military machine guns etc. Most semi-automatic and fully automatic firearms use a fairly high pressure of gas to perform this function. This present example uses a lower pressure since the gas ejection from barrel 1269's hole 1270 has a chance to partially expand in the said mid-chamber 1263. Consequently, the said gas ejection system would have to be a lower pressure operating system. To those skilled in the art this would not present a great difficulty. If a conventional high-pressure system is desired, the next embodiment will discuss it.
Fourth Embodiment of the Present Invention
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(63) Referring to
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Definition of Terms
(66) For the purposes of the present disclosure, the Abstract portion of this document is to enable the public, and especially the scientists, engineers, and practitioners in the art who are not familiar with patent or legal terms or phraseology, to determine quickly from a cursory inspection, the nature and essence of the technical disclosure of the application. The Abstract is neither intended to define the inventive concept(s) of the application, which is measured by the claims, nor is it intended to be limiting as to the scope of the inventive concept(s) in any way.
(67) For the purposes of the present disclosure, the phrase A and/or B means (A), (B), or (A and B).
(68) For the purposes of the present disclosure, the phrase A, B, and/or C means (A), (B), (C), (A and B), (A and C), (B and C), or (A, B and C).
(69) As used herein, a and an each generally denotes at least one, but does not exclude a plurality unless the contextual use dictates otherwise. When used herein to join a list of items, or denotes at least one of the items, but does not exclude a plurality of items of the list. Finally, when used herein to join a list of items, and denotes all of the items of the list.
(70) The descriptions may use perspective-based descriptions such as top/bottom, in/out, over/under and the like. Such descriptions are merely used to facilitate the discussion and are not intended to restrict the application of embodiments described herein to a particular orientation.
(71) Throughout this teaching, the term distal is in reference with the object; distal being further away, while proximal would be closer to the object. For example, a gun's proximal point is the stock portion, while the distal point is the end of the gun's barrel.
(72) The description may use the phrases in an embodiment, or in embodiments, which may each refer to one or more of the same or different embodiments. Furthermore, the terms comprising, including, having, and the like as used with respect to embodiments of the present disclosure, are synonymous.
(73) The terms disclosure and teaching are used synonymously.
(74) The term coupled with, along with its derivatives, may be used herein. Coupled may mean one or more of the following. Coupled may mean that two or more elements are in direct physical contact. However, coupled may also mean that two or more elements indirectly contact each other, but yet still cooperate or interact with each other, and may mean that one or more other elements are coupled or connected between the elements that are said to be coupled with each other. The term directly coupled may mean that two or more elements are in direct contact.
(75) The terms Firearm, Gun, Weapon, Rifle are synonyms describing a device that is used to fire projectiles generally called bullets which said bullets have a dictionary definition generally as: A projectile for firing from a rifle, revolver, or other small firearm, typically made of metal, cylindrical and pointed . . . .
(76) The term tube may refer to a dictionary defined tube or it may refer to a tube structure such as a gun silencer assembly.
(77) The term external thread means a thread such as would be seen on a bolt's external diametric surface while an internal thread would be likened to the internal thread of a nut used for a bolt.
(78) The term top or bottom of a device generally refers to the opposite end of the said device's base portion. As an example, for a gun in use, top would be the sight or telescope portion, while bottom would be the trigger or magazine portion.
(79) The term hole or holes as used on the present invention is defined as generally but not limited to an essentially circular opening thru a material usually but not limited to metal. It may be drilled, milled, punched, pierced, cut with a laser etched or molded etc. It does not necessarily need to be perfectly round, but can be square, hexagonal or another shape/s. For example, laser cutting or chemical etching may produce various shape/s of polygon, star, cross etc.
(80) The expression mounted generally applies to an object affixed in its place using industry professional procedures such as bolting, screwing, nailing, gluing, clinching, interference press fitting, clamping, and etc.
SUMMARY RAMIFICATIONS AND SCOPE
(81) To those skilled in the art, the present invention can be adapted to function with any firearm operating in semi-automatic mode or automatic mode regardless of action type including direct impingement, short stroke gas piston, long stroke gas piston, simple blowback, lever delayed blowback, roller-delayed blowback, gas delayed blowback, and toggle delayed blowback.
(82) To those skilled in the art the present invention can be adapted to function with any rifled pistol or rifle barrel regardless of action type including bolt action, bolt action repeater, lever action and future designs incorporating this invention as an integral part of the new firearm design.
(83) To those skilled in the art there are numerous other ways than those shown here as an example to vent the gasses and are hereby incorporated by reference. Additionally, many embodiments of the present inventive silencer assembly 30, 50 and tubular enclosure 40, 52 are technologically possible. It will be apparent to those of ordinary skill in the art from the present disclosure how to implement them and are hereby incorporated by reference. For example, the entire silencer/suppressor could be another shape, such as, e.g., oval, square rectangular or an odd shape designed into a special purpose gun that may be over laid with a skin to provide multiple baffle cavities and are hereby incorporated by reference. Another way to visualize the concept is to look at a typical car muffler. It comes in many shapes and sizes, yet the singular purpose is to muffle the sound of car's exhaust gasses. The singular purpose of the present invention is to muffle the sound of a firing gun shot.