Barrel attachment device for a gas gun
A spin attachment attachable to the firing end of the barrel of a compressed gas gun and a method of using the same is disclosed. The spin attachment allows a user to control the spin on a projectile exiting the muzzle end of a barrel of a compressed gas gun, which in turn, allows the user to curve the trajectory of the projectile after it is fired from the spin attachment. The spin attachment comprises a housing having a first open end, a second end adapted for attachment to the muzzle end of a barrel of a compressed gas gun, and an inner wall defining a through passage that has central longitudinal axis with the muzzle, a deflection wall that is positioned within the housing, the deflection wall having a stationary end adjacent the muzzle and a moveable portion adjacent to the open end of the housing, and, in one embodiment, a deflection wall adjuster mounted in the housing between the housing and the deflection wall and moveable to move the moveable portion of the deflection wall and in another embodiment, a remotely-operated actuators one to the housing and the deflection wall for rotating the housing and moving the deflection wall.
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This application is a continuation-in-part of U.S. patent application Ser. No. 11/437,577, which claims the benefit of U.S. provisional patent application No. 60/682,628, filed May 19, 2005, and U.S. provisional patent application No. 60/703,094, filed on Jul. 28, 2005, the entire contents of which are incorporated by reference as if fully set forth herein. This application also claims the benefit of U.S. provisional patent application No. 60/717,445, filed on Sep. 15, 2005, the entire contents of which are incorporated by reference as if fully set forth herein.
FIELD OF INVENTIONThe present invention relates generally, to accessories for compressed gas guns, and more specifically, to a barrel attachment accessory that can affect the trajectory of a projectile fired from-a compressed gas gun. A method of imparting spin on a projectile fired from a compressed gas gun is also provided.
BACKGROUNDAction sports such as paintball have become very popular activities. Paintball is a sporting game having two teams of players usually trying to capture one another's flag. The sport is played on a large field with opposing home bases at each end. Each team's flag is located at the player's home base. In addition, all of the players have compressed gas guns (referred to herein as either “guns,” “compressed gas guns,” “markers” or “paintball markers”) that shoot projectiles commonly referred to as paintballs. The paintballs are generally spherical gelatin capsules filled with liquid paint or dye. During play of the sport, the players on each team advance towards the opposing team's base in hopes of stealing the opposing team's flag, without being eliminated from the war game. A player is eliminated from the game when the player is hit by a paintball fired from an opposing player's marker. When the paintball hits a player it usually ruptures leaving a “splat” of paint.
Compressed gas guns using a source of compressed gas for firing projectiles are well known. Examples of compressed gas guns used in the sport of paintball, also called “markers,” include products sold under the brand names EMPIRE, INDIAN CREEK DESIGNS, DIABLO, 32 DEGREES, and BT. Generally, compressed gas guns include a gun body, a grip for holding the gun, a barrel connected to the gun body including a longitudinal bore in communication with the breech (chambering area) of the gun body, and a trigger for initiating firing of the compressed gas gun. These guns are hand held and easily transportable and generally weigh no more than about 7 pounds without the gas tank and paintball feeder or “hopper” attached. As used herein, compressed gas gun refers to any gun or similar launching mechanism for use in sport wherein a projectile is fired via the force of compressed gas, and includes paintball markers. As used herein, projectile or projectiles refers to both paintballs, and other projectiles used in sport and game play. For example, the sport of airsoft utilizes compressed gas guns firing pellets. Compressed gas guns generally include a gun body 11, grip 13, barrel 12, and trigger 15, which are shown in
Paintball is often played on a large field. Compressed gas guns must be able to shoot over long distances with accuracy. In addition, the sport of paintball may be played on a field with obstacles (“paintball bunkers”) or in the woods. Players can hide behind bunkers, trees or other obstacles to avoid being hit with a paintball. At least one known device for altering or affecting the trajectory of a projectile fired from a compressed gas gun is disclosed in U.S. Pat. No. 7,040,310, the entire contents of which is incorporated by reference herein.
It would be advantageous to have a barrel attachment for a compressed gas gun that fires a projectile for an increased distance as compared to current compressed gas guns and barrel attachment devices.
In addition, it would be advantageous to have a barrel attachment for a compressed gas gun that could fire a projectile with a user selected curved trajectory.
In addition, it would be advantageous to have a barrel attachment for a compressed gas gun that could change the trajectory of a projectile fired from the gun in an easy and effective manner during sport play, without removing the barrel attachment from the gun or barrel of the gun.
In addition, it would be advantageous to have a barrel attachment for a compressed gas gun that can be operated by the user while the marker is in an operating position, without having to withdraw the gun barrel from an in-use position, as well as the possibility of making adjustments during a firing operation remotely so that visual feedback of the projectile path can be immediately observed.
SUMMARYThe barrel attachment of the present invention also referred to herein interchangeably as a “barrel spin attachment” or “spin attachment,” and a method of imparting spin on a projectile fired from a compressed gas gun utilizing the barrel attachment of the present invention, satisfy the above-identified needs.
A spin attachment device according to the preset invention comprises a housing having a first open end, a second end adapted for attachment to the muzzle end, and an inner wall defining a through passage that has a central longitudinal axis with the muzzle. A deflection wall is positioned within the housing. The deflection wall includes a first end adjacent the muzzle and a moveable portion adjacent to the open end of the housing. In one embodiment, a deflection wall adjuster is provided mounted in the housing between the housing and the deflection wall that is moveable to move the moveable portion of the deflection wall. The housing is preferably also manually rotatable about the barrel axis, providing two separate adjustments.
In another embodiment, the deflection wall adjuster is adjusted by a second, remotely-controllable actuator, which can be remotely operated by the user, preferably with a control positioned on or near the marker grip.
In a further embodiment, the rotational position of the housing about the longitudinal axis can also be adjusted using a first remotely-controllable actuator, allowing a complete range of adjustments to made by the user while the marker is in the firing position. The first and second actuators can be driven by electric motors or may be driven by pneumatic motors or any other suitable drive arrangement.
A device for controlling spin on a projectile exiting a muzzle end of a barrel of a compressed gas gun, is provided, the device comprises: a housing comprised of an open first end, a second end, and an inner wall, the inner wall defining a through passage that has a central longitudinal axis, the second end rotatably attachable to the muzzle end of the barrel of a compressed gas gun; a deflection wall positioned within the housing, the deflection wall having a stationary end adjacent the muzzle end and a moveable portion between the stationary end and the first open end of the housing; a deflection wall adjuster mounted in the housing between the housing and the deflection wall, the deflection wall adjuster moveable to move the moveable portion of the deflection wall; and an electronically-controlled actuator coupled to the housing.
Another embodiment of a device for controlling spin on a projectile exiting a muzzle end of a barrel of a compressed gas gun, is provided, that device comprises: a housing comprised of an open first end, a second end, and an inner wall, the inner wall defining a through passage that has a central longitudinal axis, the second end rotatably attachable to the muzzle end of the barrel of a compressed gas gun; a deflection wall positioned within the housing, the deflection wall having a stationary end adjacent the muzzle end and a moveable portion between the stationary end and the first open end of the housing; a deflection wall adjuster mounted in the housing between the housing and the deflection wall, the deflection wall adjuster moveable to move the moveable portion of the deflection wall; and an electronically-controlled actuator coupled to the deflection wall adjuster.
Yet another embodiment of a device for controlling spin on a projectile exiting a muzzle end of a barrel of a compressed gas gun, is provided, that device comprises: a housing comprised of an open first end, a second end, and an inner wall, the inner wall defining a through passage that has a central longitudinal axis, the second end rotatably attachable to the muzzle end of the barrel of a compressed gas gun; a deflection wall positioned within the housing, the deflection wall having a stationary end adjacent the muzzle end and a moveable portion between the stationary end and the first open end of the housing; a deflection wall adjuster mounted in the housing between the housing and the deflection wall, the deflection wall adjuster moveable to move the moveable portion of the deflection wall; a first electronically-controlled actuator coupled to the housing; and a second electronically-controlled actuator coupled to the deflection wall adjuster.
Also provided, is a compressed gas gun and barrel attachment device, comprising: a compressed gas gun comprising: a gun body having a first end and a second end, the gun body comprised of a breech, a grip and a trigger adjacent the grip; a barrel comprised of a first muzzle end and a second end and a bore therethrough, the second end coupled to the first end of the gun body, the bore in communication with the breech; and a source of compressed gas coupled to the gun body, the source of compressed gas in communication with the breech; a barrel attachment device rotatably attached to the first muzzle end of the barrel, the barrel attachment device comprising: a housing having a first end and a second end, the second end rotatably attached to the first muzzle end of the barrel, the housing having a passage therethrough, having a central longitudinal axis aligned with the bore of the barrel, the passage in communication with the bore of the barrel; a deflection wall disposed at least partially within the housing adjacent the passage, the deflection wall comprised of a first end positioned adjacent the first end of the housing and a second end positioned adjacent the second end of the housing, the deflection wall further comprising a frictional surface adjacent the passage, the deflection wall further comprising a moveable portion and a secured portion hingedly engaging the housing; and a deflection wall adjuster positioned between the deflection wall and the housing for adjusting the position of the moveable portion of the deflection wall relative to the central longitudinal axis; a controller within the gun body, the controller in communication with a first electronically-controlled actuator and a second electronically-controlled actuator; a power source within the gun body, the power source coupled to the controller; a switch fixed to the gun body, the switch in communication with the controller; the first electronically-controlled actuator coupled to the housing; and the second electronically-controlled actuator coupled to the deflection wall adjuster.
Also provided is a method of imparting a spin upon a projectile using a compressed gas gun and barrel attachment device, the method comprising: providing the above-referenced compressed gas gun, aiming the barrel attachment device; activating the trigger; activating the switch to rotate the housing about the muzzle end of the barrel to a user-selected position; and activating the switch to move the deflection wall adjuster to a user-selected position.
BRIEF DESCRIPTION OF THE DRAWINGS
For purposes of this detailed description, all reference to direction or orientation are from the perspective of a user 24 firing a compressed gas gun 18 including the spin attachment 10 of the present invention by holding the gun 18 upright in its normal firing position (i.e., at “zero degrees” or in a “firing position”). For example, “left” refers to a position closer to the user's left side, i.e., left arm or leg, and “right” refers to a position closer to the user's right side. “Rear” or “rearward” refers to a portion or portions closer to the user and “forward” refers to a portion or portions farther away from the user.
As shown in
As shown in
The first portion 34 of the housing 32 includes an outer wall 55 (as shown in
A rail receiving groove 35 is provided in the inner wall 54 adjacent a second end 41 of the first portion 34 of the housing 32, as shown in
The second portion 36 of the housing 32 includes an outer wall 84 (as shown in
As shown in
As shown in
The housing 32 is designed to engage the first end 14 (or muzzle end) of a compressed gas gun barrel 12, as shown in
As shown in
As shown in
Flanges 63a and 63b extend upward from the outer surface 106 of the deflection wall 46 adjacent the second end 122. Flange 63a is rearward of flange 63b. Flanges 63a and 63b form a groove 74 therebetween. When assembled in the housing 32, flange 62, which is in the inner wall 54 of the first portion (shown in
In a preferred embodiment, the deflection wall flanges 94a, 94b, 114a, 114b, 63a, 63b are sized to frictionally engage the respective grooves 45a and 45b and slot 61. And grooves 49a and 49b are sized to frictionally engage grooves 27a and 27b respectively. The elastic material of the deflection wall 46 allows for a frictional and substantially snug fit. It is appreciated that a single flange-and-groove arrangement can be used for providing engagement of the deflection wall and the inner wall 54 of the housing 32.
The spin attachment 10 is formed so that a portion of the first end 14 of the barrel 12 extends within a portion 53 of the deflection wall 46 when the deflection wall 46 is assembled in the housing, as shown in
As shown in detail in
As shown in
A user can selectively adjust the spin attachment 10 of the present invention to impart varying degrees, orientations and/or directions of spin upon a projectile 26 that will cause the projectile 26 to spin as it moves through the passage 42 of the spin attachment 10. Imparting spin to a projectile 26 may cause the projectile 26 to travel with a curved trajectory (26a and 26b in
As shown in
As shown in
As shown in
The rail engaging portions 57a, 57b of the slider 50 engage and slide along the first portion 111a and second portion 111b of the rail 48, as shown in
A portion of the housing 32 preferably including a portion of the inner wall 54, is formed as an inwardly sloping or sloped wall 29, as shown in
As shown in
As shown in
As described above and seen in the Figures, the slider 50 acts to allow a user to selectively vary the distance between a portion of the deflection wall, and the central longitudinal axis. Although described herein as a slider, it is appreciated that other adjusters may be used, such as a button, a dial, a switch, or other adjusters adapted to allow selectively varying the distance between the a portion of the deflection wall, and the central longitudinal axis. For example,
As shown in detail in
As a user slides the slider 50 along the channel 30 toward the second position adjacent the first end 38 of the spin attachment 10 housing 32, shown in
As shown in
The spin attachment 10 of the present invention not only allows the user, to adjust the degree of spin imparted on a projectile 26, but further allows a user to select and adjust the direction of spin relative to the position of the gun 18. As shown in FIGS. 2, 7-9 and 14 and described above, the spin attachment 10 housing 32 is adapted to be secured to the first end 14 of the barrel 12 by a flanges 90a on the first portion 34 of the housing and flanges 90b on the second 36 portion of the housing 32. These flanges 90a and 90b fit within an annular groove 91 channeled in the outer surface of the first end 14 of the barrel 12. This flange-in-groove connection allows the spin attachment 10 to rotate 360 degrees in either a clockwise or counter-clockwise (as measured from the perspective of a user firing a gun), about the central longitudinal axis 44, while the spin attachment is rotatably attached to the barrel. A user need not remove the spin attachment from the barrel for selected spin adjustment. The o-rings 64a, 64b may be positioned about the first end 14 of the barrel 12 to assist in holding the spin attachment 10 at a position selected by a user while the gun 18 is being fired.
When the spin attachment 10 is positioned with the deflection wall 46 at the topmost position, the spin imparted on a projectile 26 will be a lifting “backspin”, as shown schematically by the arrow in
Additional means may be provided to lock the spin attachment 10 in a particular rotated position, such as a screw or a spring-loaded clamp, once the user selects the desired spin position. Because the spin attachment 10 is freely rotatable relative to the barrel 12, a user can rotate it, and thereby adjust the direction of spin during automatic, semi-automatic or rapid fire, allowing a user to continuously adjust the direction of the shot until it reaches his target.
Rotating the spin attachment 10 allows the user to selectively position the deflection wall 46 relative to the gun 18. This allows the user to select the curved trajectory of a projectile in a user-selected path. For example, when the spin attachment 10 is rotated right, approximately about a quarter turn or ninety degrees counterclockwise from the shooter's perspective, (if zero degrees is considered the slider at the top), as shown in
The present invention has many advantages. First, the ability to rotate the spin attachment three hundred sixty (360) degrees in either rotational direction (clockwise or counter-clockwise when the gun is ready for firing in a firing position) provides a user with many projectile trajectory spin choices. The ability to increase the amount of spin on the projectile provides the user with many options with regard to the degree a projectile curves after being fired through the spin attachment. Thus, the present invention provides the user with a number of projectile spin options. Second, the spin attachment is easily attachable and detachable, and universally adaptable to any compressed gas gun barrel. Third, the spin attachment is easy to use, even for beginners.
A method of imparting a spin upon a projectile fired from a compressed gas gun is provided. A compressed gas gun is provided, including a barrel. A barrel spin attachment device according to the present invention is rotatably attached to the muzzle end of the barrel. A user positions the adjuster to a desired setting, thereby moving a portion of the deflection wall to a desired position relative to the passage. The spin attachment may also be rotated clockwise or counterclockwise relative to the barrel of the gun by a user, to provide a user-selected direction of spin. If the deflection wall is set in its top position, this will increase the distance a projectile travels when exiting the spin attachment. The gun is aimed at a target by a user. The gun is fired by the user by pulling the trigger. The release of compressed gas from a source of compressed gas will fire a projectile through the barrel and through the passage of the spin attachment, where the projectile will contact a portion of the deflection wall. The projectile will travel with the user-selected spin.
As shown in
As shown in
As shown in
Preferably, the housing 32 is rotatably secured to the firing end 14 of the barrel 12 as it is in the above-described, manually-operated embodiments. Namely, the second end 40 of the housing 32 is rotatably attached to the first end 14 of the barrel 12 by a flanges 90a and 90b extending adjacent the second end 40 of the housing 32, that extends into and engages a groove 91 formed in the first end 14 of a gun barrel 12. The flanges 90a and 90b fit within the groove 91 in a substantially firm or frictional engagement, whereby the housing 32 can be rotated relative to the barrel 12, yet will remain in the user-selected rotated position when the gun 18 to which the housing 32 is attached (via the barrel 12) is fired.
In one preferred embodiment, shown in
As also shown in
The remotely-operated spin attachment 10′ operates as follows. To rotate the housing 32 the user 24 moves the toggle switch 204 (
Similarly, moving the toggle switch 204 left sends a signal 248 to the controller 206. The controller 206 sends a signal 250 to the first actuator 208 to simultaneously rotate the housing 32 left; i.e., counterclockwise. The first motor/activator 218 rotates the shaft 220 and pinion 222 clockwise to rotate the housing 32 counterclockwise. A user 24 can rotate the housing 32, 360 degrees in either direction due to the controller/circuit 206 and power source 212 configuration. This provides a user 24 with an almost infinite number of spin directions to choose from. If 360 degree rotation is not desired the housing teeth 226 will not completely surround the second end 40 of the housing 32. One skilled in the art would also understand that the housing teeth 226 may be located on the inside of the housing 32 or adjacent another portion of the housing 32.
To move the deflection wall toward or away from the central longitudinal axis 44, the user 24 moves the toggle switch 204 (
As in the manually-operated embodiments, the deflection wall 46 is “hinged” at the second end 40 of the spin attachment 10′ by being sandwiched between the first end 14 of the barrel 12 extending into the housing 32, and the inner wall 54 of the first portion 34 of the housing 32, which is shown in
If the user 24 moves the toggle switch 204 upward, the toggle switch 204 sends a signal to the controller 206. The controller 206 signals 256 the second actuator 210 to move the deflection wall away from the central longitudinal axis 44, shown in
In an alternate embodiment (not shown), the first activator 208 and the second activator 210 are coupled to the controller 206 wirelessly. This embodiment operates as does the ones described above except that the first activator 208 and the second activator 210 comprise receivers (not shown) for receiving signals from transmitters (not shown) located on the switches or the controller 206.
Preferably, to operate the electronically-operated embodiments 10′ during play, a user 24 identifies his target 20 (
One of skill in the art would understand that many different types of control switches can be used. For example, as shown in
In another embodiment (not shown), the control switches are four-button switches arranged in a cross pattern with the buttons being depressable to perform the left of right rotation of the housing 32 and the deflection of the deflection wall.
Having thus described in detail a preferred selection of embodiments of the present invention, it is to be appreciated and will be apparent to those skilled in the art that many physical changes could be made in the apparatus without altering the inventive concepts and principles embodied therein. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore to be embraced therein.
Claims
1. A device for controlling spin on a projectile exiting a muzzle end of a barrel of a compressed gas gun, the device comprising:
- a housing comprised of an open first end, a second end, and an inner wall, the inner wall defining a through passage that has a central longitudinal axis, the second end rotatably attachable to the muzzle end of the barrel of a compressed gas gun;
- a deflection wall positioned within the housing, the deflection wall having a stationary end adjacent the muzzle end and a moveable portion between the stationary end and the first open end of the housing;
- a deflection wall adjuster mounted in the housing between the housing and the deflection wall, the deflection wall adjuster moveable to move the moveable portion of the deflection wall; and
- an electronically-controlled actuator coupled to the housing.
2. The device of claim 1 wherein the electronically-controlled actuator is in communication with a controller, the controller is in communication with a switch and the controller is coupled to a power source.
3. The device of claim 2 wherein the controller comprises a microprocessor.
4. The device of claim 2 wherein the switch is a toggle switch.
5. The device of claim 2 further comprising a second electronically-controlled actuator coupled to the deflection wall adjuster.
6. The device of claim 5 wherein the second electronically-controlled actuator is in communication with the controller.
7. The device of claim 1 wherein the electronically-controlled actuator is a solenoid, magnet, DC motor, single-phase AC motor, three-phase AC motor, stepper motor, linear motor, servo motor or pneumatic motor.
8. The device of claim 1 wherein the electronically-controlled actuator comprises:
- an activator;
- a rotatable shaft coupled to the activator; and
- a gear coupled to the shaft.
9. The device of claim 8 wherein the housing further comprises housing teeth engagable with the gear.
10. A device for controlling spin on a projectile exiting a muzzle end of a barrel of a compressed gas gun, the device comprising:
- a housing comprised of an open first end, a second end, and an inner wall, the inner wall defining a through passage that has a central longitudinal axis, the second end rotatably attachable to the muzzle end of the barrel of a compressed gas gun;
- a deflection wall positioned within the housing, the deflection wall having a stationary end adjacent the muzzle end and a moveable portion between the stationary end and the first open end of the housing;
- a deflection wall adjuster mounted in the housing between the housing and the deflection wall, the deflection wall adjuster moveable to move the moveable portion of the deflection wall; and
- an electronically-controlled actuator coupled to the deflection wall adjuster.
11. The device of claim 10 wherein the electronically-controlled actuator is in communication with a controller, the controller is in communication with a switch and the controller is coupled to a power source.
12. The device of claim 11 wherein the controller comprises a microprocessor.
13. The device of claim 11 wherein the switch is a toggle switch.
14. The device of claim 11 further comprising a second electronically-controlled actuator coupled to the housing.
15. The device of claim 14 wherein the second electronically-controlled actuator is in communication with the controller.
16. The device of claim 10 wherein the electronically-controlled actuator is a solenoid, magnet, DC motor, single-phase AC motor, three-phase AC motor, stepper motor, linear motor, servo motor or pneumatic motor.
17. The device of claim 10 wherein the electronically-controlled actuator comprises:
- an activator; and
- a threaded, rotatable drive shaft coupled to the activator, the housing, and the deflection wall adjuster.
18. The device of claim 17 wherein the deflection wall adjuster has a projection with a threaded aperture therethrough.
19. The device of claim 18 wherein the threaded, rotatable drive shaft extends through the aperture.
20. The device of claim 10 wherein the housing further comprises an inwardly sloping wall adjacent a slot in the housing, wherein the electronically-controlled actuator moves the deflection wall adjuster between a first position and a second position, the deflection wall adjuster is inclined toward the central longitudinal axis by the sloped wall.
21. The device of claim 20 further comprising a rail positioned between the deflection wall and the inner wall of the housing, the rail engaging a portion of the inner wall of the housing, and wherein the deflection wall adjuster further comprises at least one rail extension positioned to run along the rail as the electronically-controlled actuator moves the deflection wall adjuster from the first position to the second position.
22. The barrel attachment of claim 10 wherein the deflection wall further comprises a frictional surface adjacent the passage.
23. A device for controlling spin on a projectile exiting a muzzle end of a barrel of a compressed gas gun, the device comprising:
- a housing comprised of an open first end, a second end, and an inner wall, the inner wall defining a through passage that has a central longitudinal axis, the second end rotatably attachable to the muzzle end of the barrel of a compressed gas gun;
- a deflection wall positioned within the housing, the deflection wall having a stationary end adjacent the muzzle end and a moveable portion between the stationary end and the first open end of the housing;
- a deflection wall adjuster mounted in the housing between the housing and the deflection wall, the deflection wall adjuster moveable to move the moveable portion of the deflection wall;
- a first electronically-controlled actuator coupled to the housing; and
- a second electronically-controlled actuator coupled to the deflection wall adjuster.
24. The device of claim 23 wherein the first and second electronically-controlled actuators are in communication with a controller, the controller is in communication with a switch, the controller is coupled to a power source.
25. The device of claim 24 wherein the controller comprises a microprocessor.
26. The device of claim 24 wherein the switch is a toggle switch.
27. The device of claim 24 wherein there are first and second switches, the first switch is in communication with the first electronically-controlled actuator through the controller, and the second switch is in communication with the second electronically-controlled actuator through the controller.
28. The device of claim 27 wherein the first switch is a rotatable knob and the second switch is a rotatable knob.
29. A compressed gas gun and barrel attachment device, comprising:
- a compressed gas gun comprising: a gun body having a first end and a second end, the gun body comprised of a breech, a grip and a trigger adjacent the grip; a barrel comprised of a first muzzle end and a second end and a bore therethrough, the second end coupled to the first end of the gun body, the bore in communication with the breech; and a source of compressed gas coupled to the gun body, the source of compressed gas in communication with the breech;
- a barrel attachment device rotatably attached to the first muzzle end of the barrel, the barrel attachment device comprising: a housing having a first end and a second end, the second end rotatably attached to the first muzzle end of the barrel, the housing having a passage therethrough, having a central longitudinal axis aligned with the bore of the barrel, the passage in communication with the bore of the barrel; a deflection wall disposed at least partially within the housing adjacent the passage, the deflection wall comprised of a first end positioned adjacent the first end of the housing and a second end positioned adjacent the second end of the housing, the deflection wall further comprising a frictional surface adjacent the passage, the deflection wall further comprising a moveable portion and a secured portion hingedly engaging the housing; and a deflection wall adjuster positioned between the deflection wall and the housing for adjusting the position of the moveable portion of the deflection wall relative to the central longitudinal axis;
- a controller within the gun body, the controller in communication with a first electronically-controlled actuator and a second electronically-controlled actuator;
- a power source within the gun body, the power source coupled to the controller;
- a switch fixed to the gun body, the switch in communication with the controller;
- the first electronically-controlled actuator coupled to the housing; and
- the second electronically-controlled actuator coupled to the deflection wall adjuster.
30. A method of imparting a spin upon a projectile using a compressed gas gun and barrel attachment device, the method comprising:
- providing a compressed gas gun and barrel attachment device, the device comprising:
- a compressed gas gun comprising: a gun body having a first end and a second end, the gun body comprised of a breech, a grip and a trigger adjacent the grip; a barrel comprised of a first muzzle end and a second end and a bore therethrough, the second end coupled to the first end of the gun body, the bore in communication with the breech; and a source of compressed gas coupled to the gun body, the source of compressed gas in communication with the breech; and
- a barrel attachment device rotatably attached to the first muzzle end of the barrel, the barrel attachment device comprising: a housing having a first end and a second end, the second end rotatably attached to the first muzzle end of the barrel, the housing having a passage therethrough, having a central longitudinal axis aligned with the bore of the barrel, the passage in communication with the bore of the barrel; a deflection wall disposed at least partially within the housing adjacent the passage, the deflection wall comprised of a first end positioned adjacent the first end of the housing and a second end positioned adjacent the second end of the housing, the deflection wall further comprising a frictional surface adjacent the passage, the deflection wall further comprising a moveable portion and a secured portion hingedly engaging the housing; a deflection wall adjuster positioned between the deflection wall and the housing for adjusting the position of the moveable portion of the deflection wall relative to the central longitudinal axis; a controller within the gun body, the controller in communication with a first electronically-controlled actuator and a second electronically-controlled actuator; a power source within the gun body, the power source coupled to the controller; a switch fixed to the gun body, the switch in communication with the controller; the first electronically-controlled actuator coupled to the housing; the second electronically-controlled actuator coupled to the deflection wall adjuster;
- aiming the barrel attachment device;
- activating the trigger; activating the switch to rotate the housing about the muzzle end of the barrel to a user-selected position; and
- activating the switch to move the deflection wall adjuster to a user-selected position.
Type: Application
Filed: Sep 15, 2006
Publication Date: Jun 7, 2007
Applicant: National Paintball Supply, Inc. (Medford, NJ)
Inventors: John Campo (Sewell, NJ), Kevin Mott (Sewell, NJ)
Application Number: 11/522,086
International Classification: F41B 11/00 (20060101);