This invention relates to ammunition feeding mechanisms and more specifically to mechanisms for feeding uniformly-sized spherical projectiles such as paintballs into a gun.
The firing rate of most recent versions of paintball markers (also called paintball gun) sometimes exceeds the rate at which projectiles can be fed into the breech intake port. Accordingly, when feeding paintballs from a hopper or magazine, it is critical not to allow any delay or gap in the chain of projectiles moving toward the intake port of the marker. When the mechanism that propels the paintball toward the shoot or tube leading to the gun intake is started with each pull of the trigger then allowed to stop after a short period, the queue of paintballs may be disrupted when the propelling mechanism stops for lack of feeding pressure behind the last ball in the queue. Delays and gaps can thus be created, eventually causing dry firing of the gun.
The present invention results from attempts to avoid any interruption in the steady feeding of projectiles.
The principal and secondary objects of this invention are to assure a steady flow of projectiles into the intake port of a paintball marker, and avoiding dry firing due to gaps in the chain or row of projectiles being dispensed from a hopper or magazine.
This and other valuable objects are achieved by regulating the feeding of the paintballs to the gun and by maintaining an uninterrupted queue or row of projectiles in line toward the gun intake port According to the invention, a paddlewheel consisting of at least one propelling arm projecting radially from a spinning body in the middle of a circular well located in the lowest region of the projectile magazine or loader is always pushing against the row of paintballs. An exit port in the wall of the well is connected to the gun ammunition intake by a chute or duct. The spinning body is momentarily driven by an electrical motor, and includes a resiliently variable linkage in the form of a spiral spring that remains under partial tension when the motor is de-energized, thus, applying enough pressure through the arm against the row of projectiles being fed to the gun to prevent gaps in the row of the projectiles progressing through the duct.
Referring now to the drawing, there is shown in
As paintballs 2 held in the magazine 3 drop into a well 4 in a lower region of the magazine, they are contacted by a spinning body in the form of a spool 5 and directed toward the inlet 6 of a duct 7 leading to the ammunition intake port 8 of a paintball marker or gun. A series of vanes or paddles 9 projecting radially and outwardly from the peripheral, outer wall 10 of the spool act as impelling arms for the paintballs 2. An electrical motor 11 positioned in a housing 12 immediately under the magazine well 4 can be energized and started, then stopped by means of a toggle switch 13. Alternately, as commonly found in certain paintball markers, the start of the motor can be initialized by the trigger mechanism and automatically stopped after a short period of time, or upon release of the trigger. The axle 14 of the motor engages the spool, and causes it to spin about a substantially vertical axis X-X′.
As more specifically illustrated in
The sleeve element 15 is rotationally journaled into a tubular housing 19 in the center top of the spool 5, and forms a central spool coaxial with and within the latter. A pair of stretchable coil springs 20, 21 provide the linkage between the sleeve element 15 and the spool. Each spring is first anchored at one end to a stud 22, 23 associated with the inner wall surface of the largest spool 5, and at the opposite end to a nib 24, 25 projecting outwardly and radially from the peripheral wall of the sleeve element 15. The anchoring of each spring is positioned 180 degrees from the anchoring of the other at their respective ends.
In the alternate embodiment 26 of the mechanism illustrated in
A molded plastic version 33 of the spiral spring of
A conical hub or cover 36 indicated by a dotted line on
While the preferred embodiments of the invention have been described, modifications can be made and other embodiments may be devised without departing from the spirit of the invention and the scope of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
5954042 | Harvey | Sep 1999 | A |
6213110 | Christopher et al. | Apr 2001 | B1 |
6327953 | Andresen | Dec 2001 | B1 |
6502567 | Christopher et al. | Jan 2003 | B1 |
6701907 | Christopher et al. | Mar 2004 | B2 |
6889680 | Christopher et al. | May 2005 | B2 |
Number | Date | Country | |
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20060249131 A1 | Nov 2006 | US |