1. Fields of the Invention
The present invention relates to a paintball drive system, and more particularly, to a paintball drive system of a paintball loader.
2. Descriptions of Related Art
The paintball guns use a paintball loader to feed the paintballs so as to shoot continuously. The paintballs are ejected from the paintball gun by high pressurized air which is provided by a high-pressure bottle. Generally, the paintball loader is attached on the top of the paintball gun and the paintballs are fed into the paintball gun one by one by a drive system in the paintball loader. The drive system comprises a disk with an inclined ramp and at least one plate is located on the ramp. The disk is driven by a motor and the paintballs are shifted by the plate toward the passage, and the paintballs enter into the gun one by one. The paintballs have a flexible and thin coat and paint is filled in the paintball. However, the paintballs may not be precisely moved as expected and/or the coat is broken during movement of the paintballs. Paintball jam becomes a major problem for the players.
The present invention intends to provide a paintball drive system of a paintball loader, and the paintball drive system of the present invention eliminate the shortcomings mentioned above.
The present invention relates to a paintball drive system of a paintball loader. The paintball drive system is located in the paintball loader which has a top casing and a bottom casing. The paintball drive system comprises a board having a hole, and an inclined ramp extends from the periphery of the hole. A power unit is connected to one end of the board. A base is located at the underside of the board and located corresponding to the hole. A room is formed in the top of the base and a cone extends from the top of the base. An outlet is defined through a center of the cone and a paintball way is formed along the periphery of the cone and communicates with the room. The cone has an entrance which communicates with the outlet and the paintball way. A cover is engaged with the outlet. A gear ring is located in the room of the base and has teeth defined in the outside thereof. The power unit is engaged with the teeth to rotate the gear ring. A friction ring is located at the inside of the gear ring so as to push the paintballs toward the entrance. A driving ring is connected to the gear ring and rotated by the gear ring so as to move the paintballs.
Preferably, the board has two wings respectively extending from two sides thereof, and each of the two wings has an engaging edge which is connected to the top and bottom casings.
Preferably, the friction ring is made by multiple duraometer silicone and has multiple protrusions extending at equal distance from the inner periphery thereof so as to move the paintballs.
Preferably, the power unit has a power source and at least one transmission member. The power source has an output shaft which rotates the at least one transmission member which is engaged with the teeth of the gear ring so as to rotate the gear ring.
Preferably, a first sensor is located beneath the inclined ramp and detects the paintball in the paintball loader.
Preferably, the power unit has a first gear and a second gear whose teeth are less than those of the first gear. The output shaft of the power source is engaged with the first gear which is engaged with the second gear. The second gear is engaged with the teeth of the gear ring.
Preferably, a second sensor is located at the outlet of the base and detects the paintballs to pass the outlet.
Preferably, the first and second sensors are electrically connected to each other.
Preferably, a non-touch sensor is connected to a root portion of the paintball loader. The non-touch sensor activates or shuts off electric power by way of non-physical touch.
Preferably, the first and second sensors are infrared sensors.
The primary object of the present invention is to provide a paintball drive system of a paintball loader, wherein the paintballs are smoothly fed into the paintball gun and are not broken during feeding.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
The paintball drive system “A” of the present invention comprises a board 1 having a hole 11 defined therethrough, and an inclined ramp 12 extending from the periphery of the hole 11. A power unit 13 is connected to one end of the board 1.
A base 2 is located at the underside of the board 1 and located corresponding to the hole 11. A room 21 is formed in the top of the base 2. A cone 22 extends from the top of the base 2 and an outlet 23 is defined through the center of the cone 22. A paintball way 24 is formed along the periphery of the cone 22 and communicates with the room 21. The cone 22 has an entrance 25 which communicates with the outlet 23 and the paintball way 24. A cover 26 is engaged with the outlet 23. Multiple connection members 27 extending from the base 2 so as to be connected with the board 1 by locking members 271. Each of the connection members 27 has a roller 272 connected thereto. These rollers 272 are located beneath the board 1.
A gear ring 3 is located in the room 21 of the base 2 and has teeth 31 defined in the outside thereof. The power unit 13 is engaged with the teeth 31 to rotate the gear ring 3. An annular groove 32 is defined in the outside of the gear ring 3 and located above the teeth 31, the rollers 272 move along the annular groove 32.
A friction ring 4 is located at the inside of the gear ring 3 so as to push the paintballs toward the entrance 25 by multiple protrusions 41 extending at equal distance from the inner periphery thereof.
A driving ring 5 is connected to the gear ring 3 and rotated by the gear ring 3 in the hole 11 to move the paintballs.
As shown in
When in use, the paintballs are located in the room between the board 1 and the top casing 10, the paintballs enter the hole 11 and located on the paintball way 24. The paintballs in the base 2 contact a non-action surface (the paintball way 24) and move by friction along a guiding face which is the friction ring 4 and the driving ring 5. The paintballs are loaded in the room between the cone 22, the friction ring 4 and the paintball way 24. The paintballs are detected by the first sensor 15 which is electrically connected with a control circuit 18. The control circuit 18 activates the power source 131 of the power unit 13, the output shaft 132 of the power source 131 drives at least one transmission member 133 which is engaged with the teeth 31 of the gear ring 3 so that the gear ring 3 is rotated. The motor of the control circuit 18 controls the revolutions per minute (R.P.M.) of the power source. In one preferable embodiment, the power unit 13 has a first gear 133a and a second gear 133b whose teeth are less than those of the first gear 133a. The output shaft 132 of the power source 131 is engaged with the first gear 133a which is engaged with the second gear 133b, the second gear 133b is engaged with the teeth 31 of the gear ring 3. By this arrangement, a gear reduction unit is formed.
When the gear ring 3 rotates, the friction ring 4 and the driving ring 5 are rotated. The paintballs are driven to roll along the paintball way 24 by the friction provided by the friction ring 4 and the driving ring 5.
When the gear ring 3 rotates clockwise and the paintballs roll along the paintball way 24. Each of the paintballs rolls along a fixed surface which is the paintball way 24, and a movable surface which is the friction ring 4 or the driving ring 5. The paintballs are moved toward the cone 22 and reach the cover 26 by the friction ring 4. The cover 26 guides the paintballs to the outlet 23 so that the paintballs enter into the path 201. When the paintballs reach the cover 26 and the entrance 25, because the entrance 25 and the paintball way 24 are two different faces joint together, so that the paintballs are temporally stopped at the conjunction area between the entrance 25 and the paintball way 24, and then forced pushed by the following paintballs and drop into the path 201.
As shown in
As shown in
By the cooperation of the first and second sensors 15, 16, the player is acknowledged the status of the paintball loader, and when there is a jam, the second sensor 16 sends a signal to the control circuit 18 to rotate the power source reversely, when the jam is cleared, the paintballs are fed normally again.
Besides, there is a non-touch sensor 17 connected to the root portion of the paintball loader, the non-touch sensor 17 is a non-physical-touch sensor which needs not to be physically touched by an object to activate or shut off the electric power. The “ON” and “OFF” operation of the paintball loader simply inserting a finger into an area where a power icon is marked, the finger swings or move to activate or shut off the power via the non-touch sensor 17.
The friction ring 4 is made by multiple duraometer silicone and provides friction to let the paintballs to roll on the paintball way 24 of the base 2, so that the paintballs are not broken.
The paintballs smoothly and quickly roll on the paintball way 24 of the base 2 so that the paintball gun can shoot continuously without jam.
The connection between the first and second casings 10, 20 and the wings are easy and quick without use of any tool.
The player is signaled via led the status of the paintball loader by the cooperation of the first and second sensors 15, 16. The player can reload efficiently.
The present invention provides a non-physical-touch sensor on the surface of the root portion of the paintball loader so that the player can activate or shut off the power quickly.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Name | Date | Kind |
---|---|---|---|
5816232 | Bell | Oct 1998 | A |
7854220 | Neumaster | Dec 2010 | B1 |
8047190 | Kaakkola | Nov 2011 | B2 |
20090178659 | Spicer | Jul 2009 | A1 |
20100126485 | Neumaster | May 2010 | A1 |
Number | Date | Country | |
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20150338185 A1 | Nov 2015 | US |