(1) Field of the Invention
The present invention relates to a paint ball gun and more particularly, to a pressure adjustable paint ball gun.
(2) Description of the Prior Art
A conventional paint ball gun uses pressurized air to shoot paint balls and the mechanism for introducing pressurized air into the barrel is shown in
It is noted that when the rod “B” is pushed by the strike pin “A”, the movement of the rod “B” has to overcome the resistance force caused by the pressurized air applied to the end member “G” and the spring force from the spring “F”. Therefore, the electric motor that drives the strike pin “A” has to consume more electric power during each shooting. Besides, a significant reaction force applies to the paint ball gun when the strike pin “A” hits the rod “B” if the strike pin “A” is driven by higher electric power, the reaction force affects the precision of shooting. The spring “F” may be fatigue within short period of time. U.S. Patent Published No. 2006/0011185 discloses an improved structure to reduce the area of the end member so that the force applied to the rod can be reduced. Nevertheless, no pressure adjustable device is provided to adjust the shooting speed of the paint balls according to needs.
The present invention intends to provide a paint ball gun wherein the force that the strike pin moves the rod can be adjusted so as to change the period of time which allows the pressurized air to enter into the barrel.
The present invention relates to a paint ball gun that comprises a barrel having a bore defined therein which communicates with a hopper unit. A handle is connected to the barrel and includes a tubular portion which is located beside the barrel. The tubular portion includes a chamber defined therein and a strike pin is movably located in the chamber of the tubular portion. A valve is located in the chamber of the tubular portion and includes a radial hole which communicates with a communication hole defined through a wall of the barrel. An inlet is defined through a wall of the tubular portion and communicates with a source of pressurized air. A rod movably extends through the valve and a gap is defined between the rod and an inner periphery of the valve. The rod has a first end protruding out from an end of the valve and facing the strike pin, a second end of the rod protrudes out from the other end of the valve and is connected with an end member on a first end of an activation member. A second end of the activation member movably extends into a tubular member engaged with the chamber. The end member removably seals an opening of the valve. A spring is adjustably received in the tubular member and the second end of the activation member is biased by the spring.
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 handle 2 is connected with a tubular portion 10 on a top portion thereof and the tubular portion 10 is located beside the barrel 20 in parallel. The tubular portion 10 includes a chamber 11 defined therein and a strike pin 50 is movably located in the chamber 11 of the tubular portion 10. The strike pin 50 is operated by the trigger 3. A valve 30 is securely located in the chamber 11 of the tubular portion 10 and includes a radial hole 31 which communicates with a communication hole 4 defined through a wall of the barrel 20. An inlet 12 is defined through a wall of the tubular portion 10 and in communication with a source of pressurized air which generally is a pressurized air bottle.
A rod 40 movably extends through the valve 30 and a gap is defined between the rod 40 and an inner periphery of the valve 40. The rod 40 has a first end protruding out from an end of the valve 30 and facing the strike pin 50. A second end of the rod 40 protrudes out from the other end of the valve 30 and is connected with an end member 61 on a first end of an activation member 60. A second end of the activation member 60 movably extends into a tubular member 70 engaged with the chamber 11. The end member 61 removably seals an opening of the valve 30. A spring 72 is adjustably received in the tubular member 70.
The tubular member 70 includes a passage 71 defined longitudinally therethrough and a stop member 73 is movably engaged with the passage 71. The spring 72 is biased between the second end of the activation member 60 and the stop member 73. Inner threads 74 are defined in an inner periphery of the passage 71 of the tubular member 70 and the stop member 73 is threadedly engaged with the inner threads 74 so that the compression of the spring 72 can be adjusted by moving the stop member 73. A release hole 75 is defined through a wall of the tubular member 70 and communicates with the passage 71.
As shown in
As shown in
The compression of the spring 72 can be adjusted by moving the stop member 73 as shown in
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.