This invention relates to pneumatic marking guns including paintball guns.
The earliest paintball marking guns were used for marking in forestry and cattle ranching. Paintball marking guns are now more associated with a variety of targeting and simulated battle games (e.g. capture the flag). These guns launch a ball of paint with a frangible shell that is designed to hold the ball shape until striking an object after firing. Upon striking the object, the ball is set to break open leaving a paint spot.
Paintball guns typically employ a firing system powered by compressed gas such as air. Compressed gas is supplied from a supply tank which is mounted to or carried with the gun. The gun systems are equipped with pressure regulators which receive gas from the tank at a relatively high pressure and deliver gas at a reduced, more consistent pressure for propelling the paintball.
Prior art paintball guns usually consist of a bolt, a spring loaded hammer and a cocking handle. These conventional paintball guns have disadvantages since the hammer creates a kick back which causes the gun to go off target during rapid firing. Alternate types of paintball guns are more pneumatic in design. One pneumatic design is presented in U.S. Pat. No. 6,349,717 where a pneumatic piston is used to strike the valve instead of a hammer. The disadvantage of this type of design is that pneumatic piston still causes blow-back and an open pneumatic circuit directly to the gas source during firing operation. In addition, lubricant problems or temperature changes at the cylinder affect paintball velocity.
Other prior art pneumatic paintball guns include complicated firing mechanisms. Drawbacks of these more complicated types of guns include difficulty to operate and maintain, frequent breakdowns and high manufacturing cost. A common problem with all prior art of paintball guns is paintball breakage in the gun as the paintball drops from the paintball container (hopper) to the breach chamber and then is loaded to the barrel. In most cases, the paintball drops to the breach chamber by the force of gravity and during firing operation is being loaded to the barrel. In cases when rapid firing is perform, the paintball may be pushed to the barrel before the drop to the breach area is completed. Consequently, the paintball may be chopped. A paintball break in the gun not only causes a missed shot but also has a very negative effect on subsequent operations of the paintball gun because paint fouls the operating parts of the gun.
One other drawback of existing paintball gun designs is hopper mounting, normally on the top of the gun and positioned straight up or at a fixed angle with respect to the gun body. Paintball players usually position themselves behind the bunker to avoid being hit. According to the paintball game rules when a player's body or any part of his or her equipment including the hopper is hit, the player is out. In this situation a hopper sticking out of a bunker is not desirable. It would also be desirable to provide an improved paintball gun which has a hopper mounting angle adjustment.
In recent years electrically operated paintball guns have gained popularity due to a soft trigger pull where an electric switch is provided to activate paintball gun operations. Since paintball guns are portable devices, usage of low energy consumption electric actuators would be beneficial. Several electric paintball guns are equipped with a solenoid to actuate paintball gun operations. The drawback of using a solenoid is low energy output in the beginning of the stroke and low overall efficiency.
It therefore would be desirable to provide an improved pneumatic paintball gun with simple, efficient and robust firing mechanism with very few moving parts. It would be further beneficial for paintball players to have a gun design which has adjustable bolt speed to prevent paintball breakage.
Paintball capsules from different manufactures have different rigidities. A paintball gun which has an adjustable gas storage chamber capacity to adjust the ratio of firing pressure to gas volume in accordance with the type of paintball would be beneficial.
Finally it is a further object of the invention to provide a novel paintball gun that employs a low energy electro pneumatic flow valve and low energy use of linear actuators to provide more gun shots from single electric battery.
Paintball guns are available with either manual or power-assisted trigger mechanisms to control the release of compressed gas.
The present invention pertains to a field of pneumatic lunching devices, more specifically pneumatic markers called paintball gun. In particular, the present invention relates to a gun system including a special firing mechanism, an adjustable bolt speed, an adjustable angle of the hopper holder and an adjustable volume gas storage chamber. Another aspect of this invention is to provide different options for a low energy consumption electropneumatic flow valve and electric actuators for electrically operated paintball guns.
A preferred paintball gun system according to the present invention comprises a bolt defining a propellant passageway and a gun body defining the following elements: a receptacle for receiving the bolt, a firing charge storage chamber adjacent to but separate from the bolt receptacle, a gas inlet port, a first passageway between the storage chamber and the receptacle, a second fixed passageway between the gas inlet and the receptacle. The first passageway communicates with a first flow opening into the receptacle and the second passageway communicates with a second flow opening into the receptacle. The bolt is axially movable between a chargeup position and a firing position. In the chargeup position, the bolt and the body together define a confined flow circuit between the first opening and the storage chamber. In the firing position, the bolt and the body together define a confined flow circuit between the storage chamber and the discharge inlet.
A paintball gun according to the present invention overcomes the problems of the prior compressed gas paintball guns by providing a fully pneumatic gun design with simplified firing mechanism and eliminating other deficiencies related to the prior art paintball guns. Firing mechanism is being activated by simple two way flow valve with short stroke which enables the player to do rapid firing. A gas storage chamber provides efficiency to the paintball gun by storing exact amount of compressed gas to fire a paintball, and it is located in the lower portion of the gun body. The main components of the firing mechanism include gun body, hollow bolt, a gas storage chamber and several passageways configured to communicate with each other. The trigger and the two way valve activates the firing mechanism. When bolt is in retracted position gas from gas source enters and fills gas storage chamber and also enters the two way valve. When the trigger is pulled, the gas from the two way valve is directed to the piston located on the bolt and causes the bolt to move forward. While the bolt is moving forward, first access from compress gas source to gas storage chamber is closed and than when paintball is loaded into the barrel gas storage chamber is being opened to fire the paintball. When trigger is released, a gas in front of the bolt piston is being vented to the atmosphere through the two way valve and the spring located in rear portion of the bolt retracts the bolt to ready to fire position, first closing communication between gas storage chamber and an opening to fire the paintball and than permit communication between gas storage chamber and compress gas source.
One of the objects of this invention is to provide variable bolt velocity achieved by adjustment of the spring tension which retracts the bolt and will result in different bolt speeds while retracting and subsequently when moving forward. This process enables fine tuning of the bolt loading velocity and therefore the prevention of the paintball breakage.
The two way valve spool can be pneumatically biased or spring biased to reset itself to it's original position and subsequently retracting the trigger to ready to fire position. The present invention provides gas storage chamber which can be fixed or adjustable in capacity/volume. The gas storage volume adjustment is done by moving the wall of the chamber to the inside or the outside of the gas storage chamber. Another object of this invention is adjustable hopper holder with a radial slot for continuous or incremental adjustment with several bores placed on the bolt circle. Another option of adjustment is provided by utilizing (a plunger) ball-spring preloaded mechanism which results in quick angular hopper adjustment during the paintball game.
According to another aspect of the invention, there is provided low energy use piezo valve, voice coil actuator and piezo actuator with lever mechanism to obtain high energy efficiency electrically operated paintball gun.
In the accompanying drawings that form part of the specification like numerals are employed to designate like parts throughout the same.
While this invention is susceptible to embodiment in many different forms, this specification and the accompanying drawings disclose only preferred forms as examples of the invention. The invention is not intended to be limited to the embodiments so described, however. The scope of the invention is identified in the appended claims.
Referring to
Generally the present invention relates to a compressed gas paintball gun 10 which incorporates several components shown in
The gas from the gas source is being provided through adapter 15 and then enters bore 50. Plug 32 prevents gas from escaping into the atmosphere. Chamber 23 is being filled with compressed gas through communication of bores 50, 51, circumferential recess 60 and bore 55. At the same time cylinder 70 is being charged with compressed gas through the bore 52 located in the gun body 11 and bore 53 placed in flow valve body 38. Cylinder 70 is being sealed by o-rings 33 and 34. When the trigger is pulled a sequence of events starts in the flow valve. First by moving spool 39
Scenario presented in
Turning now to
Next, viewing
Referring now to
Considering
The purpose of the
When the trigger (not shown) is released compressed gas enters gas storage chamber 2000 through the inlet bore 2010 and passageways 2012, 2014, 2016 and 2018. Passageways 2016 and 2018 are sealed by o-rings 2020, 2022 and 2024, 2026 respectfully. Gas storage chamber 2000 is sealed by o-rings 2024, 2026 and 2028. Passageway 2030 and 2032 are connected to the flow valve (not shown). Referring now to
Informal claims:
A compress gas powered paintball gun operable to shot paintballs, said gun comprising:
a gun body
a compressed gas storage chamber
a bolt for loading paintball to a launching chamber, wherein said bolt is configured to permit compressed gas flow to fill gas storage chamber while sealing the gas storage chamber from venting to internal bore of the bolt in ready to fire position and release compress gas from gas storage chamber to internal bore of the bolt while sealing gas storage chamber from said gas source in firing position.
a valve adapted for moving the bolt to firing position; and
a spring for biasing the bolt to ready to fire position.
A firing mechanism comprising:
a gun body;
a compressed gas storage chamber;
a bolt for loading paintball to a launching chamber, whereas said bolt is configured to permit compressed gas flow to fill gas storage chamber while sealing the gas storage chamber from venting to the internal bore of the bolt in ready to fire position and release compressed gas from gas storage chamber to internal bore of the bolt while sealing gas storage chamber from said gas source in firing position.
A mechanism for operating firing valve assembly comprising:
a body;
a valve adapted for moving the bolt to firing position by applying compressed gas on the bolt piston; and
a spring for biasing the bolt to ready to fire position;
An electrically operable pneumatic paintball gun comprising:
a gun body;
a firing valve mechanism configured to selectively supply compressed gas to a launching chamber;
a piezovalve configured to operate firing mechanism;
an electric circuit for controlling said piezovalve;
a trigger-operable electric switch to initiate launching sequence of the paintball gun; and
a battery;
An electrically operable pneumatic paintball gun comprising:
a gun body;
a firing mechanism configured to selectively supply compressed gas to a launching chamber
a flow valve configured to operate firing mechanism;
a linear actuator coupled to said flow valve;
an electric circuit for controlling said linear actuator;
a trigger operable electric switch to initiate launching sequence of the paintball gun; and
a battery.
A compressed gas powered paintball gun comprising:
a gun body;
a firing mechanism configured to selectively supply compress gas to a lunching chamber;
a flow valve configured to operate firing mechanism;
a spring tension adjustment mechanism for adjusting bolt speed.
N1. An electronically operable pneumatic paintball gun comprising:
N2. An electrically operable pneumatic paintball gun comprising:
N3. An electrically operable pneumatic paintball gun according to claim N2 wherein the linear actuator is a voice coil actuator.
N4. An electrically operable pneumatic paintball gun according to claim N2 wherein the linear actuator is a piezo actuator.
Numerous variations and modifications of the embodiments described above can be effected without departing from the spirit and scope of the novel features of the invention. It is to be understood that no limitation with respect to the specific apparatus illustrated herein is intended or should be inferred. It is, of course, intended to cover by the appended claims, all such modifications as fall within the scope of the claims.
This application claims priority from U.S. Provisional Application for Patent No. 60/670,372 filed on 12 Apr. 2005.
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Number | Date | Country | |
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60670372 | Apr 2005 | US |