Patent classifications
F41B11/73
Compressed gas personal protection device
A hand carryable, non-lethal personal protection device using compressed gas for operation. In some embodiments the device uses the compressed gas to create and shoot a vortex of air at the target. In other embodiments, the compressed gas can be used to shoot a burst of atomized water at the attacker. In still other embodiments the device uses the compressed gas to shoot ammunition, such as a ring airfoil, O-ring, bean bag, or other non-lethal blunt trauma munitions at the target. In still further embodiments, the device is modular in its construction, and can be used to apply the compressed gas to various different attachments.
Mechanical paintball gun
A mechanical paintball gun has a first operation chamber and a second operation chamber for receiving a firing piston and a hammer, respectively. The firing piston and the hammer move simultaneously between a first position status and a second position status. The second operation chamber is connected with a high-pressure gas source and has a normally closed valve pack. When the hammer moves to the second position status, the valve pack becomes open and allows high-pressure gas to pass therethrough to enter the first operation chamber for shooting paintballs. The second operation chamber contains therein a slidable member and a resistance device. The slidable member is linked with the hammer, and the slidable member pushes the resistance device. With the resistance device slowing down the slidable member to delay a cycle time of a shooting process, paintballs can be fed in time to enable continuous and stable shooting.
Mechanical paintball gun
A mechanical paintball gun has a first operation chamber and a second operation chamber for receiving a firing piston and a hammer, respectively. The firing piston and the hammer move simultaneously between a first position status and a second position status. The second operation chamber is connected with a high-pressure gas source and has a normally closed valve pack. When the hammer moves to the second position status, the valve pack becomes open and allows high-pressure gas to pass therethrough to enter the first operation chamber for shooting paintballs. The second operation chamber contains therein a slidable member and a resistance device. The slidable member is linked with the hammer, and the slidable member pushes the resistance device. With the resistance device slowing down the slidable member to delay a cycle time of a shooting process, paintballs can be fed in time to enable continuous and stable shooting.
Electromagnetic valve activated firing mechanism of airsoft gun
A firing mechanism of an airsoft gun includes, in combination a gun body; a sleeve in a rear portion of the gun body; a discharge tube in a front end of the sleeve; a retaining ring on the front end of the sleeve; at least one assembly, each including an air canister and a piercing member facing the air canister; a locking member put on a rear end of the sleeve and configured to rotate to cause the piercing member to pierce the air canister of each of the at least one assembly; and an electromagnetic valve configured to activate by pulling a trigger. In response to opening the electromagnetic valve, pressurized air from the assembly drives a pellet out of the gun body.
Electromagnetic valve activated firing mechanism of airsoft gun
A firing mechanism of an airsoft gun includes, in combination a gun body; a sleeve in a rear portion of the gun body; a discharge tube in a front end of the sleeve; a retaining ring on the front end of the sleeve; at least one assembly, each including an air canister and a piercing member facing the air canister; a locking member put on a rear end of the sleeve and configured to rotate to cause the piercing member to pierce the air canister of each of the at least one assembly; and an electromagnetic valve configured to activate by pulling a trigger. In response to opening the electromagnetic valve, pressurized air from the assembly drives a pellet out of the gun body.
Projectile launching apparatus
A projectile launching apparatus for launching a projectile, such as a pellet, a BB bullet, an arrow, a dart and a paintball includes a linear motion converter driven by a motor, a piston coupled to the linear motion converter and reciprocally movable within a cylinder, a spring assembly and a breech assembly. The piston compresses a gas within the cylinder, after which the compressed gas expands in the barrel of the breech assembly for launching the projectile. Breech assembly includes a breech, a bolt, and bolt barrel cam, which rotate with the gas spring to allow a projectile to enter the breech and then to seal the bolt in the breech before the spring assembly releases its stored energy to launch the projectile.
ASSEMBLED ELECTRIC TOY GUN
Provided is an assembled electric toy gun that allows a spring in the toy gun to be changed quickly for altering projectile propulsion strength. The assembled electric toy gun has a positioning structure whereby a motor-end terminal and a battery-end terminal are mounted in place and disconnected quickly and efficiently. The assembled electric toy gun has a cylinder piston unit and a barrel which are aligned with different axial directions to thereby prevent the cylinder piston unit in operation from undergoing energy loss which might otherwise compromise the propulsion speed of a projectile. The assembled electric toy gun has a firing mode system which turns off a power converter whenever a trigger switch is in a suspension state, thereby saving the power of the toy gun. The assembled electric toy gun has a micro control unit connected to the power converter, thereby effectively reducing power loss.
ASSEMBLED ELECTRIC TOY GUN
Provided is an assembled electric toy gun that allows a spring in the toy gun to be changed quickly for altering projectile propulsion strength. The assembled electric toy gun has a positioning structure whereby a motor-end terminal and a battery-end terminal are mounted in place and disconnected quickly and efficiently. The assembled electric toy gun has a cylinder piston unit and a barrel which are aligned with different axial directions to thereby prevent the cylinder piston unit in operation from undergoing energy loss which might otherwise compromise the propulsion speed of a projectile. The assembled electric toy gun has a firing mode system which turns off a power converter whenever a trigger switch is in a suspension state, thereby saving the power of the toy gun. The assembled electric toy gun has a micro control unit connected to the power converter, thereby effectively reducing power loss.
TOY LAUNCH APPARATUS WITH MULTIPLE IMPROVISED PROJECTILE CHECKING AND LOCKING METHODS
An improvised projectile checking housing assembly having latch button and first and second sidewalls with first and second catch apertures opening as a catch latch recess of elongated structure using an improvised projectile checking spring opening to receive a locking key structure based upon the projectile receiving opening to the improvised projectile checking housing assembly. Alternate rearward translating lock gauge at the backside of a dart drum uses a follower and engaging cam surfaces locking and unlocking a pathway for correct dart alignment. Alternate motorized, non-motorized and pneumatic structures are disclosed with apparatus launch operations moving between checking and non-checking positions.
NON-LETHAL GAS OPERATED GUN
A pre-pack assembly for use with an air gun and for use with a magazine that is removably insertable into the air gun, the pre-pack assembly includes a pre-pack that contains a gas canister, wherein inserting the pre-pack into the chamber of the magazine fluidly connects the gas canister with the magazine.