Compressed air gun trigger structure
11614302 ยท 2023-03-28
Inventors
Cpc classification
F41B11/646
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A compressed air gun trigger structure, the air refill lock cooperates with the trigger assembly to facility full auto and semi auto shooting. That is while the pressure of the eject chamber is lower than the set scale, the air refill lock will lock the piston even though the trigger is triggered by user. So the compressed air gun cannot be fired when the pressure is low. When the eject chamber is fully refilled and the pressure will push the air refill lock to releases the trigger and while user triggered the trigger, the compressed air gun is fired. That is the semi-auto mode. If the user keep holding the trigger, air refill lock will automatically trigger the piston for firing when the eject chamber is fully refilled. That is the full-auto mode.
Claims
1. A compressed air gun trigger structure comprising a compressed air chamber which is connected with a compressed air supplier; the compressed air chamber comprises a pressure lock chamber and an eject chamber, wherein compressed air fills both the pressure lock chamber and the eject chamber; a pressure lock is set in a first position and slides along the pressure lock chamber to a second position; the pressure lock blocks an air channel between the pressure lock chamber and the eject chamber when a gun comprising the compressed air gun trigger is fired, wherein when a pressure force of the pressure lock chamber is less than a pressure force of the eject chamber plus a force of a pressure lock return spring, the pressure lock then springs back and opens the air channel; a piston is positioned between the eject chamber and the air outlet which is aligned with a bullet; wherein the piston is configured to slide along the eject chamber in response to a pressure force in a first direction and is locked by a trigger assembly to block the air outlet while not firing in a second direction; the trigger assembly comprising at least a trigger and an air refill lock; the trigger provides a locking protrusion which is connected with the piston while not firing; the air refill lock holds the trigger to lock the piston while pressure in the compressed air chamber is lower than a predetermined threshold, and releases the trigger while the pressure is higher than the predetermined threshold.
2. The compressed air gun trigger structure of claim 1, wherein the trigger comprises a trigger part and a piston lock which are separately pivotally installed to the compressed air chamber; the locking protrusion is set on the piston lock; the trigger part holds the piston lock in lock status by stopping a rotation of the piston lock, and releases the piston lock in unlock status to let the piston lock rotate; the air refill lock holds rotation of the piston lock while a pressure in the compressed air chamber is lower than the predetermined threshold and releases the piston lock while the pressure is higher than the predetermined threshold.
3. The compressed air gun trigger structure of claim 2, wherein the trigger part provides a notching I for holding an end of the piston lock; while the trigger is activated to fire the gun, the trigger rotates and the end of the piston lock is detached from the notching I, then unlocks the piston for firing the bullet.
4. The compressed air gun trigger structure of claim 2, wherein the air refill lock is composed of a slider and a refill lock body, the slider is installed in a refill control chamber; the refill lock body connects with the slider; and a spring is provided for holding the slider while the pressure is lower than the elastic force of the spring; the refill lock body provides a notching II for holding an end of the piston lock; while the pressure is higher than elastic force of the spring, the slider moves and the refill lock body rotates to let the end of the piston lock detach from the notching II.
5. The compressed air gun trigger structure of claim 1, wherein the compressed air supplier connects to an air path which includes an air valve for pressure controlling, an outlet of the air path connects to the pressure lock chamber.
6. The compressed air gun trigger structure of claim 1, wherein the air refill chamber which connects the pressure lock chamber and the eject chamber to let the pressure balance after firing and the pressure lock springs back to open the air channel between the pressure lock chamber and the eject chamber.
7. The compressed air gun trigger structure of claim 6, wherein when semi-auto mode is set, and the trigger rotates, a movable holder holds a fire mode lock body rotating together with the trigger to unlock the piston for firing the bullet; the piston provides a pole for pushing the movable holder to disengage the fire mode lock body from the trigger.
8. The compressed air gun trigger structure of claim 1, wherein the trigger assembly comprising a fire mode lock, the fire mode lock includes a fire mode lock body which is pivotally installed together with the trigger, a movable holder which is pivotally installed on the trigger and a mode switch which provides a knob to lock/hold/release the fire mode lock body for a safe/auto/semi-auto mode; the fire mode lock body provides a notching III for holding an end of the piston lock.
9. The compressed air gun trigger structure of claim 7, wherein a pump provides a pump lock which includes a handle for stopping movement of the pump.
10. The compressed air gun trigger structure of claim 1, comprising a bullet wheel which is driven by compressed air; the bullet wheel holds bullets along a rim of the wheel, and a wheel push device; the wheel push device includes a pump which is connected with the compressed air chamber, a pawl which is driven by the pump and is reset by a return spring, a ratchet which is set around the wheel and cooperates with the pawl; when a pressure of the pump raises over an elastics force of the return spring, the pump drives the pawl and pushes the wheel to rotate for a next bullet; when the pressure of the pump drops down to lower than the elastics force of the return spring, the return spring push the pawl back.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Below are explanations of the invention combining with drawings.
(2) FIG.1 is the front view of the present invention.
(3)
(4)
(5)
(6)
(7) FIG.4 is the B-B section view of
(8) FIG.5 is the first perspective view of the trigger assembly.
(9) FIG.6 is the second perspective view of the trigger assembly.
(10) FIG.7 is the perspective view of the mode switch together with the fire mode lock body.
(11) FIG.8 is the first perspective view of the bullet wheel.
(12) FIG.9 is the second perspective view of the bullet wheel.
(13) In the figures: 1. the pressure lock chamber, 2. the eject chamber, 3. pressure lock, 4.the air channel, 5.the air outlet, 6.the bullet, 7. the piston, 8.the locking protrude, 9.the trigger part, 10.the piston lock, 11.the notching I, 12. the trigger, 13.the slider, 14.the refill lock body, 15.the refill control chamber, 16. the notching II, 17.the piston return spring, 18. the fire mode lock body, 19. the notching III, 20. the mode switch, 21. the knob, 22. the pole, 23. the wheel, 24. the pump, 25. the pawl, 26. the ratchet, 27. the handle, 28. the notching IV, 29. the bullet wheel push device return spring, 30. the air path, 31. the air valve. 32. the pressure lock return spring, 33. the air refill chamber, 34. the compressed air supplier, 35. the spring for holding the slider, 36. the movable holder.
DESCRIPTION OF THE EMBODIMENTS
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(18) The trigger 12 can be separated into a trigger part 9 and a piston lock 10. The trigger part 9 connects to the piston lock 10. The trigger part 9 and the piston lock 10 are pivotally installed. A locking protrude 8 is set on the piston lock 10, a notching IV 28 is set next to the piston 7, and the locking protrude 8 matches with the notching IV 28 to lock or unlock the piston 7. The trigger part 9 also provides a notching I 11 for holding the end of the piston lock 10. Generally, the notching I 11 of the trigger part 9 holds the end of the piston lock 10 in lock status by stopping the rotation. While the user pulls the trigger part 9, the trigger part 9 rotates, drives the piston lock 10 to rotate and the locking protrude 8 detaches from the notching IV 28, so the piston 7 can opens the air outlet 5 to fire bullet 6.
(19) Refer to
(20) According to the usage, user can adjust the muzzle energy as requirement. The higher pressure of compressed air in the eject chamber 2 the higher muzzle energy. For convenient of pressure adjustment to user, the compressed air supplier 34 connects to an air path 30 which includes an air valve 31 for pressure adjustment. The outlet of the air path 30 connects to the pressure lock chamber 1.
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(24) If user doesn't want bullet wheel works automatically, a pump lock is provided. It includes a handle 27 for stopping the movement of the pump 24.