SHORT STROKE PUMP-ACTION SHOTGUN

20230037366 ยท 2023-02-09

    Inventors

    Cpc classification

    International classification

    Abstract

    The present invention relates to a short stroke (operation distance) pump-action shotgun comprising a mechanism that reduces consequently the reloading path and reloading time approximately by 65 percent. The speed repeating faster is achieved, while firing with a pump-action shotgun and hunting rifle and furthermore, a better precision is ensured. The inventive shotgun may be a pump-action shotgun or pump-action hunting shotgun.

    Claims

    1. Short stroke (operation distance) pump-action shotgun with a reduced reloading path and consequently reduced reloading time, characterized in that it comprises a gearwheel system (6) that allows for reducing the forearm movement and path in pump-action shotguns and consequently also reducing the reloading time and that is fastened on the receiver (5) by a retainer pin (7) operating on the long tensile slide (24) short tensile slide (25) and which operates co-centrally and comprises two gearwheels in different diameters.

    2. Pump-action shotgun according to claim 1, characterized in that the pump-action shotgun is a pump-action shotgun with a rifled barrel or with a not-rifled barrel.

    3. Pump-action shotgun according to claim 1, characterized in that the pump-action shotgun is a rifle with a rifled barrel or with a not-rifled barrel.

    4. Pump-action shotgun according to claim 1, characterized in that the gearwheel system (6) is in a single piece or comprised of two or more components.

    5. Pump-action shotgun according to claim 1, characterized in that the gearwheel system (6) comprises a gearwheel (6a) with greater diameter and a gearwheel (6b) with smaller diameter.

    6. Pump-action shotgun according to claim 4, characterized in that the diameter of the gearwheel (6b) with smaller diameter is in the range of 5-15 mm.

    7. Pump-action shotgun according to claim 5, characterized in that the diameter of the gearwheel (6b) with smaller diameter is of 9.5 mm.

    8. Pump-action shotgun according to claim 4, characterized in that the diameter of the gearwheel (6a) with greater diameter is in the range of 5-35 mm.

    9. Pump-action shotgun according to claim 7, characterized in that the diameter of the gearwheel (6a) with greater diameter is of 22 mm.

    10. Pump-action shotgun according to claim 1, characterized in that the total length of the gearwheel system (6) is in the range of 5-50 mm.

    11. Pump-action shotgun according to claim 9, characterized in that the total length of the gearwheel system (6) is of 29.4 mm.

    12. Pump-action shotgun according to claim 1, characterized in that the long tensile slide (24) and the short tensile slide (25) is in a single piece or comprised of two or more components.

    13. Pump-action shotgun according to claim 1, characterized in that the long tensile slide (24) and short tensile slide (25) is manufactured from steel.

    14. Pump-action shotgun according to claim 1, characterized in that the length of the tension rod on the long tensile slide (24) is in the range of 20-150 mm.

    15. Pump-action shotgun according to claim 1, characterized in that the length of the tension rod on the short tensile slide (25) is in the range of 20-150 mm.

    Description

    DESCRIPTION OF FIGURES

    [0014] FIG. 1. a perspective view of the pump-action shotgun.

    [0015] FIG. 2. an exploded view of the pump-action shotgun.

    [0016] FIG. 3. a view of the pump-action shotgun during the pumping process.

    [0017] FIG. 4. a view of the pump-action shotgun illustrating the operation principle of the gearwheel on the tensile slides.

    [0018] FIG. 5. a right-side view of the pump-action shotgun.

    [0019] FIG. 6. a left-side view of the pump-action shotgun.

    [0020] FIG. 7. different views of the gearwheel of the pump-action shotgun

    [0021] FIG. 8. a view of the pump-action shotgun illustrating the short tensile slide and long tensile slide.

    DESCRIPTION OF THE COMPONENTS OF THE INVENTION

    [0022] Components in Figures are numbered so as to provide a better understanding of the inventive pump-action shotgun and equivalent of each number is given below:

    TABLE-US-00001 1 Barrel 2 Bead front sight 3 Bolt release 4 Barrel cover 5 Body 6 Gearwheel system 6a Gearwheel with greater diameter 6b Gearwheel with smaller diameter 7 Retainer pin 8 Mechanism 9 Needle 10 Needle spring 11 Needle pin 12 Body lever 13 Body pin 14 Body pin 15 Bolt head 16 Extractor 17 Pushing spring 18 Pusher 19 Pushing pin 20 Extractor pin 21 Extractor spring 22 Barrel extension 23 Barrel extension pin 24 Long tensile slide 25 Short tensile slide 26 Action pipe 27 Action rod pin 28 Bolt arm pin 29 Nut screw 30 Nut 31 Nut pin 32 Forearm 33 Bolt arm 34 Absorber 35 Forearm O-Ring 36 Magazine 37 Stock setscrew 38 Stock 39 Safety 40 Safety spring capsule 41 Safety spring 42 Safety pin 43 Trigger guard 44 Trigger guard 45 Trigger guard pin spring 46 Magazine button 47 Magazine button spring 48 Magazine button pin 49 Locking arm 50 Locking arm spring 51 Trigger 52 Trigger pin 53 Trigger spring 54 Interior trigger 55 Interior trigger spring 56 Cock 57 Cock pin 58 Cock spring 59 Cock spring capsule

    DETAILED DESCRIPTION OF THE INVENTION

    [0023] The present invention relates to a short stroke (operation 20 distance) pump-action shotgun comprising a mechanism that reduces the reloading path and consequently the reloading time by means of the movement of the gearwheel system (6) operating co-centrally and comprising gearwheel with two different diameters, short stroke (operation distance) pump-action 25 shotgun, characterized in that it comprises a gearwheel system (6) that allows for reducing the forearm movement and path in pump-action shotguns and consequently also reducing the reloading time and that is fastened on the receiver (5) by a retainer pin (7) operating on the long tensile slide (24) short tensile slide (25) and which operates co-centrally and comprises two gearwheels in different diameters. Said gearwheel system (6) comprises two different gearwheels with two different diameters on the long tensile slide (24) and short tensile slide (25). FIG. 4 shows where said gearwheel system (6) is positioned and how the gearwheel system (6) comprising the gearwheel (6b) with smaller diameter and the gearwheel (6a) with greater diameter operates on the gearwheel system (6).

    [0024] Said pump-action shotgun (hunting shotgun or rifle) may be suitable for any calibers in the firearm market. Said shotgun may be a shotgun with a rifled barrel or without a not-rifled barrel.

    [0025] Pump-action shotgun comprises a gearwheel system (6) between the short tensile slide (25) fastened to the bolt arm (33) and the long tensile slide (24) moving the bolt (8). On the gearwheel system (6), it comprises two wheels with different diameter, namely the gearwheel (6b) with smaller diameter and the gearwheel (6a) with greater diameter. The gearwheel (6b) with smaller diameter operates on the short tensile slide (25) fastened by means of the bolt arm (33) on the forearm (32). The gearwheel (6a) with greater diameter is connected with the long tensile slide (24) fastened to the mechanism (8) and moving the same.

    [0026] The operation mechanism of the inventive pump-action shotgun comprises the following steps: [0027] i. moving the forearm (32) backwards by shooter for the pumping action, which causes the bolt arm (33) mounted to the forearm (32) and fastened to the short tensile slide (25) to move backwards approximately by 50 mm, [0028] ii. rotating the gearwheel (6b) on the short tensile slide (25) and transmitting the movement to the gearwheel (6b) with greater diameter operating on the long tensile slide (24), when the bolt arm (33) starts to move backwards by pulling the forearm (32) backwards, [0029] iii. locking the bolt by means of moving the mechanism (8) fastened on the long tensile slide (24) backwards approximately by 120 mm and extracting the spent ammunition by this movement, [0030] iv. unlocking the shotgun and making the same ready for chambering the new ammunition, [0031] v. moving again the forearm (32) forwards approximately by 50 mm, causing the mechanism (8) to move forwards by 120 mm and also to chamber the new ammunition from the magazine (36), [0032] vi. locking the shotgun and making the same ready to be fired.

    [0033] FIGS. 5 and 6 shows the pumping action from left to the right side in the step (i).

    [0034] As a result of the operation mechanism of the inventive pump-action shotgun, the mechanism (8) fastened on the long tensile slide (24) moves shorter than the standard pumping action and this ensures shooter to endeavor less approximately by 65 percent compared to those current pump-action shotguns. In the present invention, moving the forearm (32) only by 50 mm is sufficient to take completely the mechanism (8) backwards approximately by 120 mm (up to the backward movement) to extract the ammunition.

    [0035] In the present invention, the pump comprises a short tensile slide (25) and long tensile slide (24) operating simultaneously together with the dual diameter of the gearwheel system (6). By means of the gearwheel system (6) mechanism, the movement only by 50 mm is sufficient to complete the pumping operation instead of the current longer pumping action. The same movements, however in the opposite direction, function for feeding/chambering a new ammunition or shotgun shell and lock the bolt (8) in the locking position with the barrel (1).

    [0036] In an embodiment of the present invention, the gearwheel system (6) is manufactured from steel, however it can be manufactured from a different type of material. The gearwheel system (6) may be rigid or may be comprised of a single or multiple components.

    [0037] In an embodiment of the present invention, diameter of 6b is in the range of 5-15 mm, preferably 9.5 mm and diameter of 6a is in the range of 5-35 mm, preferably 22 m.

    [0038] In an embodiment of the present invention, the total length of the gearwheel system (6) is in the range of 5-50 mm, preferably 29.4 mm.

    [0039] In an embodiment of the present invention, the length of the tension rods between the longer slide (24) and shorter slide (25) is in the range of 20-150 mm.

    [0040] In an embodiment of the present invention, the long tensile slide (24) and short tensile slide (25) are manufactured from steel. Both of the slides may be rigid and may be comprised of two or more components.

    [0041] The total length of the short tensile slide (25) is of 230 mm and the total length of the long tensile slide (24) is of 297 mm.