A magazine, a magazine mounting reversing mechanism and a continuous shooting toy gun

By designing a radial magazine compartment and feed assembly within the magazine, and combining this with a reversing mechanism, the problems of limited magazine capacity and loose springs were solved, enabling automatic reloading and continuous firing of bullets, thus improving the magazine's efficiency and continuity.

CN115574656BActive Publication Date: 2026-01-27孙振川
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Patent Information

Application Number
CN202211098618.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-08
Publication Date
2026-01-27
Estimated Expiration
2042-09-08

AI Technical Summary

Technical Problem

Existing magazines have a limited capacity for bullets, and the loose spring tension makes loading difficult. Traditional magazine designs are also ill-suited for continuous firing.

Method used

Design a disc-shaped magazine with a radial magazine compartment along its circumference, equipped with a feeding assembly and a reversing mechanism, and achieve automatic magazine replenishment through a compression spring and a bullet placement plate, and achieve automatic magazine reversal and continuous firing through a drive unit and a reversing unit.

Benefits of technology

It increases the magazine's bullet capacity, solves the problem of loose spring tension, and enables automatic bullet replenishment and continuous firing. The structure is simple and easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a magazine, a mounting reversing mechanism of the magazine and a continuous shooting toy gun. The magazine comprises a cartridge tray. A plurality of radial cartridge cases capable of placing a plurality of bullets are arranged on the cartridge tray in a circumferential direction. A bullet opening is arranged at an outermost circumference of the cartridge case. A feeding assembly for pushing the bullets out of the cartridge case in the radial direction of the cartridge tray is arranged in the cartridge case. The device adopts a circular magazine. A plurality of radial cartridge cases are arranged in the circumferential direction of the magazine. A plurality of bullets can be stacked in a single cartridge case. The number of bullets contained in the magazine is greatly increased. After shooting once, the bullets can be automatically supplied and reversed. The continuous shooting function of the toy gun during shooting can be realized. The device has good entertainment.
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Description

Technical Field

[0001] This invention relates to the field of toy gun technology, and more specifically, to a magazine, a magazine mounting and reversing mechanism, and a continuously firing toy gun. Background Technology

[0002] Currently, there are many types of commercially available toy guns that can fire bullets. A magazine is a box on a toy gun used to store bullets; it is usually a detachable small box. The bullets are stored in the magazine before being chambered. The main function of the magazine is to hold the bullets and, during firing, to promptly deliver and position them in the chamber. Different types of toy guns use different types of magazines to hold toy bullets; commonly, there are curved magazines and straight magazines.

[0003] Among magazines of the same length, curved magazines have a larger capacity than straight magazines. However, curved magazines also have a significant drawback. Due to the curvature, the spring force inside the magazine is also very strong, making it difficult to push down when loading the last few bullets. If the magazine is always fully loaded, this will cause the spring force to loosen, which will affect the upward movement of the bullets.

[0004] Publication No. CN216049426U discloses a magazine device using a disc-shaped magazine. The device includes a base (21) with a receiving compartment (211), a bullet disc (22) movably disposed within the receiving compartment (211), a limiting strip (23) disposed on the base (21), and a first torsion member (24) rotatably disposed on the base (21). The bullet disc (22) has at least one soft bullet storage compartment (221) for receiving toy soft bullets. When the first torsion member (24) rotates relative to the base (21) to the first position (24a), the limiting strip (23) is held by the first torsion member (24) and confines the bullet disc (22) within the receiving position (211); when the first torsion member (24) rotates relative to the base (21) to the second position (24b), the limiting strip (23) can rotate relative to the base (21), thereby exposing the bullet disc (22) within the receiving position (211). This device designs the magazine as a disc shape, and the bullets are placed by installing bullets in the circumferential direction of the disc-shaped magazine. Although this device can hold more bullets than curved magazines and straight magazines, the magazine itself can only hold one layer of circumferential positions, so there is still a problem that the magazine can hold a relatively small number of bullets. Summary of the Invention

[0005] The purpose of this invention is to solve the problem of the limited number of bullets that a magazine can hold, as mentioned in the background art, and to propose a magazine, a magazine mounting and reversing mechanism, and a continuously firing toy gun.

[0006] The technical solution adopted by this invention to solve its technical problem is:

[0007] A magazine includes a loading tray with several radial chambers for holding multiple bullets along its circumference. The outermost circumference of each chamber has a bullet inlet, and the chamber contains a feeding assembly for pushing the bullets radially out of the loading tray.

[0008] Furthermore, the feeding assembly includes a compression spring, one end of which is connected to the magazine, and the other end is arranged along the radial direction of the magazine.

[0009] Furthermore, the feeding assembly also includes a bullet placement plate, with one end of a compression spring connected to the magazine and the other end connected to the bullet placement plate.

[0010] Furthermore, the outer side of the magazine is provided with a sliding opening, and the two ends of the bullet placement plate extend to the outside of the sliding opening and can slide radially along the magazine to push the bullet upward. This design facilitates loading bullets, and loading can be achieved by pressing down the bullet placement plate.

[0011] Furthermore, the compression spring is a rectangular spring to increase the contact area between its two ends and the bottom of the magazine and the bottom of the bullet placement plate, so that the bullet placement plate moves only along the extension and retraction direction of the compression spring. Also, since the bullet is long, a cylindrical spring would have poor stability.

[0012] Furthermore, the magazine bottom is provided with a lower boss, and the bullet placement plate bottom is provided with an upper boss. One end of the compression spring is clamped on the lower boss, and the other end is clamped on the upper boss. This design facilitates the installation and removal of the compression spring and improves the performance.

[0013] Furthermore, the loading tray is detachable; in this design, the loading tray is divided into two parts, which not only facilitates the production and processing of the loading tray, but also improves the installation efficiency of the feeding components.

[0014] A magazine loading and reversing mechanism includes a drive part, a rotating part, a blocking part, and a fixing part mounted on the gun body. A loading tray is mounted on the rotating part. An openable blocking part limits the loading tray and is connected to the fixing part. The loading tray is provided with a reversing part that can automatically switch to the next magazine. Each time the drive part completes a drive, the reversing part reverses the loading tray to achieve automatic switching to the next magazine.

[0015] Furthermore, the driving part includes a pull plate and a reversing block disposed on the pull plate; the rotating part includes a rotating roller, a locking block disposed on the rotating roller, and a plug shaft connected to the end of the rotating roller; the blocking part includes a blocking plate, which has a fixing hole and a connecting hole; the fixing part includes a fixing block, which is connected to the fixing hole; the loading plate has a through hole and a positioning hole communicating with the through hole, the diameter of the through hole is smaller than the diameter of the positioning hole, and a positioning part is provided at the through hole, and a reversing part is provided in the positioning hole; the positioning part includes a limiting block disposed at the through hole, the locking block abuts against the limiting block, and the plug shaft passes through the through hole and is inserted into the connecting hole; the reversing part includes a reversing part that moves axially along the positioning hole. The device has front and rear dividing teeth. A front reversing channel is formed between two adjacent front dividing teeth, which is the same as the number of magazines. A rear reversing channel is formed between two adjacent rear dividing teeth, which is the same as the number of magazines. The front and rear reversing channels are staggered and the front reversing channels are set along the inner circumference of the magazine. Both the front and rear dividing teeth are provided with inclined surfaces. The two inclined surfaces are opened in opposite directions. The reversing block can move freely along the front and rear reversing channels. Each time the pull plate moves back and forth, the reversing block moves from the previous rear reversing channel to the next front reversing channel and then reverses to the next rear reversing channel.

[0016] Furthermore, the driving part includes a pull plate; the rotating part includes a rotating roller, a locking block disposed on the rotating roller, and an insert shaft connected to the end of the rotating roller; the blocking part includes a blocking plate, which has a fixing hole and a receiving hole; the fixing part includes a fixing block, which is connected to the fixing hole; the loading plate has a through hole and a positioning hole communicating with the through hole, the diameter of the through hole is smaller than the diameter of the positioning hole, and a positioning part is provided at the through hole; the positioning part includes a limiting block disposed at the through hole, the locking block abuts against the limiting block, and the insert shaft passes through the through hole and is inserted into the receiving hole; the reversing part includes a drive motor, which is connected to the rotating roller. Each time the pull plate is pulled, the drive motor drives the rotating roller to reverse the loading plate to achieve automatic switching of the next cartridge slot.

[0017] A continuously firing toy gun includes a gun body, any of the above-mentioned magazines, and any of the magazine mounting and reversing mechanisms. A pull plate and a push rod are slidably fitted inside the gun body, and a connecting rod is rotatably connected to them. Each of the pull plate and the connecting rod is connected to a reciprocating spring mounted on the gun body, which can return to its original position after movement. A trigger is provided on the pull plate, and the push rod engages with one of the cartridge ports. Both the pull plate and the push rod have movable openings, and both ends of the connecting rod pass through these openings. Moving the pull plate backward allows the connecting rod to drive the push rod forward. The gun body includes a rotating roller, a blocking plate, and a fixing block. The rotating roller is rotatably connected to the gun body, and the blocking plate is rotatably connected to the gun body and has a firing mechanism mounted on it.

[0018] Furthermore, the launching mechanism includes at least two pairs of power motors, power wheels connected to the power motors, and a power supply assembly. A launching port is provided on the blocking plate. The power motors are mounted on the blocking plate and the power wheels are located inside the launching port. A launching channel for launching bullets is formed between the two sets of power wheels, and the launching channel is directly opposite one of the bullet ports.

[0019] Furthermore, the power wheel has a ring of toothed ridges on its body. This design increases the friction between the power wheel and the bullet during rotation, preventing the bullet from slipping or having poor ejection force when it is ejected.

[0020] Furthermore, the power supply assembly includes a switch, a battery compartment, and a USB charging interface. The switch, battery compartment, and USB charging interface are all mounted on the gun body, and the switch is located at the rear end of the pull plate so that the pull plate moves backward to contact the switch and ultimately complete the rotation of the drive motor.

[0021] Compared with the prior art, the beneficial effects of the present invention are:

[0022] 1. The first problem solved by this invention is the limited number of bullets that traditional magazines can hold. The disc-shaped magazine has several radial chambers along its circumference, and multiple bullets can be stacked in a single chamber. The bullets are automatically replenished by the feeding assembly. Furthermore, because the disc-shaped magazine has a short radial distance, even when the feeding assembly is under the pressure of bullets for a long time, the loosening problem caused by the spring force is minimized. Due to the short loading distance, the bullets are easy to press down and place. Moreover, the bullet holding space can be increased by increasing the outer diameter of the magazine. The entire magazine structure is simple and ingeniously designed.

[0023] 2. The second problem solved by the present invention is the automatic magazine reversal. After the magazine is installed, the reversing part reverses the magazine after each drive to achieve automatic switching to the next magazine opening. During the reversal process, the feeding component automatically completes the reloading work, pushing the bullet radially along the loading plate to the magazine opening. The reversal process is smooth and simple, with good continuity.

[0024] 3. The third problem solved by this invention is the firing of bullets inside the magazine after it is installed. This design enables continuous firing of bullets. By pulling the trigger, the push rod moves forward and pushes the bullet to the firing mechanism. The bullet is fired by the action of two sets of power wheels in the firing mechanism. As the push rod retracts, the magazine changes direction and rotates the next bullet nozzle to the front of the push rod. When the trigger is pulled again, the push rod pushes the bullet in front of it out again. Continuous firing of bullets can be achieved by continuously pulling the trigger. Attached Figure Description

[0025] Figure 1 A three-dimensional view of the loading disc;

[0026] Figure 2 This is the front view of the loading tray;

[0027] Figure 3 This is a schematic diagram of the drive unit installation.

[0028] Figure 4 This is a schematic diagram of the installation of the rotating part;

[0029] Figure 5 This is a schematic diagram of the push rod installation;

[0030] Figure 6 A three-dimensional view of the gun body;

[0031] The components include: 1. Loading tray; 11. Mounting plate; 111. Groove; 12. Sealing plate; 121. Protrusion; 13. Magazine compartment; 131. Magazine opening; 132. Slide opening; 1321. Lower boss; 14. Compression spring; 15. Bullet placement plate; 151. Upper boss; 16. Positioning hole; 17. Through hole; 2. Reversing part; 21. Front dividing tooth; 22. Rear dividing tooth; 23. Front reversing channel; 24. Rear reversing channel; 25. Inclined surface; 3. Positioning part; 31. Limiting block; 4. Driving part; 41. 411. Pull plate; 42. Movable port; 43. Reversing block; 44. Trigger; 5. Rotating part; 51. Rotating roller; 52. Locking block; 53. Insert shaft; 6. Blocking part; 61. Blocking plate; 611. Connecting hole; 612. Fixing hole; 613. Firing port; 7. Fixing part; 71. Fixing block; 8. Gun body; 81. Push rod; 82. Connecting rod; 9. Firing mechanism; 91. Power motor; 92. Power wheel; 921. Toothed ridge; 93. Switch; 94. Battery compartment; 95. USB charging interface. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. The present invention will be further described with reference to the accompanying drawings and embodiments:

[0033] like Figure 1 and Figure 2As shown, a magazine includes a loading tray 1, which has several radially arranged magazine compartments 13 along its circumference that can hold multiple bullets. The outermost circumference of each magazine compartment 13 has a magazine opening 131. Inside each magazine compartment 13, there is a feeding component for pushing the bullets out along the radial direction of the loading tray 1. This design can accommodate multiple bullets. Its feature is that several magazine compartments 13 are arranged on the disc-shaped loading tray 1, and each magazine compartment 13 can hold multiple bullets. Furthermore, the automatic feeding of bullets can be achieved through the feeding component. The design is compact and has a large magazine capacity.

[0034] Specifically, the feeding assembly includes a compression spring 14, one end of which is connected to the magazine 13, and the other end is arranged along the radial direction of the magazine 13. In this embodiment, multiple bullets are placed in each magazine 13 by filling the magazine 131 with bullets. The bullet at the bottom is in contact with the compression spring 14, while the bullet at the top is in contact with the top of the magazine 13 and is located at the magazine 131. After each bullet is fired, the next bullet is automatically fed to the magazine 131 under the action of the compression spring 14.

[0035] In the above solution, the compression spring 14 can be a rectangular spring to increase its contact area. However, simply using the compression spring 14 to support the bullet will cause the bullet to be placed unevenly. In order to facilitate the stable placement of the bullet in the magazine 13, the feeding assembly also includes a bullet placement plate 15. One end of the compression spring 14 is connected to the magazine 13, and the other end is connected to the bullet placement plate 15. In this solution, by changing the original point contact between the bullet and the compression spring 14 to surface contact with the bullet placement plate 15, the support surface at the bottom of the bullet is increased, which greatly improves the placement effect of the bullet. Moreover, since the bullet is long, the stability would be poor if a cylindrical spring were used.

[0036] To facilitate easier loading of the magazine 13 by the user, a sliding opening 132 is provided on the outside of the magazine 13. The bullet placement plate 15 extends to the outside of the sliding opening 132 at both ends and can slide radially along the magazine 13 to push the bullet upward. In this solution, the user can compress the compression spring 14 by pressing down the part of the placement plate that extends outside the sliding opening 132, and then place the bullet directly into the magazine 13 through the bullet opening 131 to complete the loading of the bullet, which greatly improves the efficiency of use and can quickly complete the loading of the bullet.

[0037] To facilitate the installation of the compression spring 14, the bottom of the magazine 13 is provided with a lower boss 1321, and the bottom of the bullet placement plate 15 is provided with an upper boss 151. One end of the compression spring 14 is clamped on the lower boss 1321, and the other end is clamped on the upper boss 151. This design facilitates the user's easy installation and removal of the compression spring 14 after it is damaged.

[0038] To improve the production efficiency of the magazine during the manufacturing process and reduce the difficulty of installing its internal components, the loading tray 1 is detachable. Specifically, the loading tray 1 includes a mounting tray 11 and a sealing tray 12. The mounting tray 11 has a groove 111, and the sealing tray 12 has a protrusion 121 that engages with the groove 111. This design not only facilitates the production and processing of the magazine but also makes it easier for subsequent users to use. By conveniently removing the mounting tray 11 and the sealing tray 12, the inside of the loading tray 1 can be quickly cleaned or its components replaced. Of course, in other design schemes, the mounting tray 11 and the sealing tray 12 can also be connected by bolts.

[0039] Based on the above magazine design, the present invention also provides a magazine mounting and reversing mechanism, such as... Figures 3 to 5 As shown, the gun body 8 includes a drive unit 4, a rotating unit 5, a blocking unit 6, and a fixing unit 7. The loading tray 1 is mounted on the rotating unit 5. The opening and closing blocking unit 6 limits the loading tray 1 and is connected to the fixing unit 7. The loading tray 1 is provided with a reversing unit 2 that can automatically switch to the next magazine 13. Each time the drive unit 4 completes a drive, the reversing unit 2 reverses the loading tray 1 to realize automatic switching to the next magazine 131.

[0040] In some embodiments, the driving part 4 includes a pull plate 41 and a reversing block 42 disposed on the pull plate 41; the rotating part 5 includes a rotating roller 51, a locking block 52 disposed on the rotating roller 51, and an insert shaft 53 connected to the end of the rotating roller 51; the blocking part 6 includes a blocking plate 61, which has a fixing hole 612 and a receiving hole 611; the fixing part 7 includes a fixing block 71, which is connected to the fixing hole 612; the loading plate 1 has a through hole 17 and a positioning hole 16 communicating with the through hole 17, the diameter of the through hole 17 is smaller than the diameter of the positioning hole 16, and a positioning part 3 is provided at the through hole 17, and a reversing part 2 is provided in the positioning hole 16; the positioning part 3 includes a limiting block 31 disposed at the through hole 17, the locking block 52 abuts against the limiting block 31, and the insert shaft 53 passes through the through hole 17 and is inserted into the receiving hole 611; the reversing part 2 includes a positioning hole 53. The front dividing teeth 21 and rear dividing teeth 22 are arranged in the axial direction. A front reversing channel 23 is formed between two adjacent front dividing teeth 21, which is the same number as the number of magazine 13. A rear reversing channel 24 is formed between two adjacent rear dividing teeth 22, which is the same number as the number of magazine 13. The front reversing channel 23 and the rear reversing channel 24 are staggered and the front reversing channel 23 is arranged along the inner circumference of the magazine 13. Both the front dividing teeth 21 and the rear dividing teeth 22 are provided with inclined surfaces 25. The two inclined surfaces 25 are opened in opposite directions. The reversing block 42 can move freely along the front reversing channel 23 and the rear reversing channel 24. Each time the pull plate 41 moves back and forth, the reversing block 42 moves from the previous rear reversing channel 24 to the next front reversing channel 23 and then reverses to the next rear reversing channel 24, finally completing the automatic rotation and repositioning of the loading tray 1.

[0041] It is worth noting that in this embodiment, a pure structural drive is used, without electric drive. The reversing part 2 is located in the middle of the loading plate 1. Accurate reversing is achieved by the reciprocating motion of the reversing block 42 in cooperation with the front reversing channel 23 and the rear reversing channel 24. Each time the reversing block 42 reciprocates, the loading plate 1 rotates a certain angle. The advantage of this design is that it achieves the purpose of reversing with the simplest structure, which not only reduces the design difficulty, but also has good overall structural robustness and greatly extends the service life of each component.

[0042] In other embodiments, the driving part 4 includes a pull plate 41; the rotating part 5 includes a rotating roller 51, a locking block 52 disposed on the rotating roller 51, and an insert shaft 53 connected to the end of the rotating roller 51; the blocking part 6 includes a blocking plate 61, which has a fixing hole 612 and a receiving hole 611; the fixing part 7 includes a fixing block 71, which is connected to the fixing hole 612; the loading plate 1 has a through hole 17 and a positioning hole 16 communicating with the through hole 17, the diameter of the through hole 17 is smaller than the diameter of the positioning hole 16, and a positioning part 3 is provided at the through hole 17; the positioning part 3 includes a limiting block 31 disposed at the through hole 17, the locking block 52 abuts against the limiting block 31, and the insert shaft 53 passes through the through hole 17 and is inserted into the receiving hole 611; the reversing part 2 includes a drive motor, which is connected to the rotating roller 51.

[0043] In this design, the loading disc 1 is driven by electricity to achieve the reversing method. The drive motor can be directly driven and connected to the rotating roller 51, or the loading disc 1 can be driven by the gear or chain drive in the existing technology to achieve the reversing. In the specific implementation process, each time the pull plate 41 is pulled, the drive motor runs and drives the rotating roller 51 to rotate, and finally completes the reversing of the loading disc 1 to achieve automatic switching to the next ammunition port 131.

[0044] The present invention also provides a continuously firing toy gun, such as Figure 5 and Figure 6 As shown, the gun body includes a gun body 8, any type of magazine from the above-mentioned scheme, and any type of magazine mounting and reversing mechanism for driving the magazine. The gun body 8 has a slidingly fitted pull plate 41 and a push rod 81, and a rotatably connected connecting rod 82. Each of the pull plate 41 and the connecting rod 82 is connected to a reciprocating spring mounted on the gun body 8, which can be used to return to its original position after the movement of both. The pull plate 41 is equipped with a trigger 43. The push rod 81 is engaged with one of the bullet ports 131 and is facing one of the bullet ports 131 when firing. Both the pull plate 41 and the push rod 81 are provided with movable openings 411. Both ends of the connecting rod 82 pass through the movable openings 411. The pull plate 41 can move backward to enable the connecting rod 82 to drive the push rod 81 forward. The gun body 8 is equipped with a rotating roller 51, a blocking plate 61, and a fixing block 71. The rotating roller 51 is rotatably connected to the gun body 8, and the blocking plate 61 is rotatably connected to the gun body 8 and is equipped with a firing mechanism 9.

[0045] According to the design of the above scheme, in the specific use of the continuous firing toy gun, the loading tray 1 is first installed on the gun body 8. After installation, one of the bullet ports 131 on the loading tray 1 is aligned with the push rod 81. By pulling the trigger 43, the pull plate 41 moves backward, driving the connecting rod 82 to rotate along the rotation position on the gun body 8, thereby driving the push rod 81 to move forward. During the movement, the end of the push rod 81 contacts the tail of one of the bullets in the loading tray 1. As the push rod 81 moves forward, the bullet is pushed out by the push rod 81 through the bullet port 131 and ejected under the action of the firing mechanism 9. As the push rod 81 retracts, the loading tray 1 changes direction and rotates the next bullet port 131 to the front of the push rod 81. When the trigger 43 is pulled again, the push rod 81 pushes out the bullet in front again. Repeating the action multiple times can achieve continuous firing of bullets until all the bullets are used up.

[0046] Specifically, the launching mechanism 9 includes at least two pairs of power motors 91, power wheels 92 connected to the power motors 91, and a power supply assembly. A launching port 613 is provided on the blocking plate 61. The power motors 91 are mounted on the blocking plate 61, and the power wheels 92 are located inside the launching port 613. A launching channel for ejecting the bullet is formed between the two sets of power wheels 92. The launching channel is directly opposite one of the bullet ports 131. In the actual operation of this design, when the bullet enters the launching channel, due to the large rotational force generated by the two sets of power wheels 92 under the action of the power motors 91, the bullet is ejected the instant it contacts the two sets of power wheels 92, thus completing the launch.

[0047] To improve the bullet's firing performance, the power wheel 92 has a toothed ridge 921 on its wheel body. This design increases the friction between the power wheel 92 and the bullet during rotation, preventing the bullet from slipping or having poor firing force when it is ejected.

[0048] Specifically, in some embodiments, the power supply assembly includes a switch 93, a battery compartment 94, and a USB charging interface 95. The switch 93, battery compartment 94, and USB charging interface 95 are all disposed on the gun body 8, and the switch 93 is located at the tail end of the pull plate 41 so that the pull plate 41 moves backward to contact it and finally complete the rotation of the drive motor.

[0049] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A magazine, characterized in that, The system includes a loading tray (1), which has several radial magazines (13) along its circumference for holding multiple bullets. The outermost circumference of each magazine (13) has a magazine opening (131). The magazine (13) contains a feeding assembly for pushing bullets radially out of the loading tray (1). The system also includes: The reversing mechanism is installed, which includes a drive part (4), a rotating part (5), a blocking part (6), and a fixing part (7) installed on the gun body (8). The loading plate (1) is installed on the rotating part (5). The opening and closing blocking part (6) limits the loading plate (1) and connects to the fixing part (7). The loading plate (1) is provided with a reversing part (2) that can automatically switch to the next magazine (13). The drive unit (4) includes a pull plate (41) and a reversing block (42) disposed on the pull plate (41). The rotating part (5) includes a rotating roller (51), a locking block (52) disposed on the rotating roller (51), and a plug shaft (53) connected to the end of the rotating roller (51). The blocking part (6) includes a blocking plate (61), and the blocking plate (61) is provided with a fixing hole (612) and a connecting hole (611). The fixing part (7) includes a fixing block (71), which is connected to the fixing hole (612); The loading tray (1) is provided with a through hole (17) and a positioning hole (16) communicating with the through hole (17). The diameter of the through hole (17) is smaller than the diameter of the positioning hole (16), and a positioning part (3) is provided at the through hole (17). A reversing part (2) is provided inside the positioning hole (16). The positioning part (3) includes a limiting block (31) provided at the through hole (17), a locking block (52) abutting against the limiting block (31), and a insert shaft (53) passing through the through hole (17) and inserted into the receiving hole (611); The reversing part (2) includes a front partition tooth (21) and a rear partition tooth (22) arranged along the axial direction of the positioning hole (16). A front reversing channel (23) is formed between two adjacent front partition teeth (21) in the same number as the magazine (13). A rear reversing channel (24) is formed between two adjacent rear partition teeth (22) in the same number as the magazine (13). The front reversing channel (23) and the rear reversing channel (24) are staggered and the front reversing channel (23) is arranged along the inner circumference of the magazine (13). Both the front partition tooth (21) and the rear partition tooth (22) are provided with inclined surfaces (25). The two inclined surfaces (25) are opened in opposite directions. The reversing block (42) can move freely along the front reversing channel (23) and the rear reversing channel (24).

2. A magazine according to claim 1, characterized in that, The feed assembly includes a compression spring (14), one end of which is connected to the magazine (13), and the other end is arranged along the radial direction of the magazine (13).

3. A magazine according to claim 1, characterized in that, The feeding assembly also includes a bullet placement plate (15), with one end of a compression spring (14) connected to the magazine (13) and the other end connected to the bullet placement plate (15).

4. A magazine according to claim 1, characterized in that, The magazine (13) has a sliding opening (132) on the outside, and the bullet placement plate (15) extends to the outside of the sliding opening (132) at both ends and can slide radially along the magazine (13).

5. A magazine according to claim 2, characterized in that, The magazine (13) has a lower boss (1321) at the bottom and the bullet placement plate (15) has an upper boss (151) at the bottom. One end of the compression spring (14) is clamped on the lower boss (1321) and the other end is clamped on the upper boss (151).

6. A continuously firing toy gun, characterized in that, The gun body (8) includes any one of the magazines in claims 1 to 5. The gun body (8) is slidably fitted with a pull plate (41) and a push rod (81) and is rotatably connected with a connecting rod (82). Each of the pull plate (41) and the connecting rod (82) is connected to a reciprocating spring mounted on the gun body (8) that can be used to return to its original position after the two move. The pull plate (41) is provided with a trigger (43). The push rod (81) is engaged with one of the cartridge ports (131). Both the pull plate (41) and the push rod (81) are provided with movable openings (411). Both ends of the connecting rod (82) pass through the movable openings. The gun body (8) is provided with a rotating roller (51), a baffle plate (61) and a fixing block (71). The rotating roller (51) is rotatably connected to the gun body (8), and the baffle plate (61) is rotatably connected to the gun body (8) and is provided with a firing mechanism (9).

7. A continuously firing toy gun according to claim 6, characterized in that, The launching mechanism (9) includes at least two pairs of power motors (91), power wheels (92) connected to the power motors (91), and a power supply assembly. A launching port (613) is provided on the blocking plate (61). The power motors (91) are mounted on the blocking plate (61) and the power wheels (92) are located inside the launching port (613). A launching channel for launching bullets is formed between the two sets of power wheels (92), and the launching channel is directly opposite one of the bullet ports (131).

8. A continuously firing toy gun according to claim 7, characterized in that, The power supply assembly includes a switch (93), a battery compartment (94), and a USB charging interface (95). The switch (93), battery compartment (94), and USB charging interface (95) are all mounted on the gun body (8), and the switch (93) is paired with the pull plate (41).

Citation Information

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