A toy gun having a bullet guiding structure

CN224772188UActive Publication Date: 2026-09-18ZHONG SHAN JIA CHENG PLASTIC PROD CO LED
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Patent Information

Application Number
CN202522302441.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-09-18
Estimated Expiration
2035-10-30

AI Technical Summary

Technical Problem

[0004]为解决传统玩具枪缺乏子弹引导结构,子弹在发射过程中容易偏离预定轨迹,使得玩具枪容易出现子弹卡壳情况的问题,本实用新型提供一种具有子弹引导结构的玩具枪

Benefits of technology

[0021]This utility model has at least the following beneficial effects: This utility model is provided with a bullet guiding structure, which includes a first guide member disposed on the side wall of the channel. The first guide member can guide the bullet into the space between two acceleration wheels and move stably along the channel, avoiding the bullet from shaking or deviating from its direction during the firing process. This effectively solves the problems of bullets deviating from the predetermined trajectory and jamming in traditional toy guns.

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Abstract

The utility model relates to the technical field of toy gun, specifically disclose a toy gun with bullet guide structure, include: shell, bullet clip, bullet clip is used for providing bullet, launching device, launching device includes two rotatable acceleration wheel, and acceleration wheel is used for accelerating bullet, and two acceleration wheel between being equipped with the passageway for bullet to pass through, guide structure, guide structure includes first guide piece, and first guide piece is located at the side wall at passageway, and first guide piece is used for guiding bullet to move along the extension direction of passageway, firing device, firing device includes trigger and hammer, when cocking trigger, trigger triggers hammer to hit bullet to pass through passageway and launch. The utility model solves the problem that traditional toy gun lacks bullet guide structure, and bullet is easy to deviate from the predetermined trajectory in the launching process, so that the toy gun is easy to appear the bullet jamming condition problem.
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Description

Technical Field

[0001] This utility model relates to the field of toy gun technology, and in particular to a toy gun with a bullet guiding structure. Background Technology

[0002] As people's living standards improve, the toy market continues to develop. Toy guns, as a common toy, are loved by many consumers for their fun and interactivity. Traditional toy guns typically consist of a shell, magazine, and firing mechanism, using simple mechanical principles to fire bullets.

[0003] However, traditional toy guns lack a bullet guidance mechanism, making it easy for bullets to deviate from their intended trajectory during firing. This can cause the toy gun to jam, preventing it from firing. This not only affects the fun of the toy gun and causes inconvenience to the user, but also reduces the user experience. Utility Model Content

[0004] To address the problem that traditional toy guns lack a bullet guidance structure, causing bullets to easily deviate from their intended trajectory during firing and resulting in frequent bullet jams, this invention provides a toy gun with a bullet guidance structure.

[0005] To solve the above problems, the present invention adopts the following technical solution:

[0006] An embodiment of this utility model provides a toy gun with a bullet guiding structure, comprising:

[0007] shell;

[0008] A magazine, the magazine being used to supply bullets;

[0009] The launching device includes two rotatable acceleration wheels for accelerating the bullet, and a channel between the two acceleration wheels for the bullet to pass through.

[0010] A guiding structure, the guiding structure including a first guide member disposed on the side wall of the channel, the first guide member being used to guide the bullet to move along the extension direction of the channel;

[0011] A firing device comprising a trigger and a hammer, wherein when the trigger is pulled, the trigger triggers the hammer to strike the bullet to pass through the channel and fire it.

[0012] According to some embodiments of the present invention, the first guide includes a guide portion, the height of which gradually increases in the direction of bullet movement.

[0013] According to some embodiments of the present invention, the first guide further includes a stabilizing part, which is connected to the highest point of the guide part, and the height of the stabilizing part remains unchanged in the direction of bullet movement.

[0014] According to some embodiments of the present invention, the guiding structure further includes a second guide member, which includes two guide plates respectively disposed at the bullet inlet of the channel, and the distance between the two guide plates gradually decreases in the direction of bullet movement.

[0015] According to some embodiments of the present invention, the outer casing is provided with an opening for removing bullets from the magazine, and the outer casing includes a rotating plate for sealing the opening, the rotating plate being rotatable to open the opening.

[0016] According to some embodiments of the present invention, the toy gun with a bullet guiding structure further includes a blocking member, which is detachably connected to the outer shell and is used to prevent the rotating plate from rotating.

[0017] According to some embodiments of the present invention, the hammer is slidably connected to the outer casing, and the firing device further includes a connecting rod, which is slidably connected to one end of the hammer. When the trigger is pulled, the trigger can drive one end of the connecting rod to move, and the other end of the connecting rod, under the action of the trigger, can drive the hammer to slide along the outer casing and strike the bullet.

[0018] According to some embodiments of the present invention, a safety structure is also included, which includes a safety button and a blocking block. The blocking block is used to block the movement of the trigger. When the safety button is pressed, the safety button can drive the blocking block to move and release the blocking of the trigger.

[0019] According to some embodiments of the present invention, the blocking block is slidably connected to the outer casing. The blocking block includes a blocking part and a ramp part. The blocking part abuts against the trigger, and the safety button abuts against the ramp part. When the safety button is pressed, the blocking block can slide along the outer casing under the action of the safety button, and the blocking part releases its abutment against the trigger.

[0020] According to some embodiments of the present invention, the safety structure further includes an elastic component, one end of which is connected to the blocking block and the other end of which is connected to the outer casing. The elastic component is used to apply an elastic force to the blocking block so that the blocking block returns to its initial position.

[0021] This utility model has at least the following beneficial effects: This utility model is provided with a bullet guiding structure, which includes a first guide member disposed on the side wall of the channel. The first guide member can guide the bullet into the space between two acceleration wheels and move stably along the channel, avoiding the bullet from shaking or deviating from its direction during the firing process. This effectively solves the problems of bullets deviating from the predetermined trajectory and jamming in traditional toy guns. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of one embodiment of the present utility model;

[0023] Figure 2 This is a schematic diagram of the structure of the present invention after the outer shell is hidden in one embodiment;

[0024] Figure 3 This is a schematic diagram of the structure of a portion of the outer shell according to an embodiment of the present invention;

[0025] Figure 4 This is an exploded view of one embodiment of the present invention;

[0026] Figure 5 This is a schematic diagram of the structure of a blocking member according to an embodiment of the present invention;

[0027] Figure 6 This is a schematic diagram of the structure of a launching device according to an embodiment of the present invention. Detailed Implementation

[0028] This invention provides the following description with reference to the accompanying drawings to aid in a comprehensive understanding of the various embodiments of the invention as defined by the claims and their equivalents. The description includes various specific details to aid understanding, but these details should be considered exemplary only. Therefore, those skilled in the art will recognize that various changes and modifications can be made to the various embodiments described herein without departing from the scope and spirit of the invention.

[0029] In the description of this utility model, the orientation descriptions, such as up, down, front, back, left, right, etc., are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0030] It should be understood that when one element (e.g., the first element) is “connected” to another element (e.g., the second element), the element may be directly connected to the other element, or there may be an intermediary element (e.g., the third element) between the element and the other element.

[0031] An embodiment of this utility model provides a toy gun with a bullet guiding structure, such as... Figure 1-6 As shown, it includes:

[0032] Casing 100;

[0033] Magazine 200, magazine 200 is used to supply ammunition 210;

[0034] The launching device 300 includes two rotatable acceleration wheels 310, which are used to accelerate the bullet 210. A channel 320 is provided between the two acceleration wheels 310 for the bullet 210 to pass through.

[0035] The guiding structure includes a first guide 330, which is disposed on the side wall of the channel 320 and is used to guide the bullet 210 to move along the extension direction of the channel 320.

[0036] The firing device 400 includes a trigger 410 and a hammer 420. When the trigger 410 is pulled, the trigger 410 triggers the hammer 420 to strike the bullet 210 to pass through the channel 320 and fire it.

[0037] The outer casing 100 serves to protect the internal components and the overall appearance. The outer casing 100 can be divided into a left casing and a right casing, secured by clips or screws for easy disassembly and maintenance. The magazine 200 supplies bullets 210 to the toy gun. It can be a detachable component, allowing users to easily reload and replace the bullets 210. In some embodiments, the magazine 200 employs a spring-driven push plate to ensure that bullets 210 enter the firing channel 320 one by one. The firing device 300 accelerates the bullets 210 and launches them. The firing device 300 includes two rotatable acceleration wheels 310, which accelerate the bullets 210 through friction. In some embodiments, the firing device 300 also includes a motor for accelerating the acceleration wheels 310. The channel 320 between the acceleration wheels 310 is the path through which the bullets 210 travel. A first guide 330 is provided on the side wall of the channel 320 to guide the bullets 210 into the space between the acceleration wheels 310, ensuring that the bullets 210 are accurately accelerated and move along the channel 320. The surface of the acceleration wheel 310 can be textured or grooved to increase friction with the bullet 210, thereby accelerating the bullet 210 more effectively. The shape and size of the channel 320 match the bullet 210 to ensure that the bullet 210 can pass smoothly while preventing the bullet 210 from getting stuck or deviating in the channel 320. The first guide 330 guides the bullet 210 along the channel 320, ensuring that the bullet 210 can accurately enter the channel 320 and be held by the acceleration wheel 310. The guide can be designed as a ramp, rail, or other shape, depending on the shape of the bullet 210 and the structure of the channel 320. The firing mechanism 400 is the triggering system of the toy gun, used to control the firing of the bullet 210. The firing mechanism 400 includes two main components: a trigger 410 and a hammer 420. The trigger 410 is the user-operated part; when the user pulls the trigger 410, the trigger 410 triggers the hammer 420. A spring device can be provided at the trigger 410 to provide appropriate resistance. The hammer 420 strikes the bullet 210, causing it to enter the channel 320 and be accelerated by the acceleration wheel 310. The movement of the hammer 420 can be driven by a spring or elastic device to ensure that the force and speed of the strike are sufficient to smoothly deliver the bullet 210 into the channel 320. Through the design of the guide and the channel 320, the bullet 210 can be accurately guided during firing, reducing the risk of the bullet 210 deviating from its direction or getting stuck, thus improving the safety of the toy gun. The acceleration wheel 310 effectively accelerates the bullet 210, making the firing effect of the toy gun more realistic. The firing mechanism 400 is simple and easy to use; users can fire the bullet 210 with simple operations.

[0038] The working principle of this utility model is as follows:

[0039] When the user pulls the trigger 410, the trigger 410 activates the hammer 420, which strikes the bullet 210, causing the bullet 210 to enter the channel 320. In the channel 320, the bullet 210 is guided by the first guide 330 to the space between the acceleration wheels 310, while the first guide 330 restricts its movement. The acceleration wheels 310 accelerate the bullet 210 through the friction generated by their rotation, ultimately launching the bullet 210.

[0040] In some embodiments, the first guide 330 includes a guide portion 331, the height of which gradually increases in the direction of movement of the bullet 210.

[0041] The gradually increasing height of the guide section 331 creates a ramp or gradual guide surface along the path of the bullet 210. This design helps the bullet 210 enter the channel 320 more smoothly from the magazine 200, preventing jamming or deviation during entry. The gradually rising guide section 331 allows for a smoother transition of the bullet 210 into the channel 320, reducing friction and resistance. This not only improves the entry efficiency of the bullet 210 but also reduces noise and wear caused by friction. The stability of the bullet 210 upon entering the channel 320 directly affects the accuracy and effectiveness of the firing. The gradually increasing height of the guide section 331 ensures that the bullet 210 maintains the correct posture throughout its entry into the channel 320, thereby improving firing stability and consistency. In some embodiments, the guide section 331 can be designed as a ramp, the angle of which can be optimized according to the shape and size of the bullet 210 to ensure smooth entry into the channel 320. In addition to the sloped surface, the guide section 331 can also be designed as an arc. This design can more gently guide the bullet 210 into the channel 320, further reducing friction and resistance. By reducing the jamming and deviation of the bullet 210 when entering the channel 320, the risk of malfunction or accidents during use of the toy gun is reduced. The bullet 210 can enter the channel 320 more smoothly and be accelerated by the acceleration wheel 310, thereby improving the stability and accuracy of firing.

[0042] Furthermore, the first guide 330 also includes a stabilizing part 332, which is connected to the highest point of the guide 331. The height of the stabilizing part 332 remains unchanged in the direction of movement of the bullet 210.

[0043] The height of the stabilizing part 332 remains constant in the direction of bullet 210's movement, meaning it provides a horizontal support surface for the bullet 210. When the bullet 210 enters the channel 320 through the guide part 331, the stabilizing part 332 ensures that the bullet 210 maintains the correct posture upon entering the channel 320, preventing it from deviating from its trajectory due to tilting or swaying. The constant height of the stabilizing part 332 provides stable support for the bullet 210, reducing vibration and swaying within the channel 320. The stabilizing part 332 can be a horizontal platform or guide rail, engaging with the highest point of the guide part 331. The surface of the stabilizing part 332 is smooth and flat to reduce friction on the bullet 210. The height of the guide part 331 gradually increases, guiding the bullet 210 to the stabilizing part 332. The constant height of the stabilizing part 332 ensures the bullet 210 remains stable within the channel 320. This design effectively reduces jamming and deviation of the bullet 210 within the channel 320.

[0044] In some embodiments, the guiding structure further includes a second guide 340, which includes two guide plates 350 respectively disposed at the bullet 210 inlet of the channel 320, and the distance between the two guide plates 350 gradually decreases in the direction of movement of the bullet 210.

[0045] The second guide 340 includes two guide plates 350, respectively disposed at the bullet 210 entrance of the channel 320. The two guide plates 350 can be vertically distributed on both sides of the channel 320. The distance between the two guide plates 350 gradually decreases in the direction of bullet 210's movement. Through this gradually decreasing distance, the guide plates 350 can progressively guide the bullet 210 from a wider entrance to a precise position within the channel 320. This design ensures that the bullet 210 is accurately aligned with the center of the channel 320 upon entry, preventing it from deviating from its trajectory. The gradually decreasing distance creates a progressive guidance path, reducing friction and resistance as the bullet 210 enters the channel 320, allowing for a smoother entry. The guide plates 350 can be triangular, trapezoidal, or other suitable shapes.

[0046] In some embodiments, the first guide is distributed on both sides of the channel 320.

[0047] In some embodiments, the housing 100 is provided with an opening 110 for removing a bullet 210 from the bullet clip 200, and the housing 100 includes a rotating plate 120 for sealing the opening 110, the rotating plate 120 being rotatable and opening the opening 110.

[0048] The opening 110 is designed to allow users to directly remove the bullet 210 from the magazine 200 without disassembling the magazine 200. This greatly improves the convenience of removing the bullet 210, especially in case the bullet 210 jams. The main function of the rotating plate 120 is to seal the opening 110, preventing dust, debris, or other foreign objects from entering the magazine 200 or the interior of the toy gun. This helps keep the toy gun clean and function properly. The rotatable nature of the rotating plate 120 allows users to easily open or close the opening 110. This design not only facilitates operation but also achieves a reliable sealing function through a simple mechanical structure. In some embodiments, the rotating plate 120 may be designed to require a certain amount of force to open, thereby preventing children from accidentally opening the opening 110 during play and further improving the safety of the toy gun.

[0049] Furthermore, the toy gun with the bullet 210 guiding structure also includes a blocking member 130, which is detachably connected to the outer shell 100 and is used to block the rotation of the rotating plate 120.

[0050] The blocking element 130 is used to prevent the rotating plate 120 from being accidentally opened at an inappropriate time. For example, during the firing of the toy gun or during transportation, the accidental opening of the rotating plate 120 may cause the bullet 210 to fall out or foreign objects to enter, thereby affecting the normal operation of the toy gun or causing safety problems. By blocking the rotation of the rotating plate 120, the blocking element 130 can ensure that the toy gun remains in a closed state during use, preventing children or other users from opening the rotating plate 120 at an inappropriate time, and further improving the safety of the toy gun. The blocking element 130 can be connected to the housing 100 in various ways, such as fixing the blocking element 130 to the housing 100 with screws or bolts, which provides a firm and reliable connection.

[0051] In some embodiments, the hammer 420 is slidably connected to the housing 100, and the firing device 400 further includes a connecting rod 430, which is slidably connected to one end of the hammer 420. When the trigger 410 is pulled, the trigger 410 can drive one end of the connecting rod 430 to move, and the other end of the connecting rod 430 can drive the hammer 420 to slide along the housing 100 and strike the bullet 210 under the action of the trigger 410.

[0052] The hammer 420 strikes the bullet 210, causing it to enter the channel 320 and be accelerated by the acceleration wheel 310. Through a sliding connection, the hammer 420 can move along a predetermined track within the housing 100, ensuring the stability and accuracy of the striking action. The connecting rod 430 is a transmission component in the firing device 400, with one end connected to the trigger 410 and the other end connected to the hammer 420. When the user pulls the trigger 410, the trigger 410 drives the hammer 420 to move via the connecting rod 430. The connecting rod 430 converts the motion of the trigger 410 into the linear motion of the hammer 420. Through reasonable mechanical design, a large striking force and rapid firing action can be achieved. In some embodiments, a slide rail can be designed within the housing 100, through which the hammer 420 slides. The connecting rod 430 is slidably connected to one end of the hammer 420, for example, using a groove or slider structure. This connection method ensures the stability and reliability of the connecting rod 430 when driving the hammer 420. Trigger 410 moves linkage 430 via a lever principle. Trigger 410 may be equipped with a spring or other elastic device to provide appropriate resistance and a return function.

[0053] In some embodiments, a safety structure 500 is also included, which includes a safety button 510 and a blocking block 520. The blocking block 520 is used to block the movement of the trigger 410. When the safety button 510 is pressed, the safety button 510 can drive the blocking block 520 to move and release the blocking of the trigger 410.

[0054] The safety mechanism 500 is used to prevent the trigger 410 from being accidentally triggered at an inappropriate time, thereby avoiding accidental firing. The user can actively control the opening and closing of the safety mechanism 500 via the safety button 510. The safety button 510 is the user-operated part and can be designed as an easy-to-press button or lever. When the safety button 510 is pressed, the button drives the stop block 520 to move via a mechanical structure. The stop block 520 is used to block the movement of the trigger 410. The stop block 520 can be designed as a stop that directly engages with the movement path of the trigger 410, preventing the trigger 410 from being pulled. The safety button 510 drives the stop block 520 to move via a mechanical transmission device (such as a linkage 430, gears, etc.).

[0055] Furthermore, the blocking block 520 is slidably connected to the housing 100. The blocking block 520 includes a blocking part 530 and a ramp part 540. The blocking part 530 abuts against the trigger 410, and the safety button 510 abuts against the ramp part 540. When the safety button 510 is pressed, the blocking block 520 can slide along the housing 100 under the action of the safety button 510, and the blocking part 530 is released from abutting the trigger 410.

[0056] The blocking part 530 is part of the blocking block 520 and directly contacts the trigger 410 to prevent its movement. The design of the blocking part 530 ensures that the trigger 410 cannot be pulled when the safety is engaged. The ramp part 540 is another part of the blocking block 520 and contacts the safety button 510. The ramp part 540 is designed so that the safety button 510 can push the blocking block 520 along the housing 100 via the ramp, thereby releasing the obstruction of the trigger 410. A slide rail can be designed inside the housing 100, allowing the blocking block 520 to slide within the housing 100. The ramp part 540 can be designed as a ramp or an arc surface, allowing the safety button 510 to push the blocking block 520 to slide via the ramp.

[0057] Furthermore, the safety structure 500 also includes an elastic member 550, one end of which is connected to the blocking block 520 and the other end of which is connected to the housing 100. The elastic member 550 is used to apply an elastic force to the blocking block 520 so that the blocking block 520 returns to its initial position.

[0058] The elastic component 550 provides an elastic force to the stop block 520, allowing it to automatically return to its initial position after the safety mechanism is released. This ensures that the safety structure 500 returns to a safe state after each operation, reducing the safety risk caused by forgetting to manually reset it.

[0059] The terms and words used in the foregoing description and claims are not limited to their literal meaning, but are merely used by the applicant to enable a clear and consistent understanding of the present invention. Therefore, those skilled in the art should understand that the foregoing description of various embodiments of the present invention is for illustrative purposes only, and not intended to limit the present invention as defined by the appended claims and their equivalents.

Claims

1. A toy gun having a bullet guiding structure, characterized by, include: Outer shell (100); A magazine (200) for supplying bullets (210); The launching device (300) includes two rotatable acceleration wheels (310) for accelerating the bullet (210), and a channel (320) is provided between the two acceleration wheels (310) for the bullet (210) to pass through. The guiding structure includes a first guide (330), which is disposed on the side wall of the channel (320) and is used to guide the bullet (210) to move along the extension direction of the channel (320). The firing device (400) includes a trigger (410) and a hammer (420). When the trigger (410) is pulled, the trigger (410) triggers the hammer (420) to strike the bullet (210) to pass through the channel (320) and fire it.

2. The toy gun having a bullet guiding structure according to claim 1, wherein The first guide (330) includes a guide portion (331) whose height gradually increases in the direction of movement of the bullet (210).

3. The toy gun having a bullet guiding structure according to claim 2, wherein The first guide (330) further includes a stabilizing part (332), which is connected to the highest point of the guide (331), and the height of the stabilizing part (332) remains unchanged in the direction of movement of the bullet (210).

4. The toy gun having a bullet guiding structure according to claim 1, wherein The guiding structure also includes a second guide (340), which includes two guide plates (350) respectively disposed at the bullet (210) inlet of the channel (320), and the distance between the two guide plates (350) gradually decreases in the direction of movement of the bullet (210).

5. The toy gun having a bullet guiding structure according to claim 1, wherein The housing (100) is provided with an opening (110) for removing a bullet (210) from the magazine (200), and the housing (100) includes a rotating plate (120) for sealing the opening (110), the rotating plate (120) being rotatable and opening the opening (110).

6. A toy gun having a bullet guiding structure according to claim 5, wherein It also includes a blocking member (130), which is detachably connected to the housing (100) and is used to block the rotation of the rotating plate (120).

7. The toy gun having a bullet guiding structure according to claim 1, wherein The hammer (420) is slidably connected to the outer casing (100). The firing device (400) also includes a connecting rod (430). The connecting rod (430) is slidably connected to one end of the hammer (420). When the trigger (410) is pulled, the trigger (410) can drive one end of the connecting rod (430) to move. Under the action of the trigger (410), the other end of the connecting rod (430) can drive the hammer (420) to slide along the outer casing (100) and strike the bullet (210).

8. The toy gun having a bullet guiding structure according to claim 1, wherein It also includes a safety structure (500), which includes a safety button (510) and a blocking block (520). The blocking block (520) is used to block the movement of the trigger (410). When the safety button (510) is pressed, the safety button (510) can drive the blocking block (520) to move and release the blocking of the trigger (410).

9. The toy gun having a bullet guiding structure according to claim 8, wherein, The blocking block (520) is slidably connected to the outer casing (100). The blocking block (520) includes a blocking part (530) and a ramp part (540). The blocking part (530) abuts against the trigger (410), and the safety button (510) abuts against the ramp part (540). When the safety button (510) is pressed, the blocking block (520) can slide along the outer casing (100) under the action of the safety button (510), and the blocking part (530) releases its abutment against the trigger (410).

10. The toy gun having a bullet guiding structure according to claim 9, wherein, The safety structure (500) also includes an elastic member (550), one end of which is connected to the blocking block (520) and the other end of which is connected to the outer casing (100). The elastic member (550) is used to apply an elastic force to the blocking block (520) to restore the blocking block (520) to its initial position.