Toy gun
By introducing components such as empty hangers, locking parts, and elastic parts into the toy gun, the automatic reset of the bolt is achieved, solving the problem of the bolt failing to return to its original position and improving the user experience and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 义乌市浔渐贸易有限公司
- Filing Date
- 2025-05-23
- Publication Date
- 2026-04-21
AI Technical Summary
The bolts of existing toy guns cannot return to their original position, resulting in a poor user experience. Furthermore, the slide causes the bolt to reciprocate, reducing the bolt's lifespan.
A toy gun was designed, including a bolt hanger, a locking component, an unlocking component, first and second bolt handles, and an elastic component. It simulates the bolt hanger operation of a real gun. After the bolt is pulled, the bolt automatically resets, avoiding reciprocating motion and improving its service life.
It improves the handling, extends the lifespan of the toy gun, simulates the bolt-action and rebound operation of a real gun, and enhances the simulation effect.
Smart Images

Figure CN224151532U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of toy guns, specifically a toy gun. Background Technology
[0002] Existing toy guns include a gearbox for firing projectiles, which includes a slide tube in which the bolt and slide tube are fixedly connected. This structure causes the bolt to fail to return to its original position after the bolt is pulled and the slide tube is unloaded. This results in a significant difference in the feel of operating a real gun, leading to a poor user experience. Furthermore, during firing, the slide tube drives the bolt to reciprocate synchronously, reducing the bolt's lifespan. Utility Model Content
[0003] This application provides a toy gun that improves handling and extends service life.
[0004] This application provides a toy gun, comprising:
[0005] The gun body is equipped with an ejection port;
[0006] An empty attachment is slidably mounted on the gun body and has a first position that closes the ejection port and a second position that opens the ejection port;
[0007] A locking element is used to lock the empty hanging piece in the second position;
[0008] An unlocking component is used to unlock the locking member so that it releases the lock on the empty hanging member;
[0009] A first elastic element acts on the empty hanging part to reset it from the second position to the first position;
[0010] The first charging handle is separately disposed from the empty attachment. The first charging handle is slidably disposed on the gun body and has a first initial position and a first bolt position. When the first charging handle switches from the first initial position to the first bolt position, it drives the empty attachment to switch from the first position to the second position.
[0011] The second elastic element, after the empty hanging part is locked, drives the first pull handle to switch from the first pull bolt position to the first initial position.
[0012] Several alternative methods are provided below, but they are not intended as additional limitations on the overall solution above. They are merely further additions or optimizations. Provided there are no technical or logical contradictions, each alternative method can be combined individually with respect to the overall solution above, or multiple alternative methods can be combined with each other.
[0013] Optionally, the toy gun includes a second trigger handle and a third elastic element that are separately disposed from the empty attachment. The second trigger handle is slidably disposed on the gun body and has a second initial position and a second bolt position. When the second trigger handle switches from the second initial position to the second bolt position, it drives the empty attachment to switch from the first position to the second position. After the empty attachment is locked, the third elastic element drives the second trigger handle to reset from the second bolt position to the second initial position.
[0014] Optionally, one of the first charging handle and the second charging handle is arranged opposite to the ejection port along the left and right sides of the gun body, and the other is arranged on the top of the gun body.
[0015] Optionally, the first charging handle includes a first operating part, a first sliding part that slides with the gun body, and a first driving part; the second charging handle includes a second operating part, a second sliding part that slides with the gun body, and a second driving part.
[0016] The empty hanger has a first force-bearing part and a second force-bearing part. When the first pull handle is pulled, the first force-bearing part and the first driving part are combined to push the empty hanger to slide, while the second pull handle remains stationary.
[0017] When the second pull handle is pulled, the second force-receiving part and the second driving part combine to push the empty hanging part to slide, while the first pull handle remains stationary.
[0018] Optionally, the first force-bearing part and the second force-bearing part are arranged back and forth along the sliding direction of the empty hanger.
[0019] Optionally, the gun body is provided with a slide rail, and the first force-receiving part and the second force-receiving part are slidably sleeved on the slide rail.
[0020] Optionally, the unlocking component includes a first unlocking member and a second unlocking member arranged opposite to each other on the left and right sides of the gun body. The first unlocking member and the second unlocking member are movably disposed on the gun body and can unlock the locking member respectively.
[0021] Optionally, the first unlocking member includes a first button portion and a first actuating portion, and the second unlocking member includes a second button portion and a second actuating portion, wherein the first actuating portion and the second actuating portion act on different positions of the locking member, respectively.
[0022] Optionally, the locking member is located between the first unlocking member and the second unlocking member, and the first and second actuating parts extend laterally toward each other.
[0023] Optionally, the locking member has a locking position for locking the empty hanging part and a releasing position for releasing the empty hanging part, and the toy gun further includes a fourth elastic member that acts on the locking member to reset it from the releasing position to the locking position.
[0024] The toy gun of this application simulates the empty-load operation of a real gun. After the bolt is pulled and the empty-load is engaged, the bolt can be reset to further simulate the bolt-pull return operation of a real gun, thus improving the handling feel. Furthermore, the first charging handle is not fixedly connected to the empty-load component, so even during subsequent firing, the first charging handle will not reciprocate, thereby increasing the service life of the first charging handle. Attached Figure Description
[0025] Figure 1 This is a structural view of a toy gun according to an embodiment of this application;
[0026] Figure 2 for Figure 1 A structural view of the toy gun after the window cover is opened;
[0027] Figure 3 for Figure 2 Structural view of a toy gun in an unloaded state;
[0028] Figure 4 for Figure 1 A structural view from another perspective;
[0029] Figure 5 This is an exploded view of a slide rail, a hanging component, a first pull handle, and a second pull handle according to an embodiment of this application.
[0030] Figure 6 This is a structural view of the first and second charging handles in a first initial position according to an embodiment of this application (the gun body is in a half-section state);
[0031] Figure 7 for Figure 6 Structural view of the first pulling bolt of the machine handle;
[0032] Figure 8 for Figure 6 Structural view of the second puller handle when the bolt is pulled;
[0033] Figure 9 This is a top view of a toy gun according to an embodiment of this application;
[0034] Figure 10 for Figure 9 Partial sectional view along the AA direction;
[0035] Figure 11 This is a structural view of a locking member and unlocking component according to an embodiment of this application;
[0036] Figure 12This is a structural view of a locking member locking an empty hanging member according to an embodiment of this application;
[0037] Figure 13 for Figure 12 Enlarged view of section B in the middle;
[0038] Figure 14 for Figure 13 A magnified view of the first unlocking component when it is unlocked;
[0039] Figure 15 for Figure 13 A magnified view of the second unlocking component when it is unlocked.
[0040] The annotations in the figure are explained as follows:
[0041] 100. Gun body; 110. Grip; 120. Ejection port; 130. Stock; 140. Port cover; 150. Slide rail;
[0042] 200. Empty hanger; 210. Slide; 211. First force-bearing part; 212. Second force-bearing part; 213. Body; 220. Mechanism piece; 221. Locking block;
[0043] 310. First pulling handle; 311. First operating part; 312. First sliding part; 313. First driving part;
[0044] 320. Second pulling handle; 321. Second operating part; 322. Second sliding part; 323. Second driving part; 324. Clearance groove;
[0045] 410. First elastic element; 420. Second elastic element; 430. Third elastic element;
[0046] 500. Locking component; 510. Rotating shaft; 520. Locking part; 521. Locking groove; 522. Guide slope; 523. Waist-shaped groove; 530. Connecting rod;
[0047] 610. First unlocking component; 611. First button part; 612. First actuating part; 613. First connecting part; 614. Rod;
[0048] 620. Second unlocking component; 621. Second button part; 622. Second actuating part; 623. Second connecting part. Detailed Implementation
[0049] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0050] It should be noted that when a component is said to be "connected" to another component, it can be directly connected to the other component or it can be connected to a component in between. When a component is said to be "set on" another component, it can be directly set on the other component or it may be set to a component in between.
[0051] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the scope of the application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0052] In this application, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number or order of the indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0053] See Figure 1 A toy gun is provided, comprising a gun body 100 and an empty attachment 200, wherein the gun body 100 includes a barrel, a stock 130, a grip 110, and a magazine (not shown). To simulate a real gun as closely as possible, in one embodiment, the magazine is detachably attached to the gun body 110.
[0054] See Figure 2 and Figure 3 The gun body 100 has an internal installation space and an ejection port 120 is provided on the left or right side. The empty attachment 200 is slidably disposed inside the gun body 100 and has a first position with the ejection port 120 closed and a second position with the ejection port 120 open. The empty attachment 200 in the second position simulates the empty attachment state of a real gun, and switching from the second position to the first position simulates the operation of releasing the empty attachment 2.
[0055] See Figures 5-15 To achieve both empty engagement and release, the toy gun also includes a locking component 500, an unlocking component, a first trigger handle 310, and a first elastic component 410 and a second elastic component 420. The first elastic component 410 and the second elastic component 420 are springs, tension springs, etc. In the illustration, the first elastic component 410 is a spring and acts on the empty engagement component 200, while the second elastic component 420 is a tension spring and acts on the first trigger handle 310. The locking component 500 is used to lock the empty engagement component 200, keeping it in the empty engagement state. The unlocking component is used to unlock the locking component 500, releasing the lock on the empty engagement component 200.
[0056] The first charging handle 310 is slidably disposed on the gun body 100 and is separately disposed from the unloaded attachment 200. The first charging handle 310 has a forward initial position and a rearward first bolt position. When bolting: the first charging handle 310 is slid backward from the first initial position to switch to the first bolt position, driving the unloaded attachment 200 to slide until it is unloaded. Then the locking member 500 locks the unloaded attachment 200 to keep it in the unloaded state. During the bolting process, the first elastic member 410 is compressed and stores energy, and the second elastic member 420 is stretched and stores energy, releasing the external force on the first charging handle 310. The second elastic member 420 pulls the first charging handle 310 to slide back to the first initial position.
[0057] Release the empty mount: Operate the unlocking component to unlock the locking element 500, and the first elastic element 410 drives the empty mount 200 to slide back to the first position.
[0058] The toy gun of this application simulates the empty hold of a real gun when the bolt is pulled. After the bolt is pulled, the first charging handle automatically returns to its original position, simulating the bolt-pulling action of a real gun. Furthermore, the first charging handle is not fixedly connected to the empty hold, and even during subsequent firing, it will not cause the first charging handle to reciprocate, thus improving the service life of the first charging handle.
[0059] In one embodiment, the first bolt handle 310 is located on one side or the top side of the gun body 100 in the left-right direction, depending on the gun type. To improve the simulation effect, a cover 140 that cooperates with the ejection port 120 is rotatably mounted on the gun body 100. When the bolt is pulled, the cover 140 is opened in conjunction with the bolt.
[0060] In one embodiment, such as Figures 5-8 As shown, the toy gun also includes a second charging handle 320 and a third elastic element 430, which are separately disposed from the empty attachment 200. The second charging handle 320 is slidably disposed on the gun body 100, and the sliding directions of the first charging handle 310, the second charging handle 320, and the empty attachment 200 are the same. The second charging handle 320 has a forward second initial position and a rearward second bolt position. When the bolt is pulled, the second charging handle 320 switches from the second initial position to the second bolt position, driving the empty attachment 200 until it is in an empty state. The third elastic element 430, such as a tension spring, is stretched during the bolt pulling process. Once the external force on the second charging handle 320 is released, the third elastic element 430 drives the second charging handle 320 to return from the second bolt position to the second initial position, while the empty attachment 200 remains locked in the empty state by the locking element 500.
[0061] In the diagram, the first bolt handle 310 is located on the left side of the gun body 100, the ejection port 120 is located on the right side of the gun body 100, and the second bolt handle 320 is located on the top side of the gun body 100. This provides the user with more bolt-action options, enriching the user experience. Furthermore, it can simulate some special gun types to enhance the simulation effect.
[0062] like Figures 5-10 As shown, the second charging handle 320 is arranged at the top center of the gun body 100. The empty attachment 200 includes a slide 210 arranged in the middle of the gun body 100 and a mechanism 220 fixedly connected to the slide 210. A slide rail 150 is provided inside the gun body 100. The slide 210 slides in cooperation with the slide rail 150. The ejection port 120 is located on the right side of the gun body 100. The mechanism 220 is arranged on the right side of the slide 210 and bent to accommodate the ejection port 120. The slide block 210 includes a body 213 and a first force-bearing part 211 and a second force-bearing part 212 protruding from the top of the body 213. The first force-bearing part 211 and the second force-bearing part 212 are arranged back and forth at intervals along the sliding direction of the empty mount 200 to save manufacturing costs and reduce the weight of the gun body. The first force-bearing part 211 and the second force-bearing part 212 are protrusions and are slidably sleeved on the outer periphery of the slide rail 150. There are two action points between the empty mount 200 and the slide rail 150, which improves the sliding stability of the empty mount 200.
[0063] like Figures 5-7 As shown, the first charging handle 310 includes a first operating part 311, a first sliding part 312, and a first driving part 313. The first sliding part 312 is a slider, and a groove corresponding to the gun body 100 is provided to cooperate with the slider. The first driving part 313 extends to the front end of the first force-receiving part 211. The first operating part 311 is a grip rotatably mounted on the first sliding part 312. A torsion spring is provided between the grip and the first sliding part 312. The grip has a retracted state where it is close to the gun body 100 under the action of the torsion spring (e.g., ...). Figure 4 ), and the bolt-action state that is approximately perpendicular to the gun body 100 (such as Figure 6 and Figure 7 ).
[0064] When pulling the bolt, grasp the handle and rotate it to the bolt position. Then pull the first pull handle 310 backward. The first drive part 313 pushes against the first force receiving part 211, causing the empty hanging part 200 to slide backward until it is locked in the empty hanging position by the locking part 500.
[0065] like Figure 6 and Figure 8As shown, the second charging handle 320 includes a second operating part 321, a second sliding part 322, and a second driving part 323. The second sliding part 322 is a slider, and a groove that cooperates with the slider is provided on the gun body 100. The second driving part 323 is located at the rear end of the slider. The second sliding part 322 is provided with a relief groove 324 extending along the sliding direction. The second force-receiving part 212 extends upward into the relief groove 324.
[0066] When the bolt is pulled, the second pull handle 320 is slid backward, and the groove wall of the clearance groove 324 abuts against the second force-bearing part 212 to drive the unloaded part 200 to slide backward until it is locked in the unloaded state by the locking part 500. The bolting operations of the first pull handle 310 and the second pull handle 320 do not interfere with each other. Specifically, when the first pull handle 310 is pulled, the second pull handle 320 remains stationary, and vice versa.
[0067] like Figure 11 As shown, the locking member 500 includes a rotating shaft 510 that rotatably engages with the gun body 100, a locking portion 520 with a locking groove 521, and a connecting rod 530 connecting the rotating shaft 510 and the locking portion 520. The locking member 500 has a locked position for locking the empty attachment 200 and an unlocked position for releasing the empty attachment 200. The toy gun also includes a fourth elastic element (not shown) acting on the locking member 500 to reset it from the unlocked position to the locked position, such as a torsion spring.
[0068] The bottom of the plate 220 of the unloaded component 200 has a locking block 221. In the unloaded state, the locking block 221 extends into the locking groove 521 and is abutted by the groove wall of the locking groove 521, thus remaining in the unloaded state. In one embodiment, the locking part 520 has a guide ramp 522. When the bolt is pulled, the locking block 221 abuts against the guide ramp 522, driving the locking component 500 to switch from the locked position to the unlocked position and compressing the torsion spring. After the locking block 221 is aligned with the locking groove 521, the torsion spring resets, driving the locking component 500 to return to the locked position.
[0069] To simulate a real gun and improve the handling, in one embodiment, such as Figures 11-15 As shown, the unlocking assembly includes a first unlocking component 610 and a second unlocking component 620 arranged opposite to each other on the left and right sides of the gun body 100. The first unlocking component 610 and the second unlocking component 620 are movably disposed on the gun body 100 and can unlock the locking component 500 respectively.
[0070] In the diagram, the locking member 500 is arranged between the first unlocking member 610 and the second unlocking member 620. The first unlocking member 610 is rotatably mounted on the gun body 100 and is parallel to the rotation axis of the locking member 500. The first unlocking member 610 includes a first button part 611, a first actuating part 612, and a first connecting part 613. The first connecting part 613 is rotatably engaged with the gun body 100 via a pin. A rod 614 is connected between the first button part 611 and the first connecting part 613. The first actuating part 612 is a rod-shaped structure extending laterally from the rod 614 toward the locking member 500. This rod-shaped structure 615 presses against the top of the connecting rod 530 of the locking member 500.
[0071] The second unlocking component 620 is rotatably mounted on the gun body 100 and is perpendicular to the rotation axis of the locking component 500. The second unlocking component 620 includes a second button portion 621, a second actuating portion 622, and a second connecting portion 623. The second connecting portion 623 is rotatably engaged with the gun body 100 via a pin. The second actuating portion 622 is a rod-shaped structure extending laterally toward the locking component 500. This rod-shaped structure is inserted into the waist-shaped groove 523 of the locking portion 520 of the locking component 500.
[0072] Unlocking operation: such as Figure 13 and Figure 14 As shown, pressing the first button 611 causes the first unlocking member 610 to rotate, and the first actuating part 612 presses down on the locking member 500, causing it to rotate and switch to the unlocking position; or as shown... Figure 13 and Figure 15 As shown, when the second button 621 is pressed, the second unlocking member 620 rotates, and the second actuating member 622 presses down on the locking member 500 to rotate and switch it to the unlocking position.
[0073] In one embodiment, the toy gun is an electric water bullet toy gun, including a circuit board, a motor, and an electric gearbox disposed within the gun body 100. The motor's main shaft and the electric gearbox are driven together, and the electric gearbox is responsible for converting the motor's rotational power into mechanical reciprocating motion, thereby completing the loading, compression, and firing of the projectile. The specific structure of the electric gearbox can be referred to in the prior art and will not be described here.
[0074] The toy gun of this application simulates the empty hold of a real gun when the bolt is pulled. After the bolt is pulled, the first charging handle automatically returns to its original position, simulating the bolt-pulling action of a real gun. Furthermore, the first charging handle is not fixedly connected to the empty hold, and even during subsequent firing, the first charging handle will not reciprocate, thus improving its service life.
[0075] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as the combination of these technical features does not contradict each other, it should be considered to be within the scope of this specification. When technical features of different embodiments are embodied in the same drawing, it can be regarded as the drawing also disclosing examples of combinations of the various embodiments involved.
[0076] The above embodiments are merely illustrative of several implementation methods of this application, and their descriptions are quite specific and detailed. However, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these modifications and improvements all fall within the protection scope of this application.
Claims
1. A toy gun characterized in that, include: The gun body is equipped with an ejection port; An empty attachment is slidably mounted on the gun body and has a first position that closes the ejection port and a second position that opens the ejection port; A locking element is used to lock the empty hanging piece in the second position; An unlocking component is used to unlock the locking member so that it releases the lock on the empty hanging member; A first elastic element acts on the empty hanging part to reset it from the second position to the first position; The first charging handle is separately disposed from the empty attachment. The first charging handle is slidably disposed on the gun body and has a first initial position and a first bolt position. When the first charging handle switches from the first initial position to the first bolt position, it drives the empty attachment to switch from the first position to the second position. The second elastic element, after the empty hanging part is locked, drives the first pull handle to switch from the first pull bolt position to the first initial position.
2. The toy gun of claim 1, wherein The device includes a second charging handle and a third elastic element, which are separately disposed from the empty attachment. The second charging handle is slidably disposed on the gun body and has a second initial position and a second bolt position. When the second charging handle switches from the second initial position to the second bolt position, it drives the empty attachment to switch from the first position to the second position. After the empty attachment is locked, the third elastic element drives the second charging handle to reset from the second bolt position to the second initial position.
3. The toy gun of claim 2, wherein One of the first charging handle and the second charging handle is arranged opposite to the ejection port along the left and right sides of the gun body, and the other is arranged on the top of the gun body.
4. The toy gun of claim 3, wherein The first charging handle includes a first operating part, a first sliding part that slides with the gun body, and a first driving part; the second charging handle includes a second operating part, a second sliding part that slides with the gun body, and a second driving part. The empty hanger has a first force-bearing part and a second force-bearing part. When the first pull handle is pulled, the first force-bearing part and the first driving part are combined to push the empty hanger to slide, while the second pull handle remains stationary. When the second pull handle is pulled, the second force-receiving part and the second driving part combine to push the empty hanging part to slide, while the first pull handle remains stationary.
5. The toy gun of claim 4, wherein, The first and second force-bearing parts are arranged back and forth along the sliding direction of the empty hanging part.
6. The toy gun of claim 5, wherein, The gun body is provided with a slide rail, and the first force-bearing part and the second force-bearing part are slidably sleeved on the slide rail.
7. The toy gun of claim 1, wherein The unlocking assembly includes a first unlocking component and a second unlocking component arranged opposite to each other on the left and right sides of the gun body. The first unlocking component and the second unlocking component are movably disposed on the gun body and can unlock the locking component respectively.
8. The toy gun of claim 7, wherein, The first unlocking component includes a first button portion and a first actuating portion, and the second unlocking component includes a second button portion and a second actuating portion, wherein the first actuating portion and the second actuating portion act on different positions of the locking component.
9. The toy gun of claim 8, wherein, The locking member is located between the first unlocking member and the second unlocking member, and the first and second functional parts extend laterally toward each other.
10. The toy gun of claim 1, wherein The locking member has a locking position for locking the empty hanging part and a releasing position for releasing the empty hanging part. The toy gun also includes a fourth elastic member that acts on the locking member to reset it from the releasing position to the locking position.