A toy soft gun
By simplifying the ammunition feeding structure and the linkage design, the problem of soft bullets getting stuck in soft bullet guns has been solved, achieving smooth firing and low-cost production, and improving the playing experience.
Patent Information
- Application Number
- CN202521804417.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-25
- Publication Date
- 2026-06-19
- Estimated Expiration
- 2035-08-25
AI Technical Summary
Existing toy soft bullet guns suffer from the problem that the soft bullets are prone to deformation and jamming during firing, resulting in inconsistent firing. They also have complex structures and high production costs, which negatively impact the player experience.
Design a toy soft bullet gun with a simple feeding structure. The soft bullet ejection mechanism is linked to the loading and firing mechanism to achieve automatic ejection and firing of the soft bullet, avoiding the soft bullet from moving along an arc, simplifying the structure and reducing jamming.
It enables smooth firing of soft bullet guns, simplifies structural design, reduces production costs, and improves the continuity of play and entertainment experience.
Smart Images

Figure CN224382256U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to toy guns, and more particularly to a toy soft bullet gun. Background Technology
[0002] In the toy gun industry, many designs strive to simulate the operation of real firearms to enhance the realism of the playing experience. Some existing toy bullet guns incorporate simulated loading mechanisms, attempting to provide players with a more realistic experience. For example, a toy gun with an ejection mechanism, disclosed on January 7, 2022, with publication number CN215447598U, uses an arc-shaped guide section on the outer shell. This guide section extends from the front of the feed port to the front of the barrel, with a feed port located below the chamber. During loading, the magazine pushes the bullet upwards, allowing it to move directly to the barrel along the arc-shaped guide section and be caught by the external gas cylinder during its reset. This type of toy gun automatically feeds the bullet at an angle into the firing mechanism, enhancing the realism of the toy gun's operation to a certain extent.
[0003] However, current designs of this type have significant flaws. Because soft cartridges are typically made of relatively soft materials, they are highly susceptible to deformation due to compression or impact during the oblique feeding process through the loading device into the firing mechanism. Once deformed, the cartridge is highly likely to get stuck in the delivery path, preventing the toy gun from firing properly and severely impacting the continuity and smoothness of gameplay. Furthermore, the loading device structure of these toy guns is relatively complex and requires high precision. For example, in the aforementioned toy gun with an ejection mechanism, the alignment between the external gas cylinder's repositioning and the cartridge's movement is crucial. This not only increases the production cost and manufacturing difficulty of the toy gun but also makes it prone to malfunctions during use, requiring frequent repairs. More importantly, this overly complex design largely deviates from the essential function of toy guns as entertainment products. It prioritizes simulation at the expense of the toy gun's inherent playability, leading to frequent cartridge jamming issues and a poor entertainment experience for players. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a toy soft bullet gun that can deliver new soft bullets after firing, and has a simple structure and the soft bullets are not easy to get stuck.
[0005] To solve the above technical problems, the following technical solution is adopted:
[0006] A toy soft bullet gun includes a shell, a magazine, an external air cylinder, a loading and firing mechanism, and a triggering mechanism. The magazine, external air cylinder, loading and firing mechanism, and triggering mechanism are respectively disposed on the shell. The external air cylinder has a piston that can move back and forth along the external air cylinder. The shell has a firing hole corresponding to the front end of the external air cylinder. The piston is driven by the drive end of the loading and firing mechanism. The triggering mechanism cooperates with the loading and firing mechanism. The toy soft bullet gun is characterized in that: the shell also has a feeding hole; the toy soft bullet gun also includes a soft bullet ejection mechanism, which is disposed on the shell and is linked to the loading and firing mechanism. The drive end of the soft bullet ejection mechanism corresponds to the bullet outlet of the magazine, and the drive end of the soft bullet ejection mechanism is located behind the feeding hole.
[0007] In use, the aforementioned toy soft bullet gun stores multiple reserve soft bullets in its magazine. When the player loads the magazine using the firing mechanism, the top reserve soft bullet is ejected from the magazine's ejection port and positioned in front of the soft bullet ejection mechanism's drive end. When the player fires the soft bullet from the firing port using the trigger mechanism, the soft bullet ejection mechanism simultaneously ejects the front reserve soft bullet from the feed port. The player can then load the magazine, remove the reserve soft bullet from the feed port, and insert it back into the firing port, waiting for the next load and fire, repeating the cycle. This toy soft bullet gun ejects new reserve soft bullets from the feed port after each fire, making them easy for the player to use. The entire feeding process does not require complex structures or precise coordination; it simply pushes the soft bullet from the magazine forward without any arc-shaped movement. Its simple structure and operation prevent the soft bullet from getting stuck.
[0008] In a preferred embodiment, the feed port is located above or below the firing port.
[0009] In a preferred embodiment, the soft bullet ejection mechanism includes a soft bullet ejector, which is movably disposed within the housing. The soft bullet ejector is linked to the loading and firing mechanism. A front push block is provided at the front end of the soft bullet ejector. In the loading state, the front push block is positioned above and behind the magazine outlet. In the firing state, the front push block is positioned above the magazine outlet and behind the feed port. During loading, the soft bullet ejector moves backward, causing the front push block to move above and behind the magazine outlet. At this time, the magazine outlet is not obstructed, and the magazine can eject the topmost prepared soft bullet from the outlet, placing the prepared soft bullet in front of the front push block. During firing, the soft bullet ejector moves forward, causing the front push block to push the prepared soft bullet out of the feed port. Simultaneously, the front push block obstructs the magazine outlet, preventing the soft bullet from being ejected from the magazine outlet.
[0010] In a further preferred embodiment, the loading and firing mechanism includes a bolt, a bolt linkage, and a piston return spring. The bolt is movably mounted on the outer casing. The bolt linkage and the soft cartridge ejector are connected to the bolt. The front end of the bolt linkage is connected to the piston, forming the driving end of the loading and firing mechanism. The piston return spring is located at the rear of the outer gas cylinder, with its front end contacting or connecting to the piston and its rear end contacting or connecting to the rear end of the outer gas cylinder. The triggering mechanism includes a limiting element that prevents the bolt linkage from moving forward in the loaded state. The loaded state refers to the piston of the outer gas cylinder being in its maximum extension state. During loading, pulling the bolt back causes the bolt linkage to move the piston of the external gas cylinder backward. Once the piston reaches its maximum extension, a limiting component in the firing mechanism blocks the piston, preventing it from returning to its original position, thus completing the loading process. Simultaneously, the ejector block is pulled by the bolt, moving the front ejector block to the rear above the magazine ejection port. At this point, the soft cartridge in the magazine can be ejected from the magazine ejection port and placed in front of the front ejector block. During firing, pulling the trigger activates the limiting component, removing it from obstruction of the piston. The piston then quickly returns to its original position under the action of the piston return spring, allowing the external gas cylinder to fire the soft cartridge. At the same time, the front ejector block pushes the prepared soft cartridge out of the feed port.
[0011] In a further preferred embodiment, the triggering mechanism includes a trigger, a limiting linkage, and a limiting linkage return spring. The limiting linkage is movably disposed within the housing. The lower end of the limiting linkage has a downwardly extending first guide post. The limiting linkage return spring is sleeved on the first guide post, and the upper end of the limiting linkage return spring is connected to or in close contact with the lower end of the limiting linkage. The lower end of the limiting linkage return spring is connected to or in close contact with the housing. The upper end of the limiting linkage has the limiting member, and the lower part of the bolt linkage has a limiting notch matching the limiting member. The middle part of the limiting linkage has a guide groove with an opening facing forward and backward. The rear end of the trigger has a rearwardly extending trigger linkage that passes through the guide groove. The lower rear side of the trigger linkage has a first inclined surface that slopes upward from front to back, and the first inclined surface contacts the lower edge of the guide groove. When the bolt linkage moves backward, the limiting linkage first descends, and then, corresponding to the limiting notch, moves upward under the action of the limiting linkage return spring, locking into the limiting notch. When the trigger is pulled to fire, the trigger linkage moves backward along the guide groove with the trigger. At this time, the trigger linkage pushes the limiting linkage downward through the first inclined surface, causing the upper end of the limiting linkage to leave the limiting notch. This allows the piston of the bolt linkage and the external gas cylinder to quickly return to its original position under the action of the piston return spring, ejecting the soft cartridge. As the trigger is released, the limiting linkage returns to its original position under the action of the limiting linkage return spring, pushing the trigger linkage and the trigger forward again.
[0012] In a further preferred embodiment, the triggering mechanism further includes a trigger return spring. The trigger has a rearwardly extending second guide post, and the trigger return spring is sleeved on the second guide post. The front end of the trigger return spring is connected to or in close contact with the trigger, and the rear end of the trigger return spring is connected to or in close contact with the housing or the limiting linkage. When the trigger is released, the trigger can move forward again under the action of the trigger return spring, causing the trigger linkage to move forward and leave the guide groove. At this time, the limiting linkage returns to its original position under the action of the limiting linkage return spring. Typically, the trigger and the trigger linkage are made as a single unit.
[0013] The aforementioned method of cooperating the triggering mechanism with the loading and firing mechanism can also adopt the method of cooperating the triggering mechanism with the ejection mechanism as described in patent number CN208059683U.
[0014] In a further preferred embodiment, the lower rear side of the bolt linkage is provided with a second inclined surface that slopes upward from front to back, and the front side of the limiting member is provided with a third inclined surface that slopes upward from front to back, with the second and third inclined surfaces corresponding to each other. By providing the second and third inclined surfaces, when the bolt linkage moves backward, the limiting member can more easily engage with the limiting notch.
[0015] In a further preferred embodiment, the magazine includes a magazine housing, a pusher block, and a pusher block compression spring. The magazine housing has a feed channel extending vertically, and the upper end of the magazine housing has an outlet port communicating with the feed channel. The pusher block is movably disposed in the feed channel, and the upper end of the pusher block compression spring is connected to or in contact with the pusher block, while the lower end of the pusher block compression spring is connected to or in contact with the bottom of the feed channel. When the magazine stores reserve soft cartridges, each reserve soft cartridge is stacked sequentially from top to bottom in the feed channel. At this time, the soft cartridges compress the pusher block compression spring through the pusher block. During loading, the soft cartridge ejector moves backward, causing the front push block to move above and behind the magazine's ejection port. At this point, the magazine's ejection port is unobstructed, and the push block compresses the spring, pushing the topmost reserve soft cartridge out of the ejection port, positioning it in front of the front push block. During firing, the soft cartridge ejector moves forward, causing the front push block to push the reserve soft cartridge out of the feed port. Simultaneously, the front push block blocks the magazine's ejection port, preventing the reserve soft cartridge from being ejected. This design allows the reserve soft cartridge to be ejected directly upward without needing to move along an arc.
[0016] In a further preferred embodiment, the upper end of the magazine housing is provided with two arc-shaped ammunition-limiting blocks. These two blocks are located on either side of the upper end of the ejection port, and a cartridge-holding space is formed between them. This cartridge-holding space matches the shape of the front top block. The cartridge-holding space also matches the shape of the soft cartridge. During loading, after the push block ejects the prepared soft cartridge from the ejection port, the prepared soft cartridge remains within the cartridge-holding space under the constraint of the arc-shaped ammunition-limiting blocks. During firing, the front top block extends into the cartridge-holding space to eject the prepared soft cartridge. Typically, the magazine is mounted on the outer casing at a certain angle, and the upper surface of the push block is also a matching inclined surface. Therefore, when loading a soft cartridge, one hand simply inserts the cartridge along the surface of the push block from the front or rear end of the two arc-shaped ammunition-limiting blocks, while the other hand presses down the inserted cartridge to complete the loading process smoothly.
[0017] In a preferred embodiment, the toy soft bullet gun further includes a scope, which is mounted on the housing or bolt.
[0018] The beneficial effects of this invention are that this toy soft bullet gun can deliver new soft bullets after firing, and its simple structure makes it less prone to jamming. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the toy soft bullet gun in the embodiment of this utility model;
[0020] Figure 2 This is a schematic diagram of the structure of the toy soft bullet gun after removing part of the outer shell in the loaded state according to an embodiment of the present utility model;
[0021] Figure 3 This is a schematic diagram of the toy soft bullet gun after removing the outer shell in the loaded state according to an embodiment of the present invention;
[0022] Figure 4 This is a schematic diagram of the structure of the toy soft bullet gun in the firing state after part of the outer shell has been removed in this embodiment of the utility model;
[0023] Figure 5 This is a schematic diagram of the soft spring ejector in an embodiment of the present invention;
[0024] Figure 6 This is a schematic diagram of the bolt linkage component in an embodiment of this utility model;
[0025] Figure 7 This is a schematic diagram of the limiting linkage component in an embodiment of the present utility model;
[0026] Figure 8 This is a schematic diagram of the trigger structure in an embodiment of the present utility model;
[0027] Figure 9This is a schematic diagram of the internal structure of the magazine in an embodiment of this utility model. Detailed Implementation
[0028] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0029] like Figure 1-9 The toy soft bullet gun shown includes a shell 1, a magazine 2, an external air cylinder 3, a loading and firing mechanism 4, a triggering mechanism 5, and a soft bullet ejection mechanism 6. The magazine 2, external air cylinder 3, loading and firing mechanism 4, triggering mechanism 5, and soft bullet ejection mechanism 6 are respectively disposed on the shell 1. The external air cylinder 3 is provided with a piston that can move back and forth along the external air cylinder 3. The shell 1 is provided with a firing hole 101 corresponding to the front end position of the external air cylinder 3. The piston is driven by the driving end of the loading and firing mechanism 4. The triggering mechanism 5 cooperates with the loading and firing mechanism 4. The shell 1 is also provided with a feeding hole 102, which is located below the firing hole 101. The soft bullet ejection mechanism 6 is linked to the loading and firing mechanism 4. The driving end of the soft bullet ejection mechanism 6 corresponds to the bullet outlet position of the magazine 2, and the driving end of the soft bullet ejection mechanism 6 is located behind the feeding hole 102.
[0030] When the toy soft bullet gun is in use, the magazine 2 stores multiple reserve soft bullets 7. When the player loads the magazine through the loading and firing mechanism 4, the reserve soft bullet 7 at the top of the magazine 2 can be pushed out from the magazine 2's ejection port and positioned in front of the drive end of the soft bullet ejection mechanism 6. When the player fires the soft bullet 7 in the firing port 101 by triggering the loading and firing mechanism 5 to operate the loading and firing mechanism 4, the soft bullet ejection mechanism 6 can simultaneously push the reserve soft bullet 7 in front from the feed port 102 along with the loading and firing mechanism 4. At this time, the player can first load the magazine through the loading and firing mechanism 4, then pull out the reserve soft bullet 7 from the feed port 102 and insert it into the firing port 101, waiting for the next loading and firing, and so on. This toy soft bullet gun can simultaneously eject a new reserve soft bullet 7 from the feed port 102 after firing, making it easy for the player to use. The entire feeding process does not require a complex structure for precise coordination. It only requires pushing the soft bullet 7 from the magazine 2 forward. There is no need to move along an arc. Its structure and action are simple, and there will be no situation where the soft bullet 7 gets stuck.
[0031] The soft bullet ejection mechanism 6 includes a soft bullet ejection component, which is movable back and forth in the housing 1. The soft bullet ejection component is linked with the loading and firing mechanism 4. The front end of the soft bullet ejection component is provided with a front top block 601. In the loading state, the front top block 601 is located above and behind the magazine 2's ejection port. In the firing state, the front top block 601 is located above the magazine 2's ejection port and behind the feed hole 102. When loading, the soft bullet ejector moves backward, causing the front top block 601 to move to the rear side above the magazine 2's ejection port. At this time, the magazine 2's ejection port is not blocked, and the magazine 2 can push the topmost reserve soft bullet 7 out of the ejection port, so that the reserve soft bullet 7 is in front of the front top block 601. When firing, the soft bullet ejector moves forward, causing the front top block 601 to push the reserve soft bullet 7 out of the feed hole 102. At the same time, the front top block 601 blocks the magazine 2's ejection port, so the soft bullet 7 cannot be ejected from the magazine 2's ejection port.
[0032] The loading and firing mechanism 4 includes a bolt 401, a bolt linkage 402, and a piston return spring 403. The bolt 401 is movably mounted on the outer casing 1. The bolt linkage 402 and the soft cartridge ejector are connected to the bolt 401. The front end of the bolt linkage 402 is connected to the piston, and the front end of the bolt linkage 402 constitutes the driving end of the loading and firing mechanism 4. The piston return spring 403 is located at the rear of the outer gas cylinder 3, and the front end of the piston return spring 403 is in contact with or connected to the piston, and the rear end of the piston return spring 403 is in contact with or connected to the rear end of the outer gas cylinder 3. The triggering mechanism 5 is provided with a limiting member 5022 that can prevent the bolt linkage 402 from moving forward in the loaded state. The loaded state refers to the piston of the outer gas cylinder 3 being in the maximum extension state. When chambering, pulling the bolt 401 backward causes the bolt linkage 402 to pull the piston of the external gas cylinder 3 backward. After the piston reaches its maximum extension, the limiting member 5022 in the firing mechanism blocks the piston, preventing it from returning to its original position, thus completing the chambering. At the same time, the soft cartridge ejector is pulled by the bolt 401, causing the front ejector block 601 to move to the rear side above the magazine 2's ejection port. At this time, the soft cartridge 7 in the magazine 2 can be ejected from the magazine 2's ejection port to the front of the front ejector block 601. When firing, pulling the trigger 501 will cause the limiting member 5022 to move, so that the limiting member 5022 no longer blocks the piston. At this time, the piston will quickly return to its original position under the action of the piston return spring 403, allowing the external gas cylinder 3 to fire the soft cartridge 7. At the same time, the front ejector block 601 can push the prepared soft cartridge 7 out of the feed port 102.
[0033] The triggering mechanism 5 includes a trigger 501, a limiting linkage member 502, and a limiting linkage member return spring 503. The limiting linkage member 502 is movably disposed in the housing 1. The lower end of the limiting linkage member 502 is provided with a downwardly extending first guide post 5021. The limiting linkage member return spring 503 is sleeved on the first guide post 5021, and the upper end of the limiting linkage member return spring 503 is connected to or in close contact with the lower end of the limiting linkage member 502. The lower end of the limiting linkage member return spring 503 is connected to or in close contact with the housing 1. The upper end of component 2 constitutes a limiting member 5022. The lower part of the bolt linkage component 402 is provided with a limiting notch 4021 that matches the limiting member 5022. The middle part of the limiting linkage component 502 has a guide groove 5023 with an opening facing forward and backward. The rear end of the trigger 501 is provided with a trigger linkage component 5011 that extends backward. The trigger linkage component 5011 passes through the guide groove 5023, and the lower rear side of the trigger linkage component 5011 is provided with a first inclined surface 50111 that slopes upward from front to back. The first inclined surface 50111 contacts the lower edge of the guide groove 5023. When the bolt linkage component 402 moves backward, the limiting linkage component 502 can first descend, and then, when corresponding to the limiting notch 4021, move upward under the action of the limiting linkage component return spring 503 and engage in the limiting notch 4021. When the trigger 501 is pulled to fire, the trigger linkage 5011 moves backward along the guide groove 5023 with the trigger 501. At this time, the trigger linkage 5011 pushes the limiting linkage 502 downward through the first inclined surface 50111, so that the upper end of the limiting linkage 502 leaves the limiting notch 4021, and the piston of the bolt linkage 402 and the external gas cylinder 3 can quickly return to their original positions under the action of the piston return spring 403, thus firing the soft bullet 7. When the trigger 501 is released, the limiting linkage 502 can return to its original position upward under the action of the limiting linkage return spring 503, and push the trigger linkage 5011 and the trigger 501 forward again.
[0034] The triggering mechanism 5 also includes a trigger return spring 504. The trigger 501 has a rearwardly extending second guide post 5012. The trigger return spring 504 is sleeved on the second guide post 5012, with its front end connected to or in close contact with the trigger 501, and its rear end connected to or in close contact with the housing 1 or the limiting linkage member 502. When the trigger 501 is released, it can move forward again under the action of the trigger return spring 504, causing the trigger linkage member 5011 to move forward and leave the guide groove 5023. At this time, the limiting linkage member 502 returns to its original position under the action of the limiting linkage member return spring 503. Typically, the trigger 501 and the trigger linkage member 5011 are integrated.
[0035] The lower rear side of the bolt linkage 402 has a second inclined surface 4022 that slopes upward from front to back, and the front side of the limiting member 5022 has a third inclined surface 50221 that slopes upward from front to back. The second inclined surface 4022 and the third inclined surface 50221 correspond to each other. By providing the second inclined surface 4022 and the third inclined surface 50221, when the bolt linkage 402 moves backward, the limiting member 5022 can be more easily engaged into the limiting notch 4021.
[0036] The magazine 2 includes a magazine housing 201, a pusher block 202, and a pusher block compression spring (not shown in the figure). The magazine housing 201 has a feed channel extending vertically, and the upper end of the magazine housing 201 has a discharge port communicating with the feed channel. The pusher block 202 is movably disposed in the feed channel. The upper end of the pusher block compression spring is connected to or in contact with the pusher block 202, and the lower end of the pusher block compression spring is connected to or in contact with the bottom of the feed channel. When the magazine 2 stores reserve soft bullets 7, each reserve soft bullet 7 is stacked sequentially from top to bottom in the feed channel. At this time, the soft bullets 7 compress the pusher block compression spring through the pusher block 202. During loading, the soft cartridge ejector moves backward, causing the front push block 601 to move above and behind the magazine 2's ejection port. At this time, the magazine 2's ejection port is not obstructed, and the push block compresses the spring, pushing the uppermost reserve soft cartridge 7 out of the ejection port through the push block 202, placing the reserve soft cartridge 7 in front of the front push block 601. During firing, the soft cartridge ejector moves forward, causing the front push block 601 to push the reserve soft cartridge 7 out of the feed hole 102. At the same time, the front push block 601 blocks the magazine 2's ejection port, preventing the reserve soft cartridge 7 from being ejected from the magazine 2's ejection port. With this configuration, the reserve soft cartridge 7 can be ejected directly upward without needing to move along an arc.
[0037] The upper end of the magazine housing 201 is provided with two arc-shaped ammunition limiting blocks 2011. The two arc-shaped ammunition limiting blocks 2011 are located on both sides of the upper end of the ejection port, and the two arc-shaped ammunition limiting blocks 2011 form a cartridge-holding space. The cartridge-holding space matches the shape of the front top block 601. The cartridge-holding space matches the shape of the soft cartridge 7. When loading, after the push block 202 pushes the prepared soft cartridge 7 out of the ejection port, the prepared soft cartridge 7 can stay in the cartridge-holding space under the restriction of the arc-shaped ammunition limiting blocks 2011; when firing, the front top block 601 can extend into the cartridge-holding space to push out the prepared soft cartridge 7. Normally, the magazine 2 is installed on the outer shell 1 at a certain angle, and the upper surface of the push block 202 is also a matching inclined surface; therefore, when loading the soft cartridge 7, one hand only needs to insert the soft cartridge 7 along the surface of the push block 202 from the front or rear end of the two arc-shaped ammunition limiting blocks 2011, and the other hand presses down the inserted soft cartridge 7 to complete the loading smoothly.
[0038] The toy soft pellet gun also includes a scope 8, which is mounted on the bolt 401.
Claims
1. A toy soft bullet gun, comprising a shell, a magazine, an external gas cylinder, a loading and firing mechanism, and a triggering mechanism, wherein the magazine, external gas cylinder, loading and firing mechanism, and triggering mechanism are respectively disposed on the shell, the external gas cylinder has a piston capable of moving back and forth along the external gas cylinder, and the shell has a firing hole corresponding to the front end position of the external gas cylinder; the piston is kinetically connected to the drive end of the loading and firing mechanism, and the triggering mechanism cooperates with the loading and firing mechanism, characterized in that: The outer shell is also provided with a feeding hole; the toy soft bullet gun also includes a soft bullet ejection mechanism, which is disposed on the outer shell and is linked to the loading and firing mechanism. The driving end of the soft bullet ejection mechanism corresponds to the bullet outlet of the magazine, and the driving end of the soft bullet ejection mechanism is located behind the feeding hole.
2. A toy soft gun as in claim 1, wherein: The feed port is located above or below the firing port.
3. A toy soft gun as in claim 1, wherein: The soft bullet ejection mechanism includes a soft bullet ejection member, which is movably disposed in the housing. The soft bullet ejection member is linked to the loading and firing mechanism. The front end of the soft bullet ejection member is provided with a front push block. In the loading state, the front push block is located above and behind the magazine outlet. In the firing state, the front push block is located above the magazine outlet and behind the feed hole.
4. A toy soft gun as in claim 3, wherein: The loading and firing mechanism includes a bolt, a bolt linkage, and a piston return spring. The bolt is movably mounted on the outer casing. The bolt linkage and the soft bullet ejector are connected to the bolt. The front end of the bolt linkage is connected to the piston, and the front end of the bolt linkage constitutes the driving end of the loading and firing mechanism. The piston return spring is located at the rear of the outer gas cylinder, and the front end of the piston return spring contacts or connects to the piston, while the rear end of the piston return spring contacts or connects to the rear end of the outer gas cylinder. The triggering mechanism is equipped with a limiting component that can prevent the bolt linkage from moving forward in the loading state.
5. A toy soft gun as in claim 4, wherein: The triggering mechanism includes a trigger, a limiting linkage, and a limiting linkage return spring. The limiting linkage is movably mounted in the housing. The lower end of the limiting linkage has a downwardly extending first guide post. The limiting linkage return spring is sleeved on the first guide post, and the upper end of the limiting linkage return spring is connected to or in close contact with the lower end of the limiting linkage. The lower end of the limiting linkage return spring is connected to or in close contact with the housing. The upper end of the limiting linkage has the limiting member, and the lower part of the bolt linkage has a limiting notch that matches the limiting member. The middle part of the limiting linkage has a guide groove with an opening facing forward and backward. The rear end of the trigger has a rearwardly extending trigger linkage that passes through the guide groove. The lower rear side of the trigger linkage has a first inclined surface that slopes upward from front to back, and the first inclined surface contacts the lower edge of the guide groove.
6. A toy soft gun as in claim 5, wherein: The triggering mechanism also includes a trigger return spring. The trigger is provided with a rearwardly extending second guide post. The trigger return spring is sleeved on the second guide post, and the front end of the trigger return spring is connected to or in close contact with the trigger, and the rear end of the trigger return spring is connected to or in close contact with the housing or the limiting linkage component.
7. A toy soft gun as in claim 5, wherein: The lower rear side of the bolt linkage is provided with a second inclined surface that slopes upward from front to back, and the front side of the limiting member is provided with a third inclined surface that slopes upward from front to back, with the second and third inclined surfaces corresponding to each other.
8. A toy soft gun as in claim 3, wherein: The magazine includes a magazine housing, a pusher block, and a pusher block compression spring. The magazine housing has a feed channel extending in the vertical direction, and the upper end of the magazine housing has an outlet that communicates with the feed channel. The pusher block is movably disposed in the feed channel. The upper end of the pusher block compression spring is connected to or in contact with the pusher block, and the lower end of the pusher block compression spring is connected to or in contact with the bottom of the feed channel.
9. A toy soft gun as in claim 8, wherein: The upper end of the magazine housing is provided with two arc-shaped ammunition limiting blocks. The two arc-shaped ammunition limiting blocks are located on both sides of the upper end of the ammunition outlet, and the two arc-shaped ammunition limiting blocks form an ammunition holding space, which matches the shape of the front top block.
10. A toy soft gun as in claim 1, wherein: The toy soft pellet gun also includes a scope, which is mounted on the housing or bolt.
Citation Information
Patent Citations
Ejecting toy
CN208059683U
Toy gun with shell throwing device
CN215447598U