A soft spring lever action gun

CN224815506UActive Publication Date: 2026-09-29李速丰
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522062673.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-09-29
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

[0002]目前市面上的软弹枪多数为手动装填式软弹枪,其采用单发装填设计,每发射一枚软弹后需手动重新塞入新弹,频繁的装弹操作严重打断玩耍流程,导致游戏持续性差、用户沉浸感不足

Benefits of technology

本申请的软弹左轮枪既借助多弹槽的转轮实现了供弹结构的连续化,又依托活塞杆与第一弹性部件的配合提供了稳定的气体驱动发射功能,有效解决了传统单发射结构的供弹效率低和现有转轮式结构驱动力不足的问题,兼顾了稳定性与连续性,用户使用体验感好。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224815506U_ABST
    Figure CN224815506U_ABST
Patent Text Reader

Abstract

The application discloses a soft bullet revolver, which comprises a gun shell, a rotating wheel, a gas cylinder assembly, a piston rod, a first elastic component, a release assembly and a sliding piece. The rotating wheel is rotatably arranged in the gun shell and has a plurality of bullet grooves. The gas cylinder assembly is arranged in the gun shell. The piston rod is arranged in the gun shell. The first elastic component is sleeved on the piston rod. The release assembly is arranged in the gun shell. The sliding piece is slidably connected to the gun shell. Under the action of external force, the piston rod can be driven to move and drive the rotating wheel to rotate. When the release assembly releases the sliding piece, the first elastic component elastically releases and pushes the piston rod to move to one side of the first cavity. The soft bullet revolver has the advantages that the continuous bullet feeding structure is realized by means of the rotating wheel with a plurality of bullet grooves, the stable gas-driven launching function is provided by means of the cooperation of the piston rod and the first elastic component, the problems of low bullet feeding efficiency of a traditional single-launching structure and insufficient driving force of an existing rotating wheel structure are solved, the stability and continuity are considered, and the user experience is good.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of toy gun technology, specifically to a soft-bullet revolver. Background Technology

[0002] Most soft-bullet guns on the market are currently manually loaded, employing a single-shot loading design. After each soft-bullet is fired, a new one must be manually loaded. This frequent reloading severely disrupts gameplay, resulting in poor game continuity and insufficient user immersion. Another type of soft-bullet gun on the market is the revolver-type, which relies on a trigger to directly press the drive plate for firing. This drive method is limited by the trigger structure and the amount of manual pressure, resulting in lower drive force output and issues such as short firing distance and insufficient kinetic energy, failing to meet users' demands for shooting performance. The structural defects of both types of products combined result in an inability to balance ammunition feeding efficiency and firing performance in existing soft-bullet guns, making it difficult to provide a superior user experience.

[0003] In view of the above, this utility model is hereby proposed. Utility Model Content

[0004] To solve one of the aforementioned technical problems, this utility model provides a soft-bullet revolver.

[0005] This application provides the following technical solution: A soft-bullet revolver, comprising: Gun casing; A rotating cylinder, rotatably mounted on the gun housing, the rotating cylinder having multiple cartridge slots, and a rotating engagement component mounted on the rotating cylinder; An air cylinder assembly is disposed on a gun casing. The air cylinder assembly has a first cavity and a second cavity. The inner diameter of the second cavity is larger than that of the first cavity. A baffle is provided between the second cavity and the first cavity. The baffle has a through hole to connect the first cavity and the second cavity. A piston rod is located inside the gun case. A piston is provided at one end of the piston rod, which is located in the second cavity. The other end of the piston rod extends out of the gas cylinder assembly. A first elastic component is sleeved on the piston rod, and its two ends abut against the piston and the gun casing, respectively. A release assembly disposed on the gun casing; A sliding member, slidably connected to the gun housing, and connected to the piston rod; Under the action of external force, the sliding member can move towards the rear of the gun case, which can drive the piston rod to move, compress the first elastic member, drive the rotating wheel to rotate, so that a cartridge groove of the rotating wheel connects to the first cavity of the gas cylinder assembly, and the piston rod is engaged with the release assembly; When the release component releases the slider, the first elastic component elastically releases and pushes the piston rod toward the first cavity side.

[0006] Optionally, the soft-ball revolver includes a stop and a second elastic component; The air outlet end of the air cylinder assembly is provided with a limiting plate, which is located at the end of the first cavity away from the second cavity, and a vent hole is provided on the limiting plate. Both the abutting member and the second elastic member are located in the first cavity, and are situated between the limiting plate and the baffle. The second elastic member abuts against the abutting member and the baffle at both ends, with the abutting member extending out of the vent hole on the limiting plate; With the soft bullet inserted into the bullet groove, the pusher can be moved towards the baffle to open the vent hole; When the piston moves toward the first chamber, it can compress the air in the first and second chambers, causing the abutment to move toward the cartridge groove, and the soft cartridge flies away from the gun casing.

[0007] Optionally, the abutment includes a sealing piece and an abutment top disposed on one side of the sealing piece along the thickness direction; The top is provided through the vent hole; The second elastic member abuts against the side of the sealing piece opposite to the abutment top; When the sealing piece moves to contact the limiting plate, it can cover the vent hole.

[0008] Optionally, the abutment is a sheet-like body, and the width of the abutment gradually decreases along the thickness direction of the sealing sheet.

[0009] Optionally, the sealing plate is provided with an air inlet, which is closed when the sealing plate is in contact with the limiting plate; When the sealing plate and the limiting plate are separated, the air inlet is in a conductive state.

[0010] Optionally, the soft-ball revolver includes a rotary drive; The rotary drive component is slidably disposed on the gun casing; The rotary drive component and the rotary mating component are in a transmission engagement; The rotary drive and the sliding member are in a transmission cooperation. The sliding member can move towards the tail of the gun case, which can drive the rotary drive to push the rotary cooperation member to rotate, so that one of the cartridge slots of the rotating wheel is connected to the first cavity.

[0011] Optionally, the rotary drive includes a main body and a push block disposed on the main body; The rotating fitting includes a shaft and a plurality of rotating pushers. One end of the shaft is connected to the rotating wheel, and each rotating pusher is disposed at the other end of the shaft. The rotating pushers are arranged sequentially at intervals around the circumference of the shaft. The main body and the piston rod are connected by a transmission. When the piston rod moves toward the rear of the gun case, it can drive the main body to move, so that the push block pushes against the rotating push bar, causing the rotating wheel to rotate.

[0012] Optionally, a third elastic component connects the main body and the gun casing; When the piston rod is reset, the third elastic component restores its deformation, pulling the main body to move towards the rotating wheel side, so that the push block moves away from each of the rotating push ribs.

[0013] Optionally, the piston rod includes a main piston rod and an additional section; One end of the main piston rod is connected to the piston; The additional section is parallel to the main piston rod, and the additional section is connected to the other end of the main piston rod; A sliding groove is provided on the additional section; A convex shaft is provided on the main body, and the convex shaft is inserted into the sliding groove; As the additional section moves toward the tail of the gun, one end of the slide can push the convex axis to move toward the tail of the gun.

[0014] Optionally, a bayonet is provided on the piston rod; The release assembly includes a first rotating element, a second rotating element, and a trigger; The trigger is movably mounted on the gun casing; The first rotating component is hinged to the gun shell at its middle part, and a locking protrusion is provided at one end of the first rotating component; The second rotating member is rotatably disposed on the gun casing; When the piston rod moves to its limit position towards the rear of the gun case, the locking protrusion can engage with the locking slot; When the trigger moves, it can drive the second rotating component to rotate, and the second rotating component drives the first rotating component to rotate, causing the latch to disengage from the latch.

[0015] By adopting the above technical solution, this application has the following beneficial effects: The soft-bullet revolver of this application not only achieves a continuous feeding structure by means of a multi-groove rotary wheel, but also provides a stable gas-driven firing function by means of the cooperation between the piston rod and the first elastic component. It effectively solves the problems of low feeding efficiency of traditional single-firing structures and insufficient driving force of existing rotary structures, and takes into account both stability and continuity, resulting in a good user experience. Attached Figure Description

[0016] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments and descriptions of the present invention are used to explain the present invention, but do not constitute an undue limitation of the present invention. Obviously, the drawings described below are merely some embodiments, and those skilled in the art can obtain other drawings based on these drawings without any creative effort.

[0017] Figure 1 A schematic diagram of the external structure of the soft bullet revolver provided in this embodiment of the utility model; Figure 2 A schematic diagram of the internal structure of a soft-bullet revolver provided in an embodiment of this utility model; Figure 3 A schematic diagram illustrating the interaction of the cylinder, air cylinder assembly, piston rod, release assembly, sliding component, and rotating fitting component in a soft bullet revolver provided for an embodiment of this utility model. Figure 4 A schematic diagram of the structure of the soft bullet revolver provided in this embodiment of the present utility model, showing the mutual cooperation of the rotating wheel, rotating fitting component, abutting component, rotating driving component and limiting plate; Figure 5 A schematic diagram of the pusher and limiting plate of the soft bullet revolver provided in this embodiment of the utility model; Figure 6 A partial structural schematic diagram of the air cylinder assembly of the soft bullet revolver provided in this embodiment of the utility model; Figure 7 A schematic diagram of the piston rod of a soft-bullet revolver provided for an embodiment of this utility model; Figure 8 A schematic diagram of the rotating drive component of the soft bullet revolver provided in an embodiment of this utility model; Figure 9 A schematic diagram of the rotating assembly of a soft-bullet revolver provided in an embodiment of this utility model; Figure 10 A schematic diagram of the structure of the stop component of the soft bullet revolver provided in this embodiment of the utility model.

[0018] In the diagram: 1. Gun casing; 2. Rotary cylinder; 21. Magazine groove; 3. Gas cylinder assembly; 31. First cavity; 32. Second cavity; 33. Baffle; 331. Through hole; 34. Limiting plate; 341. Vent hole; 4. Piston rod; 41. Piston; 42. Main piston rod; 421. Bayonet; 43. Additional section; 431. Slide groove; 5. Release assembly; 51. First rotating component; 511. Locking protrusion; 52. Second rotating component; 53. Trigger; 6. Sliding component; 7. Rotating mating component; 71. Shaft; 72. Rotating pusher; 721. Mating inclined surface; 8. Abutment; 81. Sealing plate; 811. Air inlet; 82. Top abutment; 9. Rotating drive component; 91. Main body; 911. Protruding shaft; 92. Push block; 921. Inclined surface; 10. Soft bullet. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0020] In the description of this utility model, it should be noted that the terms "upper", "lower", "inner", "outer", etc., indicate the orientation or positional relationship 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.

[0021] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation" and "connection" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0022] like Figures 1 to 10As shown, this application embodiment provides a soft-bullet revolver, including: a gun case 1, a rotating cylinder 2, an air cylinder assembly 3, a piston rod 4, a first elastic component (not shown), a release component 5, and a sliding component 6. The rotating cylinder 2 is rotatably mounted on the gun case 1, and the rotating cylinder 2 has multiple bullet grooves 21. A rotating engagement component 7 is provided on the rotating cylinder 2. The air cylinder assembly 3 is disposed on the gun case 1, and the air cylinder assembly 3 has a first cavity 31 and a second cavity 32. The inner diameter of the second cavity 32 is larger than that of the first cavity 31. A baffle 33 is provided between the second cavity 32 and the first cavity 31. The baffle 33 has a through hole 331 to connect the first cavity 31 and the second cavity 32. The piston rod 4 is located inside the gun case 1. A piston 41 is provided at one end of the piston rod 4, and the piston 41 is located inside the second cavity 32. The other end of the piston rod 4 extends out of the air cylinder assembly 3. The first elastic component is sleeved on the piston rod 4, with its two ends abutting against the piston 41 and the gun housing 1, respectively. The first elastic component can be a spring. The release assembly 5 is disposed on the gun housing 1. The sliding member 6 is slidably connected to the gun housing 1 and connected to the piston rod 4. Under external force, the sliding member 6 can move towards the rear of the gun housing 1, driving the piston rod 4 to move, compressing the first elastic component, and driving the rotating wheel 2 to rotate, so that a cartridge groove 21 of the rotating wheel 2 connects to the first cavity 31 of the air cylinder assembly 3, and the piston rod 4 is engaged with the release assembly 5. When the release assembly 5 releases the sliding member 6, the first elastic component elastically releases and pushes the piston rod 4 towards the first cavity 31, causing the piston 41 to compress the air in the second cavity 32 to generate high-pressure gas. The high-pressure gas enters the first cavity 31 through the through hole 331, and the high-pressure gas ejects the soft cartridge 10 in the cartridge groove 21 of the rotating wheel 2 that connects to the first cavity 31 out of the gun housing 1. The soft-bullet revolver of this application not only achieves a continuous feeding structure by means of the rotating wheel 2 with multiple bullet slots 21, but also provides a stable gas-driven firing function by means of the cooperation between the piston rod 4 and the first elastic component. It effectively solves the problems of low feeding efficiency of traditional single firing structure and insufficient driving force of existing rotating wheel 2 structure, and takes into account both stability and continuity, resulting in a good user experience.

[0023] In one possible implementation, such as Figure 2 , Figure 4 and Figure 5As shown, the soft-bullet revolver includes a stopper 8 and a second elastic component (not shown). A limiting plate 34 is provided at the air outlet of the air cylinder assembly 3. The limiting plate 34 is located at the end of the first cavity 31 opposite to the second cavity 32, and a vent hole 341 is provided on the limiting plate 34. Both the stopper 8 and the second elastic component are located in the first cavity 31, between the limiting plate 34 and the baffle 33. The two ends of the second elastic component abut against the stopper 8 and the baffle 33 respectively, and a portion of the stopper 8 extends out of the vent hole 341 on the limiting plate 34. When the soft bullet 10 is loaded into the bullet groove 21, it can push the stopper 8 towards the baffle 33, thus opening the vent hole 341. There is a small gap between the rotary wheel 2 and the air cylinder assembly 3. When the soft bullet 10 is loaded into the cartridge slot 21, outside air can enter the first cavity 31 and the second cavity 32 through the vent hole 341 via the gap. This ensures sufficient air enters the first cavity 31 and the second cavity 32, ensuring that the gas passage is opened accurately in advance and avoiding power loss due to obstructed air passage during subsequent firing. When the piston 41 moves towards the first cavity 31, it compresses the air in the first cavity 31 and the second cavity 32, causing the pusher 8 to move towards the cartridge slot 21, and the soft bullet 10 flies off the gun casing 1. In this way, the high-pressure gas can concentrate the pusher 8 to move towards the cartridge slot 21, giving the soft bullet 10 a stable and sufficient driving force. This effectively solves the problem of short firing distance and trajectory deviation of the soft bullet 10 caused by insufficient driving force in the traditional rotary wheel 2 structure, further improving the stability and reliability of the soft bullet 10's firing performance.

[0024] like Figure 4 , Figure 5 and Figure 10 As shown, the abutment member 8 includes a sealing plate 81 and an abutment top 82 disposed on one side of the sealing plate 81 along its thickness direction. The abutment top 82 is disposed through the vent hole 341. The second elastic member abuts against the side of the sealing plate 81 opposite to the abutment top 82. When the sealing plate 81 moves to contact the limiting plate 34, it can cover the vent hole 341. In this way, the automatic and precise opening and closing of the vent hole 341 can be achieved through the cooperation of the sealing plate 81 and the abutment top 82 and the restoring force of the second elastic member, avoiding high-pressure gas leakage to ensure the launch gas pressure. It also eliminates the need for complex control components, has a simple structure, and can stabilize the gas path state and improve the consistency of launch performance through the contact and limiting of the sealing plate 81 with the limiting plate 34.

[0025] like Figure 10As shown, the abutment top 82 is a sheet-like body. Along the thickness direction of the sealing sheet 81, the width of the abutment top 82 gradually decreases, enabling precise guidance and engagement with the vent hole 341. This ensures that the abutment top 82 moves without obstruction, guaranteeing smooth airflow. The gradually decreasing width of the abutment top 82 optimizes the contact compatibility between the abutment top 82 and the soft spring 10, as well as the gas flow path, reducing gas resistance and uneven force distribution on the soft spring 10. Furthermore, it eliminates the need for additional guide or fitting components, simplifying the structure, reducing manufacturing and assembly costs, and further improving the overall structural reliability.

[0026] like Figure 5 and Figure 10 As shown, the sealing plate 81 is provided with an air inlet 811. When the sealing plate 81 is attached to the limiting plate 34, the air inlet 811 is closed. When the sealing plate 81 and the limiting plate 34 are separated, the air inlet 811 is open. When the soft bullet 10 is inserted into the bullet groove 21, the soft bullet 10 pushes the abutment 8 towards the baffle, causing the sealing plate 81 and the limiting plate 34 to separate, and the air inlet 811 is open. This structure can precisely control the timing of gas entry and exit. When the sealing plate 81 is attached to the limiting plate 34, the air inlet 811 is closed, thus preventing gas leakage before launch and ensuring gas pressure retention. When the sealing plate 81 and the limiting plate 34 are separated, the air inlet 811 is open, ensuring that gas enters as needed, maintaining stable launch power, eliminating the need for additional control components, simplifying the structure, and improving the reliability of gas path control.

[0027] In one possible implementation, such as Figure 2 , Figure 4 and Figure 8 As shown, the soft-bullet revolver includes a rotary drive component 9. The rotary drive component 9 is slidably mounted on the gun housing 1. The rotary drive component 9 and the rotary mating component 7 are in a transmission engagement. The rotary drive component 9 and the sliding component 6 are in a transmission engagement; the sliding component 6 can move towards the rear of the gun housing 1, driving the rotary drive component 9 to push the rotary mating component 7 to rotate, so that a cartridge slot 21 of the revolver 2 connects to the first cavity 31. By moving the sliding component 6 towards the rear of the gun housing 1, the rotary drive component 9 can be simultaneously driven to push the rotary mating component 7, thereby driving the revolver 2 to rotate and precisely aligning the cartridge slot 21 with the first cavity 31. This achieves integrated linkage of "charge-revolver switching-feed alignment," eliminating the need for additional manual adjustment of the revolver 2, simplifying operation, improving firing continuity, avoiding manual operation, and ensuring precise coordination between feeding and firing.

[0028] In one possible implementation, such as Figure 4 , Figure 8 and Figure 9 As shown, the rotary drive component 9 includes a main body 91 and a push block 92 disposed on the main body 91. The rotary mating component 7 includes a shaft 71 and a plurality of rotary push ribs 72. One end of the shaft 71 is connected to the rotating wheel 2, and each rotary push rib 72 is disposed at the other end of the shaft 71. The rotary push ribs 72 are arranged sequentially at intervals around the circumference of the shaft 71. The main body 91 and the piston rod 4 are connected in a driving connection. When the piston rod 4 moves toward the tail of the gun housing 1, it can drive the main body 91 to move, so that the push block 92 pushes against one of the rotary push ribs 72, causing the rotating wheel 2 to rotate. The push block 92 has an inclined surface 921, and each rotary push rib 72 has a mating inclined surface 721 at one end near the push block 92, and each rotary push rib 72 extends along the length of the shaft 71. When the piston rod 4 moves toward the rear of the gun case 1, it drives the main body 91 of the rotary drive component 9 to move, causing the push block 92 to gradually approach and contact a certain rotating push rib 72. The inclined surface 921 of the push block 92 first contacts and slides with the mating inclined surface 721 of the rotating push rib 72, and then the push block 92 moves along the length direction of the rotating push rib 72. This avoids rigid collisions during transmission, reduces component wear, and can precisely control the rotation angle of the rotating wheel 2 to achieve accurate alignment of each cartridge slot 21. At the same time, no additional guide components are required, simplifying the structure while improving the smoothness and reliability of the rotating wheel 2 switching.

[0029] The main body 91 and the gun casing 1 are connected by a third elastic component (not shown). When the piston rod 4 resets, the third elastic component recovers its deformation, pulling the main body 91 towards the rotating wheel 2, causing the push block 92 to move away from each of the rotating push ribs 72. The third elastic component can be a spring. The above structure enables the automatic reset of the main body 91 and the push block 92, preparing for the next drive of the rotating wheel 2 without manual adjustment. This simplifies the operation process and avoids transmission failures caused by incomplete manual reset, further improving the smoothness and reliability of continuous firing of the soft bullet revolver of this application.

[0030] In one possible implementation, such as Figure 4 , Figure 7 and Figure 8As shown, the piston rod 4 includes a main piston rod 42 and an additional section 43. One end of the main piston rod 42 is connected to the piston 41. The additional section 43 is parallel to the main piston rod 41 and is connected to the other end of the main piston rod 42. A groove 431 is provided on the additional section 43. A convex shaft 911 is provided on the main body 91, and the convex shaft 911 is inserted into the groove 431. When the additional section 43 moves towards the breech, one end of the groove 431 can push the convex shaft 911 to move towards the breech. Through the cooperation of the groove 431 and the convex shaft 911, precise transmission between the piston rod 4 and the main body 91 of the rotary drive component 9 is achieved, without the need for complex linkage components, resulting in a simple structure and high reliability.

[0031] like Figure 2 , Figure 3 and Figure 7As shown, a latch 421 is provided on the piston rod 4, located at the end of the main piston rod 42 opposite to the piston 41. The release assembly 5 includes a first rotating member 51, a second rotating member 52, and a trigger 53. The trigger 53 is movably mounted on the gun housing 1. The first rotating member 51 is hinged to the gun housing 1 at its middle, and a latching protrusion 511 is provided at one end of the first rotating member 51. The second rotating member 52 is rotatably mounted on the gun housing 1. When the piston rod 4 moves to its limit position towards the rear of the gun housing 1, the latching protrusion 511 can engage with the latch 421. When the trigger 53 moves, it can drive the second rotating member 52 to rotate, and the second rotating member 52 drives the first rotating member 51 to rotate, causing the latching protrusion 511 to disengage from the latch 421. A fourth elastic component (not shown) is connected to the end of the first rotating member 51 opposite to the second rotating member 52, and the other end of the fourth elastic component is connected to the gun housing 1. The fourth elastic component can be a spring. The fourth elastic component applies a continuous upward force to the latch 511, ensuring that the latch 511 remains in a fixed position. When the piston rod 4 moves to its limit position towards the rear of the gun case 1, the latch 511 engages with the bayonet 421. The upward force of the fourth elastic component ensures that the latch 511 is stably engaged within the bayonet 421, preventing disengagement and locking the piston rod 4. When an external force is applied to the trigger 53, the trigger 53 drives the second rotating member 52 to rotate. The second rotating member 52 pushes the first rotating member 51 to rotate, causing the latch 511 to disengage from the bayonet 421, releasing the piston rod 4 and completing the firing of the soft bullet 10. When the external force is removed, under the action of the fourth elastic component, the first rotating member 51 resets, driving the second rotating member 52 to reset, and the second rotating member 52 drives the trigger 53 to reset. The latch 511 is engaged with the bayonet 421, which can stably lock the piston rod 4 after it has been charged, avoiding accidental triggering or failure of charging. With the help of the linkage transmission of the trigger 53 and the second rotating part 52, the piston rod 4 can be quickly unlocked and released, ensuring the timeliness of the launch response. The structure is simple and easy to operate.

[0032] The preferred embodiments disclosed above are merely illustrative of this application. These preferred embodiments do not exhaustively describe all details, nor do they limit the application to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this application, thereby enabling those skilled in the art to better understand and utilize this application. This application is limited only by the claims and their full scope and equivalents.

Claims

1. A soft-bullet revolver, characterized in that, include: Gun casing; A rotating cylinder, rotatably mounted on the gun housing, having multiple cartridge slots and a rotating engagement component on the cylinder; An air cylinder assembly is disposed on a gun casing. The air cylinder assembly has a first cavity and a second cavity. The inner diameter of the second cavity is larger than that of the first cavity. A baffle is provided between the second cavity and the first cavity. The baffle has a through hole to connect the first cavity and the second cavity. A piston rod is located inside the gun case. A piston is provided at one end of the piston rod, which is located in the second cavity. The other end of the piston rod extends out of the gas cylinder assembly. A first elastic component is sleeved on the piston rod, and its two ends abut against the piston and the gun casing, respectively. A release assembly disposed on the gun casing; A sliding member, slidably connected to the gun housing, and connected to the piston rod; Under the action of external force, the sliding member can move towards the rear of the gun case, which can drive the piston rod to move, compress the first elastic member, drive the rotating wheel to rotate, so that a cartridge groove of the rotating wheel connects to the first cavity of the gas cylinder assembly, and the piston rod is engaged with the release assembly; When the release component releases the slider, the first elastic component elastically releases and pushes the piston rod toward the first cavity side.

2. The soft-bullet revolver according to claim 1, characterized in that, Includes a stopper and a second elastic component; The air outlet end of the air cylinder assembly is provided with a limiting plate, which is located at the end of the first cavity away from the second cavity, and a vent hole is provided on the limiting plate. Both the abutting member and the second elastic member are located in the first cavity, and are situated between the limiting plate and the baffle. The second elastic member abuts against the abutting member and the baffle at both ends, with the abutting member extending out of the vent hole on the limiting plate; With the soft bullet inserted into the bullet groove, the pusher can be moved towards the baffle to open the vent hole; When the piston moves toward the first chamber, it can compress the air in the first and second chambers, causing the abutment to move toward the cartridge groove, and the soft cartridge flies away from the gun casing.

3. The soft-bullet revolver according to claim 2, characterized in that, The abutment includes a sealing piece and an abutment top disposed on one side of the sealing piece along the thickness direction; The top is provided through the vent hole; The second elastic member abuts against the side of the sealing piece opposite to the abutment top; When the sealing piece moves to contact the limiting plate, it can cover the vent hole.

4. The soft-bullet revolver according to claim 3, characterized in that, The abutment is a sheet-like body, and its width gradually decreases along the thickness direction of the sealing sheet.

5. The soft-bullet revolver according to claim 4, characterized in that, The sealing plate is provided with an air inlet hole, which is sealed when the sealing plate is in contact with the limiting plate. When the sealing plate and the limiting plate are separated, the air inlet is in a conductive state.

6. The soft-bullet revolver according to claim 5, characterized in that, Including rotary drive components; The rotary drive component is slidably disposed on the gun casing; The rotary drive component and the rotary mating component are in a transmission engagement; The rotary drive and the sliding member are in a transmission cooperation. The sliding member can move towards the tail of the gun case, which can drive the rotary drive to push the rotary cooperation member to rotate, so that one of the cartridge slots of the rotating wheel is connected to the first cavity.

7. The soft-bullet revolver according to claim 6, characterized in that, The rotary drive component includes a main body and a push block disposed on the main body; The rotating fitting includes a shaft and a plurality of rotating pushers. One end of the shaft is connected to the rotating wheel, and each rotating pusher is disposed at the other end of the shaft. The rotating pushers are arranged sequentially at intervals around the circumference of the shaft. The main body and the piston rod are connected by a transmission. When the piston rod moves toward the rear of the gun case, it can drive the main body to move, so that the push block pushes against the rotating push bar, causing the rotating wheel to rotate.

8. The soft-bullet revolver according to claim 7, characterized in that, The main body and the gun casing are connected by a third elastic component; When the piston rod is reset, the third elastic component resumes its deformation, pulling the main body towards the rotating wheel side, so that the push block moves away from each of the rotating push ribs.

9. The soft-bullet revolver according to claim 8, characterized in that, The piston rod includes a main piston rod and an additional section; One end of the main piston rod is connected to the piston; The additional section is parallel to the main piston rod, and the additional section is connected to the other end of the main piston rod; A sliding groove is provided on the additional section; A convex shaft is provided on the main body, and the convex shaft is inserted into the sliding groove; As the additional section moves toward the tail of the gun, one end of the slide can push the convex axis to move toward the tail of the gun.

10. The soft-bullet revolver according to claim 9, characterized in that, A bayonet is provided on the piston rod; The release assembly includes a first rotating element, a second rotating element, and a trigger; The trigger is movably mounted on the gun casing; The first rotating component is hinged to the gun shell at its middle part, and a locking protrusion is provided at one end of the first rotating component; The second rotating member is rotatably disposed on the gun casing; When the piston rod moves to its limit position towards the rear of the gun case, the locking protrusion can engage with the locking slot; When the trigger moves, it can drive the second rotating component to rotate, and the second rotating component drives the first rotating component to rotate, causing the latch to disengage from the latch.