Flying saucer toy gun

By incorporating components such as a flying saucer cavity, guide rod, push mechanism, rotating shaft, gearbox, and slider into the flying saucer toy gun, the problem of the inability of existing flying saucer toy guns to fire continuously is solved, enabling the successive firing of multiple flying saucers, thus enhancing the fun and continuity of play.

CN224051161UActive Publication Date: 2026-03-27李速丰
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing flying saucer toy guns can only install and drive one flying saucer, making continuous firing impossible. This results in complicated operation and reduces the duration of playtime.

Method used

A flying saucer toy gun was designed, comprising a flying saucer cavity, a guide rod, a push mechanism, a rotating shaft, a gearbox, a slider, and a positioning mechanism. Through the coordinated work of these components, multiple flying saucers can be stored and launched one by one. The movement of the slider drives the rotating shaft to rotate, and the positioning mechanism ensures the connection between the connecting groove and the guide groove, enabling continuous launch of flying saucers.

Benefits of technology

It enables continuous firing of the flying saucer toy gun, enhancing the fun of playing and extending the duration of playtime.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a flying saucer toy gun. The flying saucer toy gun comprises a gun shell, a guide rod, a pushing mechanism, a rotating shaft, a gearbox, a sliding part and a positioning mechanism, the gun shell is provided with a flying saucer cavity, the flying saucers can be arranged in the flying saucer cavity, the guide rod is provided with a guide groove, the flying saucers are arranged on the guide rod in a sleeving mode, and the pushing mechanism is arranged on the gun shell and elastically abuts against the innermost flying saucer. The rotating shaft is rotatably arranged on the inner side of the guide rod, the end, close to the opening, of the rotating shaft extends out of the guide rod and is provided with a conveying piece, the conveying piece is provided with a connecting groove and a releasing groove, the connecting groove and the releasing groove are sequentially formed in the circumferential direction of the rotating shaft, and the releasing groove communicates with the connecting groove. According to the flying saucer toy gun, multiple flying saucers can be stored in the flying saucer cavity, only one flying saucer in the flying saucer cavity is matched with the conveying piece, and the playing method that multiple flying saucers are filled at a time and the flying saucers are launched one by one is achieved. In this way, the flying saucers can be continuously launched, the playing interestingness of the flying saucer toy gun is higher, and the time for a player to keep interesting can be prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a toy technical field, concretely relates to a flying saucer toy gun. BACKGROUND

[0002] The flying saucer toy gun usually comprises a driving gun body and a flying saucer, the gun body can drive the flying saucer to rotate, the flying saucer rotates to obtain the lifting force, and then the flying saucer separates from the gun body and flies out. The flying saucer can circle in the air for a period of time, and provides great fun for children.

[0003] However, in the existing flying saucer toy gun, the gun body can only drive one flying saucer to rotate, and the flying saucer needs to be installed once for each time of shooting in the playing process, so that the flying saucer cannot be continuously shot, the operation process of playing is complicated, the playing process is easily interrupted, and the duration of playing interest is greatly reduced.

[0004] Therefore, the utility model is provided. UTILITY MODEL CONTENTS

[0005] The utility model provides a flying saucer toy gun.

[0006] The application provides the following technical scheme:

[0007] A flying saucer toy gun comprises:

[0008] A gun shell has a flying saucer cavity and an opening communicating with the flying saucer cavity;

[0009] A guide rod is at least partially located in the flying saucer cavity, the guide rod has a guide groove, a plurality of flying saucers are loaded into the flying saucer cavity, each flying saucer is sleeved on the guide rod, each flying saucer is arranged along the length direction of the guide rod in sequence, and each flying saucer has a sliding block which is slidably embedded in the guide groove;

[0010] A push mechanism is arranged on the gun shell, and the push mechanism elastically abuts against the innermost flying saucer;

[0011] A rotating shaft is rotatably arranged on the inner side of the guide rod, one end of the rotating shaft close to the opening extends out of the guide rod and is provided with a conveying member, the conveying member has a connecting groove and a releasing groove, the connecting groove and the releasing groove are arranged along the circumferential direction of the rotating shaft in sequence, and the releasing groove and the connecting groove are communicated;

[0012] A gear box is arranged on the gun shell, and the gear box is in transmission connection with the rotating shaft;

[0013] A sliding member is slidably connected to the gun shell, the sliding member is in transmission connection with the gear box, and is used for driving the rotating shaft to rotate;

[0014] A positioning mechanism is arranged on the gun barrel, and the positioning mechanism is used to drive the rotary shaft to reset so that the connecting slot on the rotary shaft is communicated with the guide slot;

[0015] When the sliding member moves to the tail of the gun barrel, the transmission member is driven to rotate by the gearbox so that the flying disc on the transmission member flies away from the gun barrel. When the sliding member moves to the head of the gun barrel, the transmission relationship between the sliding member and the rotary shaft is invalid, the positioning mechanism drives the rotary shaft to reset so that the connecting slot on the rotary shaft is communicated with the guide slot, and the flying disc on the upper end of the guide rod can slide into the transmission member.

[0016] Optionally, the rotary shaft is connected with a positioning matching block;

[0017] The positioning mechanism comprises a stop block and a first elastic component;

[0018] The first elastic component elastically abuts against the positioning matching block;

[0019] When the sliding member moves to the head of the gun barrel, the stop block elastically abuts against the positioning matching block, so that the positioning matching block drives the rotary shaft to rotate and reset.

[0020] Optionally, the positioning matching block has two flat surfaces which are parallel to each other;

[0021] The two flat surfaces are connected by two convex arc surfaces which are opposite to each other;

[0022] When the stop block abuts against the convex arc surface, the positioning matching block can be driven to rotate until the stop block is attached to the flat surface of the positioning matching block;

[0023] When the stop block is attached to the flat surface, the connecting slot is communicated with the guide slot

[0024] Optionally, the flying disc toy gun further comprises a movable frame which is slidably arranged on the gun barrel;

[0025] The movable frame has a first position and a second position;

[0026] When the sliding member moves to the tail of the gun barrel, the movable frame can be driven to move to the first position, so that the movable frame pushes the stop block away from the positioning matching block, and the first elastic component is in a compressed state;

[0027] When the sliding member moves to the head of the gun barrel, the movable frame can be driven to move to the second position, so that the movable frame is separated from the stop block, the first elastic component pushes the stop block, and the stop block elastically abuts against the positioning matching block.

[0028] Optionally, the sliding member has a plug-in block;

[0029] The movable frame has a slot;

[0030] The gun barrel is provided with a screw column;

[0031] The insertion block can be inserted into the slot, and when the sliding member moves towards the tail of the gun barrel, the movable frame can be moved to the first position, the movable frame is stopped at the screw column and is kept stable at the first position, the insertion block is separated from the slot, and the sliding member continues to move towards the tail of the gun barrel;

[0032] When the sliding member moves towards the head of the gun barrel, the insertion block can be inserted into the slot again, and the sliding member moves the movable frame to the second position.

[0033] Optionally, the sliding member has a main body and a second elastic component;

[0034] The insertion block is slidably arranged in the main body;

[0035] The two ends of the second elastic component are respectively abutted against the main body and the insertion block;

[0036] When the movable frame is stopped at the screw column when the sliding member moves towards the tail of the gun barrel, the insertion block is forced to retract and separate from the slot.

[0037] Optionally, the gun barrel is provided with a guide rib;

[0038] In the state that the movable frame is at the first position, the guide rib extends to the slot;

[0039] When the sliding member moves towards the head of the gun barrel, the insertion block can slide along the guide rib until it slides into the slot.

[0040] Optionally, the movable frame has a pushing inclined surface, a stopping inclined surface and a stopping flat surface;

[0041] The stopping flat surface is located between the pushing inclined surface and the stopping inclined surface;

[0042] The stopping flat surface is perpendicular to the sliding direction of the abutment block, the abutment block has an extension body, the extension body has a matching inclined surface, and when the sliding member moves towards the tail of the gun barrel, the pushing inclined surface can contact the matching inclined surface;

[0043] When the movable frame moves to the first position, the extension body is stopped at the stopping flat surface.

[0044] Optionally, the sliding member is connected with a rack;

[0045] The gearbox has a transmission gear and a conveying gear, the transmission gear and the gear rack are engaged;

[0046] The conveying gear and the rotating shaft are drivingly connected.

[0047] Optionally, the housing of the gearbox has a sliding groove;

[0048] The rotating shaft of the transmission gear is slidably connected to the sliding groove;

[0049] The gearbox has an intermediate gear between the transmission gear and the conveying gear;

[0050] In the state that the sliding piece slides to the tail of the gun barrel, the transmission gear rotates forward and is engaged with the intermediate gear, the intermediate gear drives the conveying gear to rotate;

[0051] In the state that the sliding piece slides to the head of the gun barrel, the transmission gear slides along the sliding groove to the direction away from the intermediate gear, and the driving relationship between the transmission gear and the conveying gear is invalid.

[0052] By adopting the technical scheme, the application has the following beneficial effects:

[0053] The flying disc toy gun provided by the embodiment of the application is provided with a flying disc cavity, the flying disc cavity can store a plurality of flying discs, and only one flying disc in the flying disc cavity is matched with the conveying piece, so that only one flying disc is launched at a time. After the launch of the previous flying disc is completed, the adjacent flying disc is pushed by the pushing mechanism to be matched with the conveying piece, and preparation is completed. By pulling the sliding piece, another flying disc can be launched again, so that the play of launching flying discs one by one is realized. In this way, the flying discs can be launched continuously, the play interest of the flying disc toy gun is stronger, and the time length of keeping the interest of the player can be prolonged. BRIEF DESCRIPTION OF DRAWINGS

[0054] The accompanying drawings, which are part of the present application, serve to provide a further understanding of the present application, and the schematic embodiments of the present application and the description thereof serve to explain the present application, but do not constitute an improper limitation on the present application. Obviously, the drawings described below are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.

[0055] Figure 1 The accompanying drawings, which are part of the present application, serve to provide a further understanding of the present application, and the schematic embodiments of the present application and the description thereof serve to explain the present application, but do not constitute an improper limitation on the present application. Obviously, the drawings described below are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.

[0056] Figure 2 The accompanying drawings, which are part of the present application, serve to provide a further understanding of the present application, and the schematic embodiments of the present application and the description thereof serve to explain the present application, but do not constitute an improper limitation on the present application. Obviously, the drawings described below are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.

[0057] Figure 3 Structure schematic view of the activity frame at the wave box when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the first position;

[0058] Figure 4 Structure schematic view of the positioning mechanism when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the first position;

[0059] Figure 5 Structure schematic view of the plug-in groove when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the first position;

[0060] Figure 6 Structure schematic view when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the second position;

[0061] Figure 7 Structure schematic view of the wave box when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the second position;

[0062] Figure 8 Structure schematic view of the positioning mechanism when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the second position;

[0063] Figure 9 Structure schematic view of the plug-in groove when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the second position;

[0064] Figure 10 Structure schematic view when the flying saucer toy gun provided by the utility model removes part of the gun shell and the activity frame is located at the second position and no flying saucer is filled;

[0065] Figure 11 Structure schematic view of the conveying part when the flying saucer toy gun provided by the utility model removes part of the gun shell.

[0066] In the figure: the gun shell 1, the flying saucer cavity 11, the screw column 12, the guide rib 13, the guide rod 2, the guide groove 21, the push-up mechanism 3, the rotating shaft 4, the conveying part 41, the connecting groove 411, the release groove 412, the wave box 5, the sliding groove 51, the transmission gear 52, the conveying gear 53, the intermediate gear 54, the sliding part 6, the plug-in block 61, the main body part 62, the second elastic part 63, the rack 64, the positioning mechanism 7, the abutting block 71, the extension body 72, the matching inclined surface 73, the first elastic part 74, the flying saucer 8, the activity frame 9, the plug-in groove 91, the push-up inclined surface 92, the stop inclined surface 93, the stop flat surface 94, the positioning matching block 10, the flat surface 101, the outer convex curved surface 102. DETAILED DESCRIPTION

[0067] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments will be described clearly and completely below in conjunction with the drawings of the embodiments of the present application. The following embodiments are used to illustrate the present application, but are not used to limit the scope of the present application.

[0068] In the description of the present application, it should be noted that the positions or location relationships indicated by the terms "upper", "lower", "inner", "outer" and the like are based on the positions or location relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as limiting the devices or elements indicated by the terms to have a specific position, to be constructed and operated in a specific position, and therefore cannot be understood as limiting the present application.

[0069] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connecting" should be understood broadly, for example, can be fixedly connected, or can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0070] Referring to Figures 1 to 11 As shown in the drawings, the present application provides a flying disc toy gun, which comprises a gun shell 1, a guide rod 2, a pushing mechanism 3, a rotating shaft 4, a wave box 5, a sliding piece 6 and a positioning mechanism 7. The gun shell 1 has a flying disc cavity 11 and an opening communicating with the flying disc cavity 11. The guide rod 2 is at least partially located in the flying disc cavity 11, the guide rod 2 has a guide groove 21, a plurality of flying discs 8 can be loaded into the flying disc cavity 11, each flying disc 8 is sleeved on the guide rod 2, and each flying disc 8 is arranged in sequence along the length direction of the guide rod 2. The flying disc 8 has a sliding block, and the sliding block is slidably embedded in the guide groove 21.

[0071] The pushing mechanism 3 is arranged on the gun shell 1, and the pushing mechanism 3 elastically abuts against the innermost flying disc 8. The rotating shaft 4 is rotatably arranged on the inner side of the guide rod 2, one end of the rotating shaft 4 close to the opening extends out of the guide rod 2 and is provided with a conveying piece 41, the conveying piece 41 has a connecting groove 411 and a release groove 412, the connecting groove 411 and the release groove 412 are arranged in sequence along the circumferential direction of the rotating shaft 4, and the release groove and the connecting groove 411 are in communication.

[0072] The wave box 5 is arranged on the gun shell 1, and the wave box 5 is in transmission connection with the rotating shaft 4. The sliding piece 6 is slidably connected to the gun shell 1, and the sliding piece 6 is in transmission connection with the wave box 5, and is used for driving the rotating shaft 4 to rotate. The positioning mechanism 7 is arranged on the gun shell 1, and the positioning mechanism 7 is used for driving the rotating shaft 4 to reset, so that the connecting groove 411 on the rotating shaft 4 is communicated with the guide groove 21.

[0073] When the sliding piece 6 moves to the tail of the gun shell 1, the conveying piece 41 is driven to rotate by the wave box 5, so that the flying disc 8 located on the conveying piece 41 flies away from the gun shell 1. When the sliding piece 6 moves to the head of the gun shell 1, the transmission relationship between the sliding piece 6 and the rotating shaft 4 is invalid, and the positioning mechanism 7 drives the rotating shaft 4 to reset, so that the connecting groove 411 on the rotating shaft 4 is communicated with the guide groove 21, and the flying disc 8 at the upper end of the guide rod 2 can slide into the conveying piece 41.

[0074] The flying disc 8 can fly out of the flying disc cavity 11, the guide groove 21 can guide the flying disc 8, and the flying disc 8 can enter the connecting groove 411 under the pushing of the pushing mechanism 3. The pushing mechanism 3 has a spring piece and a pushing piece, the pushing piece abuts against the innermost flying disc 8, and the spring piece abuts between the pushing piece and the bottom wall of the flying disc cavity 11. When the uppermost flying disc 8 flies out of the flying disc cavity 11, the spring pushes the pushing piece to push the remaining flying discs 8 in the flying disc cavity 11 to move towards the outlet, until a flying disc 8 enters the connecting groove 411 again.

[0075] The sliding of the sliding piece 6 can drive the gear in the wave box 5 to rotate, the gear in the wave box 5 can drive the rotating shaft 4 to rotate, and the rotating shaft 4 can drive the conveying piece 41 to rotate. The limiting step is arranged between the connecting groove 411 and the release groove 412. When the rotating shaft 4 and the conveying piece 41 do not rotate, the flying disc 8 is abutted against the limiting step and cannot enter the release groove 412 from the connecting groove 411. When the wave box 5 drives the rotating shaft 4 and the conveying piece 41 to rotate at high speed, the flying disc 8 stores the rotating potential energy and the lifting force, and then the flying disc 8 rotates from the connecting groove 411 and enters the release groove 412 and then flies out of the release groove 412.

[0076] The flying disc toy gun provided by the embodiment of the application is provided with the flying disc cavity 11, the flying disc cavity 11 can store a plurality of flying discs 8, and only one flying disc 8 in the flying disc cavity 11 cooperates with the conveying piece 41, so that only one flying disc 8 is launched at a time. After the last flying disc 8 is launched, the adjacent flying disc 8 is pushed to the conveying piece 41 by the pushing mechanism 3, and the preparation is completed. The sliding piece 6 can be pulled again to launch a flying disc 8, and the play of launching the flying discs 8 one by one is realized. In this way, the flying discs 8 can be continuously launched, the play interest of the flying disc toy gun is stronger, and the time length of keeping the interest of the player can be prolonged.

[0077] In some possible embodiments, the rotating shaft 4 is connected with a positioning fitting block 10, the positioning mechanism 7 comprises a stop block 71 and a first elastic component 74, the first elastic component 74 elastically stops on the positioning fitting block 10. When the sliding piece 6 moves towards the head of the gun shell 1, the stop block 71 elastically stops on the positioning fitting block 10, so that the positioning fitting block 10 drives the rotating shaft 4 to rotate and reset, in the reset state, the guide groove 21 is in communication with the connecting groove 411, and the flying saucer 8 can slide into the connecting groove 411 from the guide groove 21. When the sliding piece 6 moves away from the head of the gun shell 1, the stop block 71 is separated from the positioning fitting block 10, so that the positioning fitting block 10 and the rotating shaft 4 can rotate smoothly.

[0078] In some possible embodiments, the positioning fitting block 10 has two flat surfaces 101, the two flat surfaces 101 are parallel, and the opposite sides of the two flat surfaces 101 are connected by an outer convex curved surface 102. When the stop block 71 stops on the outer convex curved surface 102, the positioning fitting block 10 can be driven to rotate until the stop block 71 is attached to the flat surface 101 of the positioning fitting block 10, and in the state that the stop block 71 is attached to the flat surface 101, the connecting groove 411 is in communication with the guide groove 21. Two guide grooves 21 are symmetrically arranged on both sides of the guide rod 2, and two connecting grooves 411 are symmetrically arranged on both sides of the conveying piece 41. The guide rod 2 does not rotate, and the conveying piece 41 needs to rotate to a position where the connecting groove 411 can be in communication with the guide groove 21, so as to ensure that the flying saucer 8 below can be smoothly matched with the conveying piece 41. When the stop block 71 stops on the flat surface 101, the connecting groove 411 is in communication with the guide groove 21. The positioning fitting block 10 is thus arranged to ensure that when the rotating shaft 4 stops rotating, the two connecting grooves 411 can be in communication with the two guide grooves 21 respectively, so as to ensure that the flying saucer 8 can smoothly enter the connecting groove 411 and be prepared for the next release of the flying saucer 8.

[0079] In some possible embodiments, the flying saucer toy gun further comprises a movable frame 9, which is slidably arranged in the gun shell 1. The movable frame 9 has a first position and a second position. When the sliding piece 6 moves towards the tail of the gun shell 1, the movable frame 9 is driven to move to the first position, so that the movable frame 9 pushes the stop block 71 away from the positioning fitting block 10, and the first elastic component 74 is in a compressed state. When the sliding piece 6 moves towards the head of the gun shell 1, the movable frame 9 is driven to move to the second position, so that the movable frame 9 is separated from the stop block 71, the first elastic component 74 pushes the stop block 71, and the stop block 71 elastically stops on the positioning fitting block 10.

[0080] In some possible embodiments, the sliding member 6 has a plug block 61, the movable frame 9 has a plug slot 91, and the gun barrel 1 is provided with a screw post 12. The plug block 61 can be inserted into the plug slot 91, and when the sliding member 6 moves towards the tail of the gun barrel 1, the movable frame 9 can be driven to move to the first position, the movable frame 9 abuts against the screw post 12 and is kept stable at the first position, the abutting block 71 is disengaged from the positioning fitting block 10, the plug block 61 is disengaged from the plug slot 91, and the sliding member 6 continues to move towards the tail of the gun barrel 1, and the sliding member 6 drives the rotating shaft 4 to rotate through the gearbox 5. When the sliding member 6 moves towards the head of the gun barrel 1, the plug block 61 can be inserted into the plug slot 91 again, the sliding member 6 drives the movable frame 9 to move to the second position, the sliding member 6 is reset, the abutting block 71 abuts against the positioning fitting block 10, and the next flying disc 8 is ready to be launched into the connecting slot 411.

[0081] In some possible embodiments, the sliding member 6 has a main body 62 and a second elastic component 63, and the plug block 61 is slidably arranged in the main body 62. The second elastic component 63 abuts against the main body 62 and the plug block 61 at two ends, respectively, and when the movable frame 9 abuts against the screw post 12 when the sliding member 6 moves towards the tail of the gun barrel 1, the plug block 61 is forced to retract and disengage from the plug slot 91. The arrangement of the second elastic component 63 enables the plug block 61 to be automatically inserted into the plug slot 91, thereby driving the movable frame 9 to move, and the plug block 61 can also disengage from the plug slot 91 and slide automatically to store power for the flying disc 8 when a greater resistance is encountered.

[0082] In some possible embodiments, the gun barrel 1 is provided with a guide rib 13, and in the state that the movable frame 9 is located at the first position, the guide rib 13 extends to the plug slot 91, and when the sliding member 6 moves towards the head of the gun barrel 1, the plug block 61 can slide along the guide rib 13 until it is inserted into the plug slot. The arrangement of the guide rib 13 can make the pushing of the sliding member 6 more smooth and labor-saving.

[0083] In some possible embodiments, the movable frame 9 has a pushing slope 92, a stopping slope 93 and a stopping plane 94. The stopping plane 94 is between the pushing slope 92 and the stopping slope 93, and is perpendicular to the sliding direction of the stopping block 71. The stopping block 71 has an extension 72 with a matching slope 73. When the sliding member 6 moves towards the tail of the gun shell 1, the pushing slope 92 can contact the matching slope 73. When the movable frame 9 moves to the first position, the extension 72 stops at the stopping plane 94. When the movable frame 9 moves to the first position, the extension 72 stops at the stopping plane 94 under the elastic force of the first spring. The movable frame 9 can be kept at the first position stably under the friction, so that the positioning mechanism 7 cannot affect the rotation of the rotating shaft 4 until the movable frame 9 is driven by the inserting block 61 to move away from the first position.

[0084] In some possible embodiments, the sliding member 6 is connected with a rack 64. The gearbox 5 has a transmission gear 52 and a conveying gear 53. The transmission gear 52 is engaged with the rack 64, and the conveying gear 53 is drivingly connected with the rotating shaft 4. The engagement between the rack 64 and the gear can convert linear motion into rotation, which facilitates the rotation of the flying disc 8 and the operation of the user.

[0085] In some possible embodiments, the housing of the gearbox 5 has a sliding groove 51. The transmission gear 52 is slidably connected with the sliding groove 51. The gearbox 5 has an intermediate gear 54 between the transmission gear 52 and the conveying gear 53. When the sliding member 6 slides towards the tail of the gun shell 1, the transmission gear 52 rotates in the positive direction and is engaged with the intermediate gear 54, so that the intermediate gear 54 drives the conveying gear 53 to rotate. When the sliding member 6 slides towards the head of the gun shell 1, the transmission gear 52 slides along the sliding groove 51 away from the intermediate gear 54, so that the driving relationship between the transmission gear 52 and the conveying gear 53 is invalid. In this way, the gearbox 5 can only drive the sliding member 6 to rotate in one direction, which is the direction in which the flying disc 8 can be lifted. The flying disc 8 cannot be rotated in the opposite direction, which does not affect the lifting of the flying disc 8.

[0086] The preferred embodiments disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details and limit the present application to the specific embodiments described. Obviously, many modifications and variations can be made according to the content of the present application. The embodiments are selected and described in detail in order to better explain the principles and practical applications of the present application, so that those skilled in the art can well understand and utilize the present application. The present application is limited by the claims and their full scope and equivalents.

Claims

1. A flying disc toy gun characterized by, The application relates to a dart gun, which comprises a gun shell, a guide rod, a pushing mechanism, a rotating shaft, a wave box, a sliding member and a positioning mechanism. The gun shell has a dart cavity and an opening communicating with the dart cavity; the guide rod is at least partially located in the dart cavity and has a guide groove; a plurality of darts are arranged in the dart cavity, each dart is sleeved on the guide rod, and the darts are sequentially arranged along the length direction of the guide rod; each dart has a sliding block which is slidably embedded in the guide groove; the pushing mechanism is arranged on the gun shell and elastically abuts against the innermost dart; the rotating shaft is rotatably arranged inside the guide rod, one end of the rotating shaft near the opening extends out of the guide rod and is provided with a conveying member; the conveying member has a connecting groove and a releasing groove which are sequentially arranged along the circumferential direction of the rotating shaft and are communicated with each other; the wave box is arranged on the gun shell and is in transmission connection with the rotating shaft; the sliding member is slidably connected to the gun shell and is in transmission connection with the wave box, and is used for driving the rotating shaft to rotate; the positioning mechanism is arranged on the gun shell and is used for driving the rotating shaft to reset so that the connecting groove on the rotating shaft is communicated with the guide groove. When the sliding member moves to the tail of the gun shell, the wave box drives the conveying member to rotate, so that the dart on the conveying member flies away from the gun shell; when the sliding member moves to the head of the gun shell, the transmission relationship between the sliding member and the rotating shaft is invalid, the positioning mechanism drives the rotating shaft to reset, so that the connecting groove on the rotating shaft is communicated with the guide groove, and the dart at the upper end of the guide rod can slide into the conveying member. The rotating shaft is connected with a positioning matching block; The positioning mechanism comprises an abutting block and a first elastic component; The first elastic component elastically abuts against the positioning matching block; When the sliding member moves to the head of the gun shell, the abutting block elastically abuts against the positioning matching block, so that the positioning matching block drives the rotating shaft to rotate and reset. The positioning matching block has two parallel flat surfaces; The opposite sides of the two flat surfaces are connected through outer convex arc surfaces; 2. The flying disc toy gun of claim 1, wherein When the abutting block abuts against the outer convex arc surface, the positioning matching block can be driven to rotate until the abutting block is attached to the flat surface of the positioning matching block; When the abutting block is attached to the flat surface, the connecting groove is communicated with the guide groove. The application further relates to a dart gun, which comprises a movable frame slidably arranged on the gun shell; The movable frame has a first position and a second position; 3. The flying disc toy gun of claim 2, wherein When the sliding member moves to the tail of the gun shell, the movable frame is driven to move to the first position, so that the movable frame pushes the abutting block away from the positioning matching block, and the first elastic component is in a compressed state; When the sliding member moves to the head of the gun shell, the movable frame is driven to move to the second position, so that the movable frame is separated from the abutting block, the first elastic component pushes the abutting block, and the abutting block elastically abuts against the positioning matching block. The sliding member has a plug-in block; The movable frame has a plug-in groove; 4. The flying disc toy gun of claim 3, wherein The gun shell is provided with a screw column. ​ ​ ​ 5. The flying disc toy gun of claim 4, wherein, ​ ​ ​ The plug block can be inserted into the plug slot, and when the sliding member moves toward the tail of the gun barrel, the movable frame is moved to the first position, the movable frame is abutted against the screw column and is kept stable at the first position, the plug block is separated from the plug slot, and the sliding member continues to move toward the tail of the gun barrel; When the sliding member moves toward the head of the gun barrel, the plug block can be inserted into the plug slot again, and the sliding member moves the movable frame to the second position.

6. The flying disc toy gun of claim 5, wherein, The sliding member has a main body and a second elastic component; The plug block is slidably arranged on the main body; The two ends of the second elastic component are respectively abutted against the main body and the plug block; When the movable frame is abutted against the screw column when the sliding member moves toward the tail of the gun barrel, the plug block is forced to retract and separate from the plug slot.

7. The flying disc toy gun of claim 6, wherein, The gun barrel is provided with a guide rib; In the state that the movable frame is at the first position, the guide rib extends to the plug slot; When the sliding member moves toward the head of the gun barrel, the plug block can slide along the guide rib until it slides into the plug slot.

8. The flying disc toy gun of claim 7, wherein, The movable frame has a pushing inclined surface, a stopping inclined surface and a stopping flat surface; The stopping flat surface is located between the pushing inclined surface and the stopping inclined surface; The stopping flat surface is perpendicular to the sliding direction of the abutment block, the abutment block has an extension body, the extension body has a matching inclined surface, the pushing inclined surface can be in contact with the matching inclined surface when the sliding member moves toward the tail of the gun barrel; When the movable frame moves to the first position, the extension body is abutted against the stopping flat surface.

9. The flying disc toy gun of claim 1, wherein, The sliding member is connected with a rack; The gearbox has a transmission gear and a conveying gear, the transmission gear is engaged with the rack; The conveying gear is in transmission connection with the rotating shaft.

10. The flying disc toy gun of claim 9, wherein, The housing of the gearbox has a sliding groove; The rotating shaft of the transmission gear is slidably connected with the sliding groove; The gearbox has an intermediate gear between the transmission gear and the conveying gear; In the state that the sliding member slides toward the tail of the gun barrel, the transmission gear rotates in the forward direction and is engaged with the intermediate gear, the intermediate gear drives the conveying gear to rotate; In the state that the sliding member slides toward the head of the gun barrel, the transmission gear slides along the sliding groove in the direction away from the intermediate gear, and the transmission relationship between the transmission gear and the conveying gear is invalid.