Shooting control mechanism of water gun and water gun
By designing a launch control mechanism and utilizing a water gun launch control mechanism that switches between energy storage, release, and reset states, the problem that existing water guns are difficult to achieve one-shot shooting is solved, and interactivity and durability are enhanced.
Patent Information
- Application Number
- CN202521955147.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2035-09-11
AI Technical Summary
It is difficult for existing toy water guns to achieve a shot-by-shot shooting effect, and the continuous water spraying structure results in poor interactivity.
A firing control mechanism is designed, including a box shell, a water discharge part, a locking part, a movable part and an operating part. By switching between the energy storage, release and reset states, the single firing control of the water gun is realized. Combined with the cooperation of the elastic part and the blocking rod, it is ensured that a single water spray can be achieved in each operation.
The water gun achieves a shot-by-shot shooting effect, enhances interactivity and controllability of operation, and has a simple structure and good durability.
Smart Images

Figure CN223449056U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a toy technical field, concretely relates to a launching control mechanism of water gun and water gun. BACKGROUND
[0002] With the improvement of people's living standards, people's demand for entertainment activities is more and more rich. In summer, people like to play water, and children often like to use water guns to shoot each other in water playing activities, increase the interaction and improve the fun. The structure and design of the toy water gun are more and more diversified. In the related technology, the toy water gun is provided with a peristaltic pump, and the peristaltic pump can realize the continuous water spraying of the water gun by extruding the water pipe. As long as the trigger is pressed, the water gun will continuously spray water. The water gun with such structure is difficult to realize the shooting effect of the water gun one by one.
[0003] Therefore, the utility model is provided. UTILITY MODEL CONTENT
[0004] To solve one of the above technical problems, the utility model provides a launching control mechanism of water gun and water gun.
[0005] The application provides the following technical scheme:
[0006] In a first aspect, the application provides a launching control mechanism of water gun, comprising:
[0007] A box shell;
[0008] A water releasing part, the water releasing part is movably arranged in the box shell, and the water releasing part is used for connecting a plugging rod of the water gun;
[0009] A locking part, the locking part is arranged in the box shell and is used for locking or releasing the water releasing part;
[0010] A movable part, the movable part is movably arranged in the box shell, a first elastic component is connected between the movable part and the water releasing part, and a second elastic component is arranged between the movable part and the box shell;
[0011] An operating part, the operating part is slidably connected to the box shell, and the operating part is limitedly matched with the movable part;
[0012] The launching control mechanism has an energy storage state, a release state and a reset state;
[0013] In the energy storage state, the locking part locks the water releasing part, the operating part drives the movable part to move to a side away from the water releasing part, and the deformation amount of the first elastic component and the second elastic component increases;
[0014] In the releasing state, the operation member moves to trigger the locking member to release the water releasing member, the first elastic component is elastically released to drive the water releasing member to move to the side of the movable member, and the water releasing member abuts against the operation member to release the movable member;
[0015] In the resetting state, the second elastic component is elastically released to push the movable member to reset.
[0016] Optionally, the locking member is movably arranged in the box shell, and a third elastic component is arranged between the locking member and the box shell.
[0017] The operation member has a flat portion and an unlocking portion arranged on the flat portion.
[0018] In the energy storage state, the flat portion moves along the locking member, the locking member is in a locking position, and the water releasing member is locked.
[0019] In the releasing state, the unlocking portion moves to the locking member to push the locking member out of the locking position, the locking member releases the water releasing member, and the deformation amount of the third elastic component increases.
[0020] Optionally, the locking member has a clamping protrusion.
[0021] The water releasing member has a locking matching groove.
[0022] The unlocking portion is a boss arranged on the flat portion.
[0023] In the energy storage state, the clamping protrusion is clamped in the locking matching groove to limit the movement of the water releasing member.
[0024] In the releasing state, the boss moves to the locking member to push the locking member to move, so that the clamping protrusion is separated from the locking matching groove.
[0025] Optionally, an elastic clamping block is arranged on the operation member.
[0026] The movable member is provided with a clamping groove.
[0027] In the energy storage state, the elastic clamping block is clamped in the clamping groove to drive the movable member to move away from the water releasing member.
[0028] In the releasing state, the water releasing member abuts against the elastic clamping block to make the elastic clamping block separate from the clamping groove, and the operation member releases the movable member.
[0029] Optionally, the operation member has a body and a fourth elastic component, and the body has an extension slot.
[0030] The elastic clamping block is slidably arranged in the telescopic slot.
[0031] The fourth elastic component is located in the telescopic slot and abuts against the elastic clamping block.
[0032] An abutting inclined slot is arranged on the elastic clamping block.
[0033] In the releasing state, the water releasing member abuts against the abutting inclined slot, so that the elastic clamping block is retracted into the clamping slot, and the operating member releases the movable member.
[0034] The second object of the present application is to provide a water gun, comprising:
[0035] A gun shell;
[0036] A water spraying head shell is arranged in the gun shell and has a cavity and a water spraying hole communicating with the cavity;
[0037] An elastic water bag is arranged in the gun shell and connected to the water spraying head shell;
[0038] A plugging rod is slidably arranged in the water spraying head shell, and the plugging rod is partially located in the cavity;
[0039] The above-mentioned launching control mechanism is arranged in the gun shell, and a water releasing member is connected to the plugging rod;
[0040] In the energy storage state, the water releasing member drives the plugging rod to close the water spraying hole;
[0041] In the releasing state, the water releasing member drives the plugging rod to move, and the water spraying hole is in a conducting state;
[0042] In the resetting state, the water releasing member drives the plugging rod to move to the side of the water spraying hole to close the water spraying hole.
[0043] Optionally, the water gun comprises a water suction chamber and a motor;
[0044] The water suction chamber and the motor are arranged in the gun shell, the water suction chamber communicates with the water spraying head shell, and the water suction chamber has a water suction port;
[0045] A vane is arranged in the water suction chamber;
[0046] The main body of the motor and the water suction chamber have a gap;
[0047] A rotating shaft of the motor extends into the interior of the water suction chamber and is connected to the vane.
[0048] Optionally, a waterproof ring is sleeved on the rotating shaft;
[0049] The waterproof ring is located between the main body of the motor and the water suction bin.
[0050] Optionally, the water suction bin is provided with a vent hole.
[0051] Optionally, the water gun comprises a water suction sensor.
[0052] The water suction sensor is arranged on the gun shell.
[0053] When the elastic water bag is elongated to an extreme state, the elastic water bag abuts against the water suction sensor to trigger the motor to stop rotating.
[0054] By adopting the above technical scheme, the application has the following beneficial effects:
[0055] The operation member is moved once, the launching control mechanism is switched to the energy storage state, the release state and the reset state in sequence, the effect of launching water spray is executed once, and the shooting effect of one launch at a time of the water gun is realized. DETAILED DESCRIPTION
[0056] The accompanying drawings are part of the present application and serve to provide a further understanding of the present application, the illustrative 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 these drawings.
[0057] Figure 1 An appearance structure schematic diagram of the water gun is shown.
[0058] Figure 2 An internal structure schematic diagram of the water gun is shown.
[0059] Figure 3 A sectional view of the water gun is shown.
[0060] Figure 4 An enlarged view of the A part of the water gun is shown. Figure 3
[0061] An enlarged view of the A part of the water gun is shown. Figure 5
[0062] A cooperation structure schematic diagram of the launching control mechanism and the plugging rod of the water gun is shown. Figure 6
[0063] A structure schematic diagram of the launching control mechanism of the water gun is shown. Figure 7A partial structure schematic view of the launching control mechanism of the water gun is shown.
[0064] Figure 8 A cooperation structure schematic view of the operating member, the locking member and the water releasing member in the launching control mechanism of the water gun is shown.
[0065] Figure 9 A cooperation structure schematic view of the elastic clamping block, the locking member and the water releasing member in the launching control mechanism of the water gun is shown.
[0066] In the figure: 1, launching control mechanism; 11, water releasing member; 111, locking cooperation groove; 12, locking member; 121, clamping convex; 13, movable member; 131, clamping groove; 14, operating member; 141, flat part; 142, unlocking part; 143, elastic clamping block; 1431, inclined groove; 144, fourth elastic part; 145, telescopic groove; 15, first elastic part; 16, second elastic part; 17, box shell; 18, third elastic part; 19, pull rod; 2, gun shell; 21, gun head shell; 211, air hole; 212, water spraying nozzle; 213, water sucking nozzle; 22, water spraying head shell; 23, elastic water bag; 24, plugging rod; 25, water sucking warehouse; 251, air hole; 26, motor; 261, rotating shaft; 27, waterproof ring; 28, impeller; 29, water sucking sensor; 30, water sucking trigger key; 40, storage battery; 50, trigger. 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 in the embodiments of the present application. The following embodiments are used to illustrate the present application, but not to limit the scope of the present application.
[0068] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on 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", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0070] As shown in Figures 1 to 9 The application provides a launching control mechanism 1 of a water gun, which comprises a box shell 17, a water releasing part 11, a locking part 12, a movable part 13 and an operating part 14. The water releasing part 11 is movably arranged in the box shell 17, and is used for connecting a plugging rod 24 of the water gun. The locking part 12 is arranged in the box shell 17, and is used for locking or releasing the water releasing part 11. The movable part 13 is movably arranged in the box shell 17. A first elastic component 15 is connected between the movable part 13 and the water releasing part 11. A second elastic component 16 is arranged between the movable part 13 and the box shell 17. The operating part 14 is slidably connected to the box shell 17, and is in limiting cooperation with the movable part 13. The launching control mechanism 1 has an energy storage state, a releasing state and a reset state. In the energy storage state, the locking part 12 locks the water releasing part 11. The operating part 14 drives the movable part 13 to move to a side away from the water releasing part 11. The deformation amount of the first elastic component 15 and the second elastic component 16 increases. In the releasing state, the operating part 14 moves to trigger the locking part 12 to release the water releasing part 11. The first elastic component 15 is elastically released, drives the water releasing part 11 to move to the side of the movable part 13, and the water releasing part abuts against the operating part 14, so that the operating part 14 releases the movable part 13. In the reset state, the second elastic component 16 is elastically released, and pushes the movable part 13 to reset.
[0071] When the operating part 14 is moved by external force, the launching control mechanism 1 first enters the energy storage state. The operating part 14 drives the movable part 13 to move to a side away from the water releasing part 11. The deformation amount of the first elastic component 15 and the second elastic component 16 increases. Until the operating part 14 moves to trigger the locking part 12 to release the water releasing part 11, the launching control mechanism 1 switches to the releasing state. The first elastic component 15 is elastically released, drives the water releasing part 11 to move to the side of the movable part 13. At this time, the water releasing part 11 drives the plugging rod 24 to move, so that the water gun spray hole is conducted to execute water spraying. Then, the water releasing part 11 abuts against the operating part 14, so that the operating part 14 releases the movable part 13. The launching control mechanism 1 rapidly switches to the reset state. The second elastic component 16 is elastically released, and pushes the movable part 13 to reset. The movable part 13 pushes the water releasing part 11 to reset, so that the plugging rod continues to plug the water gun spray hole, and the water gun stops spraying.
[0072] In the application, the operating part 14 is moved once backward. The launching control mechanism 1 can be switched to the energy storage state, the releasing state and the reset state in sequence, executes the effect of launching and spraying once, and realizes the effect of shooting one by one of the water gun.
[0073] In some possible implementation schemes, the locking member 12 is movably arranged on the box shell 17, and a third elastic component 18 is arranged between the locking member 12 and the box shell 17. The operating member has a straight portion 141 and an unlocking portion 142 arranged on the straight portion 141. In the energy storage state, the straight portion 141 moves along the locking member, and the straight portion 141 will not push the locking member 12 to shift. The locking member 12 is in the locked position and locks the water discharge member 11; in the release state, the unlocking portion 142 moves to the locking member 12, pushes the locking member 12 out of the locked position, and the locking member 12 locks the water discharge member 11, and the deformation of the third elastic component 18 increases (is compressed).
[0074] The locking member 12 has a locking protrusion 121, and the drain member 11 has a locking matching groove 111. The unlocking portion 142 is a boss provided on the straight portion 141. In the energy storage state, the locking protrusion 121 is engaged with the locking matching groove 111 to limit the movement of the drain member 11. In the release state, the boss moves to the locking member 12, pushing the locking member 12 to move, so that the locking protrusion 121 disengages from the locking matching groove 111. An inclined surface is provided between the boss and the straight portion 141, so that when the operating member 14 is moved, the inclined surface gradually pushes the locking member 12 to move, thereby avoiding jamming. The locking member 12 can be annularly sleeved on the operating member 14 and the drain member 11. The locking protrusion 121 can be provided on the inner side of the locking member 12.
[0075] In some possible implementations, an elastic block 143 is provided on the operating member 14, and a slot 131 is provided on the movable member 13. In the energy storage state, the elastic block 143 engages with the slot 131 to drive the movable member 13 to move away from the water discharge member 11. In the release state, the water discharge member moves toward the movable member, abutting against the elastic block, causing the elastic block 143 to disengage from the slot 131. The operating member 14 releases the movable member 13, and then enters the reset state.
[0076] In some possible embodiments, combined Figure 8 and Figure 9 As shown, the operating member 14 has a main body and a fourth elastic component 144, the main body has a telescopic groove 145, the elastic block 143 is slidably arranged in the telescopic groove 145, the fourth elastic component 144 is located in the telescopic groove 145, and presses against the elastic block 143, and the elastic block 143 is provided with a pressing inclined groove 1431. In the released state, the water discharge member 11 presses against the pressing inclined groove 1431, so that the elastic block 143 retracts into the slot 131, and the operating member 14 releases the movable member 13.
[0077] CombineFigures 1 to 9 As shown, the embodiment of the present application also provides a water gun, comprising: a gun shell 2, a water spraying head shell 22, an elastic water bag 23 and a blocking rod 24, the water spraying head shell 22 is arranged in the gun shell 2, and has a cavity and a water spraying hole communicating with the cavity, the elastic water bag 23 is arranged in the gun shell 2, and is connected to the water spraying head shell 22. The blocking rod 24 is slidably arranged in the water spraying head shell 22, and the blocking rod 24 is partially located in the cavity. The launching control mechanism 1 is arranged in the gun shell 2, and the water releasing part 11 is connected to the blocking rod 24. In the energy storage state, the water releasing part 11 drives the blocking rod 24 to close the water spraying hole. In the release state, the water releasing part 11 drives the blocking rod 24 to move, the water spraying hole is in a conductive state, and the water in the elastic water bag 23 is sprayed out. In the reset state, the water releasing part 11 drives the blocking rod 24 to move to the side of the water spraying hole, so as to close the water spraying hole, and the water gun stops spraying water.
[0078] In some possible embodiments, the water gun comprises a water suction bin 25 and a motor 26, both of which are arranged in the gun shell 2, the water suction bin 25 communicates with the water spraying head shell 22, the water suction bin 25 has a water suction port, and an impeller 28 is arranged in the water suction bin 25. The main body of the motor 26 and the water suction bin 25 have a gap, the rotating shaft 261 of the motor 26 extends into the inside of the water suction bin 25, and is connected to the impeller 28. A waterproof ring 27 is sleeved on the rotating shaft 261, and the waterproof ring 27 is located between the main body of the motor 26 and the water suction bin 25.
[0079] The impeller 28 can adopt an aluminum alloy impeller 28, which has greater stress than a nylon or other plastic structure, and can reduce the energy consumption of the motor 26 more than an iron material, and has more uniform stress with the same scale size of the water inlet pipe.
[0080] The water suction bin 25 and the main body of the motor 26 are physically isolated into two parts, the waterproof ring 27 can be a silica gel ring, is sleeved on the rotating shaft 261, rotates synchronously with the rotating shaft 261, avoids that, when water is sucked, the back pressure of the water suction bin 25 causes liquid to penetrate into the inside of the motor 26 along the rotor of the motor 26, and causes the motor 26 to heat and burn.
[0081] In some possible embodiments, the water suction bin 25 is provided with a ventilation hole 251. When water is sucked, the design of the ventilation hole 251 can achieve air convection, thereby solving the problem of difficult water suction, and achieving a 100% water suction success rate. The ventilation hole 251 can be opened directly above the impeller 28, solves the problem of difficulty in water suction due to pressure, is more efficient than a method of pulling a valve by shooting, and achieves a 100% water suction success rate.
[0082] In some possible embodiments, the water gun comprises a water suction sensor 29 arranged on the gun shell 2, when the elastic water bag 23 is elongated to the limit state, the elastic water bag 23 abuts against the water suction sensor 29 to trigger the motor 26 to stop rotating.
[0083] The gun shell 2 of the water gun further comprises a gun shell and a gun head shell 21, all structural members in the water gun are arranged on the gun shell, and the gun head shell 21 covers the gun shell, a water suction nozzle 213 and a water spraying nozzle 212 are arranged on the gun head shell 21, the water suction nozzle 213 is connected with the water suction port of the water suction chamber 25, the water suction nozzle 213 can be connected with the water suction chamber 25, and the water suction nozzle 213 can be connected with an external water bag, a water pipe of the water bag can be connected to the water suction nozzle 213, so that the problem of long endurance and water refilling is solved. The gun head shell 21 can be provided with an air hole 211, and the air hole 211 is connected with the air hole 251 of the water suction chamber 25.
[0084] The gun head shell 21 is designed in one piece, which solves the problem of two half plastic parts and the phenomenon of water leakage when the water suction is completed and the gun body is held, and enhances the user experience.
[0085] In some possible embodiments, the water discharge member 11 can be connected with the pull rod 19, and the pull rod 19 can drive the plugging rod 24 to move to make the water spraying hole conductive, so that the spraying effect is realized.
[0086] In some possible embodiments, the gun shell 2 is provided with a trigger 50 connected with the operating member 14, and the gun shell 2 can be further provided with a water suction trigger key 30, when the water suction trigger key 30 is pressed, the motor 26 is controlled to rotate, so that the water suction chamber 25 performs the water suction task.
[0087] In some possible embodiments, the water gun is provided with a battery 40 and a wireless charging module, the battery 40 is used for power supply of various structural members such as the motor 26, and the wireless charging module is connected with the battery 40, so that the water gun supports wireless charging, thereby being physically isolated from an external wireless charging transmitter, so that the problem of electric shock and water inlet short circuit is completely solved.
[0088] In some possible embodiments, the battery compartment of the battery 40 is designed in a cylindrical shape, and both ends are locked by silica gel sleeves to achieve the best waterproof effect, and the other end of the battery cover part is designed as a handle type hose clamp, which is convenient for free disassembly and taking out the battery for charging.
[0089] The preferred embodiments of the application disclosed above are only to facilitate the description of the application. The preferred embodiments do not describe all the details and do not limit the application to the specific embodiments described. Obviously, many modifications and variations can be made in light of the contents of the specification. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and utilize the application. The application is limited only by the claims and their full scope and equivalents.
Claims
1. A water gun launch control mechanism, characterized in that: include: box shell; A water discharge member, the water discharge member is movably provided on the box shell and is used to connect the blocking rod of the water gun; A locking member, which is provided on the tank shell and is used to lock or release the water discharge member; A movable member, the movable member is movably arranged on the box shell, a first elastic member is connected between the movable member and the water discharge member, and a second elastic member is arranged between the movable member and the box shell; An operating member, the operating member is slidably connected to the box shell, and the operating member is limitedly matched with the movable member; The launch control mechanism has a storage state, a release state and a reset state; In the energy storage state, the locking member locks the water discharge member, the operating member drives the movable member to move away from the water discharge member, and the deformation of the first elastic member and the second elastic member increases; In the released state, the movement of the operating member triggers the locking member to release the water discharge member, the first elastic member is elastically released, driving the water discharge member to move toward the movable member, and the water discharge member presses against the operating member, so that the operating member releases the movable member; In the reset state, the second elastic component is elastically released to push the movable part to reset.
2. The launch control mechanism of the water gun according to claim 1, characterized in that: The locking member is movably arranged on the box shell, and a third elastic member is arranged between the locking member and the box shell; The operating member has a straight portion and an unlocking portion provided on the straight portion; In the energy storage state, the straight portion moves along the locking member, and the locking member is in a locked position, locking the water discharge member; In the released state, the unlocking portion moves to the locking member, pushing the locking member out of the locked position, the locking member releases the drain member, and the deformation of the third elastic member increases.
3. The launch control mechanism of the water gun according to claim 2, characterized in that: The locking member has a locking protrusion; The water discharge member has a locking matching groove; The unlocking portion is a boss provided on the straight portion; In the energy storage state, the locking protrusion is locked in the locking matching groove to limit the movement of the water discharge member; In the released state, the boss moves to the locking member, pushing the locking member to move, so that the locking protrusion is disengaged from the locking matching groove.
4. The launch control mechanism of the water gun according to claim 1, characterized in that: An elastic block is provided on the operating member; A card slot is provided on the movable part; In the energy storage state, the elastic clamping block is engaged with the clamping slot to drive the movable member to move toward a side away from the water discharge member; In the released state, the water discharge member presses against the elastic block, so that the elastic block is separated from the slot, and the operating member releases the movable member.
5. The launch control mechanism of the water gun according to claim 4, characterized in that: The operating member comprises a body and a fourth elastic member, wherein the body comprises a telescopic slot; The elastic block is slidably disposed in the telescopic slot; The fourth elastic component is located in the telescopic slot and abuts against the elastic block; The elastic block is provided with a top-supporting inclined groove; In the released state, the water discharge member abuts against the abutting inclined groove, causing the elastic block to retract into the clamping groove, and the operating member releases the movable member.
6. A water gun, characterized in that: include: gun casings; A water spray head shell, the water spray head shell is arranged on the gun shell, and has a cavity and a water spray hole communicating with the cavity; An elastic water bag, which is arranged on the gun housing and connected to the water spray head housing; a blocking rod, the blocking rod being slidably disposed on the sprinkler head housing, the blocking rod being partially located in the cavity; The launch control mechanism of a water gun according to any one of claims 1 to 5, wherein the launch control mechanism is arranged on the gun housing, and the water discharge member thereof is connected to the blocking rod; In the energy storage state, the water discharge member drives the blocking rod to close the water spray hole; In the released state, the water discharge member drives the blocking rod to move, and the water spray hole is in a conducting state; In the reset state, the water discharge member drives the blocking rod to move toward the water spray hole to close the water spray hole.
7. The water gun according to claim 6, characterized in that Including water suction chamber and motor; The water suction tank and the motor are both arranged on the gun housing, the water suction tank is connected to the water spray head housing, and the water suction tank has a water suction port; An impeller is arranged in the water suction bin; There is a gap between the main body of the motor and the water suction chamber; The rotating shaft of the motor extends into the water suction bin and is connected to the impeller.
8. The water gun according to claim 7, characterized in that A waterproof ring is provided on the rotating shaft; The waterproof ring is located between the main body of the motor and the water absorption chamber.
9. The water gun according to claim 7, characterized in that The water absorption bin is provided with a vent hole.
10. The water gun according to claim 7, characterized in that Includes water absorption sensor; The water absorption sensor is arranged on the gun housing; When the elastic water bag is extended to an extreme state, the elastic water bag abuts against the water absorption sensor to trigger the motor to stop rotating.