Toy water gun

By introducing liquid spraying, mist spraying, and light-emitting mechanisms into toy water guns, the problems of limited functionality and low realism of traditional toy water guns are solved. Liquid spraying, water mist spraying, and gun flame simulation are realized, improving the functionality and realism of toy water guns.

CN223807691UActive Publication Date: 2026-01-16佘建生
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Patent Information

Application Number
CN202520387733.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-01-16
Estimated Expiration
2035-03-06

AI Technical Summary

Technical Problem

Traditional toy water guns have limited functionality, only providing a straight jet of water, with low realism and unable to simulate the effect of a gun flame.

Method used

The design includes a liquid spraying mechanism and a spray mechanism, comprising a liquid storage chamber, a liquid pump, a liquid guide pipe, an atomizing liquid tank, and an atomizing component. Combined with a light-emitting mechanism and a jet spraying mechanism, it realizes liquid spraying, water mist spraying, and gun flame simulation.

Benefits of technology

The functions of toy water guns have been enriched, and their realism has been improved. By simulating gun shooting through spraying, misting, and light effects, the fun and visual appeal have been enhanced.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to a toy water gun, which comprises a shell, a water pump, a water pump and a water pump, the liquid spraying mechanism comprises a liquid storage cavity, a liquid spraying pump and a liquid guide pipe set, the liquid storage cavity and the liquid spraying pump are arranged on the shell, the liquid spraying pump is communicated with the liquid storage cavity and the liquid spraying level through the liquid guide pipe set, and the liquid spraying pump is used for pumping liquid in the liquid storage cavity to the liquid spraying level to be sprayed out; the spraying mechanism comprises an atomizing liquid box and an atomizing part, the atomizing liquid box is connected with the shell, the atomizing part is used for leading liquid in the atomizing liquid box and atomizing the liquid, and the water mist output end of the atomizing part is communicated with the spraying position. And through the arrangement of the liquid spraying mechanism and the mist spraying mechanism, liquid spraying can be carried out from the liquid spraying position, mist spraying can be carried out from the mist spraying position, and the functions of the product are greatly enriched. Furthermore, mist spraying is carried out while liquid spraying is carried out, the gun flame effect of a gun can be simulated through water mist, and the simulation degree of a product is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of toys, especially a toy water gun. BACKGROUND

[0002] As a popular entertainment device, the toy water gun has been favored by children and adults for a long time. The traditional toy water gun mainly realizes the water spraying function through the manual pumping or the pressure water storage tank, but its function is relatively single, and it can only provide the effect of straight line water jet. Moreover, the toy water gun cannot form the effect of gun flame after completing the firing, and the degree of simulation is low. SUMMARY

[0003] The utility model provides a kind of toy water gun, can solve the problem of single function and low degree of simulation.

[0004] The utility model provides a kind of toy water gun, which comprises:

[0005] A shell is provided with a liquid spraying position and a mist spraying position.

[0006] A liquid spraying mechanism comprises a liquid storage cavity, a liquid spraying pump and a liquid guide pipe group. The liquid storage cavity and the liquid spraying pump are arranged on the shell. The liquid spraying pump is connected to the liquid storage cavity and the liquid spraying position through the liquid guide pipe group. The liquid spraying pump is used to pump the liquid in the liquid storage cavity to the liquid spraying position for spraying.

[0007] A mist spraying mechanism comprises a mist atomizing tank and a mist atomizing element. The mist atomizing tank is connected to the shell. The mist atomizing element is used to receive the liquid in the mist atomizing tank and atomize the liquid. The water mist output end of the mist atomizing element is connected to the mist spraying position.

[0008] Preferably, the mist atomizing tank is provided with a liquid filling port for atomization.

[0009] Preferably, the mist spraying mechanism further comprises a mist atomizing supply pump. The suction end of the mist atomizing supply pump is connected to the liquid storage cavity. The discharge end of the mist atomizing supply pump is connected to the mist atomizing tank.

[0010] Preferably, the mist spraying mechanism further comprises a four-way joint. The four-way joint is connected to the liquid storage cavity.

[0011] The liquid spraying pump is connected to the four-way joint through the liquid guide pipe group.

[0012] The mist atomizing tank is provided with a backflow port. The backflow port is connected to the four-way joint.

[0013] The suction end of the mist atomizing supply pump is connected to the four-way joint.

[0014] Preferably, the liquid guide pipe set comprises a liquid injection pump input pipe, a liquid injection pump output pipe, an atomization liquid input pipe, an atomization liquid output pipe and an atomization liquid return pipe.

[0015] One end of the liquid injection pump input pipe is communicated with the four-way joint, and the other end of the liquid injection pump input pipe is communicated with an input end of the liquid injection pump. One end of the liquid injection pump output pipe is communicated with an output end of the liquid injection pump, and the other end of the liquid injection pump output pipe is communicated with the liquid injection position.

[0016] One end of the atomization liquid input pipe is communicated with the four-way joint, and the other end of the atomization liquid input pipe is communicated with a pump suction end of the atomization supply pump. One end of the atomization liquid output pipe is communicated with a pump output end of the atomization supply pump, and the other end of the atomization liquid output pipe is communicated with the atomization position. One end of the atomization liquid return pipe is communicated with the return port, and the other end of the atomization liquid return pipe is communicated with the four-way joint.

[0017] Preferably, the shell is provided with a muzzle, and the liquid injection position and the atomization position are both located on the muzzle.

[0018] The toy water gun further comprises a light-emitting mechanism, which comprises a mounting seat and at least one light-emitting piece. The mounting seat is arranged on the muzzle, and the light-emitting piece is arranged on the mounting seat.

[0019] Preferably, the mounting seat comprises a mounting ring and at least one connecting arm. The liquid injection position is arranged on the mounting ring, and the mounting ring is provided with a through hole for liquid injection. Each connecting arm is arranged on the mounting ring and connected to the muzzle. The outer wall of the mounting ring and the inner wall of the muzzle jointly define the atomization position.

[0020] The connecting arm and / or the mounting ring are provided with the light-emitting piece.

[0021] Preferably, the shell is further provided with an air injection position.

[0022] The toy water gun further comprises an air injection mechanism, which comprises an air injection pump and an air guide pipe set. The air injection pump is arranged on the shell and communicated with the air injection position through the air guide pipe set. The air injection pump is used to pump air to the air injection position, so that gas is injected through the air injection position.

[0023] Preferably, the toy water gun further comprises a power mechanism, which comprises a first motor and a second motor. The first motor is drivingly connected to the liquid injection pump, and the second motor is drivingly connected to the air injection pump.

[0024] Preferably, the toy water gun further comprises a power mechanism, the power mechanism comprising a power motor, an output gear, an intermittent transmission gear, a transmission rack, an elastic member and a plurality of transmission gears;

[0025] The power motor is connected to the shell, the power motor is drivingly connected to the output gear, the output gear is engaged with one of the transmission gears, each of the transmission gears is sequentially engaged, the intermittent transmission gear is coaxially connected with another transmission gear, the intermittent transmission gear is engaged with the transmission rack, the transmission rack is arranged on the liquid spray pump and / or the air spray pump, and the elastic member is drivingly connected to the liquid spray pump and / or the air spray pump.

[0026] The power motor outputs torque to drive the liquid spray pump and the air spray pump to move, thereby increasing the elastic potential energy of the elastic member, the elastic member is used to drive the liquid spray pump and the air spray pump to move when released, thereby the liquid spray pump pumps liquid and the air spray pump pumps gas.

[0027] Preferably, the liquid spray pump comprises a liquid spray pump cylinder and a liquid spray piston, the liquid spray pump cylinder is connected to the shell, and the liquid spray piston is slidingly arranged in the liquid spray pump cylinder.

[0028] The air spray pump comprises an air spray pump cylinder and an air spray piston, the air spray pump cylinder is connected to the shell, and the air spray piston is slidingly arranged in the air spray pump cylinder.

[0029] The liquid spray pump cylinder and the air spray pump cylinder are connected, the liquid spray piston and the air spray piston are connected, the liquid spray pump cylinder is connected to the liquid storage cavity and the liquid spray position through the liquid guide pipe group, and the air spray pump cylinder is connected to the air spray position through the air guide pipe group.

[0030] The transmission rack is arranged on the liquid spray piston and / or the air spray piston, and the elastic member is drivingly connected to the liquid spray piston and / or the air spray piston.

[0031] Preferably, one end of the liquid spray pump cylinder is connected to the liquid spray position through the liquid guide pipe group, the side wall of the liquid spray pump is connected to the liquid storage cavity through the liquid guide pipe group, the other end of the liquid spray pump cylinder is aligned and connected to the end of the air spray pump cylinder, and the side wall of the air spray pump cylinder is connected to the air spray position through the air guide pipe group.

[0032] Preferably, the toy water gun further comprises a support mechanism, the support mechanism is arranged in the shell, and the atomized liquid tank and the atomizing member are respectively connected to the support mechanism.

[0033] The support mechanism is provided with a liquid passing hole, an air passing hole and an atomizing hole, the liquid guide pipe group passes through the liquid passing hole and is connected to the liquid spraying position, the air guide pipe group passes through the air passing hole and is connected to the air spraying position, and the atomizing liquid tank is connected to the atomizing element through the atomizing hole.

[0034] Preferably, the support mechanism comprises a support plate and a mounting plate, the support plate is arranged in the shell, the liquid passing hole, the air passing hole and the atomizing hole are arranged on the support plate, the mounting plate is arranged on the opposite two sides of the support plate, the mounting plate is connected to the atomizing liquid tank, the atomizing element is arranged between the support plate and the mounting plate, the atomizing liquid tank and the support plate jointly define an atomizing liquid cavity, and the atomizing liquid cavity is connected to the atomizing hole.

[0035] Preferably, the atomizing element is an atomizing sheet, and the atomizing sheet is used for atomizing liquid through high-frequency vibration.

[0036] Preferably, the shell comprises a barrel, a barrel mouth and a collar, the barrel mouth is connected to the barrel, the collar is sleeved on the barrel mouth, so that the collar and the barrel mouth define an air spraying channel, the air spraying position is arranged at the end of the air spraying channel, and the air pump is connected to the air spraying channel through the air guide pipe group.

[0037] Preferably, the toy water gun further comprises a power supply mechanism, the power supply mechanism is connected to the shell, and the power supply mechanism is electrically connected to the atomizing element.

[0038] Preferably, the power supply mechanism comprises a sliding element, a battery, a first conductive element, a second conductive element, a sliding groove and a guide rail.

[0039] One of the sliding groove and the guide rail is arranged on the sliding element, and the other of the sliding groove and the guide rail is arranged on the shell, the battery and the first conductive element are arranged on the sliding element, the second conductive element is arranged on the shell, and the atomizing element is electrically connected to the atomizing element.

[0040] The sliding element is slidably connected to the shell through the sliding groove and the guide rail, so that the first conductive element and the second conductive element are detachably connected, and then the battery is electrically connected to the atomizing element through the first conductive element and the second conductive element.

[0041] The implementation of the utility model has the following beneficial effects:

[0042] The utility model relates to a toy water gun, set up spouts liquid mechanism and spray mechanism, thereby can spout liquid from spouts liquid position, and spray from spray position, greatly enrich the function of product. Further, spout spray simultaneously, can simulate the gun flame effect of gunnery through water mist, greatly improve the product's degree of reality. BRIEF DESCRIPTION OF DRAWINGS

[0043] The above and other objects, features and advantages of the present utility model will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings, in which like reference characters refer to like parts throughout the several views, and wherein the utility model exemplary embodiments, same reference numbers generally indicate identical components.

[0044] Figure 1 It is the structural schematic diagram of toy water gun in some embodiments of the utility model;

[0045] Figure 2 It is the internal structure schematic diagram of toy water gun in some embodiments of the utility model;

[0046] Figure 3 It is the structural schematic diagram of toy water gun from another angle Figure 1 Viewed from another angle

[0047] Figure 4 It is Figure 2 The enlarged view of toy water gun at A shown in

[0048] Figure 5 It is Figure 3 The enlarged view of toy water gun at B shown in

[0049] Figure 6 It is the partial structure schematic diagram of toy water gun in some embodiments of the utility model;

[0050] Figure 7 It is Figure 6 The enlarged view at C;

[0051] Figure 8 It is the explosion view of partial structure of toy water gun in some embodiments of the utility model;

[0052] Figure 9 It is the explosion view of partial structure of toy water gun in some embodiments of the utility model;

[0053] Figure 10 It is Figure 2 The partial structure schematic diagram of toy water gun shown in

[0054] Figure 11 It is Figure 9 The enlarged view of toy water gun at D shown in

[0055] Figure 12is Figure 9 enlarged view of the toy water gun shown at E;

[0056] Figure 13 is Figure 2 enlarged view of the toy water gun shown at F;

[0057] Figure 14 is Figure 2 enlarged view of the toy water gun shown at G;

[0058] Figure 15 is a structural schematic view of a toy water gun in some other embodiments of the present utility model;

[0059] Figure 16 is Figure 15 enlarged view of the toy water gun shown at H. DETAILED DESCRIPTION

[0060] Embodiments of the present utility model will be described in more detail below with reference to the accompanying drawings. Although embodiments of the present utility model are shown in the drawings, it should be understood that the present utility model can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present utility model more thorough and complete, and to fully convey the scope of the present utility model to those skilled in the art.

[0061] It should be understood that although the terms "first", "second", "third", etc. may be employed in this utility model to describe various information, these information should not be limited by these terms. These terms are only used to distinguish the same type of information from each other. For example, the first information can also be referred to as the second information, and similarly, the second information can also be referred to as the first information without departing from the scope of the present utility model. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present utility model, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0062] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present utility model.

[0063] Unless otherwise clearly indicated or implied to the contrary by context, the terms "mounting", "connected", "connecting", "fixed", "fixing", and like terms are to be broadly understood, for example, as being able to be fixed connections, detachable connections, or integral; being mechanical connections, electrical connections, or both; being direct connections, or indirect connections via an intermediate medium, or both; and being internal connections between elements, or interactions between elements. Those of ordinary skill in the art will understand the specific meaning of the above terms in the present application according to the specific circumstances.

[0064] Figure 1 and Figure 2 The toy water gun 10 in some embodiments of the present application is shown, which can spray liquid and water mist. The toy water gun 10 includes a shell 1, a liquid spraying mechanism 2, and a mist spraying mechanism 3. The shell 1 serves to support and install other mechanisms. The liquid spraying mechanism 2 is used for spraying liquid, and the mist spraying mechanism 3 is used to generate water mist during operation.

[0065] As shown in Figures 2 to 5 , the shell 1 is provided with a liquid spraying position 11 and a mist spraying position 12. The liquid spraying mechanism 2 includes a liquid storage cavity 21, a liquid spraying pump 22, and a liquid guide pipe group 23. The liquid storage cavity 21 and the liquid spraying pump 22 are arranged on the shell 1. The liquid spraying pump 22 is connected to the liquid storage cavity 21 and the liquid spraying position 11 through the liquid guide pipe group 23. The liquid spraying pump 22 is used to pump the liquid in the liquid storage cavity 21 to the liquid spraying position 11 for spraying.

[0066] Referring to Figures 6 to 10 , the mist spraying mechanism 3 includes an atomizing liquid tank 31 and an atomizing element 32. The atomizing liquid tank 31 is connected to the shell 1. The atomizing element 32 is used to receive the liquid from the atomizing liquid tank 31 and atomize the liquid. The water mist output end of the atomizing element 32 is connected to the mist spraying position 12.

[0067] It can be understood that the liquid spraying position 11 is used to spray liquid, and the mist spraying position 12 is used to spray water mist. The liquid spraying position 11 and the mist spraying position 12 can be arranged side by side or in different regions to realize switching or synchronous operation of different spraying modes.

[0068] The liquid storage cavity 21 is arranged inside the shell 1 or externally mounted on the side of the shell 1. The liquid storage cavity 21 is used to store liquid (such as water or colored liquid) to be sprayed. The liquid spraying pump 22 can be configured as an electric pump driven by electricity or a manual pump driven by hand. The liquid spraying pump 22 is used to provide power for the flow of liquid. The liquid guide pipe group 23 serves to guide the flow of liquid. When the liquid spraying pump 22 is started, the liquid in the liquid storage cavity 21 is pressurized and then delivered to the liquid spraying position 11 through the liquid guide pipe group 23 to form liquid spraying.

[0069] The atomization liquid tank 31 can be configured to be independently arranged inside the shell 1 or configured to share space with the liquid storage cavity 21, and the atomization liquid tank 31 is used for storing liquid to be atomized. The atomization liquid tank 31 can be isolated from the liquid storage cavity 21 by a separation structure to avoid mixing of the liquids. The atomization member 32 is used to convert the liquid into water mist, so that the water mist can be sprayed from the spray position.

[0070] It should be noted that the utility model is provided with the liquid spraying mechanism and the spray mechanism, realizes the double functions of liquid spraying and water mist spraying, and enriches the functions of the toy water gun. Furthermore, the atomization member is directly connected to the special atomization liquid tank 31, liquid supply of the atomization member is ensured, uniform and stable generation of the water mist is ensured, the gun flame simulation effect of the product is further improved, and the product is improved in the degree of reality.

[0071] As shown in Figure 10 some embodiments of the toy water gun 10, the atomization liquid tank 31 is provided with an atomization liquid filling port 311.

[0072] Understandably, the atomization liquid tank 31 is provided with an atomization liquid filling port 311 on the top or side. The atomization liquid filling port 311 is used to supplement the liquid (such as pure water) required for atomization into the atomization liquid tank 31. The atomization liquid filling port 311 can be designed as a screw cap type, a buckle sealing type or a one-way valve structure to prevent liquid leakage. Through the content of the embodiment, the atomization liquid supplementing operation can be simplified, the user's use convenience is improved, and the sealing property of the atomization liquid tank is ensured.

[0073] Further, as shown in Figure 15 and Figure 16 some embodiments of the toy water gun 10, the atomization liquid filling port 311 extends to the outer surface of the shell 1, and the atomization liquid filling port 311 can be covered with a filling cover 312.

[0074] Understandably, the user can directly open the filling cover 312 to open the atomization liquid filling port 311, so that the liquid can be injected into the atomization liquid tank 31 through the atomization liquid filling port 311. In this way, it is not necessary to additionally arrange a water pump to supply liquid to the atomization liquid tank 31, that is, the arrangement of the water pump and the matching pipeline is avoided, the production and manufacturing cost of the product is greatly reduced, the product size is avoided from being increased due to arrangement of too many pipelines, and the compactness of the product is improved.

[0075] As shown in Figures 8 to 10 some other embodiments of the toy water gun 10, the spray mechanism 3 further comprises an atomization supply pump 33, a pump suction end 331 of the atomization supply pump 33 is communicated with the liquid storage cavity 21, and a pump discharge end 332 of the atomization supply pump 33 is communicated with the atomization liquid tank 31.

[0076] It can be understood that the atomization supply pump 33 can pump the liquid in the liquid storage cavity 21 to the atomization liquid tank 31, realizing the timely and rapid replenishment of the atomization liquid. Further, a switch can be configured to independently control the start and stop of the atomization supply pump 33, adjust the liquid level of the atomization liquid tank 31, and avoid the failure of the atomization component 32 due to lack of liquid.

[0077] It should be noted that through the content of the present embodiment, the liquid sharing of the liquid storage cavity and the atomization liquid tank can be realized, the additional filling operation is reduced, and the continuous use time of the spraying function is prolonged.

[0078] As shown in Figure 2 , Figure 8 and Figure 10 , in some implementations of the toy water gun 10, the spraying mechanism 3 further includes a four-way joint 34, the four-way joint 34 is communicated with the liquid storage cavity 21; the liquid spraying pump 22 is communicated with the four-way joint 34 through the liquid guide pipe group 23; the atomization liquid tank 31 is provided with a backflow port, the backflow port is communicated with the four-way joint 34; the suction end 331 of the atomization supply pump 33 is communicated with the four-way joint 34.

[0079] It can be understood that the four-way joint 34 serves as a liquid distribution hub, coordinating the liquid flow directions of the liquid spraying and atomization functions. The arrangement of the four-way joint 34 can optimize the layout of the liquid pipeline, improve the system stability, and at the same time reduce the risk of leakage caused by uneven liquid pressure.

[0080] Further, the four-way joint 34 can be directly arranged on the liquid storage cavity 21, or can be communicated with the liquid storage cavity 21 through a pipeline.

[0081] As shown in Figures 4 to 10 , in some implementations of the toy water gun 10, the liquid guide pipe group 23 includes a liquid spraying pump input pipe 231, a liquid spraying pump output pipe 232, an atomization liquid input pipe 233, an atomization liquid output pipe 234, and an atomization liquid backflow pipe 235.

[0082] One end of the liquid spraying pump input pipe 231 is communicated with the four-way joint 34, and the other end of the liquid spraying pump input pipe 231 is communicated with the input end of the liquid spraying pump 22. One end of the liquid spraying pump output pipe 232 is communicated with the output end of the liquid spraying pump 22, and the other end of the liquid spraying pump output pipe 232 is communicated with the liquid spraying position 11.

[0083] One end of the atomization liquid input pipe 233 is communicated with the four-way joint 34, and the other end of the atomization liquid input pipe 233 is communicated with the suction end 331 of the atomization supply pump 33. One end of the atomization liquid output pipe 234 is communicated with the pump outlet end 332 of the atomization supply pump 33, and one end of the atomization liquid backflow pipe 235 is communicated with the backflow port. The other end of the atomization liquid backflow pipe 235 is communicated with the four-way joint 34.

[0084] The liquid injection pump input pipe 231 is used to deliver liquid to the liquid injection pump. The liquid injection pump output pipe 232 is used to guide the pressurized liquid injection. The atomization liquid input pipe 233 is used to deliver liquid to the atomization supply pump 33. The atomization liquid output pipe 234 is used to guide the liquid pumped by the atomization supply pump 33 to the atomization liquid tank 31. The atomization liquid return pipe 235 is used to return the excess liquid in the atomization liquid tank 31 to the liquid storage chamber 21.

[0085] As shown in Figure 4 and Figure 5 In some embodiments of the toy water gun 10, the housing 1 is provided with a muzzle 15, and the liquid injection position 11 and the spray position 12 are both located on the muzzle 15. The toy water gun 10 further comprises a light-emitting mechanism 4, which comprises a mounting seat 41 and at least one light-emitting element 42. The mounting seat 41 is arranged on the muzzle 15, and the light-emitting element 42 is arranged on the mounting seat 41.

[0086] As can be understood, the light-emitting mechanism 4 is used to emit light during operation. The mounting seat 41 is used to provide a position for the light-emitting element 42 to be mounted on the muzzle 15, i.e., to limit the position of the light-emitting element 42 on the muzzle 15. The light-emitting element 42 is used to emit light during operation. The light emitted by the light-emitting element 42 can illuminate the water mist sprayed through the spray position 12 of the muzzle 15, so that the water mist forms a visual effect similar to gun flames under the illumination of the light. In this way, not only the interesting and ornamental nature of the toy water gun is enhanced, but also the flame effect during the shooting of a real firearm is simulated.

[0087] As shown in Figure 4 and Figure 5 In some embodiments of the toy water gun 10, the mounting seat 41 comprises a mounting ring 411 and at least one connecting arm 412. The liquid injection position 11 is arranged on the mounting ring 411, and the liquid injection position 11 is provided with a through hole 111 for liquid injection. Each connecting arm 412 is arranged on the mounting ring 411, and the connecting arm 412 is connected to the muzzle 15. The peripheral outer wall of the mounting ring 411 and the inner wall surface of the muzzle 15 jointly define the spray position 12. The light-emitting element 42 is arranged on the connecting arm 412 and / or the mounting ring 411.

[0088] It can be understood that the liquid spray position 11 is provided with a through hole 111 in the center of the mounting ring 411 for direct liquid spraying. The connecting arms 412 are symmetrically or radially distributed at the outer edge of the mounting ring 411, one end of each connecting arm 412 is fixed to the mounting ring 411, and the other end is connected to the inner wall of the muzzle 15 to form a stable support. Of course, the connecting arms 412 can also be clamped to the inner wall of the muzzle 15. The spray position 12 is formed by the annular gap between the outer wall of the mounting ring 411 and the inner wall of the muzzle 15, which is used for water mist diffusion. The light emitting element 42 is installed on the connecting arm 412 or the mounting ring 411 (such as an LED lamp bead), which is connected to the power module in the shell 1 through a wire. Of course, the light emitting element 42 can be configured to be installed at the connection position of the connecting arm and the mounting ring.

[0089] The liquid spray position 11 sprays liquid through the through hole 111, and the spray position 12 uniformly diffuses water mist through the gap between the mounting ring 411 and the muzzle 15. The connecting arms 412 not only fix the position of the mounting ring, but also avoid blocking the water mist spray path.

[0090] It should be noted that the light of the light emitting element 42 directly irradiates the water mist sprayed from the spray position 12, forming a dynamic light and shadow effect, simulating the visual effect of gun flame when the gun is fired. The light can further enhance the interest by color switching or flickering mode (such as red and blue light alternately). In addition, the liquid spraying, water mist spraying and light emitting functions are concentrated in the muzzle 15, which has compact structure and high functional integration.

[0091] As shown in Figure 4 and Figure 5 , in some embodiments of the toy water gun 10, the shell 1 is also provided with a gas spraying position 13. Please refer to Figure 10 , the toy water gun 10 further comprises a gas spraying mechanism 5 (the gas spraying mechanism 5 is shown in Figure 2 ), the gas spraying mechanism 5 comprises a gas spraying pump 51 and a gas guide pipe group 52, the gas spraying pump 51 is installed on the shell 1, the gas spraying pump 51 is connected to the gas spraying position 13 through the gas guide pipe group 52, and the gas spraying pump 51 is used to pump air to the gas spraying position 13, so that the gas is sprayed out through the gas spraying position 13.

[0092] It can be understood that the gas spraying position 13 is used for spraying gas flow. The gas spraying pump 51 can be configured to be installed on the outside or inside of the shell 1 and driven by electricity (such as a DC motor) to generate compressed air. When the gas spraying pump 51 is started, the external air is pressurized and then delivered to the gas spraying position 13 through the gas guide pipe group 52 to form a high-speed gas flow. The gas spraying direction can be the same as or staggered with the liquid spraying position 11 and the spray position 12, so as to simulate the recoil force or enhance the water mist diffusion effect.

[0093] It should be noted that the jet mechanism 5 can be configured to operate independently (e.g., jetting only) or in conjunction with the liquid spraying / spraying mechanism (e.g., jetting while spraying liquid to simulate the sound effects and airflow impact of gunfire). Furthermore, by using airflow to assist in the diffusion of the water mist, the spray coverage area can be expanded, thereby enhancing the visual effect.

[0094] In some embodiments, the air duct assembly 52 includes at least one air duct, through which the jet pump 51 is connected to the jet position 13.

[0095] like Figure 2 As shown, in some embodiments of the toy water gun 10, the toy water gun 10 also includes a power mechanism 6, which includes a first motor and a second motor. The first motor is driven and connected to the spray pump 22, and the second motor is driven and connected to the air pump 51.

[0096] Understandably, the first motor is used to control the pressure and flow rate of the liquid pump. The second motor is used to adjust the intensity and frequency of the airflow. Furthermore, the toy water gun 10 can also be configured to include a control module (not shown), which can be integrated into the housing 1 and can receive user operation commands (such as trigger buttons, mode switching switches) to independently or synchronously control the operating status of the first and second motors.

[0097] It should be noted that the dual-motor configuration in this embodiment avoids interference between the liquid spraying and air spraying functions, ensuring system stability. Furthermore, this embodiment allows users to activate either the air spraying or liquid spraying function individually, or simultaneously both.

[0098] like Figures 8 to 10 As shown, in some embodiments of the toy water gun 10, the toy water gun 10 also includes a power mechanism 6, which includes a power motor 61, an output gear 62, an intermittent transmission gear 63, a transmission rack 64, an elastic element 65, and several transmission gears 66.

[0099] The power motor 61 is connected to the housing 1, and the power motor 61 drives the output gear 62 (e.g., Figure 11 As shown), the output gear 62 meshes with one of the transmission gears 66 (as shown). Figure 11 As shown), each transmission gear 66 meshes in sequence (as shown). Figure 8 As shown), the intermittent transmission gear 63 is coaxially connected to another transmission gear 66 (as shown). Figure 12 As shown), the intermittent transmission gear 63 meshes with the transmission rack 64 (as shown). Figure 12 As shown), the transmission rack 64 is mounted on the liquid injection pump 22 and / or the jet pump 51 (e.g. Figure 12 As shown), the elastic element 65 is driven to connect to the liquid injection pump 22 and / or the jet pump 51 (as shown). Figure 10 (as shown)

[0100] Wherein, the power motor 61 outputs torque to drive the liquid pump 22 and the air pump 51 to move, thereby increasing the elastic potential energy of the elastic member 65, which is used to drive the liquid pump 22 and the air pump 51 to move when released, so that the liquid pump 22 pumps liquid and the air pump 51 pumps gas.

[0101] It can be understood that the power motor 61 is fixed inside the shell 1 and is used to output torque when energized. The output gear 62 is connected to the output shaft of the power motor 61 and is used to receive the motor torque. A plurality of transmission gears 66 are sequentially engaged to transmit power to the last transmission gear 66. The intermittent transmission gear 63 is coaxially connected to one of the transmission gears 66, and the intermittent transmission gear 63 is used to convert the rotary motion into intermittent linear motion of the transmission rack 64. The transmission rack 64 can be configured to be connected to the liquid pump 22 or the air pump 51, and the transmission rack 64 can also be configured to be connected to the liquid pump 22 and the air pump 51 at the same time. The elastic member 65 can be configured as a spring, an elastic sheet or other components capable of providing elastic force in the prior art. One end of the elastic member 65 is connected to the shell 1, and the other end is connected to the liquid pump 22 or the air pump 51. The elastic member 65 is used to store and release elastic potential energy.

[0102] It should be noted that the power motor 61 drives the transmission rack 64 through the output gear 62, the transmission gear 66 and the intermittent transmission gear 63, thereby driving the liquid pump 22 and the air pump 51 to move together, and further deforming the elastic member 65, so that the elastic potential energy of the elastic member 65 is increased. When the intermittent transmission gear 63 is disengaged from the transmission rack 64, the elastic member 65 releases the potential energy and pushes the liquid piston 221 and the air piston 512 to quickly reset. In this way, the liquid pump 22 and the air pump 51 can move back and forth to pump liquid and gas.

[0103] As shown in Figure 10 some embodiments of the toy water gun 10, the liquid pump 22 includes a liquid pump cylinder 222 and a liquid piston 221. The liquid pump cylinder 222 is connected to the shell 1, and the liquid piston 221 is slidingly arranged in the liquid pump cylinder 222.

[0104] The air pump 51 includes an air pump cylinder 511 and an air piston 512. The air pump cylinder 511 is connected to the shell 1, and the air piston 512 is slidingly arranged in the air pump cylinder 511.

[0105] The liquid pump cylinder 222 and the air pump cylinder 511 are connected, and the liquid piston 221 and the air piston 512 are connected. The liquid pump cylinder 222 is connected to the liquid chamber 21 and the liquid position 11 through the liquid pipe group 23, and the air pump cylinder 511 is connected to the air position 13 through the air pipe group 52.

[0106] Wherein, as shown in Figure 12As shown, the transmission rack 64 is arranged on the liquid injection piston 221 and / or the pump gas piston 512, and the elastic member 65 is drivingly connected to the liquid injection piston 221 and / or the pump gas piston 512.

[0107] As can be understood, the liquid injection pump cylinder 222 is fixed to the inside or side wall of the shell 1, and the liquid injection piston 221 is slidingly arranged in the liquid injection pump cylinder 222. The liquid injection pump cylinder 222 is connected to the liquid injection site 11 and the liquid storage cavity 21 through the liquid guide pipe group 23, realizing liquid pumping. The pump gas cylinder 511 is fixed to the side wall or the inside of the shell 1, and the pump gas piston 512 is slidingly arranged in the pump gas cylinder 511. The pump gas cylinder 511 is connected to the pump gas site 13 through the gas guide pipe group 52, realizing gas pumping.

[0108] The liquid injection pump cylinder 222 and the pump gas cylinder 511 can be configured to be fixed as a whole through a connecting member, can also be configured to be connected by bonding, or can be configured to be integrally formed together.

[0109] The liquid injection piston 221 and the pump gas piston 512 can be configured to move synchronously through a connecting rod, or can be configured to be connected by welding, bonding, screwing, or inserting, etc. Of course, the liquid injection piston 221 and the pump gas piston 512 can also be configured to be integrally formed together.

[0110] It should be noted that the power motor 61 drives the liquid injection piston 221 and the pump gas piston 512 to move synchronously through the transmission rack 64, realizing synchronous pumping of liquid and gas. The elastic member 65 provides power when the liquid injection piston 221 and the pump gas piston 512 are reset, ensuring pumping efficiency. The linkage design of the liquid injection pump and the pump gas pump can reduce the number of independent components and reduce assembly complexity. Synchronous injection of liquid and gas can improve the synchronization of water mist flow and liquid injection, further improving the simulation degree of gun flame and improving the product fidelity.

[0111] As shown in FIGS. Figure 4 , Figure 5 and Figure 10 In some embodiments of the toy water gun 10, one end of the liquid injection pump cylinder 222 is connected to the liquid injection site 11 through the liquid guide pipe group 23, the side wall of the liquid injection pump 22 is connected to the liquid storage cavity 21 through the liquid guide pipe group 23, the other end of the liquid injection pump cylinder 222 is aligned with the end of the pump gas cylinder 511, and the side wall of the pump gas cylinder 511 is connected to the pump gas site 13 through the gas guide pipe group 52.

[0112] As can be understood, the front end of the liquid injection pump cylinder 222 is directly connected to the liquid injection site 11 through the liquid guide pipe group 23, responsible for pressurized liquid output. The side wall of the liquid injection pump cylinder 222 is connected to the liquid storage cavity 21 through the liquid guide pipe group 23, forming a liquid suction channel.

[0113] The side wall of the air jet pump cylinder 511 is connected to the air jet position 13 through the air guide pipe group 52 for the release of compressed air. The front end of the air jet pump cylinder 511 is aligned with the end of the liquid jet pump cylinder 222 to form a coaxial cavity structure, realizing the physical linkage of the liquid jet pump and the air jet pump.

[0114] The liquid jet piston 221 in the liquid jet pump cylinder 222 and the air jet piston 512 in the air jet pump cylinder 511 are fixed through a rigid connecting rod or an integrated structure, ensuring synchronous reciprocating movement. When the pistons move, negative pressure is formed in the liquid jet pump cylinder 222 to suck in liquid from the liquid storage chamber 21, and the air jet pump cylinder 511 sucks in air from the outside and compresses it.

[0115] It should be noted that in actual operation, the pressurized liquid of the liquid jet pump cylinder 222 is sprayed through the front end liquid guide pipe group 23. The compressed gas of the air jet pump cylinder 511 is sprayed through the side wall air guide pipe group 52, and the direction is coaxial or staggered with the water mist spray, which enhances the water mist diffusion effect.

[0116] It should also be noted that in the embodiments of the present application, the two pump cylinders are aligned axially to reduce the space occupied by the independent pump body, making the internal layout of the water gun compact and the weight distribution more ergonomic.

[0117] Further, an air flow one-way valve can be arranged on the side wall of the air jet pump cylinder 511, or the side wall of the air jet pump cylinder 511 is connected to the outside of the shell 1 through an air pipe, and an air flow one-way valve is arranged at the inlet end of the air pipe. In this way, during the pumping of air flow, the air flow can flow into the air jet pump cylinder 511 through the air flow one-way valve, while during the pumping of gas, the air flow can be prevented from flowing out through the air flow one-way valve, ensuring that the air flow is fully supplied to the air jet position for spraying, thereby ensuring the disturbance effect of the air flow on the water mist and improving the gun flame simulation effect of the product.

[0118] Further, the air jet pump cylinder 511 can be configured to both spray air through the air jet position and suck air through the air jet position. In this way, during actual operation, the pumping and pumping of air flow will not affect the diffusion of water mist, and in fact, the reciprocating air flow can disturb the water mist more quickly, improving the gun flame effect. At the same time, since the air inlet channel and / or air inlet one-way valve are omitted, the production and assembly difficulty of the product is reduced, the product cost is reduced, and the overall compactness is improved.

[0119] Further, in order to solve the problem of gas-liquid mixing when the liquid jet pump cylinder 222 and the air jet pump cylinder 511 are in communication, the present application can at least adopt the following several implementation ways:

[0120] The first implementation way is to arrange a separation structure (such as a partition or a one-way valve) at the communication position of the air jet pump cylinder and the liquid jet pump cylinder to form independent air chambers and liquid chambers. In this way, the air chamber is only used for air flow, and the liquid chamber is only used for liquid flow, which can avoid gas-liquid mixing.

[0121] In the second embodiment, sealing rings (such as rubber rings or silicone pads) are respectively installed on the air pump piston and the liquid injection piston to prevent gas from seeping into the liquid chamber or liquid from seeping into the air chamber.

[0122] like Figure 2 As shown, in some embodiments of the toy water gun 10, the toy water gun 10 also includes a support mechanism 7, which is disposed within the housing 1. The atomizing liquid tank 31 and the atomizing element 32 are respectively connected to the support mechanism 7. Figure 8 As shown, the support mechanism 7 has a liquid passage hole 711, an air passage hole 712 and an atomizing hole 713. The liquid guide tube assembly 23 passes through the liquid passage hole 711 and is connected to the liquid spray position 11. The air guide tube assembly 52 is connected to the jet spray position 13 through the air passage hole 712. The atomizing liquid tank 31 is connected to the atomizing component 32 through the atomizing hole 713.

[0123] Understandably, the support mechanism 7 serves to fix the relative positions of the atomizing liquid tank 31 and the atomizing element 32, ensuring the continuity of liquid atomization, that is, ensuring the continuity of water mist. The support mechanism 7 also provides passageways (liquid passage hole 711, air passage hole 712) for the liquid guide tube assembly 23 and the air guide tube assembly 52, avoiding pipe cross-interference. The opening of the atomizing hole 713 allows the liquid in the atomizing liquid tank 31 to flow to the atomizing element 32 for atomization.

[0124] like Figure 8 As shown, in some embodiments of the toy water gun 10, the support mechanism 7 includes a support plate 71 and a mounting plate 72. The support plate 71 is disposed inside the housing 1. The liquid passage hole 711, the air passage hole 712, and the atomizing hole 713 are all located on the support plate 71. The mounting plate 72 and the atomizing liquid tank 31 respectively abut against two opposite sides of the support plate 71. The mounting plate 72 is connected to the atomizing liquid tank 31, and the atomizing element 32 is located between the support plate 71 and the mounting plate 72. The atomizing liquid tank 31 and the support plate 71 together define the atomizing liquid cavity 313, and the atomizing liquid cavity 313 is connected to the atomizing hole 713.

[0125] Understandably, the support plate 71 is used to fix the atomizing liquid tank, atomizing element, and pipeline, maintaining the positional stability of the components. The support plate 71 guides the flow of liquid, gas, and atomizing liquid through liquid passage holes, air passage holes, and atomizing holes, respectively, achieving functional separation. The mounting plate 72 cooperates with the support plate 71 to form a detachable sandwich structure, facilitating the quick replacement and maintenance of the atomizing element 32.

[0126] Specifically, in some embodiments of the toy water gun 10, the atomizing element 32 is an atomizing plate, which is used to atomize the liquid through high-frequency vibration. Understandably, the atomizing plate is prior art, and the atomizing plate can vibrate at high frequency when powered on, thereby dispersing the contacting liquid and forming a water mist.

[0127] Specifically, the atomizing piece can be a piezoelectric ceramic atomizing piece, a micro-hole atomizing piece, an ultrasonic atomizing piece, or other atomizing pieces capable of atomizing liquid in the prior art. The actual use requirements, design requirements, design specifications, and application scenarios are flexibly selected. For example, the piezoelectric ceramic piece can form fine mist, thereby simulating the thin mist of a sniper rifle; the micro-hole piece can form thick mist, thereby simulating the diffused thick mist of a shotgun.

[0128] As shown in Figure 4 , Figure 5 and Figure 10 , in some embodiments of the toy water gun 10, the shell 1 includes a gun body 14, a muzzle 15, and a collar 16, the muzzle 15 is connected to the gun body 14, and the collar 16 is sleeved outside the muzzle 15, thereby defining a jet passage 161 between the collar 16 and the muzzle 15, the jet position 13 is located at the end of the jet passage 161, and the jet pump 51 is connected to the jet passage through the air guide pipe set 52.

[0129] Understandably, the gun body 14 is used to install the remaining components, and also provides a position for the user to hold and operate. The muzzle 15 is an extended structure at the front end of the gun body 14. The collar 16 is nested outside the muzzle 15, and an annular cavity (jet passage 161) is formed between the collar 16 and the outer wall of the muzzle 15, serving as a compressed gas discharge path. The jet passage 161 is provided with a jet position 13 at the end, realizing the separation or cooperation of gas flow and liquid flow output.

[0130] As shown in Figures 1 to 3 , in some embodiments of the toy water gun 10, the toy water gun 10 further includes a power supply mechanism 8, the power supply mechanism 8 is connected to the shell 1, and the power supply mechanism 8 is electrically connected to the atomizing piece 32.

[0131] Understandably, the power supply mechanism 8 is used to provide stable power for the atomizing piece 32, ensuring that the atomization of the liquid can continue to operate stably when needed. Of course, other electric components or electric devices on the toy water gun 10 can also be powered by the power supply mechanism 8.

[0132] Further, a corresponding circuit can be provided on the product, thereby controlling the timing of the spray, light effect, and jet action through the circuit linkage, realizing the cooperative work of multiple modules. Of course, a circuit board can also be configured on the product, thereby controlling the work of various electric components through the circuit board to meet the required work timing or action timing.

[0133] Further, the power supply mechanism 8 can be configured as various components, devices, or mechanisms capable of power supply in the prior art. The power supply mechanism 8 can be configured to be detachable or non-detachable. The power supply mechanism 8 can be configured as a rechargeable power source or a non-rechargeable power source.

[0134] As shown in Figure 6 , Figure 9 andFigure 13 As shown, in some embodiments of the toy water gun 10, the power supply mechanism 8 includes a slider 81, a battery 82, a first conductive element 83, a second conductive element 84, a groove 85, and a guide rail 86.

[0135] One of the slide groove 85 and the guide rail 86 is disposed on the sliding member 81, and the other of the slide groove 85 and the guide rail 86 is disposed on the housing 1. The battery 82 and the first conductive member 83 are disposed on the sliding member 81, the second conductive member 84 is disposed on the housing 1, and the atomizing member 32 is electrically connected to the atomizing member 32.

[0136] The sliding member 81 is slidably connected to the housing 1 through the sliding groove 85 and the guide rail 86, so that the first conductive member 83 and the second conductive member 84 are detachably connected, and the battery 82 is electrically connected to the atomizing member 32 through the first conductive member 83 and the second conductive member 84.

[0137] Understandably, the slider 81 is used to integrate the battery 82 and the first conductive element 83, thereby forming a movable power supply module. Through the cooperation of the slide groove 85 and the guide rail 86, it slides along the preset direction of the housing 1 (usually horizontal sliding, vertical sliding, or inclined sliding).

[0138] Battery 82 can be configured as a dry cell battery or a lithium battery, depending on the requirements of the electrical components, including the number and voltage of the batteries.

[0139] The first conductive element 83 and the second conductive element 84 can both be configured as conductive springs in the prior art or as conductive plug-in structures in the prior art, thereby ensuring that the circuit is connected after the slider 81 slides into place. When the slider 81 disengages, the first conductive element 83 and the second conductive element 84 separate, cutting off the power supply.

[0140] It should be noted that the technical solution of this embodiment enables users to quickly disassemble and assemble the power supply mechanism 8, improving the ease of use of the product.

[0141] Furthermore, a limiting boss or magnetic latch can be provided at the end of the slide 85 or guide rail 86 to prevent the sliding part from accidentally coming off.

[0142] like Figure 2 As shown, in some embodiments of the toy water gun 10, the spraying mechanism 2 can be configured to include a liquid storage shell 24, a liquid storage cavity 21 located inside the liquid storage shell 24, an injection hole 241 and an discharge hole 242 provided on the liquid storage shell 24, and the liquid storage shell 24 is connected to the housing 1.

[0143] Understandably, the injection port 241 allows liquid to be injected into the storage chamber 21. The discharge port 242 allows the liquid in the storage chamber 21 to be discharged to the corresponding pump. The storage shell 24 can be configured to be fixedly connected to the housing 1, or the storage shell 24 can be configured to be detachably connected to the housing 1.

[0144] As Figures 1 to 3 shown in some embodiments of the toy water gun 10, the toy water gun 10 further comprises a trigger mechanism. As Figure 14 shown, the trigger mechanism 9 comprises a trigger 91, a first contact 92 and a second contact 93, the trigger is movably arranged on the housing, the first contact is arranged on the trigger, and the second contact is arranged on the housing. The first contact is capable of abutting against the second contact under the action of the trigger, so that the first contact and the second contact are in conduction.

[0145] Understandably, after the first contact and the second contact are in conduction, the liquid spraying mechanism 2 is triggered to work to spray liquid, and the spray mechanism 3 is controlled to work to spray water mist. If the gas spraying mechanism is provided, the gas spraying mechanism 5 is also triggered to work to spray gas.

[0146] The implementation of the present application has the following beneficial effects:

[0147] The present application relates to a kind of toy water gun, liquid spraying mechanism and spray mechanism are arranged, so that liquid can be sprayed from liquid spraying position, and spray from spray position, greatly enrich the function of product. Further, spray while spraying liquid, can simulate the gun flame effect of gunnery by water mist, greatly improve the degree of reality of product.

[0148] The above has been described in detail with reference to the drawings. In the above-described embodiments, the description of each embodiment is focused on, and the part not described in detail in a certain embodiment can be referred to the relevant description of other embodiments. Those skilled in the art should also know that the actions and modules involved in the specification are not necessarily required by the present application. In addition, it can be understood that the steps in the method of the embodiments of the present application can be adjusted in sequence, combined and reduced according to actual needs, and the modules in the device of the embodiments of the present application can be combined, divided and reduced according to actual needs.

[0149] The above has described each embodiment of the present application, and the above description is exemplary, not exhaustive, and is not limited to each disclosed embodiment. Many modifications and changes are obvious to those skilled in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles, practical application or improvement of technology in the market of each embodiment, or to enable other ordinary skilled persons in the art to understand each embodiment disclosed herein.

Claims

1. A toy water gun characterized in that, The utility model relates to a toy water gun, including: A shell is provided with a liquid spraying position and a mist spraying position; A liquid spraying mechanism includes a liquid storage cavity, a liquid spraying pump and a liquid guide pipe group, the liquid storage cavity and the liquid spraying pump are arranged on the shell, the liquid spraying pump is connected to the liquid storage cavity and the liquid spraying position through the liquid guide pipe group, and the liquid spraying pump is used for pumping liquid in the liquid storage cavity to the liquid spraying position for spraying; And A mist spraying mechanism includes an atomizing liquid tank and an atomizing element, the atomizing liquid tank is connected to the shell, the atomizing element is used for connecting liquid in the atomizing liquid tank and atomizing the liquid, and a water mist output end of the atomizing element is connected to the mist spraying position.

2. The toy water gun of claim 1, wherein The atomizing liquid tank is provided with an atomizing liquid filling port.

3. A toy water pistol according to claim 1 or 2, characterised in that, The mist spraying mechanism further includes an atomizing supply pump, a suction end of the atomizing supply pump is connected to the liquid storage cavity, and a pump outlet end of the atomizing supply pump is connected to the atomizing liquid tank.

4. The toy water gun of claim 3, wherein, The mist spraying mechanism further includes a four-way joint, the four-way joint is connected to the liquid storage cavity; The liquid spraying pump is connected to the four-way joint through the liquid guide pipe group; The atomizing liquid tank is provided with a backflow port, and the backflow port is connected to the four-way joint; The suction end of the atomizing supply pump is connected to the four-way joint.

5. The toy water gun of claim 4, wherein, The liquid guide pipe group includes a liquid spraying pump input pipe, a liquid spraying pump output pipe, an atomizing liquid input pipe, an atomizing liquid output pipe and an atomizing liquid backflow pipe; One end of the liquid spraying pump input pipe is connected to the four-way joint, the other end of the liquid spraying pump input pipe is connected to an input end of the liquid spraying pump, one end of the liquid spraying pump output pipe is connected to an output end of the liquid spraying pump, and the other end of the liquid spraying pump output pipe is connected to the liquid spraying position; One end of the atomizing liquid input pipe is connected to the four-way joint, the other end of the atomizing liquid input pipe is connected to the suction end of the atomizing supply pump, one end of the atomizing liquid output pipe is connected to the pump outlet end of the atomizing supply pump, one end of the atomizing liquid backflow pipe is connected to the backflow port, and the other end of the atomizing liquid backflow pipe is connected to the four-way joint.

6. The toy water gun of claim 1, wherein, The shell is provided with a nozzle, and the liquid spraying position and the mist spraying position are located on the nozzle; The toy water gun further includes a light emitting mechanism, the light emitting mechanism includes a mounting seat and at least one light emitting element, the mounting seat is arranged on the nozzle, and the light emitting element is arranged on the mounting seat.

7. The toy water gun of claim 6, wherein, The mounting seat includes a mounting ring and at least one connecting arm, the liquid spraying position is arranged on the mounting ring, the liquid spraying position is provided with a through hole for spraying liquid, each connecting arm is arranged on the mounting ring, the connecting arm is connected to the nozzle, and a circumferential outer wall of the mounting ring and an inner wall surface of the nozzle jointly define the mist spraying position; The connecting arm and / or the mounting ring are provided with the light emitting element.

8. The toy water gun of claim 1, wherein, The shell is further provided with an air spraying position; The toy water gun further includes an air spraying mechanism, the air spraying mechanism includes an air spraying pump and an air guide pipe group, the air spraying pump is mounted on the shell, the air spraying pump is connected to the air spraying position through the air guide pipe group, and the air spraying pump is used for pumping air to the air spraying position, so that gas is sprayed through the air spraying position.

9. The toy water gun of claim 8, wherein, The toy water gun further comprises a power mechanism, the power mechanism comprises a first motor and a second motor, the first motor is drivingly connected to the liquid spraying pump, and the second motor is drivingly connected to the air spraying pump.

10. The toy water gun of claim 8, wherein, The toy water gun further comprises a power mechanism, the power mechanism comprises a power motor, an output gear, an intermittent transmission gear, a transmission rack, an elastic member and a plurality of transmission gears; The power motor is connected to the shell, the power motor is drivingly connected to the output gear, the output gear is engaged with one of the transmission gears, each of the transmission gears is sequentially engaged, the intermittent transmission gear is coaxially connected with another transmission gear, the intermittent transmission gear is engaged with the transmission rack, the transmission rack is arranged on the liquid spraying pump and / or the air spraying pump, and the elastic member is drivingly connected to the liquid spraying pump and / or the air spraying pump. The power motor can drive the liquid spraying pump and the air spraying pump to move when the power motor outputs torque, so as to increase the elastic potential energy of the elastic member, the elastic member is used to drive the liquid spraying pump and the air spraying pump to move when the elastic member is released, so that the liquid spraying pump pumps liquid, and the air spraying pump pumps gas.

11. The toy water gun of claim 10, wherein, The liquid spraying pump comprises a liquid spraying pump cylinder and a liquid spraying piston, the liquid spraying pump cylinder is connected to the shell, and the liquid spraying piston is slidingly arranged in the liquid spraying pump cylinder. The air spraying pump comprises an air spraying pump cylinder and an air pumping piston, the air spraying pump cylinder is connected to the shell, and the air pumping piston is slidingly arranged in the air spraying pump cylinder. The liquid spraying pump cylinder and the air spraying pump cylinder are connected, the liquid spraying piston and the air pumping piston are connected, the liquid spraying pump cylinder is connected to the liquid storage cavity and the liquid spraying position through the liquid pipe group respectively, and the air spraying pump cylinder is connected to the air spraying position through the air pipe group. The transmission rack is arranged on the liquid spraying piston and / or the air pumping piston, and the elastic member is drivingly connected to the liquid spraying piston and / or the air pumping piston.

12. The toy water gun of claim 11, wherein, One end of the liquid spraying pump cylinder is connected to the liquid spraying position through the liquid pipe group, the side wall of the liquid spraying pump is connected to the liquid storage cavity through the liquid pipe group, and the other end of the liquid spraying pump cylinder is aligned and connected to the end of the air spraying pump cylinder. The side wall of the air spraying pump cylinder is connected to the air spraying position through the air pipe group.

13. The toy water gun of claim 11, wherein, The toy water gun further comprises a supporting mechanism, the supporting mechanism is arranged in the shell, and the atomizing liquid tank and the atomizing member are respectively connected to the supporting mechanism. The supporting mechanism is provided with a liquid passing hole, an air passing hole and an atomizing hole, the liquid pipe group passes through the liquid passing hole and is connected to the liquid spraying position, the air pipe group passes through the air passing hole and is connected to the air spraying position, and the atomizing liquid tank is connected to the atomizing member through the atomizing hole.

14. The toy water gun of claim 13, wherein, The support mechanism comprises a support plate and a mounting plate, the support plate is arranged in the shell, the liquid passing hole, the gas passing hole and the atomizing hole are located on the support plate, the mounting plate is arranged on the opposite two sides of the support plate respectively, the mounting plate is connected with the atomizing liquid tank, the atomizing piece is located between the support plate and the mounting plate, the atomizing liquid tank and the support plate jointly define an atomizing liquid cavity, and the atomizing liquid cavity is communicated with the atomizing hole.

15. The toy water gun of claim 1 or 14, wherein, The atomizing piece is an atomizing sheet, and the atomizing sheet is used for atomizing liquid by high-frequency vibration.

16. The toy water gun of claim 8, wherein, The shell comprises a barrel, a barrel mouth and a collar, the barrel mouth is connected with the barrel, the collar is sleeved outside the barrel mouth, so that the collar and the barrel mouth define a gas injection channel, the gas injection position is located at the end of the gas injection channel, and the gas injection pump is communicated with the gas injection channel through the gas guide pipe group.

17. The toy water gun of claim 1, wherein, The toy water gun further comprises a power supply mechanism, the power supply mechanism is connected with the shell, and the power supply mechanism is electrically connected with the atomizing piece.

18. The toy water gun of claim 17, wherein, The power supply mechanism comprises a sliding piece, a battery, a first conductive piece, a second conductive piece, a sliding groove and a guide rail. One of the sliding groove and the guide rail is arranged on the sliding piece, and the other of the sliding groove and the guide rail is arranged on the shell, the battery and the first conductive piece are arranged on the sliding piece, the second conductive piece is arranged on the shell, and the atomizing piece is electrically connected with the atomizing piece. The sliding piece is slidably connected with the shell through the sliding groove and the guide rail, so that the first conductive piece and the second conductive piece are detachably connected, and then the battery is electrically connected with the atomizing piece through the first conductive piece and the second conductive piece.