Water outlet toy
By incorporating coupled control components and manipulation structures into the water-spraying toy, the problem of water backflow was solved, achieving rapid water dispensing and enhancing the user experience.
Patent Information
- Application Number
- CN202520378572.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-05
AI Technical Summary
In existing water toys, water flows back into the channel after the vertical water pump stops working, causing a waiting time when restarting, which affects the user experience.
By setting up a coupled first and second control unit, the control switch and control valve can be operated to ensure that the water flow does not backflow. The control structure drives the control unit to move synchronously, controlling the opening and closing of the flow channel.
This allows the water-splashing toys to be used again without waiting time, improving the user experience.
Smart Images

Figure CN223914676U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of toys, specifically relating to a water-splashing toy. Background Technology
[0002] Water-splashing toys are a new type of toy that enhances fun by allowing water to flow from a spout. Examples include pool toys and bathroom toys.
[0003] Existing water-spraying toys can refer to a vertical tableware cleaning simulation toy disclosed in Chinese Patent No. CN201721377254.0, which uses a rotating switch knob to activate a pad switch, thereby powering a motor to pump water from a vertical water pump, causing water to flow from the faucet assembly.
[0004] The shortcomings of the aforementioned toys are as follows: the water pool is controlled by a vertical water pump, which means that when the vertical water pump stops working, the water that has not yet flowed out of the faucet assembly will flow back under gravity. In other words, no water is stored in the flow channel. Therefore, when the vertical water pump is restarted, the water needs to flow back along the flow channel to the outlet of the faucet assembly before water can be dispensed. This results in a certain waiting time from turning on the pump to dispensing water, which affects the user experience. Utility Model Content
[0005] To address the shortcomings of existing technologies, the purpose of this utility model is to provide a water-dispensing toy that uses a coupled first and second control components to control a switch to electrically control a water pump, and a control valve to open and close a flow channel, so that when the water outlet is blocked, the water flow will not flow back, and water will quickly flow out when it is reopened.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] A water-spraying toy includes a shell, on which are disposed: a control switch; a water pump, the control switch for starting or stopping the water pump; a control structure; and a water-spraying assembly, the water-spraying assembly including: a water-spraying component; a control valve for connecting the water pump and the water-spraying component, the control valve having a flow guiding channel and a flow-blocking part; a first control element for operating the control switch; and a second control element movably disposed within the control valve and cooperating with the flow-blocking part to cut off or open the flow guiding channel; the first control element and the second control element are coupled, and the control structure is coupled to at least one of the first control element and the second control element to drive them to move synchronously to control the opening and closing of the water spray.
[0008] The present invention is further configured such that: the control structure includes a first component; the first component includes a pressing member and a first flipping member, the pressing member is slidably disposed on the outer shell, the first flipping member is flipped and disposed on the outer shell, the pressing member is pressed and drives the first flipping member to flip, so that the flipped first flipping member drives the first control member and / or the second control member to move; or, the first component includes a pressing member and a first sliding member, the pressing member is slidably disposed on the outer shell along a first direction, the first sliding member is slidably disposed on the outer shell along a second direction, the pressing member and / or the first sliding member are provided with a guide slope, the pressing member is pressed and drives the first sliding member to slide through the guide slope, so that the sliding first sliding member drives the first control member and / or the second control member to move.
[0009] The present invention is further configured such that: the pressing member is arranged in a ring shape, the water outlet member is arranged on the inner circumference of the pressing member, and the water outlet of the water outlet member is arranged facing upwards, and the pressing member has a plurality of outflow mesh ports arranged circumferentially.
[0010] The present invention is further configured such that: the control structure includes a second component; the second component includes a switch knob, a linkage sliding member, and a second flipping member; the switch knob is rotatably disposed on the housing, the switch knob is provided with a driving part, the linkage sliding member is slidably disposed on the housing, and the second flipping member is rotatably disposed on the housing; the switch knob is rotated and drives the linkage sliding member to slide through the driving part, so that the sliding linkage sliding member drives the second flipping member to flip, and the flipped second flipping member drives the first control member and / or the second control member to move.
[0011] The present invention is further configured such that when the first component and the second component are present at the same time, the number of water outlet components is two sets, and the first component and the second component control different water outlet components respectively; the two control valves are respectively connected to the water pump.
[0012] The present invention is further configured such that: the control switch is disposed between the two first control components, and the control switch has a switch portion disposed facing each of the first control components.
[0013] The present invention is further configured such that: a waterproof cover is provided on the outer shell and covers the outer periphery of the control switch, the waterproof cover being made of an elastic material.
[0014] The present invention is further configured such that: a first reset member is provided inside the control valve, the first reset member is used to drive the second control member to move and cut off the flow channel; and / or, the flow-cutting part is provided with a conical flow-cutting surface, the second control member is provided with a sealing member made of elastic material, and the sealing member is provided with a sealing surface adapted to the flow-cutting surface.
[0015] The present invention is further configured such that: a water storage cavity and a water tank are provided inside the outer shell, the water pump is located inside the water storage cavity, and the water tank is provided with a return port for water to flow back to the water storage cavity.
[0016] The present invention is further configured such that: a battery and a disassembly / removal part for disassembling and assembling the battery are provided inside the water storage cavity; the height of the disassembly / removal part is higher than the bottom of the water tank.
[0017] By adopting the above technical solution, when water needs to be dispensed from the outlet, the user operates the control structure, which drives the control body to move. The first control component on the control body moves toward the control switch to press the control switch and turn on the water pump. Simultaneously, the second control component on the control body moves, opening the flow channel formed by the intercepting part. The water pump then draws water from the module box and delivers it to the control valve, then through the flow channel to the outlet, and finally, water is dispensed from the outlet of the outlet. Additionally, when water is pumped out of the module box, water from the storage chamber enters the module box through the opening at the bottom of the module box. Internal replenishment is performed. When water output is not required, the reverse drive control structure or the stop drive control mechanism is activated. Under the action of the first reset member, the first control member is driven away from the control switch to release the pressure on the control switch and turn off the water pump. Simultaneously, the second control member is driven to move, causing the flow channel to be cut off by the cooperating interceptor. In this state, the water in the outlet and control valve cannot flow back and remains in this state. Therefore, when the water pump and flow channel are restarted, the water held in the outlet and control valve can be directly output to the outlet of the outlet without waiting time, improving the user experience. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is an assembly drawing illustrating a specific embodiment of the present utility model;
[0020] Figure 2This is an exploded view of a specific embodiment of the present utility model;
[0021] Figure 3 This is an exploded view of a specific embodiment of the present utility model;
[0022] Figure 4 This is an assembly diagram of the module box in a specific embodiment of this utility model;
[0023] Figure 5 This is a cross-sectional view of the module box in a specific embodiment of this utility model;
[0024] Figure 6 This is an assembly diagram of the first component part in the module box in a specific embodiment of the present utility model;
[0025] Figure 7 This is an exploded view of the first component portion in the module box in a specific embodiment of this utility model;
[0026] Figure 8 This is an assembly diagram of the second component in the module box in a specific embodiment of this utility model;
[0027] Figure 9 This is an exploded view of the second component portion in the module box in a specific embodiment of this utility model;
[0028] Figure 10 This is an assembly drawing of the switch knob and the linkage sliding component in a specific embodiment of this utility model;
[0029] Figure 11 This is an exploded view of the switch knob and the linkage sliding component in a specific embodiment of this utility model;
[0030] Figure 12 This is an exploded view of the module box in a specific embodiment of this utility model;
[0031] Figure 13 This is a state diagram showing the control switch being pressed and the flow channel being opened in a specific embodiment of this utility model;
[0032] Figure 14 This is a diagram showing the state of the control switch being not pressed and the flow channel being closed in a specific embodiment of this utility model.
[0033] Explanation of reference numerals in the attached drawings: 1. Outer casing;
[0034] 11. Base; 12. Upper shell; 13. Water storage chamber; 14. Water tank; 15. Return outlet; 16. Module box;
[0035] 2. Control switch;
[0036] 21. Switching unit;
[0037] 3. Water pump;
[0038] 4. Control structure;
[0039] 41. First component; 42. Second component;
[0040] 411. Pressing component; 412. First flipping component; 413. Second resetting component; 421. Switch knob; 422. Linkage sliding component; 423. Second flipping component;
[0041] 4111 Outlet; 4121 First hinge post; 4211 Drive unit; 4212 Vortex guide surface; 4213 Positioning plane; 4221 Linkage cavity; 4231 Second hinge post;
[0042] 5. Water outlet assembly;
[0043] 51. Water outlet component; 52. Control valve; 53. Control unit; 54. First reset component;
[0044] 521. Flow guiding channel; 522. Flow interception section; 523. Flow interception surface; 531. First control component; 532. Second control component;
[0045] 5321. Seal; 5322. Sealing surface;
[0046] 6. Flow-gathering channel;
[0047] 7. Waterproof cover;
[0048] 8. Battery;
[0049] 9. Assembly / Disassembly Section. Detailed Implementation
[0050] To enable those skilled in the art to better understand this utility model and to more clearly define the scope of protection claimed by this utility model, the present utility model is described in detail below with reference to certain specific embodiments. It should be noted that the following are only some specific embodiments of the present utility model, and the specific direct descriptions of related structures are merely for the convenience of understanding the present utility model; the specific features do not necessarily or directly limit the scope of implementation of the present utility model. Conventional choices and substitutions made by those skilled in the art under the guidance of the present utility model concept should all be considered within the scope of protection claimed by this utility model.
[0051] like Figures 1-6As shown, this utility model discloses a water-splashing toy, including a shell 1. The shell 1 is composed of a base 11 and an upper shell 12 spliced together to form a water storage cavity 13 between the upper shell 12 and the base 11. In addition, the upper shell 12 is provided with a downwardly recessed water trough 14, thus forming a water pool toy. Furthermore, the upper shell 12 is provided with a return port 15 at the bottom of the water trough 14, so that the water in the water trough 14 can flow back into the water storage cavity 13 through the return port 15.
[0052] Additionally, a module box 16 is provided on the upper shell 12 behind the water tank 14. The module box 16 extends downward from the surface of the upper shell 12 into the water storage cavity 13, and the bottom of the module box 16 has an opening to allow water from the water storage cavity 13 to enter the module box 16. The module box 16 is provided with:
[0053] Control switch 2 is located inside module box 16. In this embodiment, control switch 2 is a push switch.
[0054] Water pump 3 is installed inside module box 16. The water pump 3 is started by pressing the control switch 2 and turned off by releasing it. The water pump 3 is installed at an angle inside module box 16, and the water inlet of the water pump 3 is tilted downward and close to the bottom of the internal space of module box 16 so that the water pump 3 can pump water more fully.
[0055] Control structure 4, located above module box 16, allows the user to operate control structure 4; and,
[0056] Water outlet component 5, which includes:
[0057] Water outlet 51, the water outlet of water outlet 51 is located above module box 16, so that water can be discharged above the housing 1 for use as a simulated cleaning;
[0058] Control valve 52 is installed inside module box 16. A flow guide channel 521 is provided inside the control valve 52. The two ends of the flow guide channel 521 are connected to the water pump 3 and the water outlet 51. A flow cut-off part 522 is provided inside the flow guide channel 521, which can cut off the flow guide channel 521.
[0059] The control body 53 is located inside the module box 16 and is slidable left and right. The control body 53 is elongated and has a first control element 531 and a second control element 532 at its two ends. The first control element 531 moves closer to and presses the control switch 2 as the control body 53 slides, or moves away from the control switch 2 as the control body 53 slides. The second control element 532 is located inside the control valve 52 and forms different cooperation relationships with the throttling part 522 as the control body 53 slides to cut off or open the guide channel 521.
[0060] The action of the control structure 4 will cooperate with the control body 53 to drive the control body 53 to move. Specifically, the control structure 4 drives the first control element 531 to move toward the control switch 2 to press the control switch 2 and turn on the water pump 3. Simultaneously, the control structure 4 drives the second control element 532 to move so that the cooperating throttling part 522 forms the flow guide channel 521 in an open state. In addition, the control valve 52 is provided with a first reset element 54. The first reset element 54 can perform the reset movement of the control body 53 to drive the first control element 531 away from the control switch 2 to release the press on the control switch 2 and turn off the water pump 3. Simultaneously, it drives the second control element 532 to move so that the cooperating throttling part 522 forms the flow guide channel 521 in a cut-off state.
[0061] Therefore, when water needs to be dispensed from the outlet 51, the user operates the control structure 4, which drives the control body 53 to move. The first control element 531 on the control body 53 moves toward the control switch 2 to press the control switch 2 and turn on the water pump 3. Simultaneously, the second control element 532 on the control body 53 moves, opening the guide channel 521 formed by the intercepting part 522, so that water can flow from the outlet 51. Figure 13 The state shown is transformed into Figure 14 As shown, the water pump 3 draws water from the module box 16 and delivers it to the control valve 52, then through the guide channel 521 to the outlet 51, and finally outflows from the outlet of the outlet 51. Additionally, when water is drawn from the module box 16, water from the storage chamber 13 enters the module box 16 through the opening at the bottom to replenish it. When water is not needed, the reverse drive control structure 4 or the stop drive control mechanism is activated, causing the first reset member 54 to drive the first control member 531 away from the control switch 2 to release the pressure on the control switch 2 and shut off the water pump 3. Simultaneously, the second control member 532 is driven to cut off the flow channel 521 formed by the intercepting part 522, allowing water to flow from the outlet 521. Figure 14 The state shown is transformed into Figure 13 In the state shown, the water in the outlet component 51 and control valve 52 will not flow back and will remain due to the interruption of the flow channel 521. Therefore, when the water pump 3 and the flow channel 521 are turned on again, the water held in the outlet component 51 and control valve 52 can be directly output to the outlet of the outlet component 51 without waiting time, thus improving the user experience.
[0062] In other embodiments, the first reset member 54 is not set, and the forward and reverse actions of the control structure 4 can control the main body 53 to move in different directions.
[0063] Specifically, the intercepting part 522 is provided with a conical intercepting surface 523, and the second control member 532 is provided with a sealing member 5321 made of elastic material. The sealing member 5321 is provided with a sealing surface 5322 that is adapted to the intercepting surface 523, so that the second control member 532 slides close to the intercepting surface 523, and the sealing surface 5322 and the intercepting surface 523 seal and fit together to cut off the guiding channel 521. When the second control member 532 slides away from the intercepting surface 523, the sealing surface 5322 and the intercepting surface 523 separate and the guiding channel 521 is opened.
[0064] In this embodiment, there are two sets of water outlet components 5 and two sets of control structures 4. One set of water outlet components 5 and control structures 4 forms the faucet assembly on the left side of the module box 16, and the other set of water outlet components 5 and control structures 4 forms the cup washing assembly on the right side of the module box 16.
[0065] In this embodiment, the control structure 4 of the cup washing assembly adopts a first component 41. The first component 41 includes a pressing member 411 and a first flipping member 412. The pressing member 411 is located above the module box 16 and is vertically slidably disposed in the module box 16 by means of plug-in guide. The first flipping member 412 is L-shaped. The middle part of the L-shape of the first flipping member 412 has an integrally formed first hinge post 4121 so that the module box 16 is hinged by the first hinge post 4121, so that the first flipping member 412 can be flipped relative to the module box 16. The lower end of the pressing member 411 faces one end of the L-shape of the first flipping member 412 so that the pressing member 411 presses down and drives the first flipping member 412 to flip. The first control member 531 is located at the other end of the L-shape of the first flipping member 412 so that the flipped first flipping member 412 drives the first control member 531 to slide through the other end of the L-shape.
[0066] In addition, the pressing member 411 is arranged in a ring shape, the water outlet 51 is arranged on the inner circumference of the pressing member 411, and the water outlet of the water outlet 51 is arranged facing upward. The pressing member 411 has multiple outflow mesh ports 4111 arranged in the circumferential direction, and a flow collection groove 6 is provided above the module box 16 to guide the water flowing down from the outflow mesh ports 4111 into the water tank 14.
[0067] In use, the cup can be placed upside down above the pressing member 411, and the pressing member 411 can be pushed down to slide downwards, thereby driving the first flipping member 412 to activate the first control member 531, which turns on the water pump 3 and the guide channel 521. Water sprays upwards from the outlet of the water outlet 51 to rinse the inner wall of the cup, and the rinsed water flows through the outlet 4111 to the collection tank 6, and is then guided into the water tank 14 through the collection tank 6.
[0068] In addition, a second reset member 413 is provided between the module box 16 and the pressing member 411 so that after the force on the pressing member 411 is removed, the second reset member 413 resets the pressing member 411 upwards, and cooperates with the first reset member 54 to stop the operation of the water pump 3 and cut off the flow channel 521.
[0069] In other embodiments, the first component 41 does not have a first flipping member 412, but instead has a first sliding member. The pressing member 411 is slidably disposed on the housing 1 in a vertical direction, and the first sliding member is slidably disposed on the housing 1 in a left-right direction. The pressing member 411 and / or the first sliding member are provided with guide slopes. The pressing member 411 is pressed and drives the first sliding member to slide through the guide slopes, so that the sliding first sliding member drives the first control member 531 and / or the second control member 532 to move. The vertical direction is defined as the first direction, and the left-right direction is defined as the second direction.
[0070] In this faucet assembly, the water outlet 51 is J-shaped, with its outlet facing downwards and corresponding to the water tank 14. The control structure 4 in the faucet assembly uses a second component 42. In this embodiment, the second component 42 includes a switch knob 421, a linkage sliding component 422, and a second flipping component 423. The switch knob 421 is rotatably mounted on the module box 16 and located on the lower outer side of the water outlet 51. One end of the switch knob 421 is provided with a drive part 4211, and the outer periphery of the drive part 4211 is provided with an edge... A vortex-shaped guide surface 4212 gradually extends outward from the circumference of the switch knob 421 along its radial direction. A linkage sliding member 422 is vertically slidable in the module box 16. The upper end of the linkage sliding member 422 has a linkage cavity 4221 for the drive unit 4211 to insert into. Thus, when the switch knob 421 rotates, the outermost part of the vortex-shaped guide surface 4212 acts on the lower peripheral wall of the linkage cavity 4221, pushing the linkage sliding member 422 downward. The second flipping member 423 is L-shaped. The second hinge post 4231, integrally formed in the middle of the L-shape of the second flip member 423, is provided so that it can be hinged to the module box 16 by snapping on the second hinge post 4231. This allows the second flip member 423 to flip relative to the module box 16. The lower end of the linkage sliding member 422 faces one end of the L-shape of the second flip member 423, causing the linkage sliding member 422 to move downwards and drive the second flip member 423 to flip. The first control member 531 is located at the other end of the L-shape of the second flip member 423, so that the second flip member 423 can flip. The second flipper 423 drives the first control member 531 to slide through the other end of the L-shape; the switch knob 421 is rotated and drives the linkage sliding member 422 to slide through the drive part 4211, so that the sliding linkage sliding member 422 drives the second flipper 423 to flip, and the flipped second flipper 423 drives the first control member 531 to move to turn on the water pump 3 and the guide channel 521. Water flows out from the outlet of the water outlet 51 downward for simulated cleaning, and the cleaned water flows directly into the water tank 14.
[0071] In addition, a positioning plane 4213 is provided at the outer end of the vortex guide surface 4212. When the switch knob 421 is rotated to the open state, the positioning plane 4213 and the lower peripheral wall of the linkage cavity 4221 fit together to form a surface support, thereby positioning and holding the switch knob 421.
[0072] In this embodiment, both control valves 52 are connected to the water pump 3, specifically using a three-way pipe connection, so that only one water pump 3 is needed to supply water to two channels, making the overall structure simpler.
[0073] Preferably, the control switch 2 is disposed between the two first control components 531, and the control switch 2 is provided with a switch part 21 facing each of the first control components 531, so that each first control component 531 turns on the water pump 3 by pressing the corresponding switch part 21, making the overall structure more compact.
[0074] In addition, a waterproof cover 7 is provided on the outer casing 1, which covers the outer periphery of the control switch 2. The waterproof cover 7 is made of elastic material, which makes the waterproof cover 7 waterproof to the internal control switch 2. Moreover, the waterproof cover 7, which is made of elastic material, can deform and press the switch part 21 when pushed by the first control member 531.
[0075] In other embodiments, two sets of first components 41 or two sets of second components 42 may be used to control the two sets of water outlet components 5.
[0076] In addition, a battery 8 is installed inside the module box 16 to power the circuit. Furthermore, a disassembly part 9 is provided on the upper right side of the module box 16, which can be removed from the module box 16 to replace the battery 8. The disassembly part 9 is located inside the water storage cavity 13, but the height of the disassembly part 9 is higher than the bottom of the water tank 14.
[0077] Therefore, when storing water, the maximum water level is usually up to the bottom of the water tank 14 to prevent water from accumulating in the water tank 14. The disassembly part 9 is positioned higher than the bottom of the water tank 14 so that the water level in the water storage chamber 13 does not reach the height of the disassembly part 9, thus preventing the water in the water storage chamber 13 from discharging the battery 8 and causing a short circuit or other dangers.
[0078] In other embodiments, the outer casing 1 may be a garden-type watering toy, a bathroom-type bathtub toy, etc.
[0079] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A water-dispensing toy characterized by: The utility model relates to a water dispenser, comprising a housing (1) provided with: A control switch (2); A water pump (3) started or stopped by the control switch (2); A control structure (4); And, A water outlet assembly (5) comprising: A water outlet (51); A control valve (52) connecting the water pump (3) and the water outlet (51), provided with a flow channel (521) and a flow cutoff (522) in the control valve (52); A first control member (531) for controlling the control switch (2); and A second control member (532) movably arranged in the control valve (52) and cooperating with the flow cutoff (522) to cut off or open the flow channel (521); The first control member (531) and the second control member (532) are coupled, and the control structure (4) is coupled to at least one of the first control member (531) and the second control member (532) to drive synchronous movement of both to control water outlet opening and closing.
2. The water-discharging toy according to claim 1, characterized in that: The control structure (4) comprises a first assembly (41); The first assembly (41) comprises a pressing member (411) and a first flip member (412), the pressing member (411) is slidingly arranged in the housing (1), and the first flip member (412) is fliply arranged in the housing (1); the pressing member (411) is pressed to drive the first flip member (412) to flip, so that the flipped first flip member (412) drives the first control member (531) and / or the second control member (532) to move; or The first assembly (41) comprises a pressing member (411) and a first sliding member, the pressing member (411) is slidingly arranged in the housing (1) along a first direction, and the first sliding member is slidingly arranged in the housing (1) along a second direction; the pressing member (411) and / or the first sliding member are provided with a guide slope, the pressing member (411) is pressed to drive the first sliding member to slide through the guide slope, so that the sliding first sliding member drives the first control member (531) and / or the second control member (532) to move.
3. The water-discharging toy according to claim 2, characterized in that: The pressing member (411) is annularly arranged, the water outlet (51) is arranged at the inner periphery of the pressing member (411), the water outlet of the water outlet (51) is upwardly arranged, and a plurality of outflow mesh openings (4111) are arranged on the pressing member (411) along the circumferential direction.
4. The water-discharging toy according to any one of claims 2-3, characterized in that: The control structure (4) comprises a second assembly (42); The second assembly (42) comprises a switch knob (421), a linkage sliding piece (422) and a second turnover piece (423), the switch knob (421) is rotationally arranged on the shell (1), the switch knob (421) is provided with a driving part (4211), the linkage sliding piece (422) is slidingly arranged on the shell (1), and the second turnover piece (423) is rotationally arranged on the shell (1). The switch knob (421) is driven to rotate, and the linkage sliding piece (422) is driven to slide by the driving part (4211), so that the linkage sliding piece (422) slidingly drives the second turnover piece (423) to turn over, and the first control piece (531) and / or the second control piece (532) are driven to move by the second turnover piece (423) turning over.
5. The water-discharging toy according to claim 4, characterized in that: When the first assembly (41) and the second assembly (42) exist at the same time, the number of the water outlet assemblies (5) is two, and the first assembly (41) and the second assembly (42) control different water outlet assemblies (5) respectively. The two control valves (52) are connected with the water pump (3) respectively.
6. The water-discharging toy according to claim 5, characterized in that: The control switch (2) is arranged between the two first control pieces (531), and the control switch (2) is provided with a switch part (21) facing each first control piece (531) respectively.
7. The water-discharging toy according to claim 6, characterized in that: The shell (1) is provided with a waterproof cover (7) covering the outer periphery of the control switch (2), and the waterproof cover (7) is made of an elastic material.
8. The water-discharging toy according to claim 1, characterized in that: The control valve (52) is provided with a first reset piece (54) for driving the second control piece (532) to move to cut off the flow guide channel (521); and / or, The cutoff part (522) is provided with a tapered cutoff surface (523), and the second control piece (532) is provided with a sealing piece (5321) made of an elastic material, and the sealing piece (5321) is provided with a sealing surface (5322) matched with the cutoff surface (523).
9. The water-discharging toy according to claim 1, characterized in that: The shell (1) is provided with a water storage cavity (13) and a water tank (14), the water pump (3) is located in the water storage cavity (13), and the water tank (14) is provided with a backflow opening (15) for water backflow to the water storage cavity (13).
10. The water-discharging toy according to claim 9, characterized in that: The water storage cavity (13) is provided with a battery (8) and a dismounting part (9) for dismounting the battery (8). The height of the dismounting part (9) is higher than the bottom of the water tank (14).
Citation Information
Patent Citations
Vertical warewashing simulates toy
CN207493220U