Container washer and sink system

By designing a container cleaner with supporting components and valve components, and using a first trigger and a second trigger to switch the valve component state, the problem of poor versatility of existing cup washers is solved, achieving efficient cleaning of different containers and reducing splashing.

CN224269255UActive Publication Date: 2026-05-26ZHANGZHOU SOLEX SMART HOME CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHANGZHOU SOLEX SMART HOME CO LTD
Filing Date
2025-06-03
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing cup washers only have a single cup holder with a cleaning trigger, resulting in poor versatility and an inability to adapt to containers of different sizes and shapes.

Method used

A container cleaner is designed, comprising a support assembly and a valve assembly. The support assembly includes a first trigger and a second trigger. By pressing at least one trigger, the state of the valve assembly can be switched, allowing liquid to flow out from the top outlet and the side outlet, adapting to the cleaning needs of different containers.

Benefits of technology

It achieves efficient rinsing of the container opening edge or side wall and inner wall, adapts to containers of different sizes and shapes, reduces splashing, and improves versatility and cleaning effect.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224269255U_ABST
    Figure CN224269255U_ABST
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Abstract

The utility model belongs to the technical field of container cleaning, and discloses a container cleaner and a water tank system.The container cleaner comprises a valve assembly, and the valve assembly is connected with a liquid collecting shell; the valve assembly is provided with an ejection liquid outlet and a first side liquid outlet, and the valve assembly has an open state and a closed state; the support assembly comprises a first trigger and a second trigger, the first trigger and the second trigger are connected with the valve assembly, and the first trigger and the second trigger move between a lowered position and a raised position; when at least one of the first trigger and the second trigger is in the lowering position, the valve assembly is in an open state, and liquid can flow out of the ejection liquid outlet and the first side liquid outlet; at the rising position, the valve assembly is in a closed state, and liquid is prevented from flowing out of the ejection liquid outlet and the first side liquid outlet; pressing at least one of the first trigger and the second trigger to enable the valve assembly to be in an open state; the water tank system adopts the container cleaner to trigger water discharge through at least one of the first trigger and the second trigger, so that the universality is improved.
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Description

Technical Field

[0001] This utility model relates to the field of container cleaning technology, and in particular to a container cleaner and water tank system. Background Technology

[0002] A cup washer is a device for quickly cleaning cups. It generally includes a liquid collection shell, a nozzle, a cup holder, and a main shaft. The main shaft passes through the liquid collection shell, and the cup holder and nozzle are mounted on the main shaft and located inside the liquid collection shell. The main shaft has water channels that connect to the nozzle. The nozzle, cup holder, and main shaft are fixed together and can move downwards for a certain distance under the user's pressure or return to their original position. When the water channels are connected or disconnected, the cleaning is achieved.

[0003] Existing cup washers have two water outlet methods: top water outlet and side water outlet. The top water outlet is used to clean the inside of the cup, while the side water outlet is used to clean the outside of the cup and the rim. However, the above-mentioned cup washers only have a cleaning trigger for one cup holder, resulting in poor versatility. Utility Model Content

[0004] The purpose of this invention is to provide a container cleaner and a cleaning basin, which can trigger water discharge by at least one of a first trigger and a second trigger, thereby improving versatility.

[0005] To achieve this objective, the present invention adopts the following technical solution:

[0006] Container cleaner, comprising:

[0007] Liquid collecting shell;

[0008] A valve assembly operably connected to the liquid collection housing; the valve assembly is provided with a top liquid outlet and a first side liquid outlet, and the valve assembly has an open state and a closed state;

[0009] A support assembly, the support assembly including a first trigger and a second trigger operably coupled to the valve assembly, and the first trigger and the second trigger being movable between a lowered position and an raised position;

[0010] When at least one of the first and second triggers is in the lowered position, the valve assembly is in the open state, allowing liquid to flow out of the top outlet and the first side outlet; when in the raised position, the valve assembly is in the closed state, preventing liquid from flowing out of the top outlet and the first side outlet; pressing at least one of the first and second triggers can open the valve assembly.

[0011] In some embodiments, the second trigger is operatively connected to the first trigger, and pressing the second trigger can cause the first trigger to move downward, so that the first trigger is in the lowered position.

[0012] In some embodiments, the support assembly further includes a support frame connected to the valve assembly, the support frame having a second side outlet communicating with the first side outlet, and the first trigger being disposed on the support frame, wherein pressing at least one of the first trigger and the second trigger can move the support frame between the raised position and the lowered position.

[0013] In some embodiments, the second side outlet is located below the second trigger.

[0014] In some embodiments, a first elastic element is provided between the first trigger and the support frame, the first elastic element causing the first trigger to tend to disengage from the support frame from the lowered position to the raised position; a second elastic element is provided between the second trigger and the support frame, the second elastic element causing the second trigger to tend to disengage from the support frame from the lowered position to the raised position.

[0015] In some embodiments, the second trigger is provided with a guide post, the guide post passes through the support frame, the second elastic member is sleeved on the guide post, and a limit member is provided at the end of the guide post away from the second trigger.

[0016] In some embodiments, the support frame includes a sleeve and support legs. The sleeve is fitted onto the valve assembly, and a plurality of support legs are disposed on the outer periphery of the sleeve. A second side outlet is disposed at the end of the support leg away from the sleeve, facing the sleeve and offset from the axis of the sleeve. A transition channel is provided inside the support leg, one end of which is connected to the second side outlet, and the other end of which passes through the sleeve and communicates with the first side outlet.

[0017] In some embodiments, both the first trigger and the second trigger are ring-shaped, with the inner edge of the second trigger overlapping the outer edge of the first trigger.

[0018] In some embodiments, the outer edge of the first trigger is provided with an overlapping step, and the inner edge of the second trigger overlaps the overlapping step, so that the end faces of the first trigger and the second trigger are flush.

[0019] In some embodiments, the valve assembly includes a valve shaft and a valve seat, the valve shaft supporting a valve seal, and when the first trigger or the second trigger is moved to the lowered position, the valve seat is configured to move away from the valve seal to allow liquid to pass through the top outlet and the first side outlet.

[0020] In some embodiments, the valve assembly includes a valve housing sleeved outside the valve shaft, a liquid passage being formed between the valve housing and the valve shaft, the top liquid outlet and the first side liquid outlet communicating with the liquid passage, and the valve seat being disposed on the inner wall of the valve housing.

[0021] In some embodiments, the valve assembly is provided with an abutment portion, and the support frame abuts against the abutment portion.

[0022] In some embodiments, the top outlet is located on the valve shaft, and the top outlet and the first side outlet are both located on the same side of the valve seal. The valve shaft is also provided with an injection channel. The first port of the injection channel is connected to the liquid passage, and the second port of the injection channel is connected to an external injection device. The second port and the first side outlet are located on opposite axial sides of the valve seal.

[0023] In some embodiments, the container cleaner further includes a mounting member, the liquid collection shell is fixed to the mounting member, the mounting member is provided with a liquid inlet chamber, the valve assembly is inserted into the liquid inlet chamber, the liquid inlet chamber communicates with the second port, and a third elastic member is provided between the valve shell and the mounting member, the third elastic member causing the valve seat to tend to remain pressed against the valve seal.

[0024] In some embodiments, the container cleaner further includes a nozzle assembly comprising a spray cap disposed on the valve assembly, the spray cap having a spray hole communicating with the top liquid outlet, and the spray cap being rotatable relative to the valve assembly.

[0025] A sink system is also provided, the sink system including a sink body and a container cleaner as described above, the container cleaner being mounted on a platform of the sink body.

[0026] The beneficial effects of this utility model are:

[0027] With the above structure, when the container is placed on the valve assembly, the container is positioned on the first trigger or the second trigger. Pressing at least one of the first trigger and the second trigger will open the valve assembly from the closed state to the open state. That is, pressing at least one of the first trigger and the second trigger will cause liquid to flow from the top outlet and the first side outlet, thereby rinsing the edge, side wall, or inner wall of the container opening. Attached Figure Description

[0028] Figure 1 This is a cross-sectional view of the container cleaner of this utility model;

[0029] Figure 2 This is an exploded view of the container cleaner of this utility model;

[0030] Figure 3 This is a cross-sectional view of the container cleaner of this utility model in the state of pressing the first trigger;

[0031] Figure 4 This is a liquid flow diagram of the container cleaner of this utility model when the second trigger is pressed;

[0032] Figure 5 yes Figure 4 Enlarged view of point A in the middle;

[0033] Figure 6 This is a cross-sectional view of the container cleaner of this utility model when the second trigger is pressed, showing the first trigger moving down synchronously.

[0034] Figure 7 yes Figure 6 Enlarged view at point B in the middle;

[0035] Figure 8 This is a cross-sectional view of the container cleaner of this utility model with the second trigger pressed and the state shifted downwards independently;

[0036] Figure 9 This is a diagram showing the direction of liquid ejection from the side outlet of this utility model.

[0037] In the picture:

[0038] 1. Liquid collecting shell; 11. Base support; 12. Extension ring; 13. Baffle wall; 14. Mounting hole;

[0039] 2. Valve assembly; 21. Valve shaft; 22. Valve housing; 23. Liquid passage; 24. Liquid injection passage; 241. First port; 242. Second port; 25. Valve seal; 26. Valve seat; 27. Top outlet; 28. Top inlet; 29. ​​First side outlet; 210. Abutment part; 211. Outlet seal;

[0040] 3. Support assembly; 31. Support frame; 311. Sleeve; 312. Support leg; 313. Second side outlet; 314. Adapter channel; 315. Connecting rib; 32. First trigger; 321. Insert rod; 322. Overlapping step; 33. Second trigger; 331. Guide post; 34. First elastic element; 35. Decorative cover; 36. Second elastic element; 37. Limiting element;

[0041] 4. Nozzle assembly; 41. Spray cap; 411. Spray orifice; 42. Center body; 43. Locking nut; 44. First nozzle sealing ring; 45. Second nozzle sealing ring; 46. Rotating ball;

[0042] 5. Mounting components; 51. Base; 52. Tightening nut; 53. Locking flange; 54. Flange sealing ring; 55. Liquid inlet chamber; 56. Third elastic element;

[0043] 6. Water-saving sheets;

[0044] 7. Container. Detailed Implementation

[0045] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.

[0046] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0047] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0048] In the description of this embodiment, the terms "upper," "lower," "left," and "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0049] like Figures 1 to 9 As shown, this application provides a container washer, which can, but is not limited to, rinse open containers 7 such as cups, bowls, and jugs. The container washer includes a liquid collection shell 1, a valve assembly 2, and a support assembly 3. The valve assembly 2 is operably connected to the liquid collection shell 1, which is used to collect and discharge waste liquid after cleaning. The valve assembly 2 is provided with a top outlet 27 and a first side outlet 29, and has an open state and a closed state. The support assembly 3 includes a first trigger 32 and a second trigger 33, which are operably connected. The valve assembly 2 is configured such that the first trigger 32 and the second trigger 33 are movable between a lowered position and an raised position; when at least one of the first trigger 32 and the second trigger 33 is in the lowered position, the valve assembly 2 is in the open state, allowing liquid to flow out of the top outlet 27 and the first side outlet 29; when in the raised position, the valve assembly 2 is in the closed state, preventing liquid from flowing out of the top outlet 27 and the first side outlet 29; pressing at least one of the first trigger 32 and the second trigger 33 can open the valve assembly 2.

[0050] With the above structure, when the container 7 is attached to the valve assembly 2, the container 7 is placed on the first trigger 32 or the second trigger 33. The valve assembly 2 can be switched from the closed state to the open state by pressing at least one of the first trigger 32 and the second trigger 33. That is, pressing at least one of the first trigger 32 and the second trigger 33 can cause liquid to flow from the top liquid outlet 27 and the first side liquid outlet 29, thereby rinsing the container opening edge or side wall and inner wall of the container 7.

[0051] This application is described in detail below:

[0052] like Figure 2 and Figure 3 As shown, in some embodiments, the liquid collecting shell 1 is a groove-shaped shell with the groove opening facing upwards, and the side wall of the liquid collecting shell 1 is provided with a liquid outlet. In addition, the bottom of the liquid collecting shell 1 is provided with a mounting hole 14, the valve assembly 2 passes through the mounting hole 14, and is operably connected and installed on the liquid collecting shell 1 by the mounting member 5.

[0053] like Figure 2 , Figure 3 and Figure 5As shown, the mounting component 5 includes a base 51, which is inserted into the mounting hole 14. The outer peripheral wall of the base 51 is threaded. The mounting component 5 also includes a tightening nut 52 and a locking flange 53. The inner ring of the locking flange 53 is also threaded. The tightening nut 52 is located on the outside of the liquid collection shell 1, while the locking flange 53 is located on the inside of the liquid collection shell 1. Both are screwed onto the base 51, thereby locking and fixing the liquid collection shell 1 to the mounting position with the external hole. To ensure a seal and prevent waste liquid in the liquid collection shell 1 from leaking out through the mounting hole 14, a flange sealing ring 54 is also clamped between the locking flange 53 and the inner bottom of the liquid collection shell 1. Exemplarily, the locking flange 53 includes an annular pressure ring and an annular cylinder. The annular cylinder is located on the pressure ring, and the inner wall of the annular cylinder is threaded. Two flange sealing rings 54 are located on the inner and outer sides of the annular cylinder. The base 51 is provided with a liquid inlet chamber 55, which is connected to an external liquid supply device. The valve assembly 2 is inserted into the liquid inlet chamber 55, so that the valve assembly 2 is connected to the liquid inlet chamber 55; thereby, liquid enters through the liquid inlet chamber 55.

[0054] like Figures 2 to 5 As shown, the valve assembly 2 includes a valve shaft 21 and a valve housing 22. The valve shaft 21 is partially inserted into and fixed within the liquid inlet chamber 55, thereby ensuring that the valve shaft 21 is fixed relative to the liquid collection shell 1. Exemplarily, the valve shaft 21 and the seat 51 can be, but are not limited to, screwed together. The valve housing 22 is sleeved on the valve shaft 21 and partially inserted into the liquid inlet chamber 55, forming a liquid passage 23 between the valve housing 22 and the valve shaft 21. The liquid passage 23 connects to the top liquid outlet 27 and the first side liquid outlet 29. A liquid injection channel 24 is also provided inside the valve shaft 21. The first port 241 of the liquid injection channel 24 connects to the liquid passage 23, and the second port 242 of the liquid injection channel 24 connects to the liquid inlet chamber 55, thereby allowing the liquid in the liquid inlet chamber 55 to flow from the liquid injection channel 24 to the liquid passage 23.

[0055] like Figure 5 As shown, a valve seal 25 is also supported on the valve shaft 21, and a valve seat 26 is provided on the inner wall of the valve housing 22. The valve seat 26 abuts against the valve seal 25, thereby blocking the liquid passage 23. When the first trigger 32 or the second trigger 33 is moved to the lowered position, it is configured to move the valve assembly 2 so that the valve seat 26 moves away from the valve seal 25, thereby opening the liquid passage 23. When it is necessary to continue blocking the liquid passage 23, the valve seat 26 can continue to abut against the valve seal 25. Figures 2 to 5As shown, a third elastic element 56 is provided inside the liquid inlet chamber 55. The portion of the valve housing 22 inserted into the liquid inlet chamber 55 abuts against the third elastic element 56. This allows the third elastic element 56 to be compressed as the valve housing 22 moves, causing the valve seat 26 to move away from the valve seal 25, thus accumulating potential energy. When the valve housing 22 loses external force, it can reset under the action of the third elastic element 56, keeping the valve seat 26 abutting against the valve seal 25, thereby maintaining the sealing of the liquid passage 23. Exemplarily, the valve seal 25 can be, but is not limited to, a sealing ring. The third elastic element 56 can be, but is not limited to, a spring.

[0056] Furthermore, the inlet chamber 55 has a stepped support, the third elastic element 56 abuts against the stepped support, the valve shaft 21 is screwed into the inlet chamber 55, and the second opening 242 of the injection channel 24 is located within the inlet chamber 55. Even further, the container cleaner also includes a water-saving plate 6, which is disposed within the inlet chamber 55 and located on one side of the second opening 242 of the injection channel 24, thereby limiting the flow rate of water entering the liquid passage 23.

[0057] like Figure 3 and Figure 5 As shown, in some embodiments, the top liquid outlet 27 is provided on the valve shaft 21, and the valve shaft 21 is provided with a top liquid inlet 28 that communicates with the top liquid outlet 27. The top liquid inlet 28 is connected to the liquid passage 23, so that the liquid in the liquid passage 23 flows from the top liquid inlet 28 to the top liquid outlet 27 to rinse the inner wall of the container 7.

[0058] In order to enable the valve seat 26 to move away from the valve seal 25 when the first trigger 32 or the second trigger 33 is moved to the lowered position, in some embodiments, the support assembly 3 further includes a support frame 31 connected to the valve housing 22. The first side outlet 29 is disposed on the valve housing 22. The support frame 31 is provided with a second side outlet 313 communicating with the first side outlet 29. The first trigger 32 is disposed on the support frame 31, so that the first trigger 32 can be supported by the support frame 31. The second side outlet 313 guides the liquid out of the first side outlet 29 to the second side outlet 313, and the liquid flows out from the second side outlet 313 to rinse the side wall of the container 7. Pressing at least one of the first trigger 32 and the second trigger 33 can move the support frame 31 between the raised position and the lowered position.

[0059] To ensure synchronized flushing, the top outlet 27, the top inlet 28, and the first side outlet 29 are located on the same axial side of the valve seal 25. The connection point between the injection channel 24 and the flow channel 23, the top inlet 28, and the first side outlet 29 are located on opposite axial sides of the valve seal 25. In other words, the first port 241 of the injection channel 24, the top inlet 28, and the first side outlet 29 are located on opposite axial sides of the valve seal 25. Thus, when the flow channel 23 is opened, the top outlet 27 and the side outlet can flush simultaneously.

[0060] like Figure 2 and Figure 5 As shown, in some embodiments, the support frame 31 includes a sleeve 311 and support legs 312. The sleeve 311 is fitted onto the valve housing 22. To ensure stable support, the outer wall of the valve housing 22 is provided with an abutment portion 210. The sleeve 311 rests on the abutment portion 210. When force is applied to the first trigger 32 or the second trigger 33, the sleeve 311 can drive the valve housing 22 to move downward along the axial direction of the valve shaft 21 until the abutment portion 210 abuts against the locking flange 53. Multiple support legs 312 are arranged circumferentially around the outer periphery of the sleeve 311. It should be noted that the number of support legs 312 is not specifically limited, continuing as follows... Figure 2 , Figure 4 and Figure 5 As shown, in this embodiment, six support legs 312 are provided, and the six support legs 312 are evenly spaced. In this embodiment, the support legs 312 are inverted L-shaped, with one end of the support leg 312 connected to the sleeve 311, and the second side liquid outlet 313 is provided at the other end of the support leg 312. A transition channel 314 is provided inside the support leg 312. One end of the transition channel 314 is connected to the second side liquid outlet 313, and the other end passes through the sleeve 311 and connects to the first side liquid outlet 29 on the valve housing 22, so that the liquid in the liquid passage 23 enters the transition channel 314 from the first side liquid outlet 29 and flows to the second side liquid outlet 313. Figure 9 As shown, in the current embodiment, the second side outlet 313 faces the sleeve 311, thereby enabling the cleaning of the outer wall and opening of the container 7. To further reduce splashing, the second side outlet 313 is offset from the axis of the sleeve 311, meaning it is not directly aligned with the axis of the sleeve 311. This prevents water from directly impacting the outer wall of the container 7 when it exits, thus reducing splashing. Figure 2 and Figure 3As shown, to ensure the stability of the support leg 312, a connecting rib 315 is provided between adjacent support legs 312. To ensure sealing, two liquid outlet seals 211 are provided on the valve housing 22, and the second liquid outlet 313 is located between the two liquid outlet seals 211. When the sleeve 311 of the support frame 31 is fitted onto the valve housing 22, the sleeve 311 and the valve housing 22 squeeze the two liquid outlet seals 211 to ensure the seal at the second liquid outlet 313.

[0061] In some embodiments, such as Figure 6 As shown, both the first trigger 32 and the second trigger 33 are annular. The inner edge of the second trigger 33 overlaps the upper side of the outer edge of the first trigger 32. If the container opening is small, the edge of the container opening abuts against the first trigger 32. In this case, pressing the first trigger 32 down to below the second trigger 33 causes water to flow from the liquid outlet 27 to rinse the inside of the container 7, while water from the second side outlet 313 rinses the edge and sidewalls of the container opening. Conversely, if the container opening is large, the edge of the container opening abuts against the second trigger 33. Pressing down causes the second trigger 33 to move the first trigger 32 from a raised position to a lower position, causing water to flow from the liquid outlet 27 to rinse the inside of the container 7, while water from the second side outlet 313 rinses the edge and sidewalls of the container opening. This adapts to different cup sizes, and the synchronous downward movement of the first trigger 32 and the second trigger 33 reduces interference, further improving applicability. In some alternative embodiments, such as... Figure 8 As shown, the first trigger 32 and the second trigger 33 are also ring-shaped. The second trigger 33 is fitted outside the outer ring of the first trigger 32. However, when the first trigger 32 is pressed down to the bottom of the second trigger 33, the liquid outlet 27 is pushed out to rinse the inside of the container 7, while the second side liquid outlet 313 rinses the edge and side wall of the container 7. When the container opening is large, the edge of the container opening will press against the second trigger 33. When the second trigger 33 is pressed down, it will not drive the first trigger 32 to move down from the raised position to the lowered position, but will move down on its own, driving the support frame 31 to move, so that the liquid outlet 27 rinses the inside of the container 7, while the second side liquid outlet 313 rinses the edge and side wall of the container 7.

[0062] Furthermore, in some embodiments, the outer edge of the first trigger 32 is provided with an overlapping step 322, so that the second trigger 33 can overlap on the overlapping step 322. Thus, by setting the overlapping step 322, it is ensured that when the first trigger 32 and the second trigger 33 abut, their end faces are flush.

[0063] like Figure 2 and Figure 6As shown, in some embodiments, a first elastic element 34 is provided between the first trigger 32 and the support frame 31. The first elastic element 34 makes the first trigger 32 tend to stay away from the support frame 31 along the axial direction of the valve assembly 2, that is, the first trigger 32 can be reset after the external force is lost. Specifically, the first trigger 32 is sleeved on the sleeve 311 of the support frame 31. The lower end face of the first trigger 32 is also provided with a plug rod 321 spaced around the circumference of the first trigger 32. The plug rod 321 is arranged around the sleeve 311. The first elastic member 34 is sleeved on the outside of the sleeve 311, and the plug rod 321 is clamped on the outside of the first elastic member 34. One end of the first elastic member 34 abuts against the support leg 312, and the other end of the first elastic member 34 presses against the first trigger 32. Thus, when the first trigger 32 is pressed, the first trigger 32 squeezes the first elastic member 34. When the first elastic member 34 is squeezed to the limit, it drives the support frame 31 to move down, and then drives the valve shell 22 to move down. After the external force is lost, the first elastic member 34 causes the first trigger 32 to reset.

[0064] In the current embodiment, when no external force is applied, the inner edge of the second trigger 33 overlaps the outer edge of the first trigger 32, thereby restricting the first trigger 32. When the first trigger 32 loses external force, the first elastic element 34 resets the first trigger 32, during which time the second trigger 33 also prevents the first trigger 32 from disengaging. Figure 6 and Figure 7 As shown, to further ensure that the first trigger 32 remains stable during the reset movement and does not detach from the support frame 31, a decorative cover 35 is fixed to the top of the sleeve 311 of the support frame 31. The first trigger 32 and the first elastic member 34 are clamped between the decorative cover 35 and the support leg 312. Exemplarily, the decorative cover 35 and the sleeve 311 may be threaded together, but are not limited to, and the first elastic member 34 is a spring.

[0065] like Figure 2 and Figure 6As shown, in some embodiments, a second elastic element 36 is provided between the second trigger 33 and the support frame 31. The second elastic element 36 gives the second trigger 33 a tendency to remain detached from the support frame 31 along the axial direction of the valve assembly 2, that is, to enable the second trigger 33 to reset after the loss of external force. Specifically, a guide post 331 is provided on the lower end face of the second trigger 33, and a through hole is provided on the connecting rib 315. The guide post 331 passes through the support frame 31 through the through hole, and the second elastic element 36 is sleeved on the guide post 331 to clamp between the second trigger 33 and the connecting rib 315. To prevent the second trigger 33 from detaching from the support frame 31 during the reset process of the second elastic element 36, a limiting element 37 is provided at the end of the guide post 331 away from the second trigger 33. The limiting element 37 and the second trigger 33 are located on opposite sides of the connecting rib 315, thereby preventing the guide post 331 from detaching from the support frame 31. For example, the limiting member 37 may be, but is not limited to, a screw or bolt screwed onto the guide post 331, thereby facilitating disassembly; the second elastic member 36 may be, but is not limited to, a spring. In the current embodiment, multiple guide posts 331 may be provided.

[0066] Furthermore, the second side outlet 313 is located below the second trigger 33. In one embodiment, when the first trigger 32 is not operated and moves downward in the raised position, the second side outlet 313 is located below the second trigger 33. At this time, the second side outlet 313 is low, and pressing the first trigger 32 can move the first trigger 32 below the second trigger 33 with a smaller stroke, reducing the pressing stroke. At the same time, when the first trigger 32 is pressed, the second trigger 33 can block the splashing water flow, thereby minimizing the possibility of splashing. In some alternative embodiments, when the first trigger 32 is operated and moves downward, the second side outlet 313 moves with the support frame 31 below the second trigger 33, so that the second side outlet 313 is lower than the second trigger 33. When container 7 presses the second trigger 33, the splashing water from the side outlet is blocked by the liquid collection shell 1 because the edge of container 7 is closer to the inner wall of the liquid collection shell 1, thus reducing the possibility of splashing. Therefore, the above-mentioned container cleaner can be used for containers 7 with different opening sizes and can reduce splashing.

[0067] To further reduce water splashing when the second trigger 33 is pressed, an annular blocking wall 13 is provided on the inner wall of the liquid collection shell 1. The blocking wall 13 is located above the second trigger 33 and extends towards the valve assembly 2. In the current embodiment, the blocking wall 13 extends slightly beyond the second side outlet 313, thereby maximizing the applicability to larger container sizes. In the current embodiment, the liquid collection shell 1 includes a base 11 and an extension ring 12 detachably disposed on the base 11. The extension ring 12 is detachably disposed on the base 11, and the two can be, but are not limited to, snap-fit ​​connection for easy disassembly. The blocking wall 13 is disposed inside the extension ring 12. Exemplarily, the blocking wall 13 and the extension ring 12 are integrally formed.

[0068] In some embodiments, both the second trigger 33 and the first trigger 32 are provided with perforated holes to facilitate the flow of wastewater into the collection shell 1.

[0069] like Figure 1 and Figure 7 As shown, in some embodiments, the container cleaner further includes a nozzle assembly 4, which includes a spray cap 41 disposed on the valve assembly 2. The spray cap 41 is provided with a spray hole 411 communicating with the liquid outlet 27. The spray cap 41 can rotate relative to the valve assembly 2, thereby improving the cleanliness of the inner wall of the container. Specifically, the nozzle assembly 4 also includes a central body 42 and a locking nut 43. The central body 42 is provided with a central hole and is screwed to the liquid outlet 27 so that the liquid coming out of the liquid outlet 27 can flow out through the central hole. In order to ensure sealing, a first nozzle sealing ring 44 is clamped between the inner wall of the central body 42 and the liquid outlet 27. The locking nut 43 is sleeved between the central body 42 and the valve shaft 21 along the circumference of the valve shaft 21 and can move between the valve shaft 21 and the central body 42. The spray cover 41 is connected to the locking nut 43 and covers the central hole. The spray hole 411 on the spray cover 41 is inclined. When water flows out from the central hole to the spray hole 411, the water will push against the spray cover 41, thereby causing the spray cover 41 and the locking nut 43 to float up. Thus, when water sprays out from the inclined spray hole 411, it will drive the spray cover 41 and the locking nut 43 to rotate. To ensure a seal between the spray cap 41 and the locking nut 43, a second nozzle sealing ring 45 is provided between the spray cap 41 and the locking nut 43. In order to facilitate the rotation of the locking nut 43 and the spray cap 41, a ball bearing 46 is also clamped between the locking nut 43 and the center body 42, thereby reducing the friction between the two.

[0070] This application also provides a sink system, which includes a sink body and the aforementioned container cleaner. The container cleaner is disposed on a platform of the sink body and can be triggered to dispense water by at least one of a first trigger 32 and a second trigger 33.

[0071] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. A container cleaner, characterized in that, include: Liquid collecting shell (1); A valve assembly (2) is operably connected to the liquid collection shell (1); the valve assembly (2) is provided with a top liquid outlet (27) and a first side liquid outlet (29); the valve assembly (2) has an open state and a closed state. A support assembly (3) includes a first trigger (32) and a second trigger (33), the first trigger (32) and the second trigger (33) being operatively coupled to the valve assembly (2), and the first trigger (32) and the second trigger (33) being movable between a lowered position and a raised position; When at least one of the first trigger (32) and the second trigger (33) is in the lowered position, the valve assembly (2) is in the open state, allowing liquid to flow out of the top outlet (27) and the first side outlet (29); when in the raised position, the valve assembly (2) is in the closed state, preventing liquid from flowing out of the top outlet (27) and the first side outlet (29); pressing at least one of the first trigger (32) and the second trigger (33) can open the valve assembly (2).

2. The container cleaner according to claim 1, characterized in that, The second trigger (33) is operatively connected to the first trigger (32). Pressing the second trigger (33) can cause the first trigger (32) to move downward, so that the first trigger (32) is in the lowered position.

3. The container cleaner according to claim 1, characterized in that, The support assembly (3) further includes a support frame (31) connected to the valve assembly (2). The support frame (31) is provided with a second side outlet (313) communicating with the first side outlet (29). The first trigger (32) is disposed on the support frame (31). Pressing at least one of the first trigger (32) and the second trigger (33) can move the support frame (31) between the raised position and the lowered position.

4. The container cleaner according to claim 3, characterized in that, The second side outlet (313) is located below the second trigger (33).

5. The container cleaner according to claim 3, characterized in that, A first elastic element (34) is provided between the first trigger (32) and the support frame (31), and the first elastic element (34) causes the first trigger (32) to tend to disengage from the support frame (31) from the lowered position to the raised position; a second elastic element (36) is provided between the second trigger (33) and the support frame (31), and the second elastic element (36) causes the second trigger (33) to tend to disengage from the support frame (31) from the lowered position to the raised position.

6. The container cleaner according to claim 5, characterized in that, The second trigger (33) is provided with a guide post (331), the guide post (331) passes through the support frame (31), the second elastic member (36) is sleeved on the guide post (331), and a limit member (37) is provided at the end of the guide post (331) away from the second trigger (33).

7. The container cleaner according to claim 3, characterized in that, The support frame (31) includes a sleeve (311) and support legs (312). The sleeve (311) is sleeved on the valve assembly (2). A plurality of support legs (312) are disposed on the outer periphery of the sleeve (311). The second side outlet (313) is disposed at the end of the support leg (312) away from the sleeve (311). The second side outlet (313) faces the sleeve (311) and is offset from the axis of the sleeve (311). A transition channel (314) is provided inside the support leg (312). One end of the transition channel (314) is connected to the second side outlet (313), and the other end passes through the sleeve (311) and connects to the first side outlet (29).

8. The container cleaner according to claim 1, characterized in that, Both the first trigger (32) and the second trigger (33) are ring-shaped, with the inner edge of the second trigger (33) overlapping the upper side of the outer edge of the first trigger (32).

9. The container cleaner according to claim 8, characterized in that, The outer edge of the first trigger (32) is provided with an overlapping step (322), and the inner edge of the second trigger (33) overlaps the overlapping step (322) so that the end faces of the first trigger (32) and the second trigger (33) are flush.

10. The container cleaner according to claim 1, characterized in that, The valve assembly (2) includes a valve shaft (21) and a valve seat (26), on which a valve seal (25) is supported. When the first trigger (32) or the second trigger (33) is moved to the lowered position, the valve seat (26) is configured to move away from the valve seal (25) so that liquid can pass through the top outlet (27) and the first side outlet (29).

11. The container cleaner according to claim 10, characterized in that, The valve assembly (2) includes a valve housing (22), which is sleeved on the valve shaft (21). A liquid passage (23) is formed between the valve housing (22) and the valve shaft (21). The top liquid outlet (27) and the first side liquid outlet (29) are connected to the liquid passage (23). The valve seat (26) is disposed on the inner wall of the valve housing (22).

12. The container cleaner according to claim 3, characterized in that, The valve assembly (2) is provided with an abutment portion (210), and the support frame (31) abuts against the abutment portion (210).

13. The container cleaner according to claim 11, characterized in that, The top outlet (27) is located on the valve shaft (21). The top outlet (27) and the first side outlet (29) are both located on the same side of the valve seal (25). The valve shaft (21) is also provided with an injection channel (24). The first port (241) of the injection channel (24) is connected to the liquid passage (23). The second port (242) of the injection channel (24) is connected to an external injection device. The second port (242) and the first side outlet (29) are located on opposite sides of the valve seal (25) along the axial direction.

14. The container cleaner according to claim 13, characterized in that, The container cleaner also includes a mounting component (5), the liquid collection shell (1) is fixed on the mounting component (5), the mounting component (5) is provided with a liquid inlet chamber (55), the valve assembly (2) is inserted into the liquid inlet chamber (55), the liquid inlet chamber (55) is connected to the second port (242), a third elastic element (56) is provided between the valve shell (22) and the mounting component (5), the third elastic element (56) makes the valve seat (26) tend to keep against the valve seal (25).

15. The container cleaner according to any one of claims 1-14, characterized in that, The container cleaner also includes a nozzle assembly (4), which includes a spray cap (41) disposed on the valve assembly (2). The spray cap (41) is provided with a spray hole (411) communicating with the top liquid outlet (27). The spray cap (41) is rotatable relative to the valve assembly (2).

16. A water tank system, characterized in that, The water tank system includes a water tank body and a container cleaner as described in any one of claims 1-15, wherein the container cleaner is mounted on a platform of the water tank body.