Integrated mop pool

Through the pneumatic control components and sealing mechanism of the integrated mop pool, the drain port is automatically adjusted, which solves the sewage pollution problem caused by manual operation of the traditional mop pool, and achieves convenient and safe drainage and water storage functions.

CN223061695UActive Publication Date: 2025-07-04CHONGQING CONCAST SANITARY WARE
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Patent Information

Application Number
CN202422126508.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-04
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The drainage port sealing and drainage operations of traditional mop pools need to be done manually, which can easily cause the operator to touch the sewage with his hands, causing pollution and inconvenience in operation.

Method used

An integrated mop pool is designed, using pneumatic control components and sealing mechanisms, and the movable insertion plate is driven by a pneumatic telescopic rod to automatically adjust the drain port to avoid manual manual operation.

Benefits of technology

It realizes drainage and water storage without manual operation, avoids sewage pollution and improves the convenience and safety of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mop pools, and particularly discloses an integrated mop pool which comprises a pool and a water outlet and further comprises an installation box, the pool is installed at the top of the installation box in an embedded mode, one end of the top of the pool is provided with a water adding assembly, the inner side of the water outlet is detachably connected with a water drainage pipe, and the bottom of the water outlet is further provided with a blocking mechanism. The blocking mechanism comprises a fixed blocking filter plate detachably clamped in the water outlet and a movable insertion plate connected with the fixed blocking filter plate in a sliding and inserted mode, a pneumatic control assembly is arranged between the fixed blocking filter plate and the movable insertion plate, and an anti-overflow assembly is arranged at the top end of the inner wall of the water pool. The problems that the hand of an operator is easily in direct contact with sewage and is polluted by the sewage to form smudginess and the operation is inconvenient due to the fact that the drainage opening of a traditional mop pool is blocked and the drainage operation is manually completed are solved.
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Description

Technical Field

[0001] The present application relates to the technical field of mop pools, and specifically discloses an integrated mop pool. Background Art

[0002] A mop pool is usually made of ceramics and includes a water pool for cleaning mops, a drain outlet, and a water blocking block for blocking the drain outlet. When using the mop pool, the drain outlet is blocked with the water blocking block and water is stored inside the pool. Then, a mop that is dirty after use or a mop that needs to be soaked before use is placed in the water inside the pool for rinsing or soaking, and a small amount of detergent is appropriately added according to the dirtiness of the mop to clean the mop more thoroughly and make the use effect of the mop better. After the mop is rinsed or soaked, the water blocking block is removed, the water in the pool is drained, and the mop is taken out of the pool and drained of water before use.

[0003] After the rinsing and soaking of the mop are completed, the dirty sundries carried by the mop are also mixed with the water stored inside the pool, and the water stored in the pool thus becomes sewage. However, the existing water blocking blocks are usually manually installed by the operator at the drain outlet for water storage in the pool and manually removed from the drain outlet for draining the pool. After the water stored in the pool becomes sewage, if the water blocking block is manually removed, it is easy for the operator's hands to directly contact the sewage and be contaminated by the sewage, resulting in dirtiness and inconvenient operation. Therefore, in view of this, the inventor provides an integrated mop pool to solve the above problems. Summary of the Utility Model

[0004] The purpose of the present utility model is to solve the problem that the operation of blocking and draining the drain outlet of a traditional mop pool is manually completed, which easily causes the operator's hands to directly contact the sewage and be contaminated by the sewage, resulting in dirtiness and inconvenient operation.

[0005] To achieve the above purpose, the basic scheme of the present utility model provides an integrated mop pool, which includes a water pool and a drain outlet provided at the bottom of the water pool, and further includes an installation box for accommodating and fixedly installing the water pool. The water pool is embedded and installed at the top of the installation box. One end of the top of the water pool is provided with a water adding component for adding water into the water pool. The inner side of the drain outlet is detachably connected with a drain pipe. The bottom of the drain outlet is further provided with a blocking mechanism for controlling the opening and closing of the drain outlet. The blocking mechanism includes a fixed blocking filter plate detachably clamped in the drain outlet and a movable insertion plate slidably inserted and connected with the fixed blocking filter plate. A pneumatic control component for driving the movable insertion plate to slide along the fixed blocking filter plate is provided between the fixed blocking filter plate and the movable insertion plate. The top end of the inner wall of the water pool is provided with an anti-overflow component for preventing the water stored in the water pool from overflowing.

[0006] The principle and effect of this basic scheme are as follows:

[0007] 1. Compared with the prior art, the utility model realizes the functions of water storage and drainage in the pool by setting a water filling component and a plugging mechanism. Through the anti-overflow component, the water in the pool is maintained within the safe water line during water storage, avoiding overflow caused by excessive water storage in the pool. By integrating the functions of water storage, drainage, and anti-overflow in the pool, the overall structure and function of the mop pool are more perfect and practical.

[0008] 2. Compared with the prior art, the utility model sets a pneumatic control component to provide pneumatic power for the movable plug board. By controlling the sliding adjustment of the movable plug board along the fixed plugging filter board, the on-off adjustment control of the fixed plugging filter board is directly realized by the movable plug board, and then the on-off adjustment of the drain port is realized, so as to achieve the purpose of storing or draining water in the pool. The operation is simple, and there is no need for manual direct operation of the plugging block, avoiding the trouble caused by manual direct contact with sewage for draining water in the pool, and solving the problem that the drainage port plugging and drainage operations of the traditional mop pool are manually completed, which easily leads to the operator's hands directly contacting sewage and being contaminated by the sewage, resulting in dirt and inconvenient operation.

[0009] Furthermore, the bottom of the installation box is a hollow structure, the bottom of the pool is suspended, and an installation through groove located outside the pool is also provided on one side of the installation box. By setting the bottom of the installation box as a hollow structure and providing the installation through groove, not only can the amount of unnecessary production raw materials be reduced and the production cost be lowered, but also it is convenient for the installation of structural components such as the plugging mechanism, pneumatic control component, and water filling component, reserving sufficient installation space for the installation of structural components.

[0010] Furthermore, the pneumatic control component includes an air pump detachably installed at the outer bottom of the pool, a pneumatic telescopic rod installed between the bottom surface of the fixed plugging filter board and the upper surface of the movable plug board, a ventilation pipe arranged between the air pump and the pneumatic telescopic rod, and a push-button air valve connected and installed on the ventilation pipe and detachably installed at one end of the top of the pool. The ventilation pipe passes through the installation through groove. By setting the air pump, ventilation pipe, and pneumatic telescopic rod, it is convenient to drive the telescopic movement of the pneumatic telescopic rod by pneumatic drive, thereby realizing the lifting and sliding movement of the movable plug board relative to the fixed plugging filter board, and then facilitating the adjustment control of draining and storing water at the drain port. By passing the ventilation pipe through the installation through groove and installing the push-button air valve at one end of the top of the pool, it is convenient for manual direct pressure control of the switch of the push-button air valve, and then directly control the telescopic movement of the pneumatic telescopic rod, so as to realize the switching operation between the draining and plugging and water storage working states of the drain port, without relying on manual direct contact with sewage and the plugging block to realize the draining operation.

[0011] Furthermore, a number of water drainage channels for draining water are evenly and circularly arranged on the surface of the fixed plugging filter plate, and a number of plugging rods that are slidably connected to the inner walls of the water drainage channels are evenly and circularly arranged on the movable plug board. By setting the sliding connection between the plugging rods and the water drainage channels, the blocking or opening of the water drainage channels is realized, which is convenient for regulating the water storage or drainage work in the pool.

[0012] Furthermore, the water adding assembly includes a water inlet pipe that is inserted and installed in the installation channel and used for supplying water to the pool, a water inlet pump that is detachably installed on the water inlet pipe, a water outlet pipe that is detachably installed at one end of the top of the pool and is detachably connected and communicated with the end of the water inlet pipe far from the water inlet pump, and a water adding valve that is detachably installed between the water outlet pipe and the water inlet pipe. The end of the water outlet pipe far from the water inlet pipe is provided with a water outlet located above the pool. By setting the water inlet pipe, the water inlet pump, the water outlet pipe and the water adding valve, sufficient water is provided to the pool for soaking and cleaning the mop. By inserting and installing the water inlet pipe in the installation channel, it is convenient for the storage and installation of the water inlet pipe, avoiding the water inlet pipe being damaged by external forces when exposed outside, which is beneficial to the structural protection of the water inlet pipe.

[0013] Furthermore, a feeding assembly for adding a cleaning agent into the pool is detachably installed on the water outlet pipe. The feeding assembly includes a feeding pipe that is vertically and communicatively connected to the top end of the water outlet pipe, a feeding cylinder that is arranged at the end of the feeding pipe far from the water outlet pipe and is used for accommodating the cleaning agent, and a feeding valve that is arranged at the end of the feeding pipe close to the water outlet pipe. By vertically and communicatively arranging the feeding pipe at the top end of the water outlet pipe, and simultaneously setting the feeding cylinder and the feeding valve, the water outlet pipe becomes the only path for the cleaning agent and water to enter the pool. Through the feeding valve and the water adding valve, not only can the cleaning agent and water be separately added into the pool, but also during the process of the water adding assembly introducing water into the pool for water storage, the cleaning agent can be simultaneously added into the pool through the water outlet pipe, realizing the premixing of the cleaning agent and water, without the need for additional stirring treatment of the cleaning agent and water, making the use effect of the cleaning agent better.

[0014] Furthermore, a grooming grid plate located below the water outlet pipe is detachably installed at one end of the inner bottom of the pool. A number of grooming rods are evenly and vertically arranged on the top surface of the grooming grid plate. By setting the grooming grid plate and the grooming rods, it is convenient to provide a passive scrubbing tool for the mop during the cleaning process, making the cleaning effect of the mop better.

[0015] Furthermore, the overflow prevention assembly includes an overflow port arranged on the inner wall of one side of the pool close to the installation channel, an overflow pipe connected between the overflow port and the drain pipe, and a water filtering plug that is detachably connected to one end of the pool connected to the overflow port and is used for filtering the overflowing water. By setting the overflow port and the overflow pipe, it is convenient to drain the water in time before the water in the pool overflows too much, avoiding the water from overflowing outside the pool. By connecting the overflow pipe to the drain pipe, it is convenient for the unified external drainage and collection of the water. Description of the Drawings

[0016] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the accompanying drawings required for the description of the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.

[0017] Figure 1 Shows a front view of the three-dimensional structure of an integrated mop sink proposed in an embodiment of the present application;

[0018] Figure 2 Shows a side view of the structure of an integrated mop sink proposed in an embodiment of the present application;

[0019] Figure 3 Shows a rear view of the three-dimensional structure of an integrated mop sink proposed in an embodiment of the present application;

[0020] Figure 4 Shows a three-dimensional view of the structure of a plugging mechanism of an integrated mop sink proposed in an embodiment of the present application. Detailed implementation manners

[0021] To further elaborate on the technical means and effects adopted by the present utility model to achieve the predetermined utility model purpose, the following will, in conjunction with the accompanying drawings and preferred embodiments, detail the specific implementation manners, structures, features, and their effects of the present utility model as follows.

[0022] The reference numerals in the accompanying drawings of the specification include: water tank 1, drain outlet 2, installation box 3, drain pipe 4, fixed plugging filter plate 5, movable plug plate 6, installation through groove 7, pneumatic telescopic rod 8, ventilation pipe 9, push-button air valve 10, water drainage through groove 11, plugging rod 12, water inlet pipe 13, water filling valve 14, water outlet 15, feeding pipe 16, feeding cylinder 17, feeding valve 18, cleaning grid plate 19, cleaning grid bars 20, overflow port 21, water filtering plug 22, overflow pipe 23, air pump 24.

[0023] An integrated mop sink, as shown in the embodiments Figure 1 shown: It includes a water tank 1 and a drain outlet 2 provided at the bottom of the water tank 1, and further includes an installation box 3 for accommodating and fixedly installing the water tank 1. The water tank 1 is embedded and installed at the top of the installation box 3. A water filling assembly for adding water into the water tank 1 is provided at the left end of the top of the water tank 1. The bottom inner wall of the drain outlet 2 is detachably connected with a drain pipe 4. A plugging mechanism for controlling the opening and closing of the drain outlet 2 is also provided at the bottom of the drain outlet 2, as Figure 4As shown in the figure, the plugging mechanism includes a fixed plugging filter plate 5 detachably clamped to the inner top end of the drain opening 2 and a movable plug plate 6 slidably inserted and connected to the fixed plugging filter plate 5. An air control component for driving the movable plug plate 6 to slide along the fixed plugging filter plate 5 is provided between the fixed plugging filter plate 5 and the movable plug plate 6. At the top end of the inner wall of the pool 1, an anti-overflow component for preventing the water stored in the pool 1 from overflowing is provided.

[0024] Among them, as Figure 3 shown, the bottom of the installation box 3 is a hollow structure, the bottom of the pool 1 is suspended, and an installation through groove 7 located outside the pool 1 is also provided on the back side of the installation box 3. In the working condition where the existing mop pool needs to be installed against the wall, the back side of the installation box 3 can be used for abutting and installing against the installation wall.

[0025] Among them, as Figure 2 、 Figure 3 and Figure 4 shown, the air control component includes an air pump 24 detachably installed at the outer bottom of the pool 1, a pneumatic telescopic rod 8 installed between the bottom surface of the fixed plugging filter plate 5 and the upper surface of the movable plug plate 6, a ventilation pipe 9 provided between the air pump 24 and the pneumatic telescopic rod 8, and a push-button air valve 10 communicatively installed on the ventilation pipe 9 and detachably installed at the right end of the top of the pool 1. The ventilation pipe 9 passes through the installation through groove 7.

[0026] Among them, as Figure 4 shown, more than a dozen drain through grooves 11 for draining water are evenly annularly arranged on the surface of the fixed plugging filter plate 5. More than a dozen plugging rods 12 slidably connected to the inner walls of the drain through grooves 11 are evenly annularly arranged on the movable plug plate 6. When the plugging rods 12 are slidably inserted into the drain through grooves 11, the fixed plugging filter plate 5 is in a plugged state, the pool 1 is in a water storage state, and at the same time the pneumatic telescopic rod 8 is in a contracted state. On the contrary, the pool 1 is in a drainage state and the pneumatic telescopic rod 8 is in an extended state.

[0027] Among them, as Figure 1 and Figure 3 shown, the water filling component includes a water inlet pipe 13 passing through and installed in the installation through groove 7 and used for supplying water to the pool 1, a water inlet pump detachably installed on the water inlet pipe 13, a water outlet pipe detachably installed at the left end of the top of the pool 1 and detachably communicatively connected to the end of the water inlet pipe 13 away from the water inlet pump, and a water filling valve 14 detachably installed between the water outlet pipe and the water inlet pipe 13. The end of the water outlet pipe away from the water inlet pipe 13 is provided with a water outlet 15 located above the pool 1.

[0028] Among them, as Figure 1 and Figure 2As shown in the figure, a feeding assembly for adding a cleaning agent into the pool 1 is detachably installed on the water outlet pipe. The feeding assembly includes a feeding pipe 16 vertically and communicatively connected to the top end of the water outlet pipe, a feeding cylinder 17 provided at the end of the feeding pipe 16 away from the water outlet pipe for accommodating the cleaning agent, and a feeding valve 18 provided at the end of the feeding pipe 16 close to the water outlet pipe.

[0029] Among them, as Figure 2 shown in the figure, a grooming grid plate located below the water outlet pipe is detachably installed at the left end of the inner bottom of the pool 1. Dozens of grooming rods are evenly vertically arranged on the top surface of the grooming grid plate.

[0030] Among them, as Figure 1 and Figure 2 shown in the figure, the anti-overflow assembly includes an overflow water outlet 21 provided on the inner wall of one side of the pool 1 close to the installation through groove 7, an overflow water pipe 23 connected between the overflow water outlet 21 and the drain pipe 4, and a water filter plug 22 detachably connected to one end of the overflow water outlet 21 connected to the pool 1 for filtering the overflow water.

[0031] In the specific implementation process of the present utility model, when cleaning the mop, first store water in the pool 1, open the water filling valve 14 and the water inlet pump. At this time, the feeding valve 18 is closed, and the pneumatic telescopic rod 8 is in a contracted state. The blocking rod 12 of the movable plug board 6 blocks the water discharge through groove 11 of the fixed blocking filter plate 5. After opening the water filling valve 14, the water for cleaning enters the water outlet pipe through the water inlet pipe 13 and falls into the pool 1 from the water outlet. When the water storage volume in the pool 1 reaches the amount of water required for cleaning the mop, then close the water filling valve 14 and the water inlet pump. When the dirt degree of the mop reaches the level where it cannot be cleaned with clean water, then during the water storage process, simultaneously open the feeding valve 18, so that the cleaning agent in the feeding cylinder 17 enters the water outlet pipe through the feeding pipe 16 and converges with the water entering the water outlet pipe from the water inlet pipe 13 in the water outlet pipe. Under the dual actions of the flow impact of the water and the free fall when entering the pool 1, the cleaning agent converges with the water in the water outlet pipe and then is fully mixed with the water, so as to play a role and fully remove dirt during the mop cleaning, and clean the mop more thoroughly. During the water storage process, when too much water is added to the pool 1, the water before overflowing from the pool 1 first enters the overflow water pipe 23 through the overflow water outlet 21 and then enters the drain pipe 4 for external discharge.

[0032] After the water storage in the water tank 1 is completed, the mop is manually placed into the water tank 1 for soaking and cleaning. During the cleaning process, the mop can be placed on the cleaning grid plate 19 and operations such as friction and pressing can be performed on the cleaning grid plate 19, so that the mop interacts with the cleaning rods on the cleaning grid plate 19, thereby enabling the dirt mixed in the mop to separate from the mop and making the mop cleaner. After the mop is cleaned, the mop is taken out of the water tank 1 and placed at a designated position for dehydration, and the sewage in the water tank 1 is discharged. When draining the water tank 1, the operator directly applies force to the push-button air valve 10 and presses it once, so that the air pump 24 drives the pneumatic telescopic rod 8 to extend, and then drives the movable plug plate 6 to slide away from the fixed sealing filter plate 5, so that the sewage flows through the drain trough 11 and the movable plug plate 6 in sequence from the water tank 1 and is discharged through the drain pipe 4 until the sewage in the water tank 1 is completely drained. After the sewage is drained, the operator applies force to the push-button air valve 10 again and presses it once, so that the air pump 24 drives the pneumatic telescopic rod 8 to contract, and then drives the movable plug plate 6 to slide upward in the direction of the fixed sealing filter plate 5 until the sealing plug rod 12 of the movable plug plate 6 seals the drain trough 11, thus completing the re-sealing of the drain port 2, facilitating the next water storage work of the water tank 1.

[0033] Compared with the prior art, the present utility model is provided with a pneumatic control component to provide pneumatic power for the movable plug plate 6, and the movable plug plate 6 is controlled by the pneumatic telescopic rod 8 to slide and adjust along the fixed sealing filter plate 5, thereby realizing the on-off adjustment control of the fixed sealing filter plate 5 directly by using the movable plug plate 6, and further realizing the on-off adjustment of the drain port 2, achieving the purpose of storing or draining water in the water tank 1. The operation is simple, and there is no need for manual direct operation of the plugging block, avoiding the trouble caused by manual direct contact with sewage for draining the water tank 1, and solving the problem that the drainage port plugging and drainage operations of the traditional mop pool are manually completed, which easily leads to the operator's hands directly contacting the sewage and being contaminated by the sewage to form dirt, and the operation is inconvenient.

[0034] The above is only a preferred embodiment of the present utility model, and does not impose any form of limitation on the present utility model. Although the present utility model has been disclosed above with a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to make equivalent embodiments with equivalent changes within the scope of the technical solution of the present utility model. However, as long as it does not depart from the content of the technical solution of the present utility model, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present utility model still fall within the scope of the technical solution of the present utility model.

Claims

1. An integrated mop sink, comprising a water pool and a drain outlet provided at the bottom of the water pool, characterized in that, It further includes an installation box for accommodating and fixing the installation pool. The pool is embedded and installed on the top of the installation box. One end of the top of the pool is provided with a water filling component for adding water into the pool. The inner side of the drain outlet is detachably connected with a drain pipe. The bottom of the drain outlet is also provided with a plugging mechanism for controlling the opening and closing of the drain outlet. The plugging mechanism includes a fixed plugging filter plate detachably clamped in the drain outlet and a movable plug plate slidably inserted and connected with the fixed plugging filter plate. A pneumatic control component for driving the movable plug plate to slide along the fixed plugging filter plate is arranged between the fixed plugging filter plate and the movable plug plate. The top end of the inner wall of the pool is provided with an anti-overflow component for preventing the water stored in the pool from overflowing.

2. The integrated mop sink according to claim 1, characterized in that, The bottom of the installation box is of a hollow structure, the bottom of the pool is suspended, and one side of the installation box is also provided with an installation through groove located outside the pool.

3. The integrated mop sink according to claim 2, wherein The pneumatic control component includes an air pump detachably installed on the outer bottom of the pool, a pneumatic telescopic rod installed between the bottom surface of the fixed plugging filter plate and the upper surface of the movable plug plate, a ventilation pipe arranged between the air pump and the pneumatic telescopic rod, and a push-button air valve connected and installed on the ventilation pipe and detachably installed at one end of the top of the pool. The ventilation pipe passes through the installation through groove.

4. The integrated mop sink according to claim 3, characterized in that, The surface of the fixed plugging filter plate is evenly and annularly provided with a plurality of water drainage through grooves for draining water, and the movable plug plate is evenly and annularly provided with a plurality of plugging rods slidably connected with the inner walls of the water drainage through grooves.

5. An integrated mop sink according to claim 4, characterized in that, The water filling component includes a water inlet pipe passing through and installed in the installation through groove and used for supplying water into the pool, a water inlet pump detachably installed on the water inlet pipe, a water outlet pipe detachably installed at one end of the top of the pool and detachably connected and communicated with the end of the water inlet pipe far away from the water inlet pump, and a water filling valve detachably installed between the water outlet pipe and the water inlet pipe. The end of the water outlet pipe far away from the water inlet pipe is provided with a water outlet located above the pool.

6. The integrated mop sink according to claim 5, characterized in that, A feeding component for adding a cleaning agent into the pool is detachably installed on the water outlet pipe. The feeding component includes a feeding pipe vertically and communicatively connected with the top end of the water outlet pipe, a feeding cylinder arranged at the end of the feeding pipe far away from the water outlet pipe and used for accommodating the cleaning agent, and a feeding valve arranged at the end of the feeding pipe close to the water outlet pipe.

7. The integrated mop sink according to claim 6, wherein, One end of the inner bottom of the pool is detachably installed with a grooming grid plate located below the water outlet pipe. The top surface of the grooming grid plate is evenly and vertically provided with a plurality of grooming rods.

8. The integrated mop sink according to claim 7, wherein, The anti-overflow component includes an overflow port arranged on the inner wall of the pool on the side close to the installation through groove, an overflow pipe connected between the overflow port and the drain pipe, and a water filtering plug detachably connected with the end of the pool connected to the overflow port and used for filtering the overflowing water.