An easy-to-clean regulating tank
By setting up a sludge collection pit and guide rails at the bottom of the equalization tank, and using cleaning and drive mechanisms to achieve automated cleaning, the problems of high labor intensity and high safety risks in cleaning equalization tanks are solved, and cleaning efficiency and water treatment effect are improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIANZHIRAN (TIANJIN) BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-08-26
- Publication Date
- 2026-07-31
AI Technical Summary
During operation, solid impurities in the wastewater tend to settle and adhere to the bottom of the existing equalization tank, resulting in high labor intensity, high risk and low efficiency in cleaning, and the cleaning personnel face safety risks such as hypoxia and poisoning.
A sludge collection pit and guide rail are installed at the bottom of the equalization tank. A cleaning mechanism and a drive mechanism are installed. The cleaning mechanism slides along the guide rail, and the cleaning components sweep impurities into the sludge collection pit and discharge them through the drain hole, thus achieving automated cleaning.
No manual entry into the pool is required for cleaning, reducing labor intensity and safety risks, improving cleaning efficiency, reducing secondary pollution to the environment, and enhancing water treatment effectiveness.
Smart Images

Figure CN224574313U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of sewage treatment equipment technology, and in particular to an equalization tank that is easy to clean. Background Technology
[0002] In wastewater treatment plants, equalization tanks are used to regulate the quality and quantity of wastewater. However, during operation, solid impurities in existing equalization tanks tend to settle and adhere to the bottom, affecting the effective volume of the tank, reducing its regulating effect, and causing secondary pollution due to the long-term accumulation of impurities, which breeds bacteria and emits odors. Currently, cleaning the bottom of equalization tanks usually requires manual entry, which is not only labor-intensive but also exposes cleaning personnel to safety risks such as oxygen deficiency and poisoning, resulting in low cleaning efficiency. Utility Model Content
[0003] The purpose of this invention is to provide an easy-to-clean regulating pool to solve the problems of high labor intensity, high risk and low cleaning efficiency of manual cleaning of regulating pools.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] This utility model provides an easy-to-clean regulating tank, having a first direction and a second direction perpendicular to each other, including:
[0006] The pool body has a sludge collection pit on one or both sides of the bottom of the pool body along the first direction, the length direction of the sludge collection pit extends along the second direction, and the pit wall of the sludge collection pit is provided with a sludge discharge hole.
[0007] A guide rail, at least partially extending along the first direction and disposed on the bottom of the pool body;
[0008] A cleaning mechanism is slidably mounted on the guide rail, and the cleaning mechanism includes a cleaning component that abuts against the inner wall of the pool body;
[0009] A drive mechanism is connected to the cleaning mechanism, and the drive mechanism is used to drive the cleaning mechanism to slide along the guide rail.
[0010] In some embodiments, a third direction is further provided, wherein the first direction, the second direction, and the third direction are mutually perpendicular;
[0011] The pool body has a first sidewall and a second sidewall that are arranged opposite to each other along the first direction. Part of the guide rail extends from the bottom of the pool along the third direction and is arranged on the first sidewall, and part of the guide rail extends from the bottom of the pool along the third direction and is arranged on the second sidewall.
[0012] In some embodiments, the guide rails are provided in multiple ways, and the multiple guide rails are spaced apart along the second direction. Each guide rail is equipped with the cleaning mechanism, and the sum of the lengths of each cleaning component along the second direction is equal to the dimension of the pool body along the second direction.
[0013] In some embodiments, the bottom wall of the sludge collection pit is provided with a first end and a second end disposed opposite to each other along the second direction, the bottom wall of the sludge collection pit is inclined downward from the first end to the second end, and the drain hole is disposed near the second end.
[0014] In some embodiments, a drain pipe is installed at the drain hole, and a drain valve is installed on the drain pipe.
[0015] In some embodiments, the drive mechanism includes:
[0016] The support frame is located on the outside of the pool body;
[0017] A first driving component is mounted on the bracket. The first driving component is provided with a first chain. The first chain is connected to one side of the cleaning mechanism along the first direction. The first driving component is used to drive the first chain to drive the cleaning mechanism to slide along the guide rail.
[0018] The second driving member is mounted on the bracket. The second driving member and the first driving member are spaced apart along the first direction. The second driving member is provided with a second chain. The second chain is connected to the other side of the cleaning mechanism along the first direction. The second driving member is used to drive the second chain to drive the cleaning mechanism to slide along the guide rail. The sliding direction of the cleaning mechanism driven by the second driving member is opposite to the sliding direction of the cleaning mechanism driven by the first driving member.
[0019] In some embodiments, the driving mechanism further includes a first guide wheel, a second guide wheel, a first guide shaft, and a second guide shaft. The first guide shaft and the second guide shaft are respectively connected to the pool body. The first guide wheel is rotatably sleeved on the first guide shaft, and the second guide wheel is rotatably sleeved on the second guide shaft. The first chain passes through the first guide wheel and is connected to the cleaning mechanism, and the second chain passes through the second guide wheel and is connected to the cleaning mechanism.
[0020] In some embodiments, a third direction is further provided, wherein the first direction, the second direction, and the third direction are mutually perpendicular; the first chain extends downward from the first drive member along the third direction and then extends to the cleaning mechanism along the first direction, and the first guide wheel is located at the reversing position of the first chain; the second chain extends downward from the second drive member along the third direction and then extends to the cleaning mechanism in the opposite direction of the first direction, and the second guide wheel is located at the reversing position of the second chain.
[0021] In some embodiments, the cleaning mechanism further includes a connecting frame slidably connected to the guide rail, the cleaning component being connected to the connecting frame, and the driving mechanism being connected to the connecting frame.
[0022] Compared with the prior art, the advantages of this easy-to-clean regulating tank according to this utility model embodiment are as follows:
[0023] This utility model discloses an easy-to-clean regulating tank. A sludge collection pit is provided at the bottom of the tank, and a drain hole is provided on the pit wall. A guide rail is also provided at the bottom of the tank, and a cleaning mechanism is installed on the guide rail. The cleaning mechanism is driven to slide along the guide rail. As the cleaning mechanism slides along the guide rail, its cleaning components clean the impurities that have settled and adhered to the bottom of the tank. As the cleaning mechanism slides along the guide rail, the cleaning components sweep the impurities from the bottom of the tank into the sludge collection pit. After the impurities are collected in the sludge collection pit, they are discharged through the drain hole. This achieves automated cleaning of the bottom of the regulating tank, eliminating the need for manual entry into the tank, reducing labor intensity, improving cleaning efficiency, and reducing the safety risks such as oxygen deficiency and poisoning faced by cleaning personnel. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the structure of the easy-to-clean regulating tank described in this embodiment of the utility model;
[0025] Figure 2 yes Figure 1 The front view of the regulating tank shown;
[0026] Figure 3 yes Figure 1 A schematic diagram of the hidden tank body of the regulating tank shown;
[0027] Figure 4 yes Figure 3 A front view of the hidden section of the regulating pool;
[0028] Figure 5 This is a schematic diagram of the pool body in an embodiment of this utility model;
[0029] Figure 6 yes Figure 5A top view of the central pool;
[0030] Figure 7 yes Figure 6 Sectional view along direction AA.
[0031] Numbering on the map:
[0032] 10. Pool body; 101. First side wall; 102. Second side wall; 11. Sewage collection pit; 111. First end; 112. Second end; 12. Sewage discharge hole; 13. Sewage discharge pipe; 14. Sewage discharge valve; 20. Guide rail; 30. Cleaning mechanism; 31. Cleaning component; 32. Connecting frame; 40. Drive mechanism; 41. Support; 42. First drive component; 43. First chain; 44. Second drive component; 45. Second chain; 46. First guide wheel; 47. Second guide wheel; 48. First guide shaft; 49. Second guide shaft; X, First direction; Y, Second direction; Z, Third direction. Detailed Implementation
[0033] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, 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, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0034] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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; and they can refer to the internal connection of 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.
[0035] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.
[0036] See Figures 1-7As shown, this utility model embodiment provides an easy-to-clean regulating pool with two mutually perpendicular directions X, Y, and Z. The regulating pool includes a pool body 10, a guide rail 20, a cleaning mechanism 30, and a driving mechanism 40. The bottom of the pool body 10 is provided with a sludge collection pit 11 on one or both sides along the first direction X. The length direction of the sludge collection pit 11 extends along the second direction Y, and the pit wall of the sludge collection pit 11 is provided with a drain hole 12. The guide rail 20 extends at least partially along the first direction X and is provided at the bottom of the pool body 10. The cleaning mechanism 30 is slidably installed on the guide rail 20. The cleaning mechanism 30 includes a cleaning component 31, which abuts against the inner wall of the pool body 10 to facilitate cleaning of the inner wall of the pool body 10. The driving mechanism 40 is connected to the cleaning mechanism 30 and is used to drive the cleaning mechanism 30 to slide along the guide rail 20 and adjust the position of the cleaning mechanism 30 within the pool body 10.
[0037] As the cleaning mechanism 30 slides along the guide rail 20, the cleaning component 31 of the cleaning mechanism 30 cleans the impurities that have settled and adhered to the bottom of the tank. As the cleaning mechanism 30 slides along the guide rail 20, the cleaning component 31 sweeps the impurities from the bottom of the tank into the collection pit 11. After the impurities are collected in the collection pit 11, they are discharged through the drain hole 12, thus achieving automated cleaning of the bottom of the equalization tank. This eliminates the need for manual entry into the equalization tank for cleaning, reducing labor intensity, improving cleaning efficiency, and reducing safety risks such as oxygen deficiency and poisoning faced by cleaning personnel. Cleaning the equalization tank improves its water treatment effect and reduces the impact of impurities on subsequent treatment equipment.
[0038] See Figure 1 , Figure 2 , Figure 5 and Figure 6 As shown, in some embodiments, the pool body 10 is generally rectangular in shape. The first direction X is the length direction of the pool body 10, the second direction Y is the width direction of the pool body 10, and the third direction Z is the height direction of the pool body 10. In other alternative embodiments, the first direction X may also be the width direction of the pool body 10, the second direction Y may be the length direction of the pool body 10, and the third direction Z may be the height direction of the pool body 10.
[0039] See Figure 2 , Figures 5-7 As shown, in some embodiments, one or both sides of the bottom of the pool body 10 are provided to bulge downward to form a sludge collection pit 11, so that the pit opening of the sludge collection pit 11 is flush with the bottom of the pool body 10, thereby making the height of the cleaning member 31 higher than that of the sludge collection pit 11, so that the cleaning member 31 can sweep the impurities into the sludge collection pit 11.
[0040] Figures 5-7As shown, the bottom wall of the sludge collection pit 11 has a first end 111 and a second end 112 arranged opposite each other along the second direction Y. The bottom wall of the sludge collection pit 11 slopes downward from the first end 111 to the second end 112, and the drain hole 12 is located near the second end 112. The slope of the bottom wall of the sludge collection pit 11 allows impurities entering the pit to flow from the first end 111 to the second end 112 under their own gravity and be discharged through the drain hole 12, facilitating the centralized discharge of impurities from the sludge collection pit 11. A drain pipe 13 is installed at the drain hole 12, and a drain valve 14 is installed on the drain pipe 13. The drain valve 14 can be opened or closed as needed. When impurities accumulate to a certain level in the sludge collection pit 11, the drain valve 14 is opened, allowing the impurities to be discharged and collected all at once, facilitating regular cleaning of the sludge collection pit 11 and reducing the frequency of sewage discharge.
[0041] Figures 1-5 As shown, in some embodiments, the pool body 10 has a first sidewall 101 and a second sidewall 102, which are arranged opposite each other along a first direction X. Part of the guide rail 20 extends from the bottom of the pool along a third direction Z on the first sidewall 101, and part of the guide rail 20 extends from the bottom of the pool along a third direction Z on the second sidewall 102. A sludge collection pit 11 is located on both sides of the bottom of the pool along the first direction X, extending the guide rail 20 to the first sidewall 101 and the second sidewall 102, facilitating the cleaning mechanism 30 to clean the first sidewall 101 and the second sidewall 102. The cleaned impurities can fall directly into the sludge collection pit 11. The guide rail 20 on the first sidewall 101, the guide rail 20 on the bottom of the pool, and the guide rail 20 on the second sidewall 102 are integrally formed, making the guide rail 20 generally U-shaped. The connection between the guide rail 20 on the first side wall 101 and the guide rail 20 on the bottom of the pool is made by an arc transition, and the connection between the guide rail 20 on the second side wall 102 and the guide rail 20 on the bottom of the pool is also made by an arc transition, so as to facilitate the sliding of the cleaning mechanism 30.
[0042] See Figure 3 and Figure 4As shown, in some embodiments, the cleaning mechanism 30 further includes a connecting frame 32, which is slidably connected to the guide rail 20. The cleaning component 31 is connected to the connecting frame 32, and the drive mechanism 40 is connected to the connecting frame 32. The drive mechanism 40 drives the connecting frame 32 to slide along the guide rail 20, thereby driving the cleaning component 31 to move along the inner wall of the pool body 10 to clean the pool body 10. When the guide rail 20 is U-shaped, the inner wall of the pool body 10 includes the pool bottom, a first side wall 101, and a second side wall 102. The connecting frame 32 is slidably assembled with the guide rail 20, and the guide rail 20 limits the movement trajectory of the connecting frame 32 to prevent the connecting frame 32 from coming out of the guide rail 20. The cleaning component 31 can be configured as a rake tooth structure, using a toothed hook to clean impurities. The rake teeth are made of stainless steel, which has strong wear resistance and corrosion resistance. To facilitate the contact between the cleaning component 31 and the bottom of the pool, the cleaning component 31 is provided with a clearance opening for avoiding the guide rail 20, so that the cleaning component 31 is distributed on both sides of the guide rail 20 in the width direction.
[0043] See Figure 3 and Figure 4As shown, in some embodiments, the drive mechanism 40 includes a bracket 41, a first drive member 42, and a second drive member 44. The bracket 41 is located outside the pool body 10; the bracket 41 provides a mounting base for the first drive member 42 and the second drive member 44, and the bracket 41 can be a gantry frame. The first drive member 42 is mounted on the bracket 41 and has a first chain 43. The first chain 43 is connected to one side of the cleaning mechanism 30 along the first direction X. The first drive member 42 is used to drive the first chain 43 to drive the cleaning mechanism 30 to slide along the guide rail 20. The second drive member 44 is mounted on the bracket 41 and is spaced apart from the first drive member 42 along the first direction X. The second drive member 44 has a second chain 45, which is connected to the other side of the cleaning mechanism 30 along the first direction X. The second drive member 44 is used to drive the second chain 45 to drive the cleaning mechanism 30 to slide along the guide rail 20, and the sliding direction of the cleaning mechanism 30 driven by the second drive member 44 is opposite to the sliding direction of the cleaning mechanism 30 driven by the first drive member 42. The first driving member 42 and the second driving member do not work simultaneously. When the first driving member 42 drives the first chain 43 to tension and contract, the first chain 43 pulls the cleaning mechanism 30 to slide along the guide rail 20. The second driving member 44 does not work, allowing the second chain 45 to be released and extended. As the cleaning mechanism 30 moves, it drives the second chain 45 to move. After cleaning is completed, the first driving member 42 stops working, and the second driving member 44 starts, driving the second chain 45 to tension and contract. The second chain 45 drives the cleaning mechanism 30 to slide in the opposite direction along the guide rail 20. As the cleaning mechanism 30 moves in the opposite direction, it drives the first chain 43 to move synchronously, allowing the first chain 43 to release and extend from the first driving member 42. Through the cooperation of the first driving member 42, the second driving member 44, the first chain 43, and the second chain 45, the cleaning mechanism 30 reciprocates along the guide rail 20, thereby achieving the cleaning of the pool 10 by the cleaning mechanism 30 and the reset of the cleaning mechanism 30 after cleaning impurities.
[0044] In some embodiments, the first drive component 42 is an electric hoist, and the first chain 43 is the chain of the electric hoist. The second drive component 44 is an electric hoist, and the second chain 45 is the chain of the electric hoist.
[0045] See Figure 3 and Figure 4As shown, in some embodiments, the drive mechanism 40 further includes a first guide wheel 46, a second guide wheel 47, a first guide shaft 48, and a second guide shaft 49. The first guide shaft 48 and the second guide shaft 49 are respectively connected inside the pool body 10. The first guide wheel 46 is rotatably sleeved on the first guide shaft 48, and the second guide wheel 47 is rotatably sleeved on the second guide shaft 49. A first chain 43 passes through the first guide wheel 46 and is connected to the cleaning mechanism 30, and a second chain 45 passes through the second guide wheel 47 and is connected to the cleaning mechanism 30. The first guide wheel 46 provides guidance for the movement trajectory of the first chain 43, facilitating the first chain 43 to pull the cleaning mechanism 30. The second guide wheel 47 provides guidance for the movement trajectory of the second chain 45, facilitating the second chain 45 to pull the cleaning mechanism 30. The first guide wheel 46 rotatably engages with the first guide shaft 48, and the second guide wheel 47 rotatably engages with the second guide shaft 49, reducing wear during the movement of the first chain 43 and the second chain 45. Because the guide rail 20 limits the movement trajectory of the cleaning mechanism 30, the cleaning mechanism 30 will not disengage from the guide rail 20. Therefore, when the first chain 43 or the second chain 45 pulls the cleaning mechanism 30, it only needs to apply a force that allows it to move along the guide rail 20. Even if the first chain 43 or the second chain 45 experiences slight axial movement on the corresponding first guide wheel 46 or second guide wheel 47, it will not affect the pulling force of the first chain 43 and the second chain 45 on the cleaning mechanism 30. The first guide wheel 46 and the second guide wheel 47 can be in the shape of guide sleeves.
[0046] See Figure 3 and Figure 4As shown, in some embodiments, the first chain 43 extends downward from the first drive member 42 along a third direction Z, and then extends to the cleaning mechanism 30 along a first direction X. The first guide wheel 46 is located at the reversing position of the first chain 43. The second chain 45 extends downward from the second drive member 44 along a third direction Z, and then extends in the opposite direction X to the cleaning mechanism 30. The second guide wheel 47 is located at the reversing position of the second chain 45. The arrangement of the first guide wheel 46 and the second guide wheel 47 ensures the stable reversing of the first chain 43 and the second chain 45. This not only facilitates the movement of the cleaning mechanism 30, but also, when the guide rail 20 is U-shaped, facilitates the movement of the cleaning mechanism 30 from the guide rail 20 at the bottom of the pool to the guide rail 20 on the first side wall 101 or the second side wall 102. As the first chain 43 pulls the cleaning mechanism 30 past the connection point between the pool bottom and the first side wall 101, the first chain 43 gradually disengages from the first guide wheel 46. Because the first guide wheel 46 has a certain distance from the guide rail 20, it does not interfere with the movement of the cleaning mechanism 30, allowing the cleaning mechanism 30 to continue moving. When the cleaning mechanism 30 moves to the first side wall 101, the second chain 45 connected to the other side of the cleaning mechanism 30 gradually comes into contact with the first guide wheel 46, which guides the reversal of the second chain 45. Correspondingly, when the cleaning mechanism 30 moves from the connection point between the pool bottom and the second side wall 102 to the second side wall 102, the second chain 45 disengages from the second guide wheel 47, which guides the reversal of the first chain 43.
[0047] It should be noted that the positions of the first guide shaft 48 and the second guide shaft 49 are set based on the premise that they do not affect the movement of the cleaning mechanism 30 along the guide rail 20. There is sufficient distance between the first guide shaft 48 and one corner position of the guide rail 20, and between the second guide shaft 49 and the other corner position of the guide rail 20, so that the cleaning mechanism 30 can pass through the corner positions smoothly without being affected by the first guide wheel 46 or the second guide wheel 47.
[0048] See Figure 3 and Figure 4 As shown, in some embodiments, multiple guide rails 20 are provided, and the multiple guide rails 20 are spaced apart along the second direction Y. Each guide rail 20 is equipped with a cleaning mechanism 30. The sum of the lengths of each cleaning component 31 along the second direction Y is equal to the dimension of the pool body 10 along the second direction Y, so as to facilitate the comprehensive cleaning of the bottom of the pool by each cleaning mechanism 30.
[0049] When multiple guide rails 20 are provided, multiple cleaning mechanisms 30 are provided accordingly. Each cleaning mechanism 30 has a corresponding drive mechanism 40. Each drive mechanism 40 has a corresponding first guide wheel 46 and second guide wheel 47. The first guide wheel 46 of each drive mechanism 40 can share a first guide shaft 48, and the second guide wheel 47 of each drive mechanism 40 can share a second guide shaft 49.
[0050] The working process of this utility model is as follows:
[0051] Before entering the equalization tank, wastewater first passes through a preliminary filter in the collection tank to intercept large particles of impurities. During the operation of the equalization tank, the drive mechanism 40 is periodically activated to drive the cleaning mechanism 30 to clean the impurities at the bottom of the tank.
[0052] The first driving component 42 drives the first chain 43 to tension and contract, pulling the connecting frame 32 to move to the left along the guide rail 20. During this movement, the cleaning component 31 cleans the impurities at the bottom of the pool. The second driving component 44 releases the second chain 45, causing it to move with the connecting frame 32. As the connecting frame 32 approaches the first sidewall 101, the cleaning component 31 pushes the cleaned impurities into the collection pit 11 on the left side for collection. As the first chain 43 continues to pull the connecting frame 32 along the guide rail 20, the cleaning component 31 moves with the connecting frame 32 until it comes into contact with the first sidewall 101, cleaning the impurities on the first sidewall 101. The cleaned impurities fall off the first sidewall 101. After cleaning the first sidewall 101, the first driving component 42 is turned off, and the second driving component 44 is activated. The second driving component 44 drives the second chain 45 to tension and contract, pulling the connecting frame 32 to move in the opposite direction along the guide rail 20. As the cleaning component 31 moves downward along the guide rail 20 on the first sidewall 101, the impurities cleaned by the cleaning component 31 on the first sidewall 101 lose the support of the cleaning component 31 and gradually fall into the collection pit 11 below. The second chain 45 continues to pull the connecting frame 32 to the right along the guide rail 20 at the bottom of the pool, allowing the cleaning component 31 to clean the bottom of the pool again, pushing the remaining impurities at the bottom of the pool into the collection pit 11 on the right side. As the cleaning component 31 moves upward along the guide rail 20 on the second sidewall 102, the cleaning component 31 cleans the impurities on the second sidewall 102, and the cleaned impurities fall off the second sidewall 102. After the second sidewall 102 is cleaned, the second drive component 44 is turned off, and the first drive component 42 is turned on again. The first drive component drives the first chain 43 to pull the connecting component downward along the guide rail 20, and the impurities that have fallen off the second sidewall 102 fall into the collection pit 11 on the right side. This cycle is repeated to thoroughly clean the impurities at the bottom of the pool, and then the impurities in the collection pit 11 are periodically discharged.
[0053] In summary, this utility model embodiment provides an easy-to-clean regulating tank. A sludge collection pit 11 is provided at the bottom of the tank body 10, and a drain hole 12 is provided on the pit wall. A guide rail 20 is also provided at the bottom of the tank body 10, and a cleaning mechanism 30 is installed on the guide rail 20. The cleaning mechanism 30 is driven to slide along the guide rail 20 by a drive mechanism 40. When the cleaning mechanism 30 slides along the guide rail 20, the cleaning component 31 of the cleaning mechanism 30 cleans the impurities deposited and attached to the bottom of the tank. As the cleaning mechanism 30 slides along the guide rail 20, the cleaning component 31 sweeps the impurities from the bottom of the tank into the sludge collection pit 11. After the impurities are collected in the sludge collection pit 11, they are discharged through the drain hole 12, thereby achieving automated cleaning of the bottom of the regulating tank. This eliminates the need for manual entry into the regulating tank for cleaning, reduces labor intensity, improves cleaning efficiency, and reduces the safety risks such as oxygen deficiency and poisoning faced by cleaning personnel.
[0054] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.
Claims
1. A conditioning bath that is easy to clean, having a first direction (X) and a second direction (Y) perpendicular to each other, characterized in that, include: The pool body (10) has a sludge collection pit (11) on one or both sides of the bottom of the pool body (10) along the first direction (X). The length direction of the sludge collection pit (11) extends along the second direction (Y). The pit wall of the sludge collection pit (11) is provided with a sludge discharge hole (12). A guide rail (20) is provided at least partially along the first direction (X) at the bottom of the pool body (10); A cleaning mechanism (30) is slidably mounted on the guide rail (20), and the cleaning mechanism (30) includes a cleaning component (31), which abuts against the inner wall of the pool body (10); A drive mechanism (40) is connected to the cleaning mechanism (30), and the drive mechanism (40) is used to drive the cleaning mechanism (30) to slide along the guide rail (20).
2. The easy-to-clean conditioning tub of claim 1, wherein, It also has a third direction (Z), wherein the first direction (X), the second direction (Y), and the third direction (Z) are mutually perpendicular; The pool body (10) has a first sidewall (101) and a second sidewall (102) arranged opposite to each other along the first direction (X). Part of the guide rail (20) extends from the bottom of the pool along the third direction (Z) and is arranged on the first sidewall (101). Part of the guide rail (20) extends from the bottom of the pool along the third direction (Z) and is arranged on the second sidewall (102).
3. The easy-to-clean conditioning bath according to claim 1 or 2, characterized in that The guide rails (20) are provided in multiple ways, and the multiple guide rails (20) are spaced apart along the second direction (Y). Each guide rail (20) is equipped with a cleaning mechanism (30), and the sum of the lengths of each cleaning component (31) along the second direction (Y) is equal to the size of the pool body (10) along the second direction (Y).
4. The easy-to-clean conditioning tub of claim 1, wherein, The bottom wall of the sludge collection pit (11) is provided with a first end (111) and a second end (112) arranged opposite to each other along the second direction (Y). The bottom wall of the sludge collection pit (11) is inclined downward from the first end (111) to the second end (112). The drain hole (12) is located close to the second end (112).
5. The easy-to-clean conditioning bath of claim 4, wherein, A drain pipe (13) is installed at the drain hole (12), and a drain valve (14) is installed on the drain pipe (13).
6. The easy-to-clean conditioning bath of claim 1 or 2, wherein, The drive mechanism (40) includes: A support (41) is provided on the outside of the pool body (10); A first driving member (42) is mounted on the bracket (41). The first driving member (42) is provided with a first chain (43). The first chain (43) is connected to one side of the cleaning mechanism (30) along the first direction (X). The first driving member (42) is used to drive the first chain (43) to drive the cleaning mechanism (30) to slide along the guide rail (20). The second driving member (44) is mounted on the bracket (41). The second driving member (44) and the first driving member (42) are spaced apart along the first direction (X). The second driving member (44) is provided with a second chain (45). The second chain (45) is connected to the other side of the cleaning mechanism (30) along the first direction (X). The second driving member (44) is used to drive the second chain (45) to drive the cleaning mechanism (30) to slide along the guide rail (20). The sliding direction of the cleaning mechanism (30) driven by the second driving member (44) is opposite to the sliding direction of the cleaning mechanism (30) driven by the first driving member (42).
7. The easy-to-clean conditioning bath of claim 6, wherein, The drive mechanism (40) further includes a first guide wheel (46), a second guide wheel (47), a first guide shaft (48), and a second guide shaft (49). The first guide shaft (48) and the second guide shaft (49) are respectively connected inside the pool body (10). The first guide wheel (46) is rotatably sleeved on the first guide shaft (48), and the second guide wheel (47) is rotatably sleeved on the second guide shaft (49). The first chain (43) passes through the first guide wheel (46) and is connected to the cleaning mechanism (30). The second chain (45) passes through the second guide wheel (47) and is connected to the cleaning mechanism (30).
8. The easy-to-clean conditioning bath of claim 7, wherein, It also has a third direction (Z), and the first direction (X), the second direction (Y) and the third direction (Z) are perpendicular to each other; the first chain (43) extends downward from the first drive member (42) along the third direction (Z) and then extends along the first direction (X) to the cleaning mechanism (30), and the first guide wheel (46) is located at the reversing position of the first chain (43); the second chain (45) extends downward from the second drive member (44) along the third direction (Z) and then extends in the opposite direction of the first direction (X) to the cleaning mechanism (30), and the second guide wheel (47) is located at the reversing position of the second chain (45).
9. The easy-to-clean conditioning tub of claim 1, wherein, The cleaning mechanism (30) further includes a connecting frame (32), which is slidably connected to the guide rail (20), the cleaning component (31) is connected to the connecting frame (32), and the driving mechanism (40) is connected to the connecting frame (32).