Quantitative CIP cleaning equipment

By combining a liquid level sensor and a motion mechanism with a threaded groove and stop design, the CIP cleaning equipment achieves quantitative dispensing and uniform spraying of cleaning fluid, solving the problem of inaccurate cleaning fluid dispensing, improving cleaning effect and reducing cost.

CN223902490UActive Publication Date: 2026-02-13GUANGDONG HUAHONG BIOLOGICAL HEALTH CO LTD
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Patent Information

Application Number
CN202520379355.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-02-13
Estimated Expiration
2035-03-06

AI Technical Summary

Technical Problem

The amount of cleaning fluid added in existing CIP cleaning equipment is difficult to control precisely, leading to waste or poor cleaning results.

Method used

By employing a liquid level sensor and motion mechanism in conjunction with a threaded groove and stop design, the cleaning fluid can be quantitatively dispensed, and the uniform spraying of the cleaning fluid is ensured through a gear ring structure.

Benefits of technology

It enables quantitative dosing and uniform spraying of cleaning solution, improving cleaning efficiency, reducing production costs, and minimizing waste of cleaning solution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cleaning equipment, and discloses quantitative CIP cleaning equipment which comprises a liquid inlet box, and a square box is fixedly installed at the top end of the liquid inlet box. According to the quantitative CIP cleaning equipment, when cleaning liquid in the liquid inlet box touches a liquid level sensor, a driving motor operates at the moment, due to the fact that a threaded rod is in threaded sleeving connection with a threaded groove, a rotating shaft drives a round rod to move through the threaded rod, then the round rod drives a first check block and a second check block to move at the same time, and due to the fact that a limiting block limits a moving block, the moving block can move more stably. At the moment, a first check block and a second check block drive a moving block to move downwards, at the moment, the first check block is sleeved with the interior of the liquid inlet box downwards, so that the square box cleaning liquid cannot enter the interior of the liquid inlet box, and meanwhile, the second check block is released from the liquid inlet box downwards; and therefore, the cleaning liquid in the liquid inlet box enters the box body, and the effect of quantitatively feeding the cleaning liquid is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cleaning equipment technical field, more specifically, the utility model relates to a kind of quantitative CIP cleaning equipment. BACKGROUND

[0002] CIP cleaning is not only disassembled production equipment, but also can be used simple operation method safe and automatic cleaning system, almost be introduced to all food, beverage and pharmaceutical etc. factory, CIP cleaning not only can clean machine, but also can control microorganism.

[0003] In prior art, since CIP cleaning equipment has the advantages of improving production efficiency, improving cleaning effect, reducing production cost, saving labor and improving equipment life, it is widely used in advanced food industry, and most of the existing CIP cleaning equipment is often realized by spraying cleaning liquid into the machine to realize the function of cleaning without disassembly. Although this method has basic cleaning function, the dosage of cleaning liquid is often manually added by the operator according to experience, so that certain error is caused. When too much cleaning liquid is put, it will cause certain waste, and thus increase the production cost. When less cleaning liquid is put, it will affect the cleaning effect, which brings inconvenience to the daily use of the operator, so it needs to be improved. CONTENT OF THE UTILITY MODEL

[0004] In order to overcome the shortcomings of prior art, the utility model provides a quantitative CIP cleaning equipment, which has the advantage of quantitative cleaning liquid.

[0005] In order to achieve the above purpose, the utility model provides the following technical scheme: a quantitative CIP cleaning equipment, comprising:

[0006] Liquid inlet tank, the top end of the liquid inlet tank is fixedly installed with a square box, the inside of the left side of the square box is fixedly sleeved with a liquid inlet pipe;

[0007] Movement mechanism, the movement mechanism is arranged at the top end of the square box;

[0008] The driving motor is fixedly connected with the top end of the square box, the other end of the driving motor output shaft is fixedly sleeved with a rotating shaft, the outer surface of the rotating shaft is movably sleeved with a round rod, the inside of the round rod is provided with a threaded groove, the threaded groove is movably sleeved with a screw rod, the inside of the screw rod top end is movably sleeved with the bottom end of the outer surface of the rotating shaft, the top end and the bottom end of the round rod are fixedly installed with a first stop block and a second stop block respectively, the inside of the first stop block is movably sleeved with the outer surface of the rotating shaft, the outer surface of the second stop block is movably sleeved with the inside of the liquid inlet tank, the outer surfaces of the first stop block and the second stop block are movably sleeved with sealing rings respectively, the sealing ring on the second stop block is matched with the inside of the liquid inlet tank, and the outer surfaces of the first stop block and the second stop block are fixedly installed with a moving block.

[0009] As a preferred technical scheme of the utility model, the inside of the outer surface of the liquid inlet tank is movably sleeved with a threaded sleeve, the threaded sleeve is movably sleeved with a liquid level sensor, and the top end of the liquid level sensor is fixedly installed with a screwing block.

[0010] As a preferred technical scheme of the utility model, the bottom end of the outer surface of the liquid inlet tank is movably sleeved with a tank body, the inside of the tank body bottom end is movably sleeved with a discharge pipe, the discharge pipe is provided with a valve, and the outer surface of the tank body is movably sleeved with a base.

[0011] As a preferred technical scheme of the utility model, the inside of the tank body is movably sleeved with a fixed ring, and the bottom end of the fixed ring is movably sleeved with a round plate.

[0012] As a preferred technical scheme of the utility model, the top end of the tank body is movably sleeved with a power motor, the other end of the power motor output shaft is movably sleeved with a rotating shaft, and the bottom end of the outer surface of the rotating shaft is movably sleeved with a first gear.

[0013] As a preferred technical scheme of the utility model, the outer surface of the first gear is movably sleeved with a first gear ring, the inside of the first gear ring is movably sleeved with a vertical pipe, the outer surface of the vertical pipe is movably sleeved with a partition plate, the partition plate is movably sleeved with the inside of the tank body, the vertical pipe is provided with a nozzle, and the top end of the outer surface of the vertical pipe is movably sleeved with the inside of the bottom end of the round plate.

[0014] As a preferred technical scheme of the utility model, the outer surface of the vertical pipe is movably sleeved with a second gear, the outer surface of the second gear is movably sleeved with a second gear ring, and the top end of the second gear ring is movably sleeved with the bottom end of the round plate.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] 1. This quantitative CIP cleaning device, when the cleaning fluid inside the inlet tank touches the liquid level sensor, the drive motor will run. Since the screw is threadedly connected to the threaded groove, the rotating shaft will drive the round rod to move through the screw. Then, the round rod will simultaneously drive the first stop and the second stop to move. Due to the limiting block limiting the moving block, the first stop and the second stop will drive the moving block to move downward. At this time, the first stop will be sleeved inside the inlet tank in the downward movement, so that the cleaning fluid in the square box cannot enter the inside of the inlet tank. At the same time, the second stop will be released from the inlet tank in the downward movement, so that the cleaning fluid inside the inlet tank can enter the inside of the box, thereby achieving the effect of quantitative dispensing of cleaning fluid.

[0017] 2. In this quantitative CIP cleaning equipment, since the first gear meshes with the first gear ring, when the power motor is running, the rotating shaft will drive the first gear ring to rotate through the first gear. At this time, the first gear ring will drive the four vertical pipes to revolve as a whole. Since the second gear meshes with the second gear ring, the vertical pipes will rotate simultaneously when they drive the second gear to revolve. Due to the design of the nozzle, the cleaning liquid inside the vertical pipes can be sprayed into the tank. At this time, the nozzle will spray the cleaning agent during the revolution and rotation, thereby enabling the cleaning liquid to be sprayed evenly and efficiently into the tank. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the rear view structure of this utility model;

[0020] Figure 3 This is a cross-sectional structural diagram of the present invention;

[0021] Figure 4 This is a cross-sectional view of the liquid level sensor of this utility model;

[0022] Figure 5 This is a cross-sectional view of the circular plate of this utility model.

[0023] In the diagram: 1. Inlet tank; 2. Square box; 3. Drive motor; 4. Rotating shaft; 5. Round rod; 6. First stop block; 7. Second stop block; 8. Sealing ring; 9. Moving block; 10. Limiting block; 11. Threaded groove; 12. Screw; 13. Inlet pipe; 14. Threaded sleeve; 15. Liquid level sensor; 16. Tightening block; 17. Box body; 18. Base; 19. Fixing ring; 20. Round plate; 21. Power motor; 22. Rotating shaft; 23. First gear; 24. First gear ring; 25. Vertical pipe; 26. Nozzle; 27. Second gear; 28. Second gear ring; 29. ​​Discharge pipe; 30. Valve. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.

[0025] As shown in Figures 1 to 5 The present application provides a kind of quantitative CIP cleaning equipment, comprising:

[0026] Liquid inlet tank 1, the top of liquid inlet tank 1 is fixedly installed with square box 2, the left side of square box 2 is fixedly sleeved with liquid inlet pipe 13 in the inside;

[0027] Movement mechanism, movement mechanism is set at the top of square box 2;

[0028] Wherein, movement mechanism includes drive motor 3, the bottom of drive motor 3 is fixedly connected with the top of square box 2, the other end of drive motor 3 output shaft is fixedly sleeved with shaft 4, the outer surface of shaft 4 is movably sleeved with round bar 5, the inside of round bar 5 is provided with thread groove 11, the inside of thread groove 11 is screwedly sleeved with screw rod 12, the inside of the top of screw rod 12 is fixedly sleeved with the bottom of the outer surface of shaft 4, the top and bottom of round bar 5 are fixedly installed with first stop block 6 and second stop block 7 respectively, the inside of first stop block 6 is movably sleeved with the outer surface of shaft 4, the outer surface of second stop block 7 is movably sleeved with the inside of liquid inlet tank 1, the outer surface of first stop block 6 and second stop block 7 is all provided with sealing ring 8, the sealing ring 8 on second stop block 7 is in close contact with the inside of liquid inlet tank 1, the outer surface of first stop block 6 and second stop block 7 is fixedly installed with movement block 9, the outer surface of movement block 9 is movably connected with limit block 10, the outer surface of limit block 10 is fixedly connected with the inside of liquid inlet tank 1.

[0029] When the cleaning liquid inside the liquid inlet pipe 13 enters the inside of the liquid inlet tank 1 through the square box 2, the second block 7 will block the cleaning liquid inside the liquid inlet tank 1 at this time. When the driving motor 3 operates, the shaft 4 will drive the screw rod 12 to rotate at this time. Since the screw rod 12 is screwed with the threaded groove 11, the screw rod 12 will drive the round rod 5 to move through the threaded groove 11 at this time. The first block 6 and the second block 7 will be driven to move downward by the round rod 5 at this time. Since the limiting block 10 limits the movement of the moving block 9, the first block 6 and the second block 7 will drive the moving block 9 to move downward. Subsequently, the first block 6 will be screwed in the inside of the top end of the liquid inlet tank 1 during the downward movement, thereby blocking the cleaning liquid inside the square box 2. At the same time, the second block 7 will remove the blockage of the liquid inlet tank 1 during the downward movement, so that the cleaning liquid inside the liquid inlet tank 1 can enter the inside of the tank 17.

[0030] The outer surface of the liquid inlet tank 1 is internally screwed with a threaded sleeve 14. The threaded sleeve 14 is internally fixedly sleeved with a liquid level sensor 15. The top end of the liquid level sensor 15 is fixedly installed with a twisting block 16.

[0031] Due to the design of the liquid level sensor 15, when the cleaning liquid contacts the liquid level sensor 15, the liquid level sensor 15 will send a signal to the driving motor 3, so that the driving motor 3 is started to operate. Since the threaded sleeve 14 is internally screwed with the liquid inlet tank 1, when the operator twists the twisting block 16, the twisting block 16 will drive the threaded sleeve 14 to rotate through the liquid level sensor 15 at this time. The threaded sleeve 14 as a whole will move up and down along the inside of the liquid inlet tank 1, so as to adjust the amount of cleaning liquid according to the use demand.

[0032] The bottom end of the outer surface of the liquid inlet tank 1 is fixedly sleeved with a tank 17. The bottom end of the tank 17 is internally fixedly sleeved with a discharge pipe 29. The discharge pipe 29 is provided with a valve 30. The outer surface of the tank 17 is fixedly sleeved with a base 18.

[0033] Due to the design of the discharge pipe 29, the material or the cleaning liquid can be discharged from the inside of the tank 17 through the discharge pipe 29. Due to the design of the valve 30, the operator can conveniently open and close the discharge pipe 29. Due to the design of the base 18, the tank 17 as a whole can be stably placed on the ground.

[0034] The top end of the inside of the tank 17 is fixedly installed with a fixed ring 19. The bottom end of the inside of the fixed ring 19 is movably sleeved with a circular plate 20.

[0035] Since the circular plate 20 is movably sleeved with the fixed ring 19, the circular plate 20 can rotate in the inside of the fixed ring 19.

[0036] The top end of the box body 17 is fixedly provided with a power motor 21, the other end of the output shaft of the power motor 21 is fixedly sleeved with a rotating shaft 22, and the bottom end of the outer surface of the rotating shaft 22 is fixedly provided with a first gear 23.

[0037] When the power motor 21 operates, the rotating shaft 22 drives the first gear 23 to rotate.

[0038] The outer surface of the first gear 23 is meshedly connected with a first gear ring 24, the inner portion of the first gear ring 24 is movably sleeved with a vertical pipe 25, the outer surface of the vertical pipe 25 is movably sleeved with a partition plate, the partition plate is movably sleeved with the inner portion of the box body 17, the vertical pipe 25 is provided with a spray port 26, and the top end of the outer surface of the vertical pipe 25 is movably sleeved with the inner portion of the bottom end of the circular plate 20.

[0039] Since the first gear 23 is meshed with the first gear ring 24, when the first gear 23 rotates, the first gear ring 24 is driven to rotate, and at this time, the first gear ring 24 drives the circular plate 20 to rotate through the four vertical pipes 25, and since the spray port 26 is designed, the cleaning liquid in the vertical pipe 25 can be sprayed out, and when the vertical pipe 25 rotates, the spray port 26 sprays the cleaning liquid into the box body 17 in rotation, and since the partition plate is designed, the structure in the box body 17 can be protected.

[0040] The outer surface of the vertical pipe 25 is fixedly sleeved with a second gear 27, the outer surface of the second gear 27 is meshedly connected with a second gear ring 28, and the top end of the second gear ring 28 is fixedly connected with the bottom end of the circular plate 20.

[0041] Since the second gear 27 is meshedly connected with the second gear ring 28, when the vertical pipe 25 drives the second gear 27 to rotate, the second gear ring 28 is affected to rotate, at this time, the vertical pipe 25 rotates while revolving, and at the same time, the spray port 26 efficiently sprays the cleaning liquid into the box body 17 in revolution and rotation.

[0042] The working principle and use process of the utility model are as follows:

[0043] First, the operator will pour the cleaning liquid through the liquid inlet pipe 13 into the inside of the square box 2, and then the cleaning liquid will flow through the square box 2 to the inside of the liquid inlet tank 1. Since the outer surface of the second block 7 is movably sleeved with the inside of the liquid inlet tank 1, the second block 7 will block the inside of the bottom end of the liquid inlet tank 1, so that the cleaning liquid stays in the inside of the liquid inlet tank 1. When the cleaning liquid in the inside of the liquid inlet tank 1 touches the bottom end of the liquid level sensor 15, the liquid level sensor 15 will send a command to the driving motor 3 at this time, so that the driving motor 3 is started to operate. At this time, the rotating shaft 4 will drive the screw rod 12 to rotate. Since the outer surface of the screw rod 12 is threadedly sleeved with the threaded groove 11, when the screw rod 12 rotates, it will drive the circular rod 5 to move through the threaded groove 11. At this time, the circular rod 5 will drive the first block 6 and the second block 7 to move at the same time. At this time, the first block 6 and the second block 7 will drive two groups of moving blocks 9 to move respectively. Since the two groups of limiting blocks 10 are designed inside, the movement of the two groups of moving blocks 9 will be limited, so that the first block 6 and the second block 7 can only move up and down. At this time, the first block 6 and the second block 7 will move downward under the driving of the circular rod 5, and then the first block 6 will be sleeved in the inside of the top end of the liquid inlet tank 1 in the downward movement, so as to block the inside of the top end of the liquid inlet tank 1, so that the cleaning liquid in the inside of the square box 2 cannot enter the inside of the liquid inlet tank 1. At the same time, the outer surface of the second block 7 will be sleeved with the inside of the bottom end of the liquid inlet tank 1 in the downward movement, so that the second block 7 cannot block the inside of the bottom end of the liquid inlet tank 1. At this time, the cleaning liquid in the inside of the liquid inlet tank 1 will enter the inside of the tank body 17, so as to realize the function of quantitative feeding of the cleaning liquid.

[0044] When the cleaning liquid enters the inside of the box 17, it will fall to the inside of the circular plate 20, and then flow to the inside of the vertical pipe 25 via the inside of the circular plate 20, due to the design of the spray port 26, the cleaning liquid entering the inside of the vertical pipe 25 will be sprayed from the spray port 26, at this time the operator starts the power motor 21, at this time the rotating shaft 22 will drive the first gear 23 to rotate, due to the meshing connection between the outer surface of the first gear 23 and the outer surface of the first gear ring 24, when the first gear 23 rotates, it will drive the first gear ring 24 to rotate, at this time the first gear ring 24 will drive the circular plate 20 to rotate around the sleeve joint of the fixed ring 19 as the axis, at the same time the second gear 27 will rotate under the driving of the vertical pipe 25, due to the meshing connection between the outer surface of the second gear 27 and the outer surface of the second gear ring 28, therefore when the vertical pipe 25 revolves, it will be affected by the second gear ring 28 and simultaneously rotate, thereby making the vertical pipe 25 revolve and rotate at the same time, in this process, the partition plate will revolve in the inside of the box 17 under the driving of the vertical pipe 25, and the vertical pipe 25 will revolve in the inside of the partition plate, at this time the spray port 26 will spray the cleaning liquid in revolution and rotation, thereby realizing the function of uniformly and efficiently spraying the cleaning liquid in the inside of the box 17, due to the design of the partition plate, it will be able to prevent the cleaning liquid and impurities from contacting the first gear 23, the first gear ring 24, the second gear 27 and the second gear ring 28, thereby being able to protect the first gear 23, the first gear ring 24, the second gear 27 and the second gear ring 28.

[0045] It is to be noted that the relative terms such as first and second etc. are used herein merely to distinguish one entity or operation from another, without necessarily requiring or implying any such actual relationship or order between such entities or operations. Moreover, the terms "comprising", "including", or any other variant thereof are intended to cover non-exclusive inclusion, so that processes, methods, articles or apparatuses including a series of elements not only include those elements, but also include other elements not explicitly listed or inherent to such processes, methods, articles or apparatuses.

[0046] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A dosing CIP cleaning apparatus, characterized in that, Include: Liquid inlet tank (1), the top of the liquid inlet tank (1) is fixedly installed with a square box (2), the left side of the square box (2) is fixedly sleeved with a liquid inlet pipe (13); Movement mechanism, the movement mechanism is arranged at the top of the square box (2); Wherein, the movement mechanism includes a drive motor (3), the bottom of the drive motor (3) is fixedly connected with the top of the square box (2), the other end of the output shaft of the drive motor (3) is fixedly sleeved with a rotating shaft (4), the outer surface of the rotating shaft (4) is movably sleeved with a round bar (5), the inside of the round bar (5) is provided with a threaded groove (11), the threaded groove (11) is internally threaded with a screw rod (12), the inside of the top of the screw rod (12) is fixedly sleeved with the bottom of the outer surface of the rotating shaft (4), the top and bottom of the round bar (5) are fixedly installed with a first stop block (6) and a second stop block (7) respectively, the inside of the first stop block (6) is movably sleeved with the outer surface of the rotating shaft (4), the outer surface of the second stop block (7) is movably sleeved with the inside of the liquid inlet tank (1), the outer surfaces of the first stop block (6) and the second stop block (7) are both provided with a sealing ring (8), the sealing ring (8) on the second stop block (7) is in close contact with the inside of the liquid inlet tank (1), the outer surfaces of the first stop block (6) and the second stop block (7) are both fixedly installed with a moving block (9), the outer surface of the moving block (9) is movably connected with a limiting block (10), the outer surface of the limiting block (10) is fixedly connected with the inside of the liquid inlet tank (1).

2. A quantitative CIP cleaning apparatus according to claim 1, characterized in that: The inside of the outer surface of the liquid inlet tank (1) is threaded with a threaded sleeve (14), the inside of the threaded sleeve (14) is fixedly sleeved with a liquid level sensor (15), the top of the liquid level sensor (15) is fixedly installed with a twisting block (16).

3. A quantitative CIP cleaning apparatus according to claim 1, characterized in that: The bottom of the outer surface of the liquid inlet tank (1) is fixedly sleeved with a box body (17), the inside of the bottom of the box body (17) is fixedly sleeved with a discharge pipe (29), the discharge pipe (29) is provided with a valve (30), the outer surface of the box body (17) is fixedly sleeved with a base (18).

4. A CIP cleaning apparatus according to claim 3, wherein: The top of the inside of the box body (17) is fixedly installed with a fixed ring (19), the inside of the bottom of the fixed ring (19) is movably sleeved with a round plate (20).

5. A CIP cleaning apparatus according to claim 3, wherein: The top of the box body (17) is fixedly installed with a power motor (21), the other end of the output shaft of the power motor (21) is fixedly sleeved with a rotating shaft (22), the bottom of the outer surface of the rotating shaft (22) is fixedly installed with a first gear (23).

6. A quantitative CIP cleaning apparatus according to claim 5, characterized in that: The outer surface of the first gear (23) is meshingly connected with a first gear ring (24), the inside of the first gear ring (24) is movably sleeved with a vertical pipe (25), the outer surface of the vertical pipe (25) is movably sleeved with a partition plate, the partition plate is movably sleeved with the inside of the box body (17), the vertical pipe (25) is provided with a nozzle (26), the top of the outer surface of the vertical pipe (25) is movably sleeved with the inside of the bottom of the round plate (20).

7. A quantitative CIP cleaning apparatus according to claim 6, characterized in that: The outer surface of the vertical pipe (25) is fixedly sleeved with a second gear (27), the outer surface of the second gear (27) is meshingly connected with a second gear ring (28), and the top end of the second gear ring (28) is fixedly connected with the bottom end of the circular plate (20).