Storage equipment for reverse osmosis acidic cleaning agent
By using the rotating rotation of the barrel cover driven by a rotary motor and the disassembly cylinder in the storage device of reverse osmosis acid cleaning agent, combined with the anti-slip teeth and the anti-spray cover, the problem of uneven precipitation and removal of the cleaning agent is solved, achieving more efficient cleaning effects and convenient storage and use.
Patent Information
- Application Number
- CN202422010351.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing reverse osmosis acidic cleaning agents are prone to precipitation in storage devices, resulting in a reduced cleaning effect and cannot be evenly removed.
A storage device for reverse osmosis acidic cleaning agent is designed, and a rotating electric machine is used to drive the barrel cover and the disassembly cylinder to rotate, combining anti-slip teeth and anti-spray cover to prevent precipitation and improve cleaning efficiency.
It effectively prevents the precipitation of acidic cleaning agents, improves the cleaning effect and the cleaning speed of the disassembly cylinder, and enhances the practicality and convenience of the storage box.
Smart Images

Figure CN222947235U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of reverse osmosis acid cleaning agents, in particular to a storage device for reverse osmosis acid cleaning agents. Background Art
[0002] Reverse osmosis membrane cleaning agents are only used to clean system pollution conditions, including system scaling, microbial contamination and organic particle attachment. The purpose is to increase the desalination rate of the reverse osmosis membrane, reduce the pressure difference between the first and second stages, and thus extend the service life of the membrane. Reverse osmosis membrane cleaning agents are generally divided into acidic cleaning agents and alkaline cleaning agents.
[0003] In the prior art, when reverse osmosis acid cleaning agents are precipitated in storage devices, the cleaning effect of the reverse osmosis acid cleaning agents after they are taken out is reduced, and the reverse osmosis acid cleaning agents cannot be taken out uniformly.
[0004] Therefore, the utility model provides a storage device for reverse osmosis acid cleaning agent. Utility Model Content
[0005] The utility model aims to solve the shortcomings in the prior art and provide a storage device for a reverse osmosis acid cleaning agent.
[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a storage device for reverse osmosis acid cleaning agent, comprising a storage box, a card seat is arranged at the outer edge of the upper end of the storage box, and an anti-sedimentation component is installed in the middle of the storage box;
[0007] The anti-sedimentation assembly includes a rotating motor, a barrel cover, anti-slip teeth, a disassembly cylinder and an anti-overflow cover. The rotating motor is installed in the middle of the storage box, and the barrel cover is arranged on the top of the rotating motor. The inner wall of the barrel cover is provided with anti-slip teeth. The disassembly cylinder is inserted in the middle of the barrel cover, and the top of the disassembly cylinder is connected to the anti-overflow cover.
[0008] The top ends of the card seat and the anti-sedimentation component are provided with card covers; the middle and lower ends of the card covers are connected with adjustment components, and the top ends of the card covers are provided with material receiving components.
[0009] As a preferred embodiment, the barrel cover forms a rotating structure through a rotating motor, anti-slip teeth and a disassembly cylinder, and the disassembly cylinder and the barrel cover are tightly fitted.
[0010] The technical effect of adopting the above-mentioned further scheme is: the user first inserts the disassembly cylinder into the storage box, and drives the barrel cover and the disassembly cylinder to rotate in the storage box through the rotating motor arranged at the bottom of the storage box, which can not only prevent the reverse osmosis acid cleaning agent from being precipitated due to long-term storage, but also protect the inside of the storage box, making it easy to take the disassembly cylinder out of the barrel cover inside the storage box for cleaning, greatly improving the speed of cleaning the disassembly cylinder, and different medicines can be stored by replacing different disassembly cylinders, greatly improving the practicality and convenience of using the storage box.
[0011] As a preferred implementation, the anti-slip teeth are distributed in a ring shape about the axis of the barrel cover, and the disassembly cylinder is connected to the anti-overflow cover.
[0012] The technical effect of adopting the above-mentioned further scheme is: the rotating motor drives the barrel cover and the disassembly barrel to rotate and shake, so as to avoid the precipitation of the reverse osmosis acid cleaning agent inside the disassembly barrel, and the anti-slip teeth are arranged around the inner wall of the barrel cover. The anti-slip teeth are utilized to increase the friction between the disassembly barrel and the barrel cover, thereby greatly improving the stability of the disassembly barrel inside the barrel cover, and an expansion cover is arranged on the top of the disassembly barrel to avoid the overflow of the medicine inside the disassembly barrel when it is shaken, thereby affecting the effect of the disassembly barrel on the medicine storage.
[0013] As a preferred embodiment, the adjustment assembly includes an inner tube rack, an adjustment rack, bolts, a water suction tray and a suction nozzle, the middle and lower ends of the card cover are connected to the inner tube rack, and the adjustment rack is inserted into the lower end of the inner tube rack, bolts are passed through the middle of the inner tube rack and the adjustment rack, the bottom end of the adjustment rack is provided with a water suction tray, and the bottom end of the water suction tray is installed with a suction nozzle.
[0014] The technical effect of adopting the above further scheme is: the middle and lower ends of the card cover are connected with an adjustment component, and the inner tube rack and the adjustment rack are provided with adjustable drug delivery, so as to facilitate the delivery of drugs at depth, and the inner tube rack and the adjustment rack are positioned and locked by bolts after the adjustment is completed.
[0015] As a preferred implementation, the inner pipe rack and the adjustment frame form a fixed structure through bolts, and the water suction plate and the suction nozzle are fixedly connected.
[0016] The technical effect of adopting the above further solution is: the medicine inside the disassembly cylinder is evenly transported by using the annular water suction disc, and multiple groups of suction nozzles are arranged on the water suction disc to increase the speed of medicine transportation.
[0017] As a preferred embodiment, the material receiving assembly includes a material delivery pipe, a water pump, a material receiving pipe, a discharge pipe and a discharge nozzle. The top of the card cover is provided with a material delivery pipe, and the top of the material delivery pipe is connected to the water pump. The upper end of the water pump is connected to the material receiving pipe, the right side of the material receiving pipe is connected to the discharge pipe, and the outer surface of the discharge pipe is provided with a discharge nozzle.
[0018] The technical effect of adopting the above-mentioned further scheme is: a card seat is provided at the top outer edge of the storage box, and the card cover is engaged on the card seat for assembly and sealing. A material receiving assembly is provided at the top of the card cover, and the water pump is turned on to transport the medicine water from the inside of the disassembly cylinder to the inside of the feed pipe and the material receiving pipe through the inner pipe rack, the adjustment rack and the suction nozzle of the water absorption plate, so as to facilitate the feeding process of the medicine inside the disassembly cylinder.
[0019] As a preferred embodiment, the material delivery pipe is connected to the material receiving pipe and the material discharge pipe through a water pump, and four groups of discharge nozzles are provided.
[0020] The technical effect of adopting the above further solution is: by arranging four groups of discharge nozzles at the upper end of the discharge pipe, the speed of drug discharge from the discharge nozzles is greatly improved.
[0021] Compared with the prior art, the advantages and positive effects of the utility model are:
[0022] The user first inserts the disassembly cylinder into the storage box, and the rotating motor arranged at the bottom of the storage box drives the barrel cover and the disassembly cylinder to rotate in the storage box, which can not only prevent the reverse osmosis acid cleaning agent from being precipitated due to long-term storage, but also protect the inside of the storage box, making it easy to take the disassembly cylinder out of the barrel cover inside the storage box for cleaning, greatly improving the speed of cleaning the disassembly cylinder, and different medicines can be stored by replacing different disassembly cylinders, which greatly improves the practicality and convenience of the storage box. The rotating motor drives the barrel cover and the disassembly cylinder to rotate and shake, so as to avoid the reverse osmosis acid cleaning agent inside the disassembly cylinder from precipitating medicines, and anti-skid teeth are arranged around the inner wall of the barrel cover, and the friction between the disassembly cylinder and the barrel cover is increased by the anti-skid teeth, which greatly improves the stability of the disassembly cylinder inside the barrel cover, and an expansion cover is arranged on the top of the disassembly cylinder to avoid the medicine inside the disassembly cylinder from overflowing when shaking, thereby affecting the effect of the disassembly cylinder on medicine storage. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a structural schematic diagram of the storage device of the utility model;
[0024] Figure 2 This is a diagram of the internal structure of the anti-sedimentation component of the utility model;
[0025] Figure 3This is a bottom view of the structure of the adjustment assembly of the utility model;
[0026] Figure 4 It is a partially enlarged structural diagram of the material connection component of the utility model.
[0027] Among them: 1. Storage box; 2. Card seat; 3. Anti-sedimentation assembly; 301. Rotating motor; 302. Card barrel cover; 303. Anti-slip teeth; 304. Disassembly cylinder; 305. Anti-overflow cover; 4. Card cover; 5. Adjustment assembly; 501. Inner pipe rack; 502. Adjustment rack; 503. Bolt; 504. Water suction plate; 505. Suction nozzle; 6. Material receiving assembly; 601. Material conveying pipe; 602. Water pump; 603. Material receiving pipe; 604. Discharge pipe; 605. Discharge nozzle. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0029] Example
[0030] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the utility model provides a technical solution: a storage device for reverse osmosis acid cleaning agent, comprising a storage box 1, a card seat 2 is arranged at the outer edge of the upper end of the storage box 1, and an anti-sedimentation component 3 is installed in the middle of the storage box 1;
[0031] The anti-sedimentation assembly 3 includes a rotating motor 301, a barrel cover 302, anti-slip teeth 303, a disassembly cylinder 304 and an anti-overflow cover 305. The rotating motor 301 is installed in the middle of the storage box 1, and the barrel cover 302 is arranged at the top of the rotating motor 301. The inner wall of the barrel cover 302 is provided with anti-slip teeth 303. The disassembly cylinder 304 is inserted in the middle of the barrel cover 302, and the top of the disassembly cylinder 304 is connected to the anti-overflow cover 305.
[0032] A card cover 4 is provided at the top of the card seat 2 and the anti-precipitation component 3; and an adjustment component 5 is connected to the middle and lower ends of the card cover 4, and a material receiving component 6 is provided at the top of the card cover 4. Specifically, first, the user inserts the disassembly cylinder 304 into the storage box 1, and drives the card barrel cover 302 and the disassembly cylinder 304 to rotate in the storage box 1 through the rotating motor 301 provided at the bottom end of the storage box 1, which can not only prevent the reverse osmosis acid cleaning agent from being precipitated due to long-term storage, but also protect the interior of the storage box 1, making it easy to take the disassembly cylinder 304 out of the card barrel cover 302 inside the storage box 1 for cleaning, thereby greatly improving the cleaning speed of the disassembly cylinder 304, and different drugs can be stored by replacing different disassembly cylinders 304, which greatly improves The practicality and convenience of using the storage box 1 are improved. The rotating motor 301 drives the barrel cover 302 and the disassembly barrel 304 to rotate and shake, so as to avoid the reverse osmosis acid cleaning agent in the disassembly barrel 304 from precipitation. The inner wall of the barrel cover 302 is provided with anti-skid teeth 303. The anti-skid teeth 303 are used to increase the friction between the disassembly barrel 304 and the barrel cover 302, thereby greatly improving the stability of the disassembly barrel 304 in the barrel cover 302. The top of the disassembly barrel 304 is provided with an expansion cover to avoid the medicine in the disassembly barrel 304 from overflowing when shaking, thereby affecting the effect of the disassembly barrel 304 on the medicine storage. The middle and lower ends of the card cover 4 are connected with an adjustment component 5, which is provided with an inner tube frame 50 that can adjust the medicine delivery. 1 and the adjusting frame 502 are convenient for conveying the medicine at a certain depth. After the adjustment, the inner tube frame 501 and the adjusting frame 502 are positioned and locked by bolts 503. The annular water absorption disk 504 is used to evenly convey the medicine inside the disassembly cylinder 304. A plurality of suction nozzles 505 are arranged through the water absorption disk 504 to increase the speed of medicine conveying. A card seat 2 is arranged at the outer edge of the top of the storage box 1. The card cover 4 is engaged with the card seat 2 for assembly and sealing. A material receiving assembly 6 is arranged at the top of the card cover 4. The water pump 602 is turned on. The medicine water is conveyed from the inside of the disassembly cylinder 304 to the inside of the material delivery pipe 601 and the material receiving pipe 603 through the inner tube frame 501, the adjusting frame 502 and the suction nozzle 505 of the water absorption disk 504, so as to facilitate the disassembly. The medicine inside the unloading barrel 304 is fed and processed, and four groups of discharge nozzles 605 are arranged at the upper end of the discharge pipe 604, which greatly improves the speed of the discharge nozzle 605 to discharge the medicine. Through this technical solution, the problem that the reverse osmosis acid cleaning agent is precipitated in the storage device, thereby reducing the cleaning effect of the reverse osmosis acid cleaning agent after it is taken out and the reverse osmosis acid cleaning agent cannot be taken out evenly is solved. The user first inserts the disassembly barrel 304 into the storage box 1, and drives the barrel cover 302 and the disassembly barrel 304 to rotate in the storage box 1 through the rotating motor 301 arranged at the bottom of the storage box 1, which can not only prevent the reverse osmosis acid cleaning agent from being precipitated due to long-term storage, but also protect the inside of the storage box 1.It is convenient to take out the disassembly barrel 304 from the barrel cover 302 inside the storage box 1 for cleaning, which greatly improves the cleaning speed of the disassembly barrel 304. Different drugs can be stored by replacing different disassembly barrels 304, which greatly improves the practicality and convenience of the storage box 1. The rotating motor 301 drives the barrel cover 302 and the disassembly barrel 304 to rotate and shake, so as to avoid the reverse osmosis acid cleaning agent inside the disassembly barrel 304 from precipitation. The inner wall of the barrel cover 302 is provided with anti-skid teeth 303. The anti-skid teeth 303 are used to increase the friction between the disassembly barrel 304 and the barrel cover 302, which greatly improves the stability of the disassembly barrel 304 inside the barrel cover 302. The top of the disassembly barrel 304 is provided with an expansion cover to prevent the drugs inside the disassembly barrel 304 from overflowing when shaking, thereby affecting the effect of the disassembly barrel 304 on drug storage.
[0033] Further, such as Figure 1-2 As shown: it also includes a material receiving assembly 6 including a material delivery pipe 601, a water pump 602, a material receiving pipe 603, a discharge pipe 604 and a discharge nozzle 605. The top of the card cover 4 is provided with a material delivery pipe 601, and the top of the material delivery pipe 601 is connected to the water pump 602, the upper end of the water pump 602 is connected to the material receiving pipe 603, the right side of the material receiving pipe 603 is connected to the discharge pipe 604, and the outer surface of the discharge pipe 604 is provided with a discharge nozzle 605. The advantage of this technical solution is that a card seat 2 is provided at the top outer edge of the storage box 1, through The card cover 4 is engaged on the card base 2 for assembly and sealing. A material receiving assembly 6 is provided through the top of the card cover 4. The water pump 602 is turned on. The medicine water is transported from the inside of the disassembly cylinder 304 to the inside of the feed pipe 601 and the material receiving pipe 603 through the inner tube rack 501, the adjustment rack 502 and the suction nozzle 505 of the water suction disk 504, so as to facilitate the feeding process of the medicine inside the disassembly cylinder 304. Four groups of discharge nozzles 605 are provided at the upper end of the discharge pipe 604, which greatly improves the speed of the discharge nozzle 605 for discharging the medicine.
[0034] The above solutions also have the problem of being inconvenient to extend the length of the cleaning agent delivery. Figure 1 , Figure 2 and Figure 4As shown: In this scheme, the adjustment component 5 includes an inner tube rack 501, an adjustment rack 502, bolts 503, a water suction disc 504 and a suction nozzle 505. The middle and lower ends of the card cover 4 are connected to the inner tube rack 501, and the adjustment rack 502 is inserted at the lower end of the inner tube rack 501. Bolts 503 are penetrated in the middle of the inner tube rack 501 and the adjustment rack 502. The bottom end of the adjustment rack 502 is provided with a water suction disc 504, and the bottom end of the water suction disc 504 is installed with a suction nozzle 505. The middle and lower ends of the card cover 4 are connected with an adjustment component 5. By providing an inner tube rack 501 and an adjustment rack 502 for adjusting the medicine delivery, it is convenient to transport the medicine at a depth. After the adjustment, the inner tube rack 501 and the adjustment rack 502 are positioned and locked by bolts 503, and the annular water absorption disk 504 is used to evenly transport the medicine inside the disassembly cylinder 304. A plurality of suction nozzles 505 are provided through the water absorption disk 504 to increase the speed of medicine delivery.
[0035] Working principle:
[0036] like Figure 1-4 As shown:
[0037] First, the user inserts the disassembly cylinder 304 into the storage box 1, and drives the barrel cover 302 and the disassembly cylinder 304 to rotate in the storage box 1 through the rotating motor 301 arranged at the bottom of the storage box 1, which can not only prevent the reverse osmosis acid cleaning agent from being precipitated due to long-term storage, but also protect the interior of the storage box 1, making it easy to take the disassembly cylinder 304 out of the barrel cover 302 inside the storage box 1 for cleaning, greatly improving the cleaning speed of the disassembly cylinder 304. Different drugs can be stored by replacing different disassembly cylinders 304. The practicality and convenience of the storage box 1 are greatly improved. The rotating motor 301 drives the barrel cover 302 and the disassembly barrel 304 to rotate and shake, so as to avoid the reverse osmosis acid cleaning agent inside the disassembly barrel 304 from precipitating. The inner wall of the barrel cover 302 is provided with anti-skid teeth 303. The anti-skid teeth 303 are used to increase the friction between the disassembly barrel 304 and the barrel cover 302, so as to greatly improve the stability of the disassembly barrel 304 inside the barrel cover 302. The top of the disassembly barrel 304 is provided with an expansion cover to avoid the medicine inside the disassembly barrel 304. When shaking, overflow occurs, thus affecting the effect of disassembling cylinder 304 on drug storage. The middle and lower ends of the card cover 4 are connected with an adjustment component 5. By providing an inner tube frame 501 and an adjustment frame 502 that can adjust the delivery of drugs, it is convenient to transport drugs at a certain depth. After the adjustment, the inner tube frame 501 and the adjustment frame 502 are positioned and locked by bolts 503. The annular water absorption disk 504 is used to evenly transport the drugs inside the disassembling cylinder 304. A plurality of suction nozzles 505 are provided through the water absorption disk 504 to increase the speed of drug delivery and storage. A card seat 2 is provided at the outer edge of the top of the box 1, and the card cover 4 is engaged with the card seat 2 for assembly and sealing. A material receiving assembly 6 is provided at the top of the card cover 4, and the water pump 602 is turned on. The medicine water is transported from the inside of the disassembly cylinder 304 to the inside of the feed pipe 601 and the material receiving pipe 603 through the inner pipe rack 501, the adjustment rack 502 and the suction nozzle 505 of the water suction disk 504, so as to facilitate the feeding process of the medicine inside the disassembly cylinder 304. Four groups of discharge nozzles 605 are provided at the upper end of the discharge pipe 604, which greatly improves the speed of the discharge nozzle 605 to discharge the medicine.
[0038] The above are only preferred embodiments of the present invention, and are not intended to limit the present invention in other forms. Any technician familiar with the profession may use the technical contents disclosed above to change or modify them into equivalent embodiments with equivalent changes and apply them to other fields. However, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention without departing from the technical solution of the present invention still falls within the protection scope of the technical solution of the present invention.
Claims
1. A storage device for reverse osmosis acid cleaning agent, comprising a storage box (1), characterized in that: A card seat (2) is provided at the outer edge of the upper end of the storage box (1), and an anti-sedimentation component (3) is installed in the middle of the storage box (1); The anti-sedimentation assembly (3) comprises a rotating motor (301), a barrel cover (302), anti-slip teeth (303), a disassembly cylinder (304) and an anti-overflow cover (305); the rotating motor (301) is installed in the middle of the storage box (1), and the barrel cover (302) is arranged at the top of the rotating motor (301); the inner wall of the barrel cover (302) is provided with anti-slip teeth (303); the disassembly cylinder (304) is inserted in the middle of the barrel cover (302), and the top of the disassembly cylinder (304) is connected to the anti-overflow cover (305); The top ends of the card seat (2) and the anti-sedimentation component (3) are provided with a card cover (4); the middle and lower ends of the card cover (4) are connected with an adjustment component (5); and the top end of the card cover (4) is provided with a material receiving component (6).
2. A storage device for reverse osmosis acid cleaning agent according to claim 1, characterized in that: The barrel cover (302) forms a rotating structure through a rotating motor (301), an anti-slip tooth (303) and a disassembly cylinder (304), and the disassembly cylinder (304) and the barrel cover (302) are tightly fitted.
3. The storage device for reverse osmosis acid cleaning agent according to claim 1, characterized in that: The anti-slip teeth (303) are distributed in a ring shape about the axis of the barrel cover (302), and the disassembly cylinder (304) is connected to the anti-overflow cover (305).
4. The storage device for reverse osmosis acid cleaning agent according to claim 1, characterized in that: The adjustment component (5) comprises an inner tube frame (501), an adjustment frame (502), bolts (503), a water suction disc (504) and a suction nozzle (505); the middle and lower ends of the card cover (4) are connected to the inner tube frame (501), and the adjustment frame (502) is inserted into the lower end of the inner tube frame (501); bolts (503) are passed through the middle of the inner tube frame (501) and the adjustment frame (502); the bottom end of the adjustment frame (502) is provided with a water suction disc (504), and the bottom end of the water suction disc (504) is installed with a suction nozzle (505).
5. A storage device for reverse osmosis acid cleaning agent according to claim 4, characterized in that: The inner pipe frame (501) and the adjustment frame (502) form a fixed structure through bolts (503), and the water suction plate (504) and the suction nozzle (505) are fixedly connected.
6. The storage device for reverse osmosis acid cleaning agent according to claim 1, characterized in that: The material receiving assembly (6) comprises a material conveying pipe (601), a water pump (602), a material receiving pipe (603), a material discharge pipe (604) and a discharge nozzle (605); the top end of the card cover (4) is provided with a material conveying pipe (601), and the top end of the material conveying pipe (601) is connected to the water pump (602); the upper end of the water pump (602) is connected to the material receiving pipe (603), the right side of the material receiving pipe (603) is connected to the material discharge pipe (604), and the outer surface of the material discharge pipe (604) is provided with a discharge nozzle (605).
7. A storage device for reverse osmosis acid cleaning agent according to claim 6, characterized in that: The material delivery pipe (601) forms a communication structure with the material receiving pipe (603) and the material discharge pipe (604) through the water pump (602), and four groups of discharge nozzles (605) are provided.