Sanitary degerming purified water production equipment

By adjusting the components and the adjustable extrusion components, the problem of poor disinfection effect caused by uneven mixing is solved, and the disinfectant and liquid are fully mixed and the biofilm is destroyed, thereby improving disinfection efficiency and water quality safety.

CN223792956UActive Publication Date: 2026-01-13NANJING OUKAI ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202423131640.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2026-01-13
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In traditional water purification equipment, uneven mixing can lead to insufficient mixing of the disinfectant and the liquid to be purified, affecting the disinfection effect and potentially forming a biofilm, which reduces the efficiency of subsequent sterilization steps.

Method used

By employing an adjustment component and an adjustable extrusion component, multiple independently rotating stirring rods and adjustable disinfectant extrusion volume ensure thorough mixing of the disinfectant and liquid, improve stirring uniformity and water flow rate, and disrupt the biofilm structure.

Benefits of technology

It improves disinfection effectiveness, ensures effective disinfection of different water qualities, reduces disinfectant residue, and enhances water safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses sanitary degerming purified water production equipment, which relates to the technical field of water production equipment, and comprises a tank body and a mounting shell, an adjusting assembly is mounted in the mounting shell, the adjusting assembly comprises a first motor mounted on the inner wall of the mounting shell, and the bottom end of the first motor is connected with a driving shaft; the bottom end of the driving shaft is connected with a main driving gear, the outer wall of the main driving gear is connected with a first linkage gear, a second linkage gear and a third linkage gear, and the outer wall of one side of the first linkage gear, the outer wall of one side of the second linkage gear and the outer wall of one side of the third linkage gear are connected with a first auxiliary gear, a second auxiliary gear and a third auxiliary gear respectively. The top ends of the second linkage gear and the third pinion are connected with first connecting rods; according to the utility model, the disinfectant can be ensured to be fully mixed with the liquid to be purified through the adjusting assembly, so that the disinfection effect is improved, and the sterilization efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of water purification equipment technology, specifically to a purified water purification equipment for hygienic sterilization. Background Technology

[0002] Pure water, also known as high-purity water, refers to water with extremely high chemical purity. It is mainly used in fields such as biology, chemical engineering, metallurgy, aerospace, and power. However, it has very high requirements for water purity, so its most common application is in the electronics industry. In the production of pure water, the various indicators specified in the water quality standards should be determined according to the production process of electronic components. However, due to the complexity of microelectronics technology and the many factors affecting product quality, there is no complete water quality standard applicable to the production of a certain circuit obtained from process experiments. With the continuous revision of electronic-grade water standards, as well as many breakthroughs and developments in the field of high-purity water analysis, the continuous application of new instruments and new analytical methods have created conditions for the development of pure water production processes.

[0003] When purifying water is sterilized and disinfected, the equipment employs a variety of methods, including pasteurization, ultraviolet sterilization, ozone sterilization, and chemical disinfection.

[0004] In existing technologies, traditional purified water equipment typically uses chemical disinfection for initial bacterial sterilization. However, when operating, different water qualities and treatment requirements may require different stirring intensities. The stirring torque of the equipment cannot be changed, making it impossible to ensure that the disinfectant and the liquid to be purified are fully mixed, thus affecting the disinfection effect. Furthermore, due to insufficient stirring, some microorganisms can survive and form biofilms. Biofilms are not only difficult to remove, but also significantly reduce the efficiency of subsequent sterilization steps, further leading to water quality problems. Utility Model Content

[0005] The purpose of this invention is to provide a hygienic and sterile purified water production device to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, the present invention provides a hygienic and sterile purified water production device, including a tank and an installation shell. An adjustment assembly is installed inside the installation shell. The adjustment assembly includes a first motor mounted on the inner wall of the installation shell. A drive shaft is connected to the bottom end of the first motor, and a main drive gear is connected to the bottom end of the drive shaft. A first linkage gear, a second linkage gear, and a third linkage gear are respectively connected to the outer wall of the main drive gear. A first auxiliary gear, a second auxiliary gear, and a third auxiliary gear are respectively connected to one side of the outer wall of the first linkage gear, the second linkage gear, and the third linkage gear. A first connecting rod is connected to the top of both the second linkage gear and the third auxiliary gear. A second connecting rod is connected to the top of both the third linkage gear and the first auxiliary gear. A third connecting rod is connected to the bottom of both the first linkage gear and the first auxiliary gear. A fourth connecting rod is connected to the bottom of both the third linkage gear and the third auxiliary gear. A fifth connecting rod is connected to the bottom of both the second linkage gear and the second auxiliary gear. A fixed column is rotatably connected to the middle of the first linkage gear, and a second motor is connected to the top of the fixed column.

[0007] Furthermore, an adjustable extrusion assembly is installed on one side of the mounting housing. The adjustable extrusion assembly includes a third motor installed on the inner wall of the mounting housing. One end of the third motor is connected to a crankshaft. A rocker rod is connected to the outer wall of one side of the crankshaft. A slot is opened on the inner wall of the rocker rod. A threaded rod is connected to the inner wall of the slot. A fourth motor is connected to one end of the threaded rod. A slider is connected to the outer wall of the threaded rod. A push rod is connected to one side of the slider. A sliding plate is connected to the end of the push rod away from the slider. A piston is connected to the bottom end of the sliding plate.

[0008] Furthermore, a sterilization tank is connected to the bottom side of the housing. The outer wall of the piston is slidably connected to the inner wall of the sterilization tank. A sterilizing agent tube is installed at the bottom of the sterilization tank, and the end of the sterilizing agent tube away from the sterilization tank is connected to the inner wall of the tank.

[0009] Furthermore, water pipes are installed on both sides of the outer wall of the tank, with one of the water pipes installed on the side near the bottom of the tank.

[0010] Furthermore, a support is installed at the bottom of the tank, and the support is made of a rigid material.

[0011] Furthermore, stirring rods are installed at the bottom of the first, second, and third auxiliary gears, and each stirring rod has a spiral pattern on its surface.

[0012] Furthermore, the main drive gear is meshed with the first linkage gear, the second linkage gear, and the third linkage gear. The side of the first linkage gear, the second linkage gear, and the third linkage gear away from the main drive gear is meshed with the first auxiliary gear, the second auxiliary gear, and the third auxiliary gear, respectively. The second linkage gear is rotatably connected to the third auxiliary gear through the first connecting rod, and the third linkage gear is rotatably connected to the first auxiliary gear through the second connecting rod. One end of the third connecting rod is fixedly connected to one end of the second connecting rod, one end of the second connecting rod is fixedly connected to one end of the fourth connecting rod, the other end of the fourth connecting rod is fixedly connected to the first connecting rod, and one end of the first connecting rod is fixedly connected to one end of the fifth connecting rod.

[0013] Furthermore, the outer wall of the third motor is fixedly connected to the inner wall of the mounting housing, the crankshaft is slidably connected to one end of the rocker rod, the rocker rod is rotatably connected to the inner wall of the mounting housing, the inner wall of the slider is provided with a slot, the inner wall of the slot is provided with a thread that matches the threaded rod, and the slider and the threaded rod are threadedly connected.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] 1. The adjustment components ensure thorough mixing of the disinfectant and the liquid to be purified, which helps improve the disinfection effect. The three independently rotating stirring rods can significantly increase the water flow rate, reduce dead zones inside the equipment, and keep the water in a turbulent state in the tank. The turbulent water flow has greater shear force, which can destroy the structure of the biofilm, making it difficult for it to adhere to the inner wall of the tank. At the same time, it increases the contact opportunities between the disinfectant and microorganisms, thereby improving the sterilization efficiency.

[0016] 2. By using an adjustable component to dispense different amounts of disinfectant for different water qualities, the amount of disinfectant can be controlled according to the specific conditions of different water qualities, ensuring that all types of water can be effectively disinfected. Excessive use of disinfectant may result in residual chemicals in the water, affecting water quality safety. Using an adjustable component to control the amount of disinfectant dispensed can reduce residues and improve water quality safety. Attached Figure Description

[0017] Figure 1 A schematic diagram of the front structure of a purified water production equipment for hygiene and sterilization;

[0018] Figure 2 A schematic diagram of the overall structure of a purified water production equipment for hygiene and sterilization.

[0019] Figure 3 A schematic diagram of the regulating components in a purified water production equipment for hygiene and sterilization.

[0020] Figure 4 Top view of the regulating components in a purified water treatment system for hygiene and sterilization;

[0021] Figure 5 Bottom view of the regulating components in a purified water treatment system for hygiene and sterilization;

[0022] Figure 6 A front view of the adjustable extrusion component in a purified water production device for hygiene and sterilization.

[0023] Figure 7 A schematic diagram of the rear structure of the adjustable extrusion component in a purified water production device for hygiene and sterilization.

[0024] In the picture:

[0025] 1. Tank body; 2. Outer shell assembly;

[0026] 3. Adjustment assembly; 301. First motor; 302. Drive shaft; 303. Main drive gear; 304. First linkage gear; 305. Second linkage gear; 306. Third linkage gear; 307. First auxiliary gear; 308. Second auxiliary gear; 309. Third auxiliary gear; 310. First connecting rod; 311. Second connecting rod; 312. Third connecting rod; 313. Fourth connecting rod; 314. Fifth connecting rod; 315. Second motor;

[0027] 4. Stirring rod;

[0028] 5. Adjustable extrusion assembly; 501. Third motor; 502. Crankshaft; 503. Shaking rod; 504. Threaded rod; 505. Fourth motor; 506. Slider; 507. Push rod; 508. Sliding plate;

[0029] 6. Piston; 7. Sterilization tank; 8. Sterilizer tube; 9. Water pipe; 10. Support. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] Please see Figure 1 - Figure 7 This utility model provides a technical solution for a hygienic and sterilized purified water production device:

[0032] In the embodiments of this utility model, see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5, Figure 6 , Figure 7 The system includes a tank body 1 and a mounting shell 2. An adjustment assembly 3 is installed inside the mounting shell 2. The adjustment assembly 3 includes a first motor 301 mounted on the inner wall of the mounting shell 2. A drive shaft 302 is connected to the bottom end of the first motor 301. A main drive gear 303 is connected to the bottom end of the drive shaft 302. A first linkage gear 304, a second linkage gear 305, and a third linkage gear 306 are respectively connected to the outer wall of the main drive gear 303. A first auxiliary gear 307, a second auxiliary gear 308, and a third auxiliary gear 309 are respectively connected to the outer wall of one side of each of the first linkage gear 304, second linkage gear 305, and third linkage gear 306. The top of the gear 309, the second linkage gear 305, and the third auxiliary gear 309 are all connected to the first connecting rod 310. The top of the third linkage gear 306 and the first auxiliary gear 307 are all connected to the second connecting rod 311. The bottom of the first linkage gear 304 and the first auxiliary gear 307 are connected to the third connecting rod 312. The bottom of the third linkage gear 306 and the third auxiliary gear 309 are connected to the fourth connecting rod 313. The bottom of the second linkage gear 305 and the second auxiliary gear 308 are connected to the fifth connecting rod 314. The middle of the first linkage gear 304 is rotatably connected to a fixed column, and the top of the fixed column is connected to the second motor 315.

[0033] It should be noted that the fixed connection between the first motor 301 and the inner wall of the mounting housing 2 ensures the stability of the component connection. The start of the first motor 301 drives the drive shaft 302 and the main drive gear 303 to rotate. When the main drive gear 303 rotates, it synchronously drives the first linkage gear 304, the second linkage gear 305, and the third linkage gear 306 meshing with the outer wall to rotate. The rotation of the first linkage gear 304, the second linkage gear 305, and the third linkage gear 306 causes the stirring rods 4 installed at the bottom of the first auxiliary gear 307, the second auxiliary gear 308, and the third auxiliary gear 309 to rotate, thereby stirring the fluid in the pipe. The rotation of the second motor 315 causes the torque of the first connecting rod 310, the second connecting rod 311, the third connecting rod 312, the fourth connecting rod 313, and the fifth connecting rod 314 on the three stirring rods 4 to change around the main drive gear 303.

[0034] See Figure 1 , Figure 2 , Figure 6 , Figure 7An adjustable extrusion assembly 5 is installed on one side of the mounting housing 2. The adjustable extrusion assembly 5 includes a third motor 501 installed on the inner wall of the mounting housing 2. One end of the third motor 501 is connected to a crankshaft 502. A rocking rod 503 is connected to the outer wall of one side of the crankshaft 502. A slot is opened on the inner wall of the rocking rod 503. A threaded rod 504 is connected to the inner wall of the slot. One end of the threaded rod 504 is connected to a fourth motor 505. A slider 506 is connected to the outer wall of the threaded rod 504. A push rod 507 is connected to one side of the slider 506. A sliding plate 508 is connected to the end of the push rod 507 away from the slider 506. A piston 6 is connected to the bottom end of the sliding plate 508.

[0035] It should be noted that the third motor 501 is also installed on the inner wall of the mounting housing 2. When the third motor 501 rotates, the crankshaft 502 rotates. One end of the rocking rod 503 is connected to the crankshaft 502 and is also rotatably connected to the inner wall of the mounting housing 2, forming a swing. The swing of the rocking rod 503 continuously reciprocates and squeezes the piston 6. The rotation of the threaded rod 504 adjusts the slider 506 connected to the surface thread, which can change the downward pressing distance of the push rod 507 driving the sliding plate 508, thereby changing the amount of disinfectant squeezed out by the piston 6 in the disinfection tank 7.

[0036] See Figure 1 , Figure 2 The bottom of the housing 2 is connected to a disinfection tank 7. The outer wall of the piston 6 is slidably connected to the inner wall of the disinfection tank 7. A disinfectant tube 8 is installed at the bottom of the disinfection tank 7. The end of the disinfectant tube 8 away from the disinfection tank 7 is connected to the inner wall of the tank body 1.

[0037] It should be noted that: the disinfection tank 7 is installed on one side of the housing 2, and contains disinfectant. The other end of the disinfection tank 7 is connected to the feed pipe, through which disinfectant is fed into the interior of the disinfection tank 7. The outer wall of the piston 6 is slidably connected to the inner wall of the disinfection tank 7. Through the action of the sliding plate 508 and the push rod 507, the piston moves up and down on the inner wall of the disinfection tank 7 to squeeze out the disinfectant, which is then fed into the interior of the tank 1 through the disinfectant pipe 8.

[0038] See Figure 1 , Figure 2 Water pipes 9 are installed on both sides of the outer wall of the tank 1. One of the water pipes 9 is installed on the side near the bottom of the tank 1. A bracket 10 is installed at the bottom of the tank 1. The bracket 10 is made of rigid material.

[0039] It should be noted that the two water pipes 9 are responsible for introducing and discharging water respectively, and the support 10 is responsible for supporting the entire equipment to ensure the stability of operation.

[0040] Working principle: The first motor 301 is installed on the inner wall of the mounting housing 2 as the main power source. The rotation of the drive shaft 302 drives the drive shaft 302 to rotate. At the same time, when the drive shaft 302 rotates, the first linkage gear 304, the second linkage gear 305, and the third linkage gear 306 meshing with it will also rotate, driving the first auxiliary gear 307, the second auxiliary gear 308, and the third auxiliary gear 309 that are externally meshed to rotate. When the first auxiliary gear 307, the second auxiliary gear 308, and the third auxiliary gear 309 rotate, they will drive the stirring rods 4 installed at the bottom of the first auxiliary gear 307, the second auxiliary gear 308, and the third auxiliary gear 309 to start rotating. The rotation of the second motor 315 adjusts the rotation of the first connecting rod 310, the second connecting rod 311, the third connecting rod 312, the fourth connecting rod 313, and the fifth connecting rod 314, thereby driving the torque of the three stirring rods 4 to be adjusted together.

Claims

1. A water purification apparatus for producing hygienically sterilized purified water, comprising a tank body (1) and a mounting housing (2), characterized in that: The inside of the mounting shell (2) is internally mounted with an adjusting assembly (3), the adjusting assembly (3) comprises a first motor (301) mounted on the inner wall of the mounting shell (2), the bottom end of the first motor (301) is connected with a drive shaft (302), the bottom end of the drive shaft (302) is connected with a main drive gear (303), the outer wall of the main drive gear (303) is connected with a first linkage gear (304), a second linkage gear (305) and a third linkage gear (306) respectively, the outer wall of the first linkage gear (304), the second linkage gear (305) and the third linkage gear (306) is connected with a first auxiliary gear (307), a second auxiliary gear (308) and a third auxiliary gear (309) respectively, the top end of the second linkage gear (305) and the third auxiliary gear (309) is connected with a first connecting rod (310), the top end of the third linkage gear (306) and the first auxiliary gear (307) is connected with a second connecting rod (311), the bottom end of the first linkage gear (304) and the first auxiliary gear (307) is connected with a third connecting rod (312), the bottom end of the third linkage gear (306) and the third auxiliary gear (309) is connected with a fourth connecting rod (313), the bottom end of the second linkage gear (305) and the second auxiliary gear (308) is connected with a fifth connecting rod (314), the middle part of the first linkage gear (304) is rotatably connected with a fixed column, the top end of the fixed column is connected with a second motor (315).

2. The purified water making apparatus for sanitary sterilization according to claim 1, wherein: The side of the mounting shell (2) is mounted with an adjustable extrusion assembly (5), the adjustable extrusion assembly (5) comprises a third motor (501) mounted on the inner wall of the mounting shell (2), one end of the third motor (501) is connected with a crankshaft (502), one side of the outer wall of the crankshaft (502) is connected with a wobble bar (503), the inner wall of the wobble bar (503) is provided with a slot, the inner wall of the slot is connected with a threaded rod (504), one end of the threaded rod (504) is connected with a fourth motor (505), the outer wall of the threaded rod (504) is connected with a sliding block (506), one side of the sliding block (506) is connected with a push rod (507), the end of the push rod (507) away from the sliding block (506) is connected with a sliding plate (508), the bottom end of the sliding plate (508) is connected with a piston (6).

3. The water purification apparatus for producing sanitary sterilized purified water as claimed in claim 2, wherein: The bottom end of the mounting shell (2) is connected with a disinfection tank (7), the outer wall of the piston (6) is connected with the inner wall of the disinfection tank (7) in a sliding manner, the bottom end of the disinfection tank (7) is mounted with a disinfectant pipe (8), the end of the disinfectant pipe (8) away from the disinfection tank (7) is connected with the inner wall of the tank body (1).

4. The apparatus for producing purified water for sanitary sterilization according to claim 3, wherein: The outer wall of the tank body (1) is mounted with a water pipe (9) on both sides, one of the water pipes (9) is mounted on the side near the bottom end of the tank body (1).

5. The water purification apparatus for producing sanitary sterilized purified water as claimed in claim 4, wherein: The bottom end of the tank body (1) is mounted with a bracket (10), the material of the bracket (10) is rigid material.

6. The apparatus for producing purified water for sanitary sterilization according to claim 5, wherein: The bottom end of the first, second and third pinions (307, 308, 309) is provided with a stirring rod (4), and the surface of each stirring rod (4) is provided with a spiral thread.

7. The water purification apparatus for producing sanitary sterilized purified water as claimed in claim 6, wherein: The main drive gear (303) is in meshing connection with the first, second and third linkage gears (304, 305, 306), the first, second and third linkage gears (304, 305, 306) are in meshing connection with the first, second and third pinions (307, 308, 309) away from the main drive gear (303), the second linkage gear (305) is in rotary connection with the third pinion (309) through the first connecting rod (310), the third linkage gear (306) is in rotary connection with the first pinion (307) through the second connecting rod (311), one end of the third connecting rod (312) is fixedly connected with one end of the second connecting rod (311), one end of the second connecting rod (311) is fixedly connected with one end of the fourth connecting rod (313), the other end of the fourth connecting rod (313) is fixedly connected with the first connecting rod (310), one end of the first connecting rod (310) is fixedly connected with one end of the fifth connecting rod (314).

8. The water purification apparatus for producing sanitary sterilized purified water as claimed in claim 7, wherein: The outer wall of the third motor (501) is fixedly connected with the inner wall of the mounting shell (2), the crankshaft (502) is in sliding connection with one end of the wobble rod (503), the wobble rod (503) is in rotary connection with the inner wall of the mounting shell (2), the inner wall of the sliding block (506) is provided with a notch, the notch inner wall is provided with threads matched with the threaded rod (504), and the sliding block (506) is in threaded connection with the threaded rod (504).