Automatic nanoscale liquid purification device

By employing an automated nanoscale liquid purification device with alternating dual water tanks and pressurized motor control, the problems of low efficiency and frequent interruptions in traditional nanoscale liquid purification methods have been solved, achieving continuous production and high-efficiency filtration.

CN224086248UActive Publication Date: 2026-04-07KANGPU YAYUAN (TAIZHOU) HEALTH IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Traditional nanoscale liquid purification methods are inefficient, complex to operate, and prone to filter clogging, leading to production interruptions and making it difficult to achieve continuous production.

Method used

An automated nanoscale liquid purification device is adopted, which is designed with two water tanks working alternately. Combined with a pressure motor and solenoid valve, it realizes automatic liquid feeding, pressure filtration and filter replacement. The pressure motor increases the filtration speed and the lifting motor enables rapid filter replacement.

Benefits of technology

It enables continuous production in the liquid purification process, improves production efficiency, reduces manual intervention, and significantly enhances filtration efficiency, making it particularly suitable for the purification of nanoscale liquids.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of nanoscale liquid purification, in particular to an automatic nanoscale liquid purification device which is characterized in that a square plate is embedded in the upper part of a water tank; a first screw rod is fixed to the square plate and connected to the water tank in a screwed mode through a bearing. The pressurizing motors are respectively fixed on the base through brackets; an output shaft of the pressurizing motor is connected with the first screw rod; the filters are respectively arranged at the bottoms of the water tanks; the water inlet mechanism is connected with the bottom of the water tank; the water outlet mechanism is connected with the bottom of the water tank and is arranged below the water inlet mechanism; automatic feeding of liquid, pressure filtration and replacement of the filter are realized, manual intervention is reduced, and the production efficiency is improved; the device adopts the design that double water tanks work alternately, so that the liquid purification process does not need to be interrupted, continuous production can be realized, and the production efficiency is remarkably improved; through the action of the pressurizing motor, the speed of liquid passing through the filter is increased, the filtering efficiency is remarkably improved, and the device is particularly suitable for purification of nanoscale liquid.
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Description

TECHNICAL FIELD

[0001] The utility model relates to nanometer liquid purification technical field, specifically related to a kind of automatic nanometer liquid purification device. BACKGROUND

[0002] With the rapid development of nanotechnology, the purification demand of nanometer liquid is increasing. The traditional liquid purification method often has low efficiency, complex operation, and it is difficult to realize continuous production. Especially in the purification process of nanometer liquid, the filter is blocked and replaced frequently, which causes the production process to be interrupted and affects the overall efficiency. Therefore, an automatic nanometer liquid purification device is proposed. UTILITY MODEL CONTENT

[0003] The utility model aims at the defects and deficiencies of prior art, provides an automatic nanometer liquid purification device, realizes the automatic feeding of liquid, pressure filtration and filter replacement, reduces manual intervention and improves production efficiency. The device adopts the design of double water tanks working alternately, so that the liquid purification process does not need to be interrupted, and continuous production can be realized, which significantly improves the production efficiency. Through the action of the pressure motor, the speed of the liquid through the filter is accelerated, and the filtration efficiency is significantly improved, which is especially suitable for the purification of nanometer liquid.

[0004] To achieve the above purpose, the utility model adopts the following technical scheme: it contains base;

[0005] It also contains:

[0006] Water tank, the number of water tank is two, and is respectively arranged on the left and right above base; the upper part of water tank is square structure, and the lower part of water tank is circular structure; the left and right side walls of water tank are respectively fixed on base through support;

[0007] Square plate, the number of square plate is two, and is respectively embedded in the upper part of water tank; a No. 1 screw rod is fixed on the square plate, and the No. 1 screw rod is rotatably connected to the water tank through bearing;

[0008] Pressure motor, the number of pressure motor is two, and is respectively fixed on base through support, and pressure motor is connected with external power supply; the output shaft of pressure motor is connected with No. 1 screw rod;

[0009] Filter, the number of filter is two, and is respectively arranged at the bottom of water tank;

[0010] Water inlet mechanism, the water inlet mechanism is connected with the bottom of water tank;

[0011] Water outlet mechanism, the water outlet mechanism is connected with the bottom of water tank, and the water outlet mechanism is arranged below the water inlet mechanism.

[0012] Preferably, the bottom of the filter is screwed with a cover plate, which is arranged at the bottom of the water tank.

[0013] Preferably, a sealing ring is fixed on the cover plate and abuts against the bottom of the water tank; and a lifting mechanism is connected to the cover plate.

[0014] Preferably, the lifting mechanism comprises:

[0015] A connecting rod, the number of the connecting rod is two, and the connecting rod is fixed at the front and back of the bottom of the cover plate;

[0016] An internally threaded pipe, the internally threaded pipe is fixed at the front end of the front connecting rod; a second screw rod is screwed in the internally threaded pipe; the bottom of the second screw rod is screwed on the base through a bearing;

[0017] A lifting motor, the lifting motor is fixed on the base through a support, the output shaft of the lifting motor is connected with the second screw rod; the lifting motor is connected with an external power supply;

[0018] A limiting rod, the limiting rod is fixed on the base, a limiting ring is movably sleeved on the limiting rod, and the limiting ring is connected with the rear end of the rear connecting rod;

[0019] Preferably, the water inlet mechanism comprises:

[0020] A first water inlet pipe, the number of the first water inlet pipe is two, and the first water inlet pipe is connected with the bottom of the water tank;

[0021] A first electromagnetic valve, the number of the first electromagnetic valve is two, and the first electromagnetic valve is connected with the first water inlet pipe; the first electromagnetic valve is connected with an external power supply;

[0022] A second water inlet pipe, the second water inlet pipe is a T-shaped structure, two front ends of the second water inlet pipe are connected with the two first electromagnetic valves, and the rear end of the second water inlet pipe is connected with a liquid source.

[0023] Preferably, the water outlet mechanism comprises:

[0024] A first water outlet pipe, the number of the first water outlet pipe is two, and the first water outlet pipe is connected with the bottom of the water tank, and the first water outlet pipe is arranged below the first water inlet pipe;

[0025] A second electromagnetic valve, the number of the second electromagnetic valve is two, and the second electromagnetic valve is connected with the first water outlet pipe; the second electromagnetic valve is connected with an external power supply;

[0026] A second water outlet pipe, the second water outlet pipe is a T-shaped structure, two front ends of the second water outlet pipe are connected with the two second electromagnetic valves, and the front end of the second water outlet pipe is connected with a collecting device.

[0027] Compared with the prior art, the present application has the advantages that:

[0028] 1. The automatic feeding of liquid, pressurized filtration and replacement of the filter are realized, manual intervention is reduced, and production efficiency is improved;

[0029] 2. The device adopts a design of double water tanks working alternately, so that the liquid purification process does not need to be interrupted, continuous production can be realized, and the production efficiency is significantly improved;

[0030] 3. Through the action of the pressurizing motor, the speed of the liquid passing through the filter is accelerated, the filtration efficiency is significantly improved, and the device is particularly suitable for the purification of nanoscale liquid. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 is a structural schematic view of the utility model.

[0032] Figure 2 is Figure 1 the enlarged view of A part in

[0033] Figure 3 is Figure 1 the enlarged view of B part in

[0034] Figure 4 is a structural schematic view when the cover plate is lowered in the utility model.

[0035] Figure 5 is a sectional view of the water tank in the utility model.

[0036] BRIEF DESCRIPTION OF DRAWINGS

[0037] Base 1, water tank 2, square plate 3, No. 1 screw rod 4, pressurizing motor 5, filter 6, cover plate 7, sealing ring 8, lifting mechanism 9, connecting rod 9-1, inner threaded pipe 9-2, No. 2 screw rod 9-3, lifting motor 9-4, limiting rod 9-5, limiting ring 9-6, water inlet mechanism 10, No. 1 water inlet pipe 10-1, No. 1 electromagnetic valve 10-2, No. 2 water inlet pipe 10-3, water outlet mechanism 11, No. 1 water outlet pipe 11-1, No. 2 electromagnetic valve 11-2, No. 2 water outlet pipe 11-3. DETAILED DESCRIPTION

[0038] The technical solutions in the utility model will be described clearly and completely in combination with the drawings, and the preferred embodiments in the description are only taken as examples, and all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0039] The specific embodiment adopts the following technical solutions:

[0040] Please refer to Figures 1-5 , the embodiment 1 comprises a base 1;

[0041] It also contains:

[0042] Water tank 2, the number of said water tank 2 is two, and is respectively set above the base 1 left and right; the upper part of the water tank 2 is square structure, the lower part of the water tank 2 is circular structure; the left and right side walls of the water tank 2 are respectively fixed on the base 1 through the support;

[0043] Square plate 3, the number of said square plate 3 is two, and is respectively embedded in the upper part of the water tank 2; the square plate 3 is fixed with a No. 1 screw rod 4 through the bolt, the No. 1 screw rod 4 is connected with the water tank 2 through the bearing;

[0044] Pressurizing motor 5, the number of said pressurizing motor 5 is two, and is respectively fixed on the base 1 through the support, the pressurizing motor 5 is connected with the external power supply, the specific use model of the pressurizing motor 5 is directly purchased, installed and used from the market according to the actual use requirement; the output shaft of the pressurizing motor 5 is connected with the No. 1 screw rod 4;

[0045] Filter 6, the number of said filter 6 is two, and is respectively set at the bottom of the water tank 2; the bottom of the filter 6 is threadedly connected with the cover plate 7, the cover plate 7 is set at the bottom of the water tank 2; the cover plate 7 is fixed with the sealing ring 8 through the glue, the sealing ring 8 is abutted at the bottom of the water tank 2; the cover plate 7 is connected with the lifting mechanism 9, said lifting mechanism 9 contains:

[0046] Connecting rod 9-1, the number of said connecting rod 9-1 is two, and is respectively fixed at the bottom of the front and rear of the cover plate 7;

[0047] Internal thread pipe 9-2, said internal thread pipe 9-2 is fixed at the front end of the front connecting rod 9-1; the internal thread pipe 9-2 is threadedly connected with the No. 2 screw rod 9-3; the bottom of the No. 2 screw rod 9-3 is connected with the base 1 through the bearing;

[0048] Lifting motor 9-4, said lifting motor 9-4 is fixed on the base 1 through the support, the output shaft of the lifting motor 9-4 is connected with the No. 2 screw rod 9-3; the lifting motor 9-4 is connected with the external power supply, the specific use model of the lifting motor 9-4 is directly purchased, installed and used from the market according to the actual use requirement;

[0049] Limiting rod 9-5, said limiting rod 9-5 is fixed on the base 1, the limiting ring 9-6 is movably sleeved on the limiting rod 9-5, the limiting ring 9-6 is connected with the rear end of the rear connecting rod 9-1;

[0050] Water inlet mechanism 10, said water inlet mechanism 10 is connected with the bottom of the water tank 2; said water inlet mechanism 10 contains:

[0051] No. 1 water inlet pipe 10-1, the number of said No. 1 water inlet pipe 10-1 is two, and is respectively connected with the bottom of the water tank 2;

[0052] The first electromagnetic valve 10-2 is connected with the first water inlet pipe 10-1, and the first electromagnetic valve 10-2 is connected with an external power source, and the specific type of the first electromagnetic valve 10-2 is directly purchased, installed and used according to actual use requirements;

[0053] The second water inlet pipe 10-3 is a T-shaped structure, two front ends of the second water inlet pipe 10-3 are connected with the two first electromagnetic valves 10-2, and a rear end of the second water inlet pipe 10-3 is connected with a liquid source;

[0054] The water outlet mechanism 11 is connected with the bottom of the water tank 2, and the water outlet mechanism 11 is arranged below the water inlet mechanism 10; the water outlet mechanism 11 comprises:

[0055] The first water outlet pipe 11-1 is connected with the bottom of the water tank 2, and the first water outlet pipe 11-1 is arranged below the first water inlet pipe 10-1;

[0056] The second electromagnetic valve 11-2 is connected with the first water outlet pipe 11-1, and the second electromagnetic valve 11-2 is connected with an external power source, and the specific type of the second electromagnetic valve 11-2 is directly purchased, installed and used according to actual use requirements;

[0057] The second water outlet pipe 11-3 is a T-shaped structure, two front ends of the second water outlet pipe 11-3 are connected with the two second electromagnetic valves 11-2, and a front end of the second water outlet pipe 11-3 is connected with a collecting device.

[0058] In use of the utility model, water is supplied from the second water inlet pipe 10-3, one end of the first electromagnetic valve 10-2 is opened, and the pressure motor 5 is opened, taking the left side as an example, the left side of the first electromagnetic valve 10-2 and the pressure motor 5 are opened, the first screw rod 4 rotates, the square plate 3 is lifted, the left side of the water tank 2 is filled with the liquid to be purified, the left side of the second electromagnetic valve 11-2 is opened, and the right side of the first electromagnetic valve 10-2 is closed, the right side of the first electromagnetic valve 10-2 and the pressure motor 5 are opened, and water is supplied to the right side of the water tank 2; at this time, the left side of the pressure motor 5 is started, the square plate 3 is lowered and pressurized, the speed of the liquid passing through the filter 6 is increased, the filtering efficiency is improved, and the filtered liquid is discharged through the second water outlet pipe 11-3;

[0059] When the left side of the water tank 2 is filtered, the right side of the water tank 2 is pressurized according to the above steps, and water is supplied to the left side of the water tank 2 at the same time, the above steps are repeated, so that the two water tanks 2 are in the state of alternating water supply and filtration, and water supply is not interrupted;

[0060] After using for a certain time, the lifting motor 9-4 is started to rotate the second screw rod 9-3, and under the action of the limiting rod 9-5 and the limiting ring 9-6, the cover plate 7 is lowered, so that the filter 6 is conveniently replaced.

[0061] Compared with the prior art, the device has the beneficial effects that:

[0062] 1. Through the automatic control of the electromagnetic valve and the pressurizing motor 5, the automatic feeding, pressurizing filtration and replacement of the filter 6 of the liquid are realized, manual intervention is reduced, and the production efficiency is improved;

[0063] 2. The device adopts the design that the two water tanks 2 work alternately, so that the liquid purification process does not need to be interrupted, continuous production can be realized, and the production efficiency is significantly improved;

[0064] 3. Through the action of the pressurizing motor 5, the speed of the liquid through the filter 6 is accelerated, the filtration efficiency is significantly improved, and the device is particularly suitable for the purification of nanoscale liquid;

[0065] 4. The device is equipped with the lifting motor 9-4 and the screw rod structure, so that the replacement of the filter 6 can be quickly realized, and the maintenance time is reduced.

[0066] For those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, and equivalent replacement of part of the technical features can be made, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the device should be included in the protection scope of the device.

Claims

1. An automated nanoscale liquid purification device, comprising a base (1); Its features are, It also includes: Water tank (2), there are two water tanks (2), and they are respectively located on the left and right sides above the base (1); the upper part of the water tank (2) is a square structure and the lower part of the water tank (2) is a circular structure; the left and right side walls of the water tank (2) are respectively fixed to the base (1) by support legs; Square plate (3), there are two square plates (3), and they are respectively embedded in the upper part of the water tank (2); a screw (4) is fixed on the square plate (3), and the screw (4) is screwed on the water tank (2) through a bearing; There are two pressurizing motors (5), which are fixed on the base (1) by brackets respectively. The pressurizing motors (5) are connected to an external power source. The output shaft of the pressurizing motors (5) is connected to the first screw (4). The number of filters (6) is two, and they are respectively located at the bottom of the water tank (2); Water inlet mechanism (10), which is connected to the bottom of water tank (2); Water outlet mechanism (11) is connected to the bottom of water tank (2) and is located below water inlet mechanism (10).

2. The automated nanoscale liquid purification device according to claim 1, characterized in that: The bottom of the filter (6) is screwed with a cover plate (7), which is located at the bottom of the water tank (2).

3. The automated nanoscale liquid purification device according to claim 2, characterized in that: A sealing ring (8) is fixed on the cover plate (7), and the sealing ring (8) abuts against the bottom of the water tank (2); a lifting mechanism (9) is connected to the cover plate (7).

4. The automated nanoscale liquid purification device according to claim 3, characterized in that: The aforementioned lifting mechanisms (9) all include: Connecting rod (9-1), there are two connecting rods (9-1), and they are fixed at the bottom front and back of the cover plate (7) respectively; The internally threaded tube (9-2) is fixed to the front end of the connecting rod (9-1) on the front side; a second screw (9-3) is screwed into the internally threaded tube (9-2) by a thread; the bottom of the second screw (9-3) is screwed onto the base (1) by a bearing; The lifting motor (9-4) is fixed on the base (1) by a bracket. The output shaft of the lifting motor (9-4) is connected to the second screw (9-3). The lifting motor (9-4) is connected to an external power source. The limiting rod (9-5) is fixed on the base (1), and the limiting ring (9-6) is movably sleeved on the limiting rod (9-5). The limiting ring (9-6) is connected to the rear end of the connecting rod (9-1) on the rear side.

5. The automated nanoscale liquid purification device according to claim 1, characterized in that: The water inlet mechanism (10) includes: There are two No. 1 water inlet pipes (10-1), and they are connected to the bottom of the water tank (2) respectively. There are two solenoid valves (10-2), and each one is connected to the first water inlet pipe (10-1); the first solenoid valve (10-2) is connected to an external power source. The No. 2 water inlet pipe (10-3) has a "T" shaped structure. The two front ends of the No. 2 water inlet pipe (10-3) are connected to the two No. 1 solenoid valves (10-2), and the rear end of the No. 2 water inlet pipe (10-3) is connected to the liquid source.

6. The automated nanoscale liquid purification device according to claim 5, characterized in that: The water outlet mechanism (11) includes: There are two No. 1 water outlet pipes (11-1), and they are connected to the bottom of the water tank (2) respectively. The No. 1 water outlet pipe (11-1) is located below the No. 1 water inlet pipe (10-1). There are two solenoid valves (11-2), and each of them is connected to the first water outlet pipe (11-1); the second solenoid valve (11-2) is connected to an external power source. The second water outlet pipe (11-3) has a "T" shaped structure. The two front ends of the second water outlet pipe (11-3) are connected to two second solenoid valves (11-2), and the front end of the second water outlet pipe (11-3) is connected to the collection device.