Efficient water-saving washing device

By introducing a stirring component and a reverse osmosis membrane component into the water washing device, the problem of water waste is solved, and multiple water recycling and efficient water washing effects are achieved.

CN223607063UActive Publication Date: 2025-11-28SHANDONG JINCHANGSHU NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202423155805.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-28
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing water washing equipment cannot be recycled multiple times, resulting in water waste.

Method used

A high-efficiency water-saving washing device is adopted, which includes a stirring component, a reverse osmosis membrane component, and a water supply component. The stirring component dissolves sodium salts in the flocs, and the reverse osmosis membrane component performs multiple filtrations and purifications, enabling the water to be reused multiple times.

Benefits of technology

This enables multiple water recycling, improving washing efficiency and resource utilization.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223607063U_ABST
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Abstract

The utility model relates to the technical field of water washing devices, in particular to an efficient water-saving water washing device which realizes repeated utilization of water. The efficient water-saving washing device comprises a bottom plate, a washing tank, a discharging three-way pipe, a first valve, a first water storage tank, a second water storage tank and a second valve, the discharging three-way pipe, the first water storage tank and the second water storage tank are arranged at the top end of the bottom plate, and the discharging three-way pipe is arranged at the output end of the washing tank; a first valve and a second valve are respectively arranged on the discharge three-way pipe, one group of output ends of the discharge three-way pipe are communicated with the input end of the first water storage tank, and the filter tank is arranged on the discharge three-way pipe between the second valve and the first water storage tank; a reverse osmosis membrane assembly is arranged between the first water storage tank and the second water storage tank, a water conveying assembly is arranged between the second water storage tank and the washing tank, and a stirring assembly is arranged in the washing tank.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of washing device, in particular to a kind of efficient water-saving washing device. BACKGROUND

[0002] In the chemical industry, in the copolymer production process, unnecessary sodium salt exists in flocculation product, and the flocculation product is washed in the washing tank to remove unnecessary sodium salt, so as to improve the purity of the final product.

[0003] In the prior art, the patent document with the publication number CN213287930U discloses a washing kettle, which comprises a washing kettle body and an adjusting unit.

[0004] It is found that the water of the above-mentioned device cannot be recycled multiple times, causing waste of water resources. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the utility model provides an efficient water-saving washing device.

[0006] The efficient water-saving washing device of the utility model, including bottom plate, washing tank, outer discharge tee pipe, valve, No. 1 water storage tank, No. 2 water storage tank and No. 2 valve, the bottom plate top respectively is provided with outer discharge tee pipe, No. 1 water storage tank and No. 2 water storage tank, the washing tank output is provided with outer discharge tee pipe, and No. 1 valve and No. 2 valve are respectively arranged on the outer discharge tee pipe, and the output end of the outer discharge tee pipe is communicated with the input end of No. 1 water storage tank, and the filter box is installed on the outer discharge tee pipe between No. 2 valve and No. 1 water storage tank, further comprising stirring assembly, reverse osmosis membrane assembly and water delivery assembly, the reverse osmosis membrane assembly is arranged between No. 1 water storage tank and No. 2 water storage tank, the water delivery assembly is arranged between No. 2 water storage tank and the washing tank, and the stirring assembly is arranged in the washing tank, when using, the flocculation is injected into the inside of washing tank, the water delivery assembly is started, so that the water in No. 2 water storage tank is injected into the inside of washing tank, the stirring assembly is started, so that the sodium salt mixed with the flocculation in the inside of washing tank is dissolved, then it is stationary, the flocculation is gathered at the bottom end in the inside of washing tank, No. 1 valve is opened and No. 2 valve is kept closed, so that the precipitated flocculation is discharged through the outer discharge tee pipe, then No. 1 valve is closed and No. 2 valve is opened, so that the water absorbed with sodium salt is filtered through the filter box and then enters No. 1 water storage tank, the reverse osmosis membrane assembly is started, so that the water in No. 1 water storage tank is filtered through reverse osmosis and then enters No. 2 water storage tank for standby, realizing multiple use of water.

[0007] Preferably, the stirring assembly comprises a motor, a rotating shaft and stirring blades, the water washing tank is provided with the motor at the top end, the motor is provided with the rotating shaft at the output end, the rotating shaft extends to the inside of the water washing tank at the bottom end, and a plurality of groups of stirring blades are installed on the rotating shaft in the water washing tank; the motor is started to drive the rotating shaft to stir the flocculation in the water washing tank, so that the sodium salt is fully contacted with and dissolved in the aqueous solution, and the water washing efficiency is improved.

[0008] Preferably, the reverse osmosis membrane assembly comprises a first conveying pump, a first three-way pipe, a reverse osmosis membrane body, a second three-way pipe and a third valve, the bottom plate is provided with the first conveying pump at the top end, the input end of the first conveying pump is communicated with the output end of the first water storage tank, the output end of the first conveying pump is communicated with the input end of the first three-way pipe, the two groups of output ends of the first three-way pipe are respectively communicated with the input ends of the two groups of reverse osmosis membrane bodies, the output ends of the two groups of reverse osmosis membrane bodies are respectively communicated with the two groups of input ends of the second three-way pipe, the output end of the second three-way pipe is communicated with the input end of the second water storage tank, and the first three-way pipe and the second three-way pipe are respectively provided with the two groups of third valves; the two groups of third valves on the two sides of the first group of reverse osmosis membrane bodies are opened, the two groups of third valves on the two sides of the second group of reverse osmosis membrane bodies are closed, and the first conveying pump is started, so that the water containing sodium salt in the first water storage tank is filtered by the first group of reverse osmosis membrane bodies and then enters the second water storage tank for standby, when the first group of reverse osmosis membrane bodies needs to be cleaned, the two groups of reverse osmosis membrane bodies are switched, the continuity of water washing is realized, and the water washing efficiency is improved.

[0009] Preferably, the water conveying assembly comprises a second conveying pump, a water conveying pipe and a water inlet pipe, the second water storage tank is provided with the second conveying pump at the top end, the water inlet pipe is arranged at the input end of the second conveying pump and extends into the inside of the second water storage tank, and the water conveying pipe is arranged at the output end of the second conveying pump and communicated with the input end of the water washing tank; the second conveying pump is started, so that the water in the second water storage tank is injected into the inside of the water washing tank through the water inlet pipe and the water conveying pipe, and the convenience is improved.

[0010] Preferably, the stirring blades are made of stainless steel.

[0011] Preferably, the water storage tank is provided with an observation window; the staff can observe the liquid level of the water in the inside of the second water storage tank through the observation window, and the convenience is improved.

[0012] Preferably, the second water storage tank is provided with a sampling pipe and a sampling valve; the staff can open the sampling valve to make the water flow out of the sampling pipe for sampling, and the convenience is improved.

[0013] Compared with the prior art, the beneficial effects of the utility model are that: when using, the flocculation is injected into the water washing tank, the water in the No. 2 water storage tank is injected into the water washing tank by starting the water conveying assembly, the sodium salt mixed with the flocculation in the water washing tank is dissolved by starting the stirring assembly, then it is static, the flocculation is gathered at the bottom end in the water washing tank, the No. 1 valve is opened and the No. 2 valve is kept closed, the precipitated flocculation is discharged through the discharge three-way pipe, then the No. 1 valve is closed and the No. 2 valve is opened, the water absorbing the sodium salt is filtered through the filter box and then enters the No. 1 water storage tank, the reverse osmosis membrane assembly is started, so that the water in the No. 1 water storage tank is filtered through the reverse osmosis and then enters the No. 2 water storage tank for standby, realizing the multiple use of water. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the first axonometric structure schematic diagram of the utility model;

[0015] Figure 2 It is the second axonometric structure schematic diagram of the utility model;

[0016] Figure 3 It is the explosion structure schematic diagram of the utility model;

[0017] Figure 4 It is the enlarged structure schematic diagram of the motor and stirring blade and the like structure;

[0018] Figure 5 It is the enlarged structure schematic diagram of the No. 1 conveying pump and reverse osmosis membrane main body and the like structure.

[0019] Mark in drawing: 1, bottom plate;2, water washing tank;3, discharge three-way pipe;4, No. 1 valve;5, No. 1 water storage tank;6, No. 2 water storage tank;7, No. 2 valve;8, motor;9, rotating shaft;10, stirring blade;11, No. 1 conveying pump;12, No. 1 three-way pipe;13, reverse osmosis membrane assembly;14, No. 2 three-way pipe;15, No. 3 valve;16, No. 2 conveying pump;17, water conveying pipe;18, water inlet pipe;19, observation window;20, sampling pipe;21, sampling valve. DETAILED DESCRIPTION

[0020] In order to facilitate understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0021] Embodiment 1

[0022] As Figures 1 to 3As shown in the utility model discloses a high -efficient water -saving washing device, including bottom plate 1, washing tank 2, outer row three -way pipe 3, valve 4, first -class water storage tank 5, second -class water storage tank 6 and second -class valve 7, bottom plate 1 top respectively is provided with outer row three -way pipe 3, first -class water storage tank 5 and second -class water storage tank 6, washing tank 2 output is provided with outer row three -way pipe 3, and outer row three -way pipe 3 is provided with first -class valve 4 and second -class valve 7 respectively, a group of output of outer row three -way pipe 3 is communicated with first -class water storage tank 5 input, and the filter box is installed on outer row three -way pipe 3 between second -class valve 7 and first -class water storage tank 5, still include stirring assembly, reverse osmosis membrane assembly and water delivery assembly, be provided with reverse osmosis membrane assembly between first -class water storage tank 5 and second -class water storage tank 6, be provided with water delivery assembly between second -class water storage tank 6 and washing tank 2, the inside of washing tank 2 is provided with stirring assembly.

[0023] As Figure 2 , Figure 3 and Figure 4 shown, stirring assembly includes motor 8, shaft 9 and stirring vane 10, washing tank 2 top is provided with motor 8, and the output of motor 8 is provided with shaft 9, and the bottom end of shaft 9 extends to the inside of washing tank 2, and a plurality of groups of stirring vane 10 are installed on shaft 9 in the inside of washing tank 2.

[0024] As Figure 3 and Figure 5 shown, reverse osmosis membrane assembly includes first -class delivery pump 11, one -way pipe 12, reverse osmosis membrane main part 13, two -way pipe 14 and third valve 15, the top of bottom plate 1 is provided with first -class delivery pump 11, and the input of first -class delivery pump 11 is communicated with the output of first -class water storage tank 5, and the output of first -class delivery pump 11 is communicated with the input of one -way pipe 12, and the two groups of outputs of one -way pipe 12 are respectively communicated with the input of two groups of reverse osmosis membrane main part 13, and the output of two groups of reverse osmosis membrane main part 13 is respectively communicated with the two groups of input of two -way pipe 14, and the output of two -way pipe 14 is communicated with the input of second -class water storage tank 6, and two groups of third valve 15 are respectively provided on one -way pipe 12 and two -way pipe 14.

[0025] In this embodiment, the motor 8 is started, so that the rotating shaft 9 drives the plurality of stirring blades 10 inside the washing tank 2 to stir the flocculation, so that the sodium salt is fully contacted with the aqueous solution and dissolved, and then is static, the flocculation is gathered at the bottom end inside the washing tank 2, the first valve 4 is opened and the second valve 7 is kept closed, so that the precipitated flocculation is discharged through the discharge tee pipe 3, then the first valve 4 is closed and the second valve 7 is opened, so that the water absorbing the sodium salt is filtered through the filter tank and then enters the first water storage tank 5, the two groups of third valves 15 on both sides of the first group of reverse osmosis membrane bodies 13 are opened and the two groups of third valves 15 on both sides of the second group of reverse osmosis membrane bodies 13 are closed, and the first conveying pump 11 is started, so that the water containing sodium salt in the first water storage tank 5 is filtered through the first group of reverse osmosis membrane bodies 13 and then enters the second water storage tank 6 for standby.

[0026] Embodiment 2

[0027] As Figures 1 to 3 shown, the utility model discloses a high -efficient water -saving washing device, including bottom plate 1, washing tank 2, discharge tee pipe 3, first valve 4, first water storage tank 5, second water storage tank 6 and second valve 7, the bottom plate 1 top respectively is provided with discharge tee pipe 3, first water storage tank 5 and second water storage tank 6, the washing tank 2 output is provided with discharge tee pipe 3, and discharge tee pipe 3 is provided with first valve 4 and second valve 7 respectively, a group of output ends of discharge tee pipe 3 and first water storage tank 5 input end intercommunication, filter tank is installed on discharge tee pipe 3 between second valve 7 and first water storage tank 5, still include stirring subassembly, reverse osmosis membrane subassembly and water delivery subassembly, be provided with reverse osmosis membrane subassembly between first water storage tank 5 and second water storage tank 6, be provided with water delivery subassembly between second water storage tank 6 and washing tank 2, be provided with stirring subassembly in the washing tank 2.

[0028] As Figure 2 , Figure 3 and Figure 4 shown, the stirring subassembly includes motor 8, rotating shaft 9 and stirring blade 10, the washing tank 2 top is provided with motor 8, and the output of motor 8 is provided with rotating shaft 9, and the bottom end of rotating shaft 9 extends to the inside of washing tank 2, and a plurality of stirring blades 10 are installed on rotating shaft 9 inside washing tank 2;

[0029] As Figure 3 and Figure 5As shown, the reverse osmosis membrane assembly includes a first delivery pump 11, a first three-way pipe 12, a reverse osmosis membrane body 13, a second three-way pipe 14 and a third valve 15, the bottom plate 1 top end is provided with a first delivery pump 11, the first delivery pump 11 input end communicates with the first water storage tank 5 output end, the first delivery pump 11 output end communicates with the first three-way pipe 12 input end, the first three-way pipe 12 two groups of output ends respectively communicate with two groups of reverse osmosis membrane body 13 input ends, two groups of reverse osmosis membrane body 13 output ends respectively communicate with two groups of second three-way pipe 14 input ends, the second three-way pipe 14 output end communicates with the second water storage tank 6 input end, the first three-way pipe 12 and the second three-way pipe 14 are respectively provided with two groups of third valves 15.

[0030] As shown in Figure 2 and Figure 3 As shown, the water delivery assembly includes a second delivery pump 16, a water delivery pipe 17 and a water inlet pipe 18, the second water storage tank 6 top end is provided with a second delivery pump 16, the second delivery pump 16 input end is provided with a water inlet pipe 18, the water inlet pipe 18 input end extends to the second water storage tank 6 inside, the second delivery pump 16 output end is provided with a water delivery pipe 17, and the water delivery pipe 17 output end communicates with the water washing tank 2 input end.

[0031] It also includes an observation window 19, a sampling pipe 20 and a sampling valve 21, the second water storage tank 6 is provided with an observation window 19, the second water storage tank 6 is provided with a sampling pipe 20, and the sampling pipe 20 is provided with a sampling valve 21.

[0032] In this embodiment, the second delivery pump 16 is started, so that the water in the second water storage tank 6 inside is injected into the water washing tank 2 inside through the water inlet pipe 18 and the water delivery pipe 17, the motor 8 is started, so that the rotating shaft 9 drives a plurality of stirring blades 10 in the water washing tank 2 to stir the flocculation, so that the sodium salt is fully contacted with the aqueous solution and dissolved, then it is static, the flocculation is gathered at the bottom end in the water washing tank 2, the first valve 4 is opened and the second valve 7 is kept closed, so that the precipitated flocculation is discharged through the discharge three-way pipe 3, then the first valve 4 is closed and the second valve 7 is opened, so that the water absorbing the sodium salt is filtered through the filter tank and then enters the first water storage tank 5, the two groups of third valves 15 on both sides of the first group of reverse osmosis membrane bodies 13 are opened and the two groups of third valves 15 on both sides of the second group of reverse osmosis membrane bodies 13 are closed, the first delivery pump 11 is started, so that the water containing sodium salt in the first water storage tank 5 is filtered through the first group of reverse osmosis membrane bodies 13 and then enters the second water storage tank 6 for standby.

[0033] The motor 8, the reverse osmosis membrane body 13, the first delivery pump 11 and the second delivery pump 16 of the efficient water-saving washing device are purchased on the market, and the technical personnel in the industry only needs to install and operate according to the use instruction book attached, without the technical personnel in the field paying creative labor.

[0034] The above merely describes preferred embodiments of the present application, and it should be noted that, for those skilled in the art, without departing from the technical principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications should also be considered as the protection scope of the present application.

Claims

1. A high-efficiency water-saving washing device, comprising a base plate (1), a washing tank (2), an external discharge tee pipe (3), a first valve (4), a first water storage tank (5), a second water storage tank (6), and a second valve (7), wherein the top of the base plate (1) is respectively provided with the external discharge tee pipe (3), the first water storage tank (5), and the second water storage tank (6), the output end of the washing tank (2) is provided with the external discharge tee pipe (3), and the first valve (4) and the second valve (7) are respectively provided on the external discharge tee pipe (3), one set of output ends of the external discharge tee pipe (3) is connected to the input end of the first water storage tank (5), and a filter box is installed on the external discharge tee pipe (3) between the second valve (7) and the first water storage tank (5), characterized in that, It also comprises a stirring assembly, a reverse osmosis membrane assembly and a water delivery assembly, the reverse osmosis membrane assembly is arranged between the first water storage tank (5) and the second water storage tank (6), the water delivery assembly is arranged between the second water storage tank (6) and the water washing tank (2), and the stirring assembly is arranged in the water washing tank (2).

2. A high efficiency water conserving washing apparatus as claimed in claim 1 wherein, The stirring assembly comprises a motor (8), a rotating shaft (9) and a plurality of stirring blades (10), the water washing tank (2) is provided with the motor (8) at the top end, the motor (8) is provided with the rotating shaft (9) at the output end, the rotating shaft (9) extends to the inside of the water washing tank (2) at the bottom end, and the plurality of stirring blades (10) are installed on the rotating shaft (9) in the water washing tank (2).

3. A high efficiency water conserving washing apparatus as claimed in claim 2 wherein, The reverse osmosis membrane assembly comprises a first conveying pump (11), a first three-way pipe (12), a reverse osmosis membrane body (13), a second three-way pipe (14) and a third valve (15), the bottom plate (1) is provided with the first conveying pump (11) at the top end, the input end of the first conveying pump (11) is communicated with the output end of the first water storage tank (5), the output end of the first conveying pump (11) is communicated with the input end of the first three-way pipe (12), the two output ends of the first three-way pipe (12) are respectively communicated with the input ends of the two reverse osmosis membrane bodies (13), the output ends of the two reverse osmosis membrane bodies (13) are respectively communicated with the two input ends of the second three-way pipe (14), the output end of the second three-way pipe (14) is communicated with the input end of the second water storage tank (6), and the first three-way pipe (12) and the second three-way pipe (14) are respectively provided with the two third valves (15).

4. A high efficiency water conserving washing apparatus as claimed in claim 1 wherein, The water delivery assembly comprises a second conveying pump (16), a water delivery pipe (17) and a water inlet pipe (18), the second water storage tank (6) is provided with the second conveying pump (16) at the top end, the input end of the second conveying pump (16) is provided with the water inlet pipe (18), the input end of the water inlet pipe (18) extends to the inside of the second water storage tank (6), and the output end of the second conveying pump (16) is provided with the water delivery pipe (17), and the output end of the water delivery pipe (17) is communicated with the input end of the water washing tank (2).

5. A high efficiency water conserving washing apparatus as claimed in claim 2 wherein, The stirring blade (10) is made of stainless steel.

6. A high efficiency water conserving washing apparatus as claimed in claim 1 wherein, It also comprises an observation window (19), and the second water storage tank (6) is provided with the observation window (19).

7. A high efficiency water conserving washing apparatus as claimed in claim 1 wherein, It also comprises a sampling pipe (20) and a sampling valve (21), and the second water storage tank (6) is provided with the sampling pipe (20), and the sampling valve (21) is arranged on the sampling pipe (20).

Citation Information

Patent Citations

  • Water washing kettle

    CN213287930U