Water purifier aging test system

By designing a water purifier aging test system, the aging test of water purifiers was automated and wastewater was recycled, which solved the problem of low efficiency of manual operation in the existing technology, improved production efficiency and reduced labor costs.

CN223471102UActive Publication Date: 2025-10-24ZHANGZHOU WANLIDA ZHONGHUAN TECH INC
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Patent Information

Application Number
CN202422642447.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-24
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing aging tests for water purifiers require a lot of manual labor, resulting in low production efficiency and serious waste of wastewater resources.

Method used

Design a water purifier aging test system, including a raw water tank, a pure water tank, a wastewater tank, and filtration equipment. Connect multiple water purifiers to the aging stage via a conveying device. Equipped with a power supply circuit and an aging power ADC acquisition module, it realizes automated testing and wastewater recycling.

Benefits of technology

It improved production efficiency, reduced labor costs, enabled the recycling of wastewater, and enhanced the automation of testing and the real-time nature of data recording.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a water purifier aging test system which comprises a raw water tank, a pure water tank, a plurality of water purifiers and a waste water tank, a filtering device and a first conveying device are sequentially arranged between the raw water tank and the pure water tank, a water inlet of the filtering device is communicated with the raw water tank, and a water outlet of the filtering device is connected to the pure water tank through the first conveying device; a plurality of water purifiers are arranged in a water purifier aging area, the water purifier aging area comprises an aging profile line, and a plurality of water purifier aging stations are arranged around the aging profile line; the aging profile line is provided with a pure water pipe, a water outlet of the pure water tank is connected to a water inlet of the pure water pipe through a second conveying device, and a water outlet of the pure water pipe is communicated with a water inlet of the water purifier; the aging profile line is further provided with a waste water pipe, a water inlet of the waste water pipe is communicated with a water outlet of the water purifier, and a water outlet of the waste water pipe is communicated with the waste water tank.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of water purifier, especially to a water purifier aging test system. BACKGROUND

[0002] The existing business water purifier aging test method is that personnel carry finished products to the aging area for testing, which not only needs manual water feeding and drainage, but also increases the product carrying of employees. The employees need to observe the product aging at all times, observe the product structure, electricity, performance, reliability and other indicators with naked eyes whether they meet the standard requirements, record the aging time and power change, and five or more people are needed for the post in personnel allocation. The production work efficiency is low. UTILITY MODEL CONTENT

[0003] The utility model provides a kind of water purifier aging test system, provides hardware basis for water purifier aging test, can improve production work efficiency, reduce product aging post personnel quantity.

[0004] In order to solve the above problems, the utility model provides a kind of water purifier aging test system, including raw water tank, pure water tank, multiple water purifiers, wastewater tank, the raw water tank is sequentially provided with filter equipment, first conveying device between pure water tank, the water inlet of filter equipment is connected with the raw water tank, and the water outlet is connected to pure water tank by first conveying device;

[0005] Multiple water purifiers are arranged in water purifier aging area, and the water purifier aging area includes aging profile line, and multiple water purifier aging stations are equipped around the aging profile line;The aging profile line is provided with pure water pipe, and the water outlet of the pure water tank is connected to the water inlet of the pure water pipe by second conveying device, and the water outlet of the pure water pipe is communicated with the water inlet of the water purifier;

[0006] The aging profile line is also provided with wastewater pipe, and the water inlet of the wastewater pipe is communicated with the water outlet of the water purifier, and the water outlet of the wastewater pipe is communicated with the wastewater tank.

[0007] In some embodiments, the filter equipment includes a triple filter, which is a sand filter, an activated carbon filter and a resin filter in sequence.

[0008] In some embodiments, a water pressure adjusting control module is further arranged between the filter equipment and the pure water tank.

[0009] In some embodiments, the aging profile line is equipped with a water receiving groove corresponding to each water purifier aging station for receiving wastewater from the water purifier drinking water outlet, and the water receiving groove and the aging profile line are telescopically connected.

[0010] In some embodiments, the outer side of the aging profile line is equipped with a power supply circuit corresponding to the water purifier aging station.

[0011] In some embodiments, the power supply circuit is equipped with an aging power ADC acquisition module.

[0012] In some embodiments, a cleaning agent tank for disinfecting and recycling wastewater is further included, the outlet of the wastewater tank is communicated with the cleaning agent tank through a third conveying device, and the outlet of the cleaning agent tank is communicated with the raw water tank through a fourth conveying device.

[0013] In some embodiments, a stirring pump is arranged in the cleaning agent tank, and the stirring pump stirs the cleaning liquid in the cleaning agent tank to disinfect the wastewater.

[0014] In some embodiments, the aging profile line is equipped with a drain pipe corresponding to the water purifier aging station, the water inlet of the drain pipe is communicated with the water receiving groove, and the wastewater in the water receiving groove is discharged through the drain pipe.

[0015] In some embodiments, the aging profile line further includes an air source air pipe.

[0016] Compared with the prior art, the utility model has the beneficial effects that:

[0017] 1. By designing the water purifier aging area, the aging profile line is designed in the aging area, and a plurality of water purifier aging test stations are arranged in the aging profile line and communicated with the upstream filtration system and the downstream wastewater tank, so that the filtered pure water upstream can be directly conveyed to the aging profile line for aging test; The aging test system of the utility model does not need to manually transport the finished product to the aging area, and manually injects pure water into the water purifier tank, which can improve the production efficiency and reduce the labor cost.

[0018] 2. By arranging the cleaning agent tank to bleach and disinfect the wastewater of the wastewater tank, and then conveying it to the raw water tank, the recycling of wastewater resources can be realized.

[0019] 3. By arranging the aging power ADC acquisition module in the power supply circuit of the water purifier aging station, the initial performance data of the aging can be uploaded and stored, without manual waiting, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The aging test system flow chart of the utility model;

[0021] Figure 2 The filter stage flow chart of the utility model;

[0022] Figure 3 The water purifier aging area schematic view of the utility model;

[0023] Figure 4 Flow chart for wastewater recovery stage. DETAILED DESCRIPTION

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

[0025] With reference to Figures 1-4 The present embodiment provides a water purifier aging test system, which comprises a raw water tank, a pure water tank, a plurality of water purifiers, and a wastewater tank. A filtering device and a first conveying device are sequentially arranged between the raw water tank and the pure water tank. A water inlet of the filtering device is connected to the raw water tank. The filtering device comprises a triple filter, which comprises a sand filter, an activated carbon filter, and a resin filter in sequence. The filtering device filters raw water in the raw water tank into pure water. A water outlet of the filtering device is connected to the pure water tank through the first conveying device. The first conveying device, i.e., a pure water conveying pump, conveys the filtered pure water into the pure water tank. A water pressure adjusting control module is further arranged between the filtering device and the pure water tank to control the stability of pure water conveying.

[0026] Further, the plurality of water purifiers are arranged in a water purifier aging area. The water purifier aging area comprises an aging profile line, and a plurality of water purifier aging stations are arranged around the aging profile line. The aging profile line is provided with a pure water pipe made of environmentally friendly food-grade POM material. A water outlet of the pure water tank is connected to a water inlet of the pure water pipe through a second conveying device, i.e., a pure water booster pump. A three-way threaded water purifier connector is installed at each station of the pure water pipe as a water outlet to communicate with a water inlet of the water purifier, so that the pure water tank flows through the pure water pipe into the water purifier under the action of the pure water booster pump.

[0027] The aging profile line is further provided with a wastewater pipe also made of environmentally friendly food-grade POM material. A three-way threaded water purifier connector is installed at each station of the wastewater pipe as a water inlet to communicate with a water outlet of the water purifier. A water outlet of the wastewater pipe is connected to the wastewater tank, so that the wastewater after the water purifier aging test enters the wastewater tank through the wastewater pipe.

[0028] In the aging test process, the flow rate of the purified water outlet of the water purifier needs to be tested, and therefore some waste water will flow out of the purified water outlet. In this embodiment, the aging profile line is provided with a water receiving tank corresponding to each water purifier aging station for receiving the waste water from the purified water outlet of the water purifier. The water receiving tank is connected to the aging profile line through a telescopic universal sink hanger. The telescopic universal sink hanger is made of cold-rolled steel, and one end is connected to the aging profile through screw locking, and the other end is connected to the water receiving tank. The water receiving tank can be manually telescoped within 50-400mm before and after the profile.

[0029] The size of the water receiving tank is 100mm*100mm*100mm.

[0030] In the traditional aging test, the waste water is often discharged into the sewer, causing waste of water resources. In this embodiment, a cleaning agent tank for disinfecting and recycling the waste water in the waste water tank is also included. The outlet of the waste water tank is connected to the cleaning agent tank through a third conveying device, i.e., a waste water conveying pump, so as to convey the waste water in the waste water tank to the cleaning agent tank. A stirring pump is arranged in the cleaning agent tank. The stirring pump stirs the cleaning liquid in the cleaning agent tank, i.e., sodium hypochlorite, to bleach and disinfect the waste water, so as to obtain disinfected water. The outlet of the cleaning agent tank is connected to the raw water tank through a fourth conveying device, i.e., a disinfected water conveying pump, so as to convey the disinfected water to the raw water tank and then add it into the system for circulation. In this way, the waste water in the waste water tank is recycled.

[0031] A small amount of waste water in the water receiving tank is discharged into the sewer through a drain pipe. A one-meter long PVC high-temperature resistant steel wire pipe is installed in each water receiving tank. The steel wire pipe is connected to the water inlet of the drain pipe installed in each station, so that the waste water in the water receiving tank can flow through the steel wire pipe and then flow through the drain pipe for discharge.

[0032] In order to realize the synchronous recording of the power supply and the aging data of the water purifier, further, the outer side of the aging profile line is provided with a power supply circuit corresponding to each water purifier aging station. The power supply circuit includes two sockets for supplying 110-volt power supply and 220-volt power supply, respectively. An aging power ADC acquisition module is arranged at the 110-volt power supply socket. The aging power ADC acquisition module records the aging time and power of each water purifier and saves them in a database. The power ADC acquisition module realizes analog-to-digital conversion to obtain real-time power. The power ADC acquisition module is connected through a communication port. The power ADC acquisition module realizes one-to-many acquisition of power information through single-chip microcomputer communication, LED control, etc. Each station is connected through a connection port to realize input and output signal connection.

[0033] In the present embodiment, the aging profile wire further comprises a gas supply air tube. The gas supply air tube provides a carrier for gas delivery and is generally comprised of a pressure regulator, a gas container, a safety valve, and a gas outlet. Oxygen or other gas from the gas container enters the system, is regulated by the pressure regulator, and is distributed to a plurality of gas outlets. Gas can be provided to auxiliary tooling or equipment.

[0034] The above merely provides the preferred embodiment of the present application, and the design concept of the present application is not limited thereto. Any person skilled in the art, within the technical scope disclosed by the present application, can make non-essential changes to the present application by using the concept, and such changes shall be deemed within the protection scope of the present application.

Claims

1. A water purifier aging test system, characterized in that, The water purification system comprises a raw water tank, a pure water tank, a plurality of water purifiers, and a waste water tank. The plurality of water purifiers are arranged in a water purifier aging area, which comprises an aging profile line, and a plurality of water purifier aging stations are arranged around the aging profile line. The aging profile line is provided with a pure water pipe, and the outlet of the pure water tank is connected to the inlet of the pure water pipe through a second conveying device.

2. The water purifier aging test system of claim 1, wherein, The aging profile line is also provided with a waste water pipe, and the inlet of the waste water pipe is connected to the outlet of the water purifier.

3. The water purifier aging test system of claim 1, wherein, The filter device comprises a triple filter, which comprises a sand filter, an activated carbon filter, and a resin filter.

4. The water purifier aging test system of claim 1, wherein, The filter device is also provided with a water pressure adjustment control module between the filter device and the pure water tank.

5. The water purifier aging test system of claim 1, wherein, The aging profile line is provided with a water receiving groove corresponding to each water purifier aging station for receiving waste water from the outlet of the water purifier.

6. The water purifier aging test system of claim 5, wherein, The aging profile line is provided with a power supply circuit corresponding to each water purifier aging station.

7. The water purifier aging test system of claim 1, wherein The power supply circuit is provided with an aging power ADC acquisition module.

8. The water purifier aging test system of claim 7, wherein, The water purification system also comprises a cleaning agent tank for disinfecting and recycling waste water.

9. The water purifier aging test system of claim 4, wherein, The cleaning agent tank is provided with a stirring pump for stirring the cleaning liquid in the cleaning agent tank to disinfect the waste water.

10. The water purifier aging test system of claim 1, wherein, The aging profile line is provided with a drain pipe corresponding to each water purifier aging station. The aging profile line is also provided with a gas source pipe.