CN219792616U - Chen Shui Huiliu driving module - Google Patents

Chen Shui Huiliu driving module Download PDF

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Publication number
CN219792616U
CN219792616U CN202320640976.XU CN202320640976U CN219792616U CN 219792616 U CN219792616 U CN 219792616U CN 202320640976 U CN202320640976 U CN 202320640976U CN 219792616 U CN219792616 U CN 219792616U
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water
pipeline
module
filter
waste water
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CN202320640976.XU
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Chinese (zh)
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杜宇俊
方睿
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Anhui Aikes Intelligent Electric Appliance Co ltd
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Anhui Aikes Intelligent Electric Appliance Co ltd
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Abstract

The utility model discloses a aged Shui Huiliu driving module which comprises a mounting shell, an electric control module, a wiring terminal and a aged water return pipeline, wherein the electric control module, the wiring terminal and the aged water return pipeline are integrated in the mounting shell, and a return electromagnetic valve and a second check valve are arranged on the aged water return pipeline. The electric control module of the driving module has complete control functions of water making, flushing, maintenance, zero-aged water and the like, and can replace an electric control board of the original water purifier after being installed; meanwhile, when the space of the original water purifier is insufficient, the electric control board of the original water purifier can be reserved, and the control program of the electric control module is led into the electric control board of the original water purifier, so that the original water purifying function is guaranteed, and meanwhile, the zero-ageing water function is achieved. The parts of the driving module can be integrated on the mounting shell, and then the mounting shell is integrally mounted at the open position of the original water purifier; meanwhile, when the internal space of the original water purifier is insufficient, the parts of the driving module can be disassembled for decentralized installation, and the use flexibility is high.

Description

Chen Shui Huiliu driving module
Technical Field
The utility model relates to the technical field of water purifiers, in particular to a Chen Shui Huiliu driving module.
Background
The RO membrane component is used as a core component of the reverse osmosis water purifier, impurities in raw water are filtered through the RO membrane component to obtain pure water, and therefore the hardness of the water is reduced. When the water purifier is in standby, the TDS value of the water on the raw water side is higher than that of the water staying on the pure water side, so that the salt content of the water on the raw water side is easy to permeate to the pure water side, and the salt content concentration of the water on the raw water side and the salt content of the water on the pure water side of the RO membrane assembly are basically consistent. Therefore, after the water purifier stands by for a period of time, the TDS value of the first cup of water which is taken by the user is higher, and the water quality can not meet the filtering requirement, so that the user always needs to pour out when taking the first cup of water, and the waste of water resources is further caused. Meanwhile, under the condition of poor raw water conditions, the corrosion and aging of components are too fast, and the service life of the filter element of the water purifier is reduced.
The reverse osmosis water purifier with the zero-old water function is present, but the original reverse osmosis water purifier without the zero-old water function cannot be additionally provided with the zero-old water function, so that the technical problem to be solved is not affected by how to additionally provide the zero-old water module on the original water purifier.
Disclosure of Invention
The utility model aims to provide a Chen Shui Huiliu driving module which is used for solving the technical problems in the background technology.
The utility model relates to a mature Shui Huiliu driving module which is connected to a pipeline of a water purifier and comprises a mounting shell, an electric control module, a wiring terminal and a mature water return pipeline, wherein the electric control module, the wiring terminal and the mature water return pipeline are integrated in the mounting shell, and a return electromagnetic valve and a second check valve are arranged on the mature water return pipeline;
the electronic control module comprises a water making module, a flushing module, an overhaul module, a touch zero clearing module, a filter element service life monitoring module and a zero-ageing water control module;
the water purifier pipeline is sequentially provided with a water inlet pipeline, a filter module, a waste water pipeline and a pure water pipeline along the raw water flowing direction, the filter module comprises a first filter assembly and a second filter assembly which are arranged along the raw water flowing direction, the filter module is arranged on the water inlet pipeline, the waste water pipeline is connected with the second filter assembly, the pure water pipeline is externally connected with a pure water tap, two ends of a waste water return pipeline are respectively connected with the second filter assembly and the water inlet pipeline, the waste water return pipeline and the water inlet pipeline connecting site are positioned behind the first filter assembly, and waste water flows back into the water inlet pipeline through the waste water return pipeline and is purified again through the filter module.
In a preferred embodiment, the water making module controls the water making process to be: the high-voltage switch is closed to be in a water making state, and the booster pump and the water inlet electromagnetic valve are started until reaching a water full state; when the water is full, the high-voltage switch is turned on, the booster pump and the water inlet electromagnetic valve are closed, and the pressure relief treatment flushing valve is turned on for 5 seconds.
In a preferred embodiment, the flush module control process is: every time the booster pump and the water inlet electromagnetic valve work for 30 minutes in a cumulative way, the flushing electromagnetic valve works for 10 seconds when the water is full; the flushing can also be controlled by the touch module, and the flushing is performed manually for 30 seconds once.
In a preferred embodiment, the service module comprises two service modes: (1) Continuously preparing water for 40 minutes, and then entering an overhaul state, (2) turning on a low-opening switch to alarm water shortage; when the air conditioner enters the maintenance state, the booster pump, the water inlet electromagnetic valve and the flushing electromagnetic valve all stop working.
In a preferred embodiment, the touch zero clearing module is controlled in the following manner: under the normal working condition of electrifying, entering a filter element zero clearing mode for 3 seconds, enabling an RO filter element lamp to flash in the zero clearing mode, and completing zero clearing when the RO filter element lamp is changed from flash to long-lighting for 3 seconds; and switching the next PPC filter element by pressing a key for a short time, and performing zero clearing circularly.
In a preferred embodiment, the monitoring method of the filter element life monitoring module is as follows: (1) RO cartridge life: the accumulated water making time is 50 hours or 17280 hours after power on, and the time is totally recime after zero clearing; (2) PPC membrane filter core life: the accumulated water making time is 25 hours or the power-on is 4320 hours, and the time is totally recime after zero clearing.
In a preferred embodiment, the zero-stale control module is flushed by: the water inlet electromagnetic valve and the pump, the waste water electromagnetic valve is simultaneously opened to wash for 10S, then the reflux valve is opened, and the reflux is carried out for 30S; in the state of full water, if no water braking action is detected every 6 hours, the water is automatically washed once according to the zero-water-ageing mode.
In a preferred embodiment, a water inlet electromagnetic valve and a booster pump are sequentially arranged on a water inlet pipeline between the first filtering component and the second filtering component, and one end of the old water return pipeline is connected between the water inlet electromagnetic valve and the booster pump; the first filter component comprises a PPC cotton-carbon composite filter element, and the second filter component comprises an RO reverse osmosis filter element;
in a preferred embodiment, one end of the waste water pipeline is connected with the RO reverse osmosis filter element, the other end of the waste water pipeline is provided with a waste water outlet, and a waste water combination valve is arranged on the waste water pipeline; the pure water pipeline is provided with a first check valve and a high-pressure switch which are sequentially arranged along the water flow direction.
The technical scheme of the utility model has the beneficial effects that:
1. the parts of the driving module can be integrated on the mounting shell, and then the mounting shell is integrally mounted at the open position of the original water purifier; meanwhile, when the internal space of the original water purifier is insufficient, the parts of the driving module can be disassembled for decentralized installation, and the use flexibility is high.
2. The electric control module of the driving module has complete control functions of water making, flushing, maintenance, zero-aged water and the like, and can replace an electric control board of the original water purifier after being installed; meanwhile, when the space of the original water purifier is insufficient, the electric control board of the original water purifier can be reserved, and the control program of the electric control module is led into the electric control board of the original water purifier, so that the original water purifying function is guaranteed, and meanwhile, the zero-ageing water function is achieved.
Drawings
FIG. 1 is a flow chart showing the whole process of the utility model connected with a water purifier pipeline,
figure 2 is a schematic diagram of the overall structure of the utility model,
FIG. 3 is a schematic diagram of the internal structure of the present utility model.
Reference numerals illustrate: 1 water inlet pipeline, 11 water inlet electromagnetic valve, 12 booster pump, 2 filtration module, 21PPC cotton carbon composite filter element, 22RO reverse osmosis filter element, 3 waste water pipeline, 31 waste water combination valve, 32 outlet, 4 pure water pipeline, 41 first check valve, 42 high-voltage switch, 43 pure water tap, 5 Chen Shui Huiliu pipeline, 51 reflux electromagnetic valve, 52 second check valve, 6 installation shell, 7 electric control board, 8 binding post.
Detailed Description
The utility model will be described in further detail with reference to the drawings and the detailed description. The embodiments of the present utility model have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the utility model in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments were chosen and described in order to best explain the principles of the utility model and the practical application, and to enable others of ordinary skill in the art to understand the utility model for various embodiments with various modifications as are suited to the particular use contemplated.
As shown in fig. 1-3, the present utility model provides a aged Shui Huiliu driving module, which is connected to a pipeline of a water purifier, and comprises a mounting housing 6, an electronic control module 7 integrated in the mounting housing 6, a connection terminal 8 and a aged water return pipeline 5, wherein the aged water return pipeline 5 is provided with a return electromagnetic valve 51 and a second check valve 52, and simultaneously, two ends of the aged water return pipeline 5 are connected with three-way connectors of the original water purifier pipeline. The parts of the driving module can be integrated on the mounting shell 6, and then the mounting shell 6 is integrally mounted at the open position of the original water purifier; meanwhile, when the internal space of the original water purifier is insufficient, the parts of the driving module can be disassembled for decentralized installation, and the use flexibility is high.
The pipeline of the water purifier is arranged in the following form: comprises a water inlet pipeline 1, a filter module 2, a waste water pipeline 3 and a pure water pipeline 4 which are sequentially arranged along the raw water flowing direction. Wherein, filter module 2 includes first filter component and the second filter component that sets up along raw water flow direction, and filter module 2 sets up on water intake pipe 1, waste water pipeline 3 with the second filter component is connected, and pure water pipeline 4 external pure water tap 43. In this scheme, the two ends of the aged water return pipeline 5 are respectively connected with the second filter assembly and the water inlet pipeline 1, and the connection site of the aged water return pipeline 5 and the water inlet pipeline 1 is positioned behind the first filter assembly.
Raw water (tap water) flows to the filtering module 22 through the water inlet pipeline 11 to be filtered, impurities, pollutants and the like in the raw water are removed, purified pure water can be conveyed to a user end through the pure water pipeline 44 for use, the filtered impurities are discharged through the waste water pipeline 33, and the aged water return pipeline 55 can return and purify the first cup of water restarted after standby, so that water resources are saved, and water resource waste is avoided.
A water inlet electromagnetic valve 11 and a booster pump 12 are sequentially arranged on the water inlet pipeline 1 between the first filter assembly and the second filter assembly, and one end of the old water return pipeline 5 is connected between the water inlet electromagnetic valve 11 and the booster pump 12; the first filter assembly comprises a PPC cotton carbon composite filter element 21 and the second filter assembly comprises an RO reverse osmosis filter element 22. One end of the waste water pipeline 3 is connected with the RO reverse osmosis filter element 22, the other end of the waste water pipeline is provided with a waste water outlet 32, and the waste water pipeline 3 is provided with a waste water combination valve 31; the pure water pipeline 4 is provided with a first check valve 41 and a high-pressure switch 42 which are sequentially arranged along the water flow direction.
Raw water is filtered through the PPC cotton carbon composite filter element 21 once when flowing through the PPC cotton carbon composite filter element 21, impurities with larger diameters are filtered, and then the raw water is conveyed to the RO reverse osmosis filter element 22 for secondary filtration through the pressurizing pump 12 in a pressurizing mode, impurities with small diameters are filtered, and then purification of raw water is achieved. The waste water generated after the purification is discharged through the waste water pipe 3, and at the same time, the waste water generated by the washing is discharged from the waste water outlet 32 when the washing is performed.
In the scheme, the electric control module 7 comprises a water making module, a flushing module, a maintenance module, a touch zero clearing module, a filter element service life monitoring module and a zero-aged water control module. The electric control module 7 of the driving module has complete control functions of water making, flushing, overhauling, zero-aged water and the like, and can replace an electric control board of the original water purifier after being installed; meanwhile, when the space of the original water purifier is insufficient, the electric control board of the original water purifier can be reserved, and the control program of the electric control module 7 is led into the electric control board of the original water purifier, so that the original water purifying function is guaranteed, and meanwhile, the zero-ageing water function is realized.
The water making module controls the water making process to be as follows: the high-voltage switch 42 is closed to be in a water making state, the booster pump 12 and the water inlet electromagnetic valve 11 are started, and the power indicator lamp flashes for 500ms until reaching a water full state; when the water is full, the high-voltage switch 42 is turned on, the booster pump 12 and the water inlet electromagnetic valve 11 are closed, the pressure relief treatment flushing valve is turned on for 5 seconds, and the power indicator lamp is normally on.
The control process of the flushing module is as follows: every time the booster pump 12 and the water inlet electromagnetic valve 11 work for 30 minutes in a cumulative way, the flushing electromagnetic valve works for 10 seconds when the water is full, and the power indicator lamp flashes for 300 ms; the flushing can also be controlled by the touch module, and the flushing is performed manually for 30 seconds once.
The overhaul module comprises the following two overhaul modes: (1) Continuously preparing water for 40 minutes, and then entering an overhaul state, (2) turning on a low-opening switch to alarm water shortage; when the maintenance state is entered, all lamps flash for 500ms, and the booster pump 12, the water inlet electromagnetic valve 11 and the flushing electromagnetic valve stop working. Only if the low voltage switch is closed, the normal operation mode can be entered.
The control mode of the touch zero clearing module is as follows: under the normal working condition of electrifying, entering a filter element zero clearing mode for 3 seconds, enabling an RO filter element lamp to flash in the zero clearing mode, and completing zero clearing when the RO filter element lamp is changed from flash to long-lighting for 3 seconds; and switching the next PPC filter element by pressing a key for a short time, and performing zero clearing circularly.
The monitoring method of the filter element service life monitoring module comprises the following steps: (1) RO cartridge life: the accumulated water making time is 50 hours or 17280 hours after power on, the time is counted again after the zero clearing, the RO filter element lamp is always on in the time range, and the RO filter element lamp flashes when the time is exceeded; (2) PPC membrane filter core life: the accumulated water making time is 25 hours or the power-on is 4320 hours, the time is counted again after the time is cleared, the PPC film filter element lamp is always on in the time range, and the PAC film filter element lamp flashes beyond the time.
The zero-aged water control module is characterized in that the flushing process of the zero-aged water control module is as follows: the filter element enters zero-ageing Shui Moshi (the power lamp is bright red) after being pressed for 5 seconds, and then returns to the normal mode (the power lamp is bright green) after being pressed for a long time; the water inlet electromagnetic valve 11 and the pump, the waste water electromagnetic valve is opened to wash for 10S at the same time, then the reflux valve is opened to wash for 30S in a reflux way; in the state of full water, if no water braking action is detected every 6 hours, the water is automatically washed once according to the zero-water-ageing mode.
It will be apparent that the described embodiments are only some, but not all, embodiments of the utility model. All other embodiments, which can be made by those skilled in the art and which are included in the embodiments of the present utility model without the inventive step, are intended to be within the scope of the present utility model. Structures, devices and methods of operation not specifically described and illustrated herein, unless otherwise indicated and limited, are implemented according to conventional means in the art.

Claims (3)

1. A chen Shui Huiliu drive module, connects on purifier pipeline, its characterized in that: the device comprises a mounting shell, an electric control module, a wiring terminal and a aged water return pipeline, wherein the electric control module, the wiring terminal and the aged water return pipeline are integrated in the mounting shell, and a return electromagnetic valve and a second check valve are arranged on the aged water return pipeline;
the electronic control module comprises a water making module, a flushing module, an overhaul module, a touch zero clearing module, a filter element service life monitoring module and a zero-ageing water control module;
the water purifier pipeline is sequentially provided with a water inlet pipeline, a filter module, a waste water pipeline and a pure water pipeline along the raw water flowing direction, the filter module comprises a first filter assembly and a second filter assembly which are arranged along the raw water flowing direction, the filter module is arranged on the water inlet pipeline, the waste water pipeline is connected with the second filter assembly, the pure water pipeline is externally connected with a pure water tap, two ends of a waste water return pipeline are respectively connected with the second filter assembly and the water inlet pipeline, the waste water return pipeline and the water inlet pipeline connecting site are positioned behind the first filter assembly, and waste water flows back into the water inlet pipeline through the waste water return pipeline and is purified again through the filter module.
2. A chef Shui Huiliu drive module as claimed in claim 1 wherein: a water inlet electromagnetic valve and a booster pump are sequentially arranged on a water inlet pipeline between the first filter assembly and the second filter assembly, and one end of the old water return pipeline is connected between the water inlet electromagnetic valve and the booster pump; the first filter component comprises a PPC cotton carbon composite filter element, and the second filter component comprises an RO reverse osmosis filter element.
3. A display Shui Huiliu drive module according to claim 2, wherein: one end of the waste water pipeline is connected with the RO reverse osmosis filter element, the other end of the waste water pipeline is provided with a waste water outlet, and the waste water pipeline is provided with a waste water combination valve; the pure water pipeline is provided with a first check valve and a high-pressure switch which are sequentially arranged along the water flow direction.
CN202320640976.XU 2023-03-28 2023-03-28 Chen Shui Huiliu driving module Active CN219792616U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320640976.XU CN219792616U (en) 2023-03-28 2023-03-28 Chen Shui Huiliu driving module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320640976.XU CN219792616U (en) 2023-03-28 2023-03-28 Chen Shui Huiliu driving module

Publications (1)

Publication Number Publication Date
CN219792616U true CN219792616U (en) 2023-10-03

Family

ID=88187347

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320640976.XU Active CN219792616U (en) 2023-03-28 2023-03-28 Chen Shui Huiliu driving module

Country Status (1)

Country Link
CN (1) CN219792616U (en)

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