CN223150415U - Water drinking device - Google Patents

Water drinking device

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Publication number
CN223150415U
CN223150415U CN202422210093.2U CN202422210093U CN223150415U CN 223150415 U CN223150415 U CN 223150415U CN 202422210093 U CN202422210093 U CN 202422210093U CN 223150415 U CN223150415 U CN 223150415U
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CN
China
Prior art keywords
water
filter element
module
pipeline
element assembly
Prior art date
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Active
Application number
CN202422210093.2U
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Chinese (zh)
Inventor
马家骏
罗宏伟
张可可
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Original Assignee
Gree Electric Appliances Inc of Zhuhai
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by Gree Electric Appliances Inc of Zhuhai filed Critical Gree Electric Appliances Inc of Zhuhai
Priority to CN202422210093.2U priority Critical patent/CN223150415U/en
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Publication of CN223150415U publication Critical patent/CN223150415U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

本实用新型涉及净水设备技术领域,公开了一种饮水装置,包括:进水管路,进水管路上设有滤芯组件;水流检测模块,设于进水管路上,用于检测进水管路的内的水流量和/或水压;热再生模块,包括加热装置和再生管路,加热装置用于加热再生水,再生管路连接加热装置和滤芯组件,用于向滤芯组件通入再生水;控制模块,与水流检测模块和热再生模块通信连接,能够根据水流检测模块的检测结果控制热再生模块对滤芯组件进行热再生。本实用新型实施例的饮水装置能够保证能够及时对滤芯组件进行热再生,避免对流经滤芯组件的水造成污染,同时不会因热再生过于频繁造成缩短滤芯组件的使用寿命。

The utility model relates to the technical field of water purification equipment, and discloses a drinking water device, including: a water inlet pipeline, on which a filter element assembly is arranged; a water flow detection module, arranged on the water inlet pipeline, for detecting the water flow and/or water pressure in the water inlet pipeline; a thermal regeneration module, including a heating device and a regeneration pipeline, the heating device is used to heat the regenerated water, the regeneration pipeline connects the heating device and the filter element assembly, and is used to pass the regenerated water into the filter element assembly; a control module, which is in communication connection with the water flow detection module and the thermal regeneration module, and can control the thermal regeneration module to thermally regenerate the filter element assembly according to the detection result of the water flow detection module. The drinking water device of the utility model embodiment can ensure that the filter element assembly can be thermally regenerated in time, avoid contamination of the water flowing through the filter element assembly, and at the same time will not shorten the service life of the filter element assembly due to too frequent thermal regeneration.

Description

Water drinking device
Technical Field
The utility model relates to the technical field of water purifying equipment, in particular to a water drinking device.
Background
The filter element is an indispensable component in the drinking water device and is used for adsorbing impurities and removing oxides such as residual chlorine. Bacteria are easy to grow in the long-time use process of the filter element to form a biological film, so that the water purifying performance is reduced, and even the water purifying performance can be polluted. In the related art, a thermal regeneration module is arranged in a part of the drinking water equipment, and the thermal regeneration module can be used for thermally regenerating the filter element so as to enable the filter element to recover the adsorption capacity, thereby prolonging the service life of the filter element.
However, the frequency of thermal regeneration of the thermal regeneration module in the related art cannot be matched with the service condition of the filter element, and there are cases that the thermal regeneration of the thermal regeneration module is not timely, so that water flowing through the filter element assembly is polluted, or the thermal regeneration is too frequent, and the service life of the filter element is shortened.
Disclosure of utility model
In view of this, the present utility model provides a drinking water apparatus to solve the problems of the related art that the heat regeneration frequency of the heat regeneration module is not matched with the service condition of the filter element, resulting in untimely heat regeneration of the filter element, resulting in pollution to purified water, or too frequent heat regeneration, and shortening the service life of the filter element.
In a first aspect, the present utility model provides a drinking device comprising:
the water inlet pipeline is provided with a filter element assembly;
The water flow detection module is arranged on the water inlet pipeline and is used for detecting water flow and/or water pressure in the water inlet pipeline;
The thermal regeneration module comprises a heating device and a regeneration pipeline, wherein the heating device is used for heating regenerated water, and the regeneration pipeline is connected with the heating device and the filter element assembly and is used for introducing the regenerated water into the filter element assembly;
And the control module is in communication connection with the water flow detection module and the thermal regeneration module and can control the thermal regeneration module to thermally regenerate the filter element assembly according to the detection result of the water flow detection module.
The water dispenser has the beneficial effects that the water flow detection module is arranged on the water inlet pipeline and can be used for testing the water inflow of the water dispenser, so that the service condition of the filter element assembly is accurately monitored, and the thermal regeneration module is controlled to flush the filter element assembly according to the service condition of the filter element assembly, so that the thermal regeneration frequency of the thermal regeneration module to the filter element assembly is matched with the service condition of the filter element, the filter element assembly can be thermally regenerated in time, the pollution to water flowing through the filter element assembly is avoided, and the service life of the filter element assembly is not shortened due to the fact that the thermal regeneration is too frequent.
Secondly, the water flow detection module can also be used for measuring the flow and the flow velocity of water in the water inlet pipeline, and because the water drinking device has different preset flow and flow velocity ranges in different working modes, when the detection result of the water flow detection module is greater than the preset range, the control module can judge that the water path of the water drinking device is likely to have a problem of blockage, and when the detection result of the water flow detection module is less than the preset range, the control module can judge that the water drinking device is likely to have a problem of blockage of the filter element assembly.
In an alternative embodiment, the water flow detection module is located upstream of the filter element assembly in the water inlet direction of the water inlet line.
The water flow detection device has the beneficial effects that through the arrangement, the water flow detection module is ensured to be positioned at the initial section of the running water entering direction of the water drinking device, the related data of the entering water can be obtained earliest, and the influence of a complex pipeline in the water drinking device on the detection result of the water flow detection module is avoided.
In an alternative embodiment, the water dispenser further comprises a water dispenser body, wherein the water dispenser body comprises a water inlet electromagnetic valve, and the water flow detection module is arranged at a position close to a connection interface of the water inlet electromagnetic valve and the water inlet pipeline.
The water inlet electromagnetic valve has the beneficial effects that as the space at the connection interface of the water inlet electromagnetic valve and the water inlet pipeline is relatively large and is close to the water drinking device body, the water flow detection module is arranged at the position close to the connection interface of the water inlet electromagnetic valve and the water inlet pipeline, so that the line connection between the water flow detection module and the control module can be facilitated, the loss and the interference of signal transmission are reduced, the water flow detection module can be ensured to test the real-time water pressure and the flow entering the water drinking device, and the monitoring result is ensured not to be interfered by external pipeline factors.
In an alternative embodiment, the water dispenser further comprises:
The water inlet of the heating module is connected with the water outlet of the filter element assembly;
The hot water tap is connected with the water outlet of the heating module through a hot water pipe.
The water inlet pipe has the beneficial effects that through the arrangement, tap water can flow into the heating module after being filtered by the filter element assembly.
In an alternative embodiment, the water dispenser further comprises:
the cold side inlet of the heat exchanger is connected with the water outlet of the filter element assembly, and the cold side outlet of the heat exchanger is connected with the water inlet of the heating module;
The first end of the heat exchange branch is connected with the hot water pipe, the second end is connected with a cold side inlet of the heat exchanger;
the first end of the warm water pipe is connected with a cold side outlet of the heat exchanger;
and the warm water tap is connected with the second end of the warm water pipe.
The hot water tank has the beneficial effects that through the arrangement, when a user needs to acquire warm water, the hot water in the hot water tank can enter the hot side of the heat exchanger and exchange heat with cold water in the cold side of the heat exchanger, so that the warm water is prepared.
In an alternative embodiment, the water dispenser further comprises:
One end of the temperature adjusting pipeline is connected with the heat exchange branch, the other end is connected with a warm water pipe;
The temperature regulating valve is arranged on the temperature regulating pipeline and used for regulating the water flow in the temperature regulating pipeline.
The hot water in the hot water tank can enter the warm water pipe through the temperature regulating pipeline, so that the water temperature in the warm water pipe is improved, an operator can regulate the water temperature in the warm water pipe by controlling the opening degree of the temperature regulating valve, and specifically, when the opening degree of the temperature regulating valve is larger, the water flow rate entering the warm water pipe from the hot water tank is larger, and the temperature in the warm water pipe is higher.
In an alternative embodiment, the water dispenser further comprises a waterway plate assembly, at least a portion of the waterway of the water dispenser being integrated onto the waterway plate assembly.
The integrated level of the waterway in the drinking device can be improved by the arrangement, so that the waterway in the drinking device is simplified, and the difficulty of connecting the waterway in the drinking device by an operator is reduced.
In an alternative embodiment, the water flow detection module is removably attached to the waterway plate assembly.
The water flow detection device has the beneficial effects that through the arrangement, an operator can conveniently maintain and replace components on the water flow detection module and the waterway board, and the influence on the use of the water drinking device in the overhaul process is reduced.
In an alternative embodiment, the filter element assembly comprises a PCB composite filter element, a reverse osmosis filter element and an activated carbon filter element which are sequentially arranged on the water inlet pipeline.
The beneficial effects are that through the arrangement, the PCB composite filter element can be used as a preposed filter element to remove large-particle impurities in water such as sediment, rust and the like, and meanwhile, the active carbon part can effectively adsorb harmful substances such as residual chlorine, peculiar smell and the like in the water. The reverse osmosis filter element can then pass through the selective permeability of the semipermeable membrane, and under the action of high pressure, water molecules are allowed to pass through, and other impurities such as ions, organic matters and microorganisms are prevented from passing through, so that the purification and desalination of water are realized. Finally, the activated carbon filter core can effectively remove pollutants such as organic matters, residual chlorine, peculiar smell and the like in water. In the using process of the drinking water device provided by the embodiment of the application, the PCB composite filter element, the reverse osmosis filter element and the active carbon filter element can be matched with each other, so that the accurate filtration and purification of harmful substances in water are realized.
In an alternative embodiment, the water dispenser further comprises:
And the control module is in communication connection with the display panel.
The water dispenser has the beneficial effects that the control module can acquire the working condition of the water dispenser according to the detection result of the water flow detection module, and display the working condition information to a user through the display panel, so that when the water dispenser has abnormal working conditions such as too small water flow, too large water flow or abnormal pressure, the user can know in time, and maintain and manage the water dispenser, thereby avoiding the influence on the normal use of the water dispenser caused by untimely maintenance.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are needed in the description of the embodiments or the prior art will be briefly described, and it is obvious that the drawings in the description below are some embodiments of the present utility model, and other drawings can be obtained according to the drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of a water path of a drinking device according to an embodiment of the present utility model;
FIG. 2 is a front view of a water circuit board assembly of a drinking device according to an embodiment of the present utility model;
FIG. 3 is a perspective view of a waterway plate assembly of a drinking device at an angle according to an embodiment of the present utility model;
FIG. 4 is a perspective view of a waterway plate assembly of a drinking device at another angle according to an embodiment of the present utility model;
FIG. 5 is a top view of a water flow detection module of a drinking device according to an embodiment of the present utility model;
FIG. 6 is a side view of a water flow detection module of a drinking device according to an embodiment of the present utility model;
FIG. 7 is a bottom view of a water flow detection module of a drinking device according to an embodiment of the present utility model;
FIG. 8 is a perspective view of a water flow detection module of a drinking device according to an embodiment of the present utility model;
FIG. 9 is a perspective view of a drinking device at an angle according to an embodiment of the present utility model;
FIG. 10 is an enlarged view of the drinking device shown in FIG. 9 at A;
FIG. 11 is a perspective view of a drinking device at another angle according to an embodiment of the present utility model;
FIG. 12 is a perspective view of a drinking device at yet another angle according to an embodiment of the present utility model;
FIG. 13 is a perspective view of a display panel of a drinking device according to an embodiment of the present utility model;
Fig. 14 is a front view of a display panel of a drinking device according to an embodiment of the present utility model.
Reference numerals illustrate:
1. The water inlet pipeline, the water flow detection module, the water inlet electromagnetic valve, the heating module, the heating faucet, the hot water pipe, the heat exchanger, the heat exchange branch, the warm water pipe, the warm water faucet, the temperature adjusting pipeline, the temperature adjusting valve, the water path plate assembly 1401, the PCB composite filter element, the 1402, the reverse osmosis filter element, the 1403, the activated carbon filter element, the 15, the display panel, the 16, the pressure stabilizing pump, the 17, the pressure barrel, the 18, the ultraviolet lamp, the 19 and the shell.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Embodiments of the present utility model are described below with reference to fig. 1 to 14.
According to an embodiment of the present utility model, there is provided a water drinking device, as shown in fig. 1 to 4, including a water inlet pipe 1, a water flow detection module 2, a thermal regeneration module, and a control module. Wherein, the water inlet pipeline 1 is provided with a filter element component. The water flow detection module 2 is arranged on the water inlet pipeline 1 and is used for detecting the water inlet flow and/or the water pressure of the water inlet pipeline 1. The thermal regeneration module includes a heating device and a regeneration line. The heating device is used for heating the regenerated water, and the regeneration pipeline is connected with the heating device and the filter element assembly and is used for introducing the regenerated water into the filter element assembly. The control module is in communication connection with the water flow detection module 2 and the thermal regeneration module, and can control the thermal regeneration module to thermally regenerate the filter element according to the detection result of the water flow detection module 2.
In the use process of the drinking water device provided by the embodiment of the utility model, water in the water inlet pipeline can flow through the filter element assembly to be filtered. Wherein, the water inlet pipeline is optionally connected with a tap water source.
On the basis, the water drinking device is provided with the water flow detection module 2 on the water inlet pipeline 1, the water flow detection module 2 can be used for testing the water inflow of the water drinking device, so that the service condition of the filter element assembly is accurately monitored, and the thermal regeneration module is controlled to flush the filter element assembly according to the service condition of the filter element assembly, so that the thermal regeneration frequency of the thermal regeneration module to the filter element assembly is matched with the service condition of the filter element, the filter element assembly can be timely thermally regenerated, pollution to water flowing through the filter element assembly is avoided, and meanwhile, the service life of the filter element assembly is not shortened due to the fact that the thermal regeneration is too frequent.
Secondly, the water flow detection module 2 can also be used for measuring the flow and the flow velocity of water in the water inlet pipeline 1, and because the water drinking device has different preset flow and flow velocity ranges in different working modes, when the detection result of the water flow detection module 2 is larger than the preset range, the control module can judge that the water path of the water drinking device is likely to have a blockage problem, and when the detection result of the water flow detection module 2 is smaller than the preset range, the control module can judge that the water drinking device is likely to have a blockage problem of the filter element assembly.
Wherein the water flow detection module 2 preferably, but not limited to, comprises a flow meter, a pulse counter or a pressure switch, etc. Illustratively, the flow meter can be used to detect the flow of water on the water inlet line 1 of the water dispenser, and the pulse rate meter can be used to count the number of pulses flowing through the sensor per unit time, which is proportional to the volumetric flow of water. By measuring the pulse number, the volume of water flowing through the pipeline can be calculated, so that the water flow is monitored.
In addition, the regeneration medium for realizing the thermal regeneration technology in the embodiment is hot water, the temperature is between the ambient temperature and the boiling point of water, the filter element component is washed or soaked by utilizing the flowing hot water, the hot water can break the balance between carbon and polluted adsorbates, so that pollutants are easier to analyze and desorb, the adsorption capacity of the part of the activated carbon is recovered, the regeneration is realized, and the beneficial effect of prolonging the service life of the filter element is realized, and the filter element is safer and simpler.
The drinking device is preferably, but not limited to, a campus water purifier.
In one embodiment, the water flow detection module 2 is located upstream of the filter element assembly in the water inlet direction of the water inlet line 1. Through such setting, the initial section that has guaranteed that rivers detection module 2 are located the running water entering direction of watering device can acquire the relevant data of intaking earliest, avoids in the watering device complicated pipeline to cause the influence to the testing result of rivers detection module 2.
In one embodiment, the water dispenser further comprises a water dispenser body. The water drinking device body comprises a water inlet electromagnetic valve 3, and the water flow detection module 2 is arranged at a position close to a connection interface of the water inlet electromagnetic valve 3 and the water inlet pipeline 1.
Because the space of the junction of the water inlet electromagnetic valve 3 and the water inlet pipeline 1 is relatively larger and is close to the water drinking device body, the water flow detection module 2 is arranged at the position close to the junction of the water inlet electromagnetic valve 3 and the water inlet pipeline 1, so that the line connection between the water flow detection module 2 and the control module can be facilitated, the loss and the interference of signal transmission are reduced, the water flow detection module 2 can be ensured to test the real-time water pressure and the flow entering the water drinking device, and the monitoring result is ensured not to be interfered by external pipeline factors.
In one embodiment, the interface between the water inlet solenoid valve 3 and the water inlet line 1 is a standard interface. The standard interface ensures seamless connection between devices, and on the other hand, the detachable installation mode increases the flexibility and life cycle of the devices.
In one embodiment, the drinking device further comprises a heating module 4 and a hot water tap 5. Wherein the water inlet of the heating module 4 is used for being connected with the water outlet of the filter element assembly. The hot water tap 5 is connected with the water outlet of the heating module 4 through a hot water pipe 6.
So configured, tap water can flow into the heating module 4 through the water inlet line 1 after being filtered by the filter element assembly. In an alternative embodiment, the heating module 4 may be a hot water tank, and the filtered water can enter the hot water tank and be heated by the hot water tank, and after the hot water tank is full, the hot water can be used normally.
As an alternative embodiment, the heating module 4 may also be selected from a heating wire or a semiconductor temperature controller, etc.
In one embodiment, the drinking device further comprises a heat exchanger 7, a heat exchange branch 8, a warm water pipe 9 and a warm water tap 10. Wherein. The cold side inlet of the heat exchanger 7 is connected with the water outlet of the filter element, and the cold side outlet of the heat exchanger 7 is connected with the water inlet of the heating module 4. The first end of the heat exchange branch 8 is connected with the hot water pipe 6, and the second end is connected with the cold side inlet of the heat exchanger 7. The first end of the warm water pipe 9 is connected with the cold side outlet of the heat exchanger 7. A warm water tap 10 is connected to the second end of the warm water pipe 9.
By so doing, when a user needs to obtain warm water, the hot water in the hot water tank can enter the hot side of the heat exchanger 7 and exchange heat with the cold water in the cold side of the heat exchanger 7, thereby preparing warm water.
In one embodiment, the drinking device further comprises a tempering line 11 and a tempering valve 12. One end of the temperature adjusting pipeline 11 is connected with the heat exchange branch 8, and the other end is connected with the temperature water pipe. The temperature regulating valve 12 is arranged on the temperature regulating pipeline 11 and is used for regulating the water flow in the temperature regulating pipeline 11.
By so doing, the hot water in the hot water tank can enter the warm water pipe 9 through the temperature adjusting pipe 11, thereby increasing the water temperature in the warm water pipe 9, and the operator can adjust the water temperature in the warm water pipe 9 by controlling the opening degree of the temperature adjusting valve 12, specifically, when the opening degree of the temperature adjusting valve 12 is larger, the larger the water flow rate entering the warm water pipe 9 from the hot water tank is, the higher the temperature in the warm water pipe 9 is.
In one embodiment, a temperature adjustment knob is provided on the housing 19 of the water dispenser, and the user can adjust the opening of the temperature adjustment valve 12 by rotating the temperature adjustment knob, thereby controlling the water temperature at the faucet 10.
In one embodiment, the warm water pipe 9 is also provided with an ultraviolet lamp 18, ultraviolet rays can be used for water treatment and air disinfection, bacteria and viruses in water are effectively killed, and the safety of drinking water is ensured.
In one embodiment, the heating module 4 is connected to the filter element assembly by a control valve to act as a heating device for the thermal regeneration module to effect thermal regeneration of the filter element assembly.
As an alternative embodiment, the heating means may also be selected as an independent heat source. By adopting a separate heat source to heat the regeneration water, the heating devices of the heating module 4 and the thermal regeneration module can be controlled independently and work independently without mutual influence. Further, when an independent heat source is employed, the independent heat source may be provided separately on the regeneration line or may be integrated into the cartridge where thermal regeneration is desired.
In one embodiment, the drinking device further includes a waterway plate assembly 13. At least part of the water path of the drinking device is integrated on the water path plate assembly 13.
Through such setting, can improve the integrated level of the water route in the watering device, simplify the water route in the watering device from this to reduce the degree of difficulty that the operator connects the water route in the watering device.
In one embodiment, the water flow detection module 2 is removably attached to the waterway plate assembly 13.
Through such setting, can be convenient for the operator maintain and change the components and parts on rivers detection module 2 and the water route board, reduce the influence that the maintenance process led to the fact the use of watering device.
It should be noted that, in the description of the embodiment of the present application, the specific connection manner of the water flow detection module 2 and the waterway board assembly 13 is not limited.
Illustratively, in one embodiment, the water flow detection module 2 may be removably coupled to the waterway plate assembly 13 by bolts.
As an alternative embodiment, the water flow detection module 2 may also be detachably connected to the waterway board assembly 13 through a clamping assembly, a riveting assembly or a magnetic assembly.
In one embodiment, the cartridge assembly includes a PCB composite cartridge 1401, a reverse osmosis cartridge 1402, and an activated carbon cartridge 1403 disposed in sequence on the water inlet line 1. Through such setting, PCB composite filter element 1401 can be as leading filter core to get rid of large granule impurity in the aquatic like silt, rust etc. simultaneously active carbon part can effectively adsorb harmful substance such as residual chlorine, peculiar smell in the aquatic. The reverse osmosis filter 1402 can then pass water molecules under high pressure through the selective permeability characteristics of the semipermeable membrane while preventing the passage of other impurities such as ions, organics and microorganisms, thereby achieving purification and desalination of water. Finally, the activated carbon filter element 1403 can effectively remove pollutants such as organic matters, residual chlorine, peculiar smell and the like in water. In the use process of the drinking water device provided by the embodiment of the application, the PCB composite filter element 1401, the reverse osmosis filter element 1402 and the activated carbon filter element 1403 can be matched with each other, so that the accurate filtration and purification of harmful substances in water are realized.
In one embodiment, the regeneration line includes a first regeneration pipe segment, a second regeneration pipe segment, and a drain pipe segment. Wherein, first regeneration pipe section is connected between heating device and active carbon filter core 1403, and the second regeneration pipe section is connected between active carbon filter core 1403 and PCB compound filter core 1401, and the exhaust pipe section is connected in PCB compound filter core 1401. The regenerated water heated by the heating device can pass through the first regenerated pipe section, the activated carbon filter 1403, the second regenerated pipe section and the PCB composite filter 1401 in sequence, and finally is discharged through the discharge pipe section. Impurities attached to the activated carbon filter element 1403 and the PCB composite filter element 1401 can be effectively played out by water flow, thereby realizing effective regeneration of the filter element.
In one embodiment, as shown in fig. 9 and 10, the water inlet pipeline 1 is further provided with a pressure barrel 17, the pressure barrel 17 is located between the reverse osmosis filter element 1402 and the activated carbon filter element 1403, and the main function of the pressure barrel 17 is to store purified water filtered by the water purifier and convey the water to the water outlet through air pressure difference when needed. The water purifier can provide stable water pressure under the condition that the work of other parts of the water purifier is not affected, and a user can obtain the required water quantity at any time. In addition, the presence of the pressure tank 17 reduces frequent starting of the water purifier, which is beneficial to prolonging the service life of the equipment.
In one embodiment, a pressure stabilizing pump 16 is further disposed on the water inlet line 1, and the pressure stabilizing pump 16 is located between the PCB composite filter cartridge 1401 and the reverse osmosis filter cartridge 1402.
In the use process of the drinking water device provided by the embodiment of the application, tap water is filtered by the PCB composite filter element 1401, pressurized by the pressure stabilizing pump 16 and then enters the reverse osmosis filter element 1402.
In one embodiment, as shown in fig. 13 and 14, the drinking device further includes a display panel 15. The control module is in communication with the display panel 15. The control module can acquire the working condition of the water dispenser according to the detection result of the water flow detection module 2, and display the working condition information to the user through the display panel 15, so that when the water dispenser has abnormal working conditions such as small water flow, overlarge water flow or abnormal pressure, the user can know in time, the water dispenser is maintained and managed, and the normal use of the water dispenser is prevented from being influenced due to untimely maintenance.
Although embodiments of the present utility model have been described in connection with the accompanying drawings, various modifications and variations may be made by those skilled in the art without departing from the spirit and scope of the utility model, and such modifications and variations fall within the scope of the utility model as defined by the appended claims.

Claims (10)

1. A water dispenser, comprising:
The water inlet pipeline (1), wherein a filter element component is arranged on the water inlet pipeline (1);
The water flow detection module (2) is arranged on the water inlet pipeline (1) and is used for detecting water flow and/or water pressure in the water inlet pipeline (1);
the thermal regeneration module comprises a heating device and a regeneration pipeline, wherein the heating device is used for heating regeneration water, and the regeneration pipeline is connected with the heating device and the filter element assembly and is used for introducing the regeneration water into the filter element assembly;
The control module is in communication connection with the water flow detection module (2) and the thermal regeneration module, and can control the thermal regeneration module to thermally regenerate the filter element assembly according to the detection result of the water flow detection module (2).
2. A drinking device according to claim 1, characterized in that the water flow detection module (2) is arranged upstream of the filter element assembly in the water inlet direction of the water inlet line (1).
3. The water dispenser according to claim 1, further comprising a water dispenser body comprising a water inlet solenoid valve (3), wherein the water flow detection module (2) is arranged at a position close to a connection interface of the water inlet solenoid valve (3) and the water inlet pipeline (1).
4. A water dispenser according to any one of claims 1 to 3, further comprising:
the heating module (4) is provided with a water inlet which is connected with the water outlet of the filter element assembly;
And the hot water tap (5) is connected with the water outlet of the heating module (4) through a hot water pipe (6).
5. The water dispenser of claim 4, further comprising:
the cold side inlet of the heat exchanger (7) is connected with the water outlet of the filter element assembly, and the cold side outlet of the heat exchanger (7) is connected with the water inlet of the heating module (4);
A heat exchange branch (8), wherein the first end of the heat exchange branch is connected with the hot water pipe (6), and the second end of the heat exchange branch is connected with a cold side inlet of the heat exchanger (7);
A warm water pipe (9), the first end of which is connected with the cold side outlet of the heat exchanger (7);
and the warm water tap (10) is connected with the second end of the warm water pipe (9).
6. The water dispenser of claim 5, further comprising:
A temperature adjusting pipeline (11), one end of which is connected with the heat exchange branch (8) and the other end of which is connected with the temperature water pipe;
And the temperature regulating valve (12) is arranged on the temperature regulating pipeline (11) and is used for regulating the water flow in the temperature regulating pipeline (11).
7. A water dispenser according to any one of claims 1 to 3, further comprising a waterway plate assembly (13), at least part of the waterway of the water dispenser being integrated on the waterway plate assembly (13).
8. A drinking device according to claim 7, characterized in that the water flow detection module (2) is detachably connected to the waterway plate assembly (13).
9. A water dispenser according to any one of claims 1 to 3, wherein the cartridge assembly comprises a PCB composite cartridge (1401), a reverse osmosis cartridge (1402) and an activated carbon cartridge (1403) arranged in sequence on the water inlet line (1).
10. A water dispenser according to any one of claims 1 to 3, further comprising:
and the control module is in communication connection with the display panel (15).
CN202422210093.2U 2024-09-09 2024-09-09 Water drinking device Active CN223150415U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422210093.2U CN223150415U (en) 2024-09-09 2024-09-09 Water drinking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422210093.2U CN223150415U (en) 2024-09-09 2024-09-09 Water drinking device

Publications (1)

Publication Number Publication Date
CN223150415U true CN223150415U (en) 2025-07-25

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