Embedded push-pull type water purifier and water purification system thereof

By designing an embedded push-pull water purifier, integrating multiple functions and simplifying filter element replacement, the existing water purifier has solved the problems of complex layout and single functions, realizing multi-functional integration and convenient replacement, and improving user experience.

CN223126277UActive Publication Date: 2025-07-22ZHONGSHAN RNICE WATER PURIFICATION TECH CO LTD +2
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Patent Information

Application Number
CN202421437217.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-07-27
Filing Date
2024-06-21
Publication Date
2025-07-22
Estimated Expiration
2034-06-21

AI Technical Summary

Technical Problem

The existing water purifier has a complex layout and a single function, which is difficult to meet the various drinking water needs of multiple families or different groups, and the filter element is inconvenient to replace.

Method used

Design an embedded push-pull water purifier that integrates water purification, direct drinking, heating, refrigeration and ice making functions. It adopts a drawer structure to facilitate filter element replacement. The body is equipped with PCC composite filter element and RO composite filter element, combining instant heat module, booster pump, ice making device, condenser water cooling module and other components to achieve multifunctional integration.

Benefits of technology

It realizes a simple and elegant water purifier design, meets a variety of drinking water needs, facilitates filter element replacement, adjusts the outlet temperature, provides ready-to-drink water, refrigeration water and ice making functions, improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The embedded push-pull type water purifier comprises a machine body and a box body frame, and the machine body is mounted at an opening in the front side of the box body frame in a drawer type drawing manner; one side of the machine body is provided with a PCC composite filter element and an RO composite filter element which are used for being pulled out of the box body frame and lifted out of the top side of the machine body; an instant heating module and a booster pump which are vertically arranged are installed in the machine body, an ice making device, a condenser water cooling module, a refrigeration water tank and a compressor are installed on the other side, beside the instant heating module and the booster pump, in the machine body, the whole machine is of a pull-out structure, a PCC composite filter element and an RO composite filter element are used for filtering tap water respectively, and a user pulls the machine body out of the front side of a box frame. After the filter element needing to be replaced is upwards lifted and replaced, the machine body is pushed back to the inner side of the box frame, and the filter element is easy and convenient to replace.
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Description

Technical Field

[0001] The utility model relates to water purification technology, in particular to an embedded push-pull water purifier and its water purification system.

Background Art

[0002] With the development of technology, there are more and more varieties of existing water purification equipment. Compared with water dispensers that heat or cool bottled pure water for people to drink, a water purifier is a filtering drinking device that uses the selective permeability of a reverse osmosis membrane that can only pass water but not solutes to extract directly drinkable water from raw water, mainly used to purify the water quality of tap water or bottled water for direct drinking.

[0003] However, most of the existing water purifiers adopt a vertical layout or are installed under the kitchen with a tap water source. The overall layout is complex and not simple, with a single function and inconvenient use. Especially in some office or meeting places, the existing water purifiers are not only inconvenient for fetching water and replacing filters, but also the layout structure cannot be effectively integrated with the use environment, and cannot effectively meet the user's needs.

[0004] Moreover, with the support of existing equipment products such as single-water quality purifiers and bar-type direct drinking machines, pure water equipment can well meet the needs of users. However, existing single-function water purification equipment is still insufficient when meeting the needs of multiple consumers in a family or more different groups: for example, some people in a family want to drink a cup of boiled water in the morning, while others want an iced Americano; children don't like to drink boiled water, and drinking cold water is easy to hurt the stomach, and they want a cup of filtered room temperature water, etc. There is an urgent need for a device that can integrate functions of filtration, direct drinking, heating, refrigeration or ice making, so as to achieve water purification, direct drinking, heating, refrigeration and ice making to meet the use needs of consumers.

Content of the Utility Model

[0005] The utility model provides an embedded push-pull water purifier and its water purification system, which are provided with multiple functions, can be effectively fitted with the use environment, integrate multiple functions of water purification, direct drinking, heating, refrigeration and ice making, and are convenient for filter element replacement and meet the various needs of users.

[0006] To achieve the above object, the utility model provides the following technical solutions:

[0007] An embedded push-pull water purifier includes a machine body and a box frame embedded in a wall body or a box body, and the machine body is installed in a drawer-like manner at the front open end of the box frame;

[0008] Linear guide rail sliding components for facilitating the sliding extension of the whole machine body are respectively arranged on both side walls of the machine body and are matched with the inner walls on both sides of the box frame;

[0009] On one side of the body, there are installed a PCC composite filter element and an RO composite filter element for lifting the entire body from the top side after the body is pulled out from the box frame.

[0010] Inside the body beside the PCC composite filter element and the RO composite filter element, there are installed an instant heating module and a booster pump which are arranged separately up and down. A filter main control board is installed between the instant heating module and the two parallel PCC composite filter elements and the RO composite filter element. Corresponding water circuit board assemblies connected to the peripheral pipeline are respectively installed at the bottom sides of the PCC composite filter element and the RO composite filter element.

[0011] On the other side inside the body beside the instant heating module and the booster pump, there are installed an ice making device, a condenser water cooling module, a refrigeration water tank and a compressor. The condenser water cooling module, the refrigeration water tank and the compressor are installed side by side at the lower side inside the body, and the ice making device is installed at the upper side inside the upper part of the body above the condenser water cooling module, the refrigeration water tank and the compressor. An ice making main control board is installed inside the body beside the corresponding ice making device.

[0012] Preferably, a water receiving groove is concavely arranged on the front side wall surface of the body, and an ice outlet for supplying ice outward and a water outlet for supplying water are installed on the top side of the water receiving groove.

[0013] Preferably, an external water kettle for containing a certain amount of pure water is also inserted beside the water outlet of the water receiving groove.

[0014] Preferably, a water receiving box for receiving overflowing or dripping water is nested and installed at the bottom side of the water receiving groove.

[0015] Preferably, a water outlet slide rail assembly for adaptively adjusting the height of the water outlet up and down according to the height of the water receiving utensil is also arranged inside the front side wall of the body.

[0016] Preferably, a touch display screen for facilitating touch control and displaying various control information is also arranged on the front side wall surface of the body above the water receiving groove.

[0017] Preferably, the ice making device includes an ice cavity seat, an ice cavity cover, an evaporator, an ice making component and an ice outlet control component. The ice making component is installed under the evaporator, and the ice made is poured into the ice storage cavity in the side ice cavity seat through the evaporator. The ice outlet control component pushes the made ice cubes to be discharged from the ice outlet at the end through a screw.

[0018] Preferably, the ice-making assembly includes a U-shaped ice tray, an ice-turning motor, and an ice outlet guiding plate. The U-shaped ice tray is rotatably installed along the axial direction in the ice-making chamber on one side of the ice chamber seat. The side edge of the ice outlet guiding plate is axially hinged to the edge of the U-shaped ice tray. The evaporator is inserted into the U-shaped ice tray from the upper side and condenses the pure water inside into ice. The ice-turning motor is fixed on the wall end face of the ice chamber seat and drives the U-shaped ice tray to turn 90°. The ice cubes poured out after the U-shaped ice tray turns are guided into the ice storage chamber in the ice chamber seat by the inclined and hinged ice outlet guiding plate. The ice outlet guiding plate is also axially provided with a plurality of through holes arranged evenly for the leakage of ice-making water when the U-shaped ice tray turns.

[0019] Preferably, the ice outlet control assembly includes an ice-stirring screw, an ice outlet motor, an ice outlet baffle, an ice outlet, and an ice door. The ice outlet baffle is arranged above the ice outlet for guiding the ice cubes into the ice outlet in sequence. The ice door is self-closing and hinged at the lower end outlet of the ice outlet to prevent the ice cubes from sliding out automatically. The ice outlet motor is installed and fixed on the wall end face of the ice chamber seat and drives the ice-stirring screw to rotate, driving the ice cubes to be guided into the ice outlet in sequence and squeezing open the ice door for the automatic export of the ice cubes.

[0020] A water purification system for an embedded push-pull type water purifier, the system includes a tap water source, a pressure reducing valve, a high-pressure switch, a PCC composite filter element, a booster pump, and an RO composite filter element. The tap water source directly exports the made pure water through pipelines and control valves after passing through the pressure reducing valve, the high-pressure switch, the PCC composite filter element, the booster pump, and the RO composite filter element.

[0021] One branch of the pure water is also connected with an external water kettle, an instant heating module, and a first water pump through pipelines. The first water pump pumps the hot water made by the instant heating module out from the water outlet nozzle.

[0022] The other branch of the pure water is also connected with a refrigerating water tank, the ice-making chamber and the ice storage chamber of the ice chamber seat, a second water pump, and a third water pump through pipelines. An evaporator for refrigerating and making ice of pure water is arranged in the ice-making chamber of the ice chamber seat. The evaporator is connected with a compressor, a condenser water cooling component, a dryer, and a capillary tube for refrigerating operation through a refrigerant pipeline. The second water pump pumps the pure water stored in the refrigerating water tank into the ice-making chamber of the ice chamber seat. After the evaporator refrigerates and makes ice of the pure water in the ice-making chamber, the made ice cubes are guided into the ice storage chamber of the ice chamber seat. The ice water after ice-making in the ice-making chamber and the ice storage chamber automatically flows down from a high place to be stored in the refrigerating water tank. The third water pump directly pumps the ice water stored in the refrigerating water tank out from the water outlet nozzle.

[0023] The purified water after pre-filtration by the PCC composite filter element is also branched and connected with a water cooling pipeline for water cooling and temperature reduction of the water cooling component of the condenser. The waste water absorbed heat by the condenser water cooling component is discharged outward through the connected drain port.

[0024] Preferably, a water cooling solenoid valve for controlling the on / off of the pipeline and a waste water plug for discharging the waste water according to a set ratio are also installed on the water cooling pipeline.

[0025] The beneficial effects of the utility model are as follows:

[0026] The whole machine is installed in an embedded manner, simple and generous. Reserve the installation position of the water purifier in advance. The water can be drunk directly after flowing out. It has refrigeration and heating functions, can support both water heating and making ice water and ice cubes, and the outlet water temperature can be adjusted between 5 and 100 °C, effectively meeting various needs of users.

[0027] At the same time, since the machine body is installed in a drawer-type pull-out manner on the front side of the box body frame, the PCC composite filter element, RO composite filter element and cold water tank are installed in the machine body. The whole machine adopts a pull-out structure. The PCC composite filter element and RO composite filter element are respectively used to filter tap water. When the service lives of the two filter elements expire, the user pulls out the machine body from the front side of the box body frame, pulls out the filter element to be replaced upward, and then pushes the machine body back into the inner side of the box body frame after replacement. The filter element replacement is simple and convenient.

[0028] In addition, an external water kettle is also arranged beside the water outlet nozzle of the water receiving tank, which is convenient for accommodating and storing drinking water, realizing taking and using at any time, being flexible and convenient, saving time and being convenient for cleaning.

Description of the Drawings

[0029] Figure 1 is the explosion structure schematic diagram of the utility model;

[0030] Figure 2 is the structure schematic diagram when the filter element is taken out after the machine body and the box body frame are separated in the utility model;

[0031] Figure 3 is the structure schematic diagram when the filter element cover is opened after the machine body pops out in the utility model;

[0032] Figure 4 is the structure schematic diagram when the external water kettle is taken out in the utility model;

[0033] Figure 5 is the three-dimensional structure schematic diagram of the utility model;

[0034] Figure 6 is the three-dimensional structure schematic diagram after the back cover of the machine body is removed in the utility model;

[0035] Figure 7 is the enlarged explosion structure schematic diagram of the ice making device in the utility model;

[0036] Figure 8 is an enlarged perspective rear view structural diagram of the ice-making device in the present utility model;

[0037] Figure 9 is a schematic diagram of the principle of the water purification system in the present utility model.

[0038] The following further describes the present utility model in conjunction with the accompanying drawings and embodiments.

Specific Embodiments

[0039] In the description of the present utility model, it should be noted that unless otherwise clearly defined and limited, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0040] An embedded push-pull type water purifier, as Figures 1 to 6 shown, includes a machine body 1 and a box body frame 2 embedded in a wall body or a box body. The machine body 1 is installed in a drawer type and pulled out at the front open of the box body frame 2; linear guide rail sliding assemblies 3 for facilitating the sliding out of the entire machine body 1 are respectively provided on both side walls of the machine body 1 and are matched with the inner walls on both sides of the box body frame 2. A PCC composite filter element 4 and an RO composite filter element 5 are installed on one side of the machine body 1 for pulling out the entire machine body 1 from the box body frame 2 and lifting it from the top side of the machine body 1; the PCC composite filter element 4 and the RO composite filter element 5 are installed side by side on one side of the machine body 1, and an instant heating module 6 and a booster pump 7 are installed in the machine body 1 beside them and are arranged separately up and down. A filter main control board 8 is installed between the instant heating module 6 and the two juxtaposed PCC composite filter element 4 and RO composite filter element 5. Water circuit board assemblies 9 communicating with the peripheral pipelines are respectively connected to the bottom sides of the corresponding PCC composite filter element 4 and RO composite filter element 5; an ice-making device 10, a condenser water cooling module 11, a refrigeration water tank 12, and a compressor 13 are installed on the other side in the machine body 1 beside the instant heating module 6 and the booster pump 7. The condenser water cooling module 11, the refrigeration water tank 12, and the compressor 13 are installed side by side at the lower side inside the machine body 1. The ice-making device 10 is installed at the upper side in the middle of the upper side inside the machine body 1 above the condenser water cooling module 11, the refrigeration water tank 12, and the compressor 13. An ice-making main control board 14 is installed in the machine body 1 beside the corresponding ice-making device 10.

[0041] Continue as Figures 1 to 6As shown, a water collection groove 15 is recessed in the front side wall surface of the body 1. An ice outlet 16 for supplying ice outward and a water outlet nozzle 17 for supplying water are installed on the top side of the water collection groove 15; an external water kettle 18 for containing a certain amount of pure water is also inserted beside the water outlet nozzle 17 of the water collection groove 15; a water receiving box 19 for receiving overflowing or dripping water is nested and installed on the bottom side of the water collection groove 15. A touch display screen 20 for facilitating touch control and displaying various control information is also provided on the front side wall surface of the body 1 above the water collection groove 15, and a water outlet slide rail assembly 21 for adaptively adjusting the height of the water outlet nozzle 17 up and down according to the height of the water receiving utensil is also provided inside the front side wall of the body 1.

[0042] As Figure 1 , Figure 7 and Figure 8 shown, the ice making device 10 includes an ice chamber seat 100, an ice chamber cover 101, an evaporator 102, an ice making assembly 103 and an ice outlet control assembly 104. The ice chamber seat 100 is sealed by the ice chamber cover 101; the ice making assembly 103 is installed below the evaporator 102 and the ice made is poured into the ice storage chamber 22 in the side ice chamber seat 100 through the evaporator 102. The ice outlet control assembly 104 pushes the made ice cubes to be discharged from the ice outlet 16 at the end through a screw. Among them, the ice making assembly 103 includes a U-shaped ice tray 1030, a turning ice motor 1031 and an ice outlet guiding plate 1032. The U-shaped ice tray 1030 is rotatably installed along the axis in the ice making chamber 23 on one side of the ice chamber seat 100. The side edge of the ice outlet guiding plate 1032 is axially hinged to the edge of the U-shaped ice tray 1030. The evaporator 102 is inserted into the U-shaped ice tray 1030 from the upper side and condenses the pure water inside into ice. The turning ice motor 1031 is fixed on the wall end surface of the ice chamber seat 100 and drives the U-shaped ice tray 1030 to turn 90°. The ice cubes poured out after the U-shaped ice tray 1030 turns are guided into the ice storage chamber 22 in the ice chamber seat 100 by the obliquely hinged ice outlet guiding plate 1032. A plurality of through holes are also axially arranged on the ice outlet guiding plate 1032 at equal intervals for the ice making water to leak when the U-shaped ice tray 1030 turns.

[0043] Continuing as Figure 1 , Figure 7 and Figure 8 shown, the ice outlet control assembly 104 includes an ice stirring screw 1040, an ice outlet motor 1041, an ice outlet baffle 1042, an ice outlet 16 and an ice door 1043. The ice outlet baffle 1042 is arranged above the ice outlet 16 for guiding the ice cubes to the ice outlet 16 in sequence. The ice door 1043 is self-closed and hinged at the lower end outlet of the ice outlet 16 to prevent the ice cubes from sliding out automatically; the ice outlet motor 1041 is installed and fixed on the wall end surface of the ice chamber seat 100 and drives the ice stirring screw 1040 to rotate, drives the ice cubes to be guided into the ice outlet 16 in sequence and squeezes and pushes open the ice door 1043 for the ice cubes to be automatically discharged.

[0044] As shown Figure 9 in the figure, the water purification system corresponding to the embedded push-pull type water purifier includes a tap water source 24, a pressure reducing valve 25, a high-pressure switch 26, a PCC composite filter element 4, a booster pump 7 and an RO composite filter element 5. The tap water source 24 passes through pipelines and control valves to connect the pressure reducing valve 25, the high-pressure switch 26, the PCC composite filter element 4, the booster pump 7 and the RO composite filter element 5, and then directly exports the purified water produced. One branch of the purified water is also connected with an external water kettle 18, an instant heating module 6 and a first water pump 27 through pipelines. The hot water produced by the instant heating module 6 is pumped out from the water outlet 17 by the first water pump 27. Another branch of the purified water is also connected with a refrigerating water tank 12, an ice making cavity 23 and an ice storage cavity 22 of an ice cavity seat 100, a second water pump 29 and a third water pump 30 through pipelines. An evaporator 102 for refrigerating and making ice of purified water is arranged in the ice making cavity 23 of the ice cavity seat 100. The evaporator 102 is connected with a compressor 13, a condenser water cooling component 31, a dryer 32 and a capillary tube 33 for refrigerating operation through a refrigerant pipeline. The second water pump 29 pumps the purified water stored in the refrigerating water tank 12 into the ice making cavity 23 of the ice cavity seat 100. After the evaporator 102 refrigerates and makes ice of the purified water in the ice making cavity 23, the made ice cubes are imported into the ice storage cavity 22 of the ice cavity seat 100. The ice water after ice making in the ice making cavity 23 and the ice storage cavity 22 automatically flows downward from a high place to the refrigerating water tank 12 for storage. The third water pump 30 directly pumps the ice water stored in the refrigerating water tank 12 out from the water outlet 17. Among them, the purified water after pre-filtration by the PCC composite filter element 4 is also branched and connected with a water cooling pipeline 34 for water cooling and temperature reduction of the condenser water cooling component 31, thus forming an alternative to the traditional fan plus aluminum sheet heat dissipation structure. The waste water absorbed heat by the condenser water cooling component 31 is discharged outward through the connected drain port. A water cooling solenoid valve 35 for controlling the on-off of the pipeline and a waste water plug 36 for discharging the waste water according to a set ratio are also installed on the water cooling pipeline 34.

[0045] In this embodiment, since the machine body 1 is installed in a drawer type at the front side of the box body frame 2, the PCC composite filter element 4, the RO composite filter element 5 and the refrigerating water tank 12 are installed in the machine body 1. The whole machine adopts a pull-out structure. The PCC composite filter element 4 and the RO composite filter element 5 are respectively used for filtering tap water. When the service lives of the two filter elements expire, the user pulls out the machine body from the front side of the box body frame 2, takes out the filter element to be replaced upward and replaces it, and then pushes the machine body 1 back into the inner side of the box body frame 2. The replacement of the filter element is simple and convenient.

[0046] The above-described embodiments are only preferred embodiments of the present invention, and do not limit the implementation scope of the present invention. Any obvious changes made according to the shape, structure and principle of the present invention, as well as other changes that do not depart from the essence of the present invention, should be covered within the protection scope of the present invention.

Claims

1. An embedded push-pull water purifier, characterized in that, It includes a machine body and a box body frame installed in a wall body or a box body. The machine body is installed in a drawer - type pull - out manner at the front - side opening of the box body frame; Linear guide rail sliding components for facilitating the sliding extension of the entire machine body are respectively arranged on both side walls of the machine body and are matched with the inner walls on both sides of the box body frame; On one side of the machine body, a PCC composite filter element and an RO composite filter element are installed, which are used to lift the entire machine body out of the box body frame from the top side after the machine body is pulled out from the box body frame; An instant - heating module and a booster pump are installed in the machine body in an upper - lower separated manner beside the PCC composite filter element and the RO composite filter element. A filter main control board is installed between the instant - heating module and the two juxtaposed PCC composite filter elements and the RO composite filter element. Water circuit board components communicated with the peripheral pipeline are respectively connected to the bottom sides of the corresponding PCC composite filter element and the RO composite filter element; On the other side of the machine body beside the instant - heating module and the booster pump, an ice - making device, a condenser water - cooling module, a refrigeration water tank and a compressor are installed. The condenser water - cooling module, the refrigeration water tank and the compressor are installed side by side at the lower side inside the machine body. The ice - making device is installed in the upper - side middle part inside the machine body above the condenser water - cooling module, the refrigeration water tank and the compressor. An ice - making main control board is installed in the machine body beside the corresponding ice - making device; 2. The embedded push-pull water purifier according to claim 1, wherein, A water - receiving groove is recessed on the front side wall surface of the machine body. An ice - discharging port for supplying ice outward and a water - discharging nozzle for supplying water are installed on the top side of the water - receiving groove; 3. The embedded push-pull water purifier according to claim 2, wherein, An external water kettle for containing a certain amount of pure water is also inserted beside the water - discharging nozzle of the water - receiving groove; 4. The embedded push-pull water purifier according to claim 2, characterized in that, A water - receiving box for receiving overflowed or dripped water is nested and installed at the bottom side of the water - receiving groove; 5. The embedded push-pull water purifier according to claim 2, wherein An outlet water slide rail component for adaptively adjusting the height of the water - discharging nozzle up and down according to the height of the water - receiving vessel is also arranged inside the front side wall of the machine body; 6. The built-in push-pull type water purifier according to claim 2, wherein, A touch - control display screen for facilitating touch - control and displaying various control information is also arranged on the front side wall surface of the machine body above the water - receiving groove; 7. The embedded push-pull water purifier according to claim 1, wherein, The ice - making device includes an ice - cavity seat, an ice - cavity cover, an evaporator, an ice - making component and an ice - discharging control component. The ice - making component is installed under the evaporator, and the ice made is poured into the ice storage cavity in the ice - cavity seat beside it through the evaporator. The ice - discharging control component pushes the made ice cubes to be discharged from the ice - discharging port at the end through a screw; 8. The embedded push-pull water purifier according to claim 7, characterized in that, The ice - making component includes a U - shaped ice - holding hopper, a turning - ice motor and an ice - discharging guiding plate. The U - shaped ice - holding hopper is rotatably installed along the axis in the ice - making cavity on one side of the ice - cavity seat. The side edge of the ice - discharging guiding plate is axially hinged to the edge of the U - shaped ice - holding hopper. The evaporator is inserted into the U - shaped ice - holding hopper from the upper side and condenses the pure water inside into ice. The turning - ice motor is fixed on the wall end surface of the ice - cavity seat and drives the U - shaped ice - holding hopper to turn 90°. The ice cubes poured out after the U - shaped ice - holding hopper turns are guided into the ice storage cavity in the ice - cavity seat by the inclined - hinged ice - discharging guiding plate. A plurality of uniformly arranged through - holes for leaking the ice - making water when the U - shaped ice - holding hopper turns are also axially arranged on the ice - discharging guiding plate; 9. The embedded push-pull water purifier according to claim 7, wherein, The ice discharging control component includes an ice stirring screw, an ice discharging motor, an ice discharging baffle, an ice discharging port and an ice door. The ice discharging baffle is arranged above the ice discharging port to guide ice cubes into the ice discharging port in sequence. The ice door is hinged at the lower end outlet of the ice discharging port to prevent ice cubes from sliding out automatically. The ice discharging motor is installed and fixed on the wall end face of the ice chamber seat and drives the ice stirring screw to rotate, drives ice cubes to be guided into the ice discharging port in sequence, and squeezes and pushes open the ice door for automatic discharging of ice cubes.

10. A water purification system, comprising a push-pull type water purifier embedded as described in any one of claims 1 to 9, characterized in that, The system includes a tap water source, a pressure reducing valve, a high-pressure switch, a PCC composite filter element, a booster pump and an RO composite filter element. The tap water source directly discharges the purified water made after passing through the pressure reducing valve, the high-pressure switch, the PCC composite filter element, the booster pump and the RO composite filter element through a pipeline and a control valve. One branch of the purified water is also connected with an external water kettle, an instant heating module and a first water pump through a pipeline. The first water pump pumps the hot water made by the instant heating module out from the water outlet nozzle. The other branch of the purified water is also connected with a refrigerating water tank, an ice making chamber and an ice storage chamber of an ice chamber seat, a second water pump and a third water pump through a pipeline. An evaporator for refrigerating and making ice of purified water is arranged in the ice making chamber of the ice chamber seat. The evaporator is communicated with a compressor, a condenser water cooling component, a dryer and a capillary tube for refrigeration operation through a refrigerant pipeline. The second water pump pumps the purified water stored in the refrigerating water tank into the ice making chamber of the ice chamber seat. After the evaporator refrigerates and makes ice of the purified water in the ice making chamber, the made ice cubes are guided into the ice storage chamber of the ice chamber seat. The ice water after ice making in the ice making chamber and the ice storage chamber automatically flows down from a high place to be stored in the refrigerating water tank. The third water pump directly pumps the ice water stored in the refrigerating water tank out from the water outlet nozzle. The purified water after pre-filtration by the PCC composite filter element is also branched and connected with a water cooling pipeline for water cooling and temperature reduction of the condenser water cooling component. The waste water absorbed heat by the condenser water cooling component is discharged outwards through the connected drain port.

11. A water purification system according to claim 10, characterized in that, A water cooling solenoid valve for controlling the on-off of the pipeline and a waste water plug for discharging the waste water according to a set ratio are also installed on the water cooling pipeline.