Ice discharging structure, ice making module and water purifying ice maker

By designing an automatic flip-up baffle ice-discharging structure and a water-ice separation mechanism, the space integration and high cleanliness of the water purification ice maker are achieved, solving the problem of purchasing water purification equipment and ice-making equipment separately, and meeting the diverse water purification application needs of users.

CN223596259UActive Publication Date: 2025-11-25GUANGDONG LESSO WATER PURIFICATION TECH CO LTD
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Patent Information

Application Number
CN202422414866.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-11-25
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing water purification equipment and ice-making equipment need to be purchased separately, which takes up a lot of space, and the ice outlet of the ice maker is easily contaminated by external pollutants.

Method used

Design an ice discharge structure with an automatic flip-up baffle at the ice outlet. Combine the ice-making module and the water purification module to integrate the water purification ice maker and prevent external pollutants from entering through the water-ice separation mechanism.

Benefits of technology

It achieves spatial integration and high cleanliness of the water purification ice maker, preventing external pollutants from entering and meeting users' needs for water purification and ice making.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a kind of ice discharge structure, ice making module and water purifying ice maker, and the ice discharge structure includes the buffer position formed in the ice outlet end of ice taking transmission mechanism, the ice outlet end of ice outlet is set to the lower side towards the buffer position position, the pivot is set to the ice outlet end of ice outlet position to connect baffle, the baffle is configured to always close in the ice outlet end of ice outlet position, when ice block is guided out of the ice outlet end and falls into the ice outlet end of ice outlet through buffer position, the upper side of the baffle is turned over by the gravity of falling ice block, and the ice outlet end of ice outlet is opened;Through a kind of ice discharge structure setting, make it in the ice outlet end of ice outlet position set the baffle that is opened when falling ice of ice outlet end of ice outlet is automatically turned over, effectively shield the ice outlet end of ice outlet position when stopping ice making, prevent external contaminant from the ice outlet end of ice outlet and go in the ice taking transmission mechanism, so that the water purifying ice maker applied has the characteristics of high cleanliness.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water purifying ice maker structure technical field, concretely relates to a kind of ice discharge structure, ice making module and water purifying ice maker. BACKGROUND

[0002] In prior art, water purifier can effectively filter water source, to provide daily water purification drinking demand for us.

[0003] In prior art, ice maker can effectively refrigerate water source, then output ice, to meet the ice demand of user daily.

[0004] If domestic user needs water purification function and ice making function application simultaneously, often needs the purchase of two equipments, then carries out combination application, such application mode, equipment occupies larger domestic use space, and brings inconvenience for the use of user, then how effectively integrates water purification equipment and ice making equipment, provides a kind of water purifying ice maker scheme, it is the technical problem that needs to be solved in the field.

[0005] The ice outlet of ice maker in prior art is conventional open state, without shielding, and external pollutants can easily penetrate into the interior of the ice maker through the open ice outlet. UTILITARY MODEL

[0006] The utility model aims at providing an ice discharge structure, ice making module and water purifying ice maker to overcome the deficiencies of the prior art.

[0007] The ice discharge structure includes a buffer position formed at the ice outlet end of the ice taking and conveying mechanism, the buffer position is provided with an ice outlet opening downward, a rotating shaft is arranged at the position of the ice outlet opening to connect a baffle, the baffle is configured to be normally closed at the position of the ice outlet opening, when the ice block discharged from the ice outlet end falls into the ice outlet through the buffer position, the upper side of the baffle is turned over by the gravity of the falling ice block, so that the ice outlet opening is opened.

[0008] Further, the rotating shaft is arranged at the caliber edge position of the ice outlet opening, the baffle includes an ice blocking section arranged on the side of the ice outlet opening and a counterweight section arranged on the outside of the ice outlet opening, when the ice block falls into the position of the ice outlet opening, the ice block gravity presses the ice blocking section, the ice blocking section is turned over and moves downward around the rotating shaft to open the ice outlet opening, and the counterweight section is turned over and moves upward to have gravitational potential energy; after the ice block falls into the position, the counterweight section is reset by the gravitational potential energy, and the ice blocking section is shielded at the position of the ice outlet opening.

[0009] Further, a retreat concave position matched with the shape of the counterweight section is arranged on the outside of the ice outlet opening.

[0010] Furthermore, the rotating shaft is connected to both sides of the ice outlet diameter edge, and two baffles are symmetrically arranged on both sides of the ice outlet.

[0011] Furthermore, guide blocks are provided on the upper side of the ice-blocking sections on both sides, tilted downwards from the outside inwards toward the center of the ice outlet.

[0012] An ice-making module includes an ice-making mechanism and an ice-collecting and conveying mechanism for discharging ice blocks prepared by the ice-making mechanism. The ice-collecting and conveying mechanism includes an ice-collecting trough, which is inclined from bottom to top. A drainage hole is provided on the lower side of the ice-collecting trough. A spiral pusher is provided in the ice-collecting trough along the extending direction of the ice-collecting trough. The upper end of the spiral pusher is an ice-discharging end, and an ice-discharging structure as described above is provided on one side of the ice-discharging end.

[0013] Furthermore, it also includes a refrigerator body, with the ice-making mechanism disposed on the upper side of the refrigerator body, the ice-collecting and conveying mechanism disposed in the middle of the refrigerator body, and a water storage space formed at the lower part of the refrigerator body, with the drain hole communicating with the water storage space.

[0014] Furthermore, a water-ice separation mechanism is provided between the ice-making mechanism and the ice-collecting and conveying mechanism; the water-ice separation mechanism includes a grid plate located on one side above the ice-collecting and conveying mechanism, a water-guiding channel is provided on the lower side of the grid plate, and a water-guiding hole is provided on the water-guiding channel facing the water storage space; an ice inlet is formed on the other side above the ice-collecting and conveying mechanism, and the grid plate is inclined towards the ice inlet.

[0015] Furthermore, the refrigerator body is wider at the top and narrower at the bottom, with a transitional position in the middle of its rear side that is curved. The drain hole is set corresponding to the transitional position of the refrigerator body. There is a drain space between the rear side of the ice trough and the rear side of the refrigerator body, and the water inlet is set corresponding to the drain space and communicates with the water storage space.

[0016] A water purifier ice maker includes a housing, within which an ice-making module is installed, employing the ice-discharging structure described above or the ice-making module employing the ice-making module described above; the ice outlet is located on one side of the front end of the housing.

[0017] The beneficial effects of this utility model are as follows:

[0018] By designing an ice-discharging structure, a baffle is installed at the ice outlet position to automatically flip and open the ice outlet when ice falls. This effectively blocks the ice outlet position when ice making stops, preventing external contaminants from entering the ice collection and transmission mechanism through the ice outlet, thus giving the water purification ice maker a high degree of cleanliness. Attached Figure Description

[0019] Fig. 1The first schematic view of the structure of the water purifying ice maker is set up for the utility model.

[0020] Fig. 2 The second schematic view of the structure of the water purifying ice maker is set up for the utility model.

[0021] Fig. 3 The application partial structure schematic view of the ice discharging structure in the water purifying ice maker.

[0022] Mark explanation:

[0023] The shell 1, the ice outlet 11, the rotating shaft 110, the baffle 111, the ice blocking section 112, the counterweight section 113, the retreat concave position 114, the guide block 115, the water outlet 12,

[0024] The ice making module 2, the ice making box 21, the installation space 210, the water storage space 211, the overflow hole 212, the transition change position 213, the ice making mechanism 22, the evaporator 221, the evaporation column 222, the water tank 223, the turnover driving mechanism 224, the ice taking transmission mechanism 23, the ice inlet 230, the ice taking groove 231, the water falling hole 232, the spiral propeller 233, the buffer position 234, the water-ice separation mechanism 235, the grid plate 2351, the water guide groove 2352, the water guide hole 2353, the water falling space 24, the water guide space 25, the refrigeration module 3, the compressor 31, the filter module 4, the water tank module 5, the water purifying kettle 6. Specific implementation

[0025] In order to make the technical scheme, the object and the advantages of the utility model more clearly understood, the following will be further explained and described to the utility model by combining with the drawings and the embodiments.

[0026] As shown in the accompanying Figs. 1 to 3 The utility model provides a kind of water purifying ice maker scheme, it includes shell 1, the shell 1 one side front end is provided with ice outlet 11, the shell 1 one side front part is provided with ice making module 2 corresponding the ice outlet 11 position, the ice outlet of the ice making module 2 is communicated with the ice outlet 11;The refrigeration module 3 is set in the lower side position of the shell 1 rear part, and the refrigeration module 3 is communicated with the ice making module 2 between refrigeration passage.

[0027] The other side of the casing 1 is provided with a water outlet 12, and the other side of the casing 1 is provided with a filter module 4 corresponding to the position of the water outlet 12. The upper side of the rear part of the casing 1 is provided with a water tank module 5, and the water tank module 5 is provided with a raw water inlet 51 as a raw water input end; the middle part of the other side of the casing 1 is provided with a purified water kettle 6 between the filter module 4 and the water tank module 5, and the purified water kettle 6 is provided with a water filling port; the raw water inlet 51 is in communication with the water inlet side of the filter module 4, one end of the purified water side of the filter module 4 is in communication with the water outlet 12, the other end of the purified water side of the filter module 4 is in communication with the water inlet side of the ice making module 2, and the other end of the purified water side of the filter module 4 is in communication with the water filling port.

[0028] The raw water inlet end, one end of the purified water side of the filter module 4 to the water outlet 12 forms a purified water output flow channel. The raw water inlet end, the other end of the purified water side of the filter module 4, the ice making module 2 to the ice outlet 11 forms a purified water ice making flow channel. The raw water inlet end, the other end of the purified water side of the filter module 4 through the water filling port to the inside of the purified water kettle 6 forms a purified water storage flow channel.

[0029] For the above basic structure layout and functional organization application, through a compact type purified water ice making machine scheme of a comprehensive layout structure of setting the ice making module 2, the filter module 4 and the water tank module 5, the device can meet the requirements of providing purified water filtering output and purified water ice making comprehensive application at the same time, and the device has the characteristics of compact volume by a reasonable structure layout scheme. Through the filter module 4, the purified water is introduced to the water filling port, temporarily stored in the purified water kettle 6, directly exported to the outside through the water outlet 11, and used for ice making application through the ice making module 2, so that the purified water ice making machine of the scheme provides multiple different purified water application modes.

[0030] Embodiment 1:

[0031] In order to realize further functional settings and make the installation and cooperation between the functional devices more compact, the embodiment provides a preferred structure setting embodiment of the ice making module as follows:

[0032] The ice making module 2 includes an ice making box 21 which is wide at the top and narrow at the bottom, the refrigeration module 3 includes a compressor 31 and a radiator, the compressor 31 is located at the lower part of the rear end of one side of the casing 1, and the radiator is located at the lower part of the rear end of the other side of the casing 1. The rear side of the ice making box 21 located on one side of the casing 1 is narrowed to avoid the position of the compressor 31.

[0033] An ice-making mechanism 22 is provided on the upper side of the refrigerator body 21, and an ice-collecting and conveying mechanism 23 is provided in the middle of the refrigerator body 21. The ice-dispensing end of the ice-collecting and conveying mechanism 23 is adapted to the ice outlet 11. A water storage space 211 is formed at the lower part of the refrigerator body 21. The purified water side of the filter module 4 is connected to the water storage space 211, and a water supply pipe is led out from the water outlet of the water storage space 211 and connected to the water inlet side of the ice-making mechanism 22.

[0034] When a water storage space 211 is provided, and the purified water from the filter module 4 is connected to the water inlet of the ice-making mechanism 22 via the water storage space 211, the purified water from the filter module 4 can be used as the ice-making water source for the ice-making module 2. The ice blocks prepared by obtaining water from the ice-making mechanism 22 will be transported by the ice-collecting and conveying mechanism 23 to the ice outlet 11 for output, satisfying the user's ice-collecting application.

[0035] In order to further meet the requirements of the ice-making mechanism 22 for separating residual water after ice making and to avoid excessive liquid water adhering to the surface of the output ice blocks, a water-ice separation mechanism 235 is provided between the ice-making mechanism 22 and the ice-taking and conveying mechanism 23 in this embodiment.

[0036] Specifically, the water-ice separation mechanism 235 includes a grid plate 2351 located on one side above the ice-collecting and conveying mechanism 23, the grid plate 2351 extending in the front-back direction; a water inlet trough 2352 is provided on the lower side of the grid plate 2351, and a water inlet hole 2353 is provided on the water inlet trough 2352 facing the water storage space 211; an ice inlet 230 is formed on the other side above the ice-collecting and conveying mechanism 23, and the grid plate 2351 is inclined toward the ice inlet 230.

[0037] During application, after ice is prepared by the ice-making mechanism 22, the ice-water mixture is discharged onto the grid plate 2351. The frozen ice blocks fall towards the ice inlet 230 along with the inclined grid plate 2351, preparing for the ice block transmission mechanism 23 for output. The water discharged by the ice-making mechanism 22 flows through the gaps in the grid plate 2351 into the water inlet 2352, and is guided by the water inlet 2353 into the water storage space 211.

[0038] In the application, the ice making mechanism 22 comprises an evaporator 221, which extends downwardly and is provided with an evaporation column 222; the lower side of the evaporator 221 is provided with a water tank 223, and the evaporation column 222 can be arranged in the water tank 223; the water tank 223 is connected to a turnover driving mechanism 224; the water outlet end of the water storage space 211 is connected to the water inlet side of the water tank 223 through a water supply pipeline. When the ice-water mixture needs to be discharged, the turnover driving mechanism 224 is used to turn over the water tank 223, so that the water tank 223 is tilted towards the grid plate 2351, and the ice blocks generated in the evaporation column 222 are separated from the evaporation column 222 under the action of gravity and the heat source generated by the evaporator 211, so that the ice blocks and the remaining water in the water tank 223 are discharged onto the grid plate 2351.

[0039] The ice taking and conveying mechanism 23 comprises an ice taking tank 231, which is open upwardly and is arranged in a downwardly inclined manner; the lower side of the ice taking tank 231 is provided with a water inlet hole 232, which is connected to the water storage space 211. Along the extension direction of the ice taking tank 231, a screw conveyor 233 is arranged in the ice taking tank 231, and the upper end of the screw conveyor 233 is an ice outlet end.

[0040] For an ice discharging structure arranged between the ice outlet end of the ice taking and conveying mechanism 23 and the ice outlet 11, the present embodiment is provided as follows:

[0041] The ice taking tank 231 is provided with a buffer position 234 on the side of the upper end of the screw conveyor 233, and the ice outlet 11 is arranged below the buffer position 234 and opens downwardly; the ice outlet 11 is movably connected to a baffle 111 through a rotating shaft 110, and the baffle 111 is configured to be normally closed to the ice outlet 11; when the ice blocks produced by the ice making module 2 are discharged from the ice taking and conveying mechanism 23 and fall into the ice outlet 11 through the buffer position 234, the upper side of the baffle 111 is turned over around the rotating shaft 110 under the action of the gravity of the falling ice blocks, so that the ice outlet 11 is opened to allow the ice blocks to fall,

[0042] Specifically, the ice outlet 11 is connected with the rotating shaft 110 at both sides of the caliber edge, and the baffle 111 is symmetrically arranged at both sides of the ice outlet 11, and the baffle 111 comprises an ice blocking section 112 arranged towards the ice outlet 11 and a counterweight section 113 arranged outside the ice outlet 11; the ice outlet 11 is provided with a retreat recess 114 matched with the shape of the counterweight section 113; when the ice block falls into the ice outlet 11, the ice block gravity pressure connects the ice blocking section 112, the ice blocking section 112 rotates around the rotating shaft 110 and moves downward to open the ice outlet 11, and the counterweight section 113 rotates upward to the retreat recess 114 to have gravity potential energy; after the ice block falls into the ice outlet 11, the counterweight section 113 resets with gravity potential energy, and the ice blocking section 112 is blocked in the ice outlet 11.

[0043] In order to make the ice block falling into the baffle 111 on both sides more concentrated towards the central position of the ice outlet 11, preferably, the upper side of the ice blocking section 112 on both sides is inclined downward towards the central position of the ice outlet 11 and is provided with a guide block 115.

[0044] The rear side of the ice taking groove 231 and the rear side of the ice making box 21 have a falling water space 24, and the water inlet hole 2353 is arranged corresponding to the falling water space 24; then the water source separated by the water-ice separation mechanism 235 is guided by the water inlet hole 2353 and falls into the water storage space 211 through the falling water space 24.

[0045] For the ice making box 21 with the upper wide and lower narrow shape, the transition change position 213 with arc transition is arranged in the middle of the rear side to avoid the position of the compressor 31, and the falling water hole 232 is arranged corresponding to the transition change position 213 of the ice making box 21. Based on the arrangement of the transition change position 213 with arc transition, the water source falling from the falling water hole 232 first falls to the transition change position 213, and then falls into the water storage space 211 under the guidance of the transition change position 213, avoiding the noise caused by the direct falling of the water source into the water storage space 211.

[0046] Similarly, under the arrangement of the transition change position 213 with arc transition, the water source falling in the falling water space 24 also falls into the water storage space 211 under the guidance of the transition change position 213.

[0047] Preferably, the water outlet end of the water storage space 211 is communicated with the water outlet 12 to form a residual water outlet flow channel, so that the cold water in the water storage space 211 can be effectively discharged from the water outlet 12 to meet the demand of the cold water application. Specifically, the water supply pipeline is communicated to the water inlet side of the water tank 223, and a corresponding control valve assembly is arranged between the two positions, so that the water supply pipeline is communicated with the water outlet 12 through the control valve assembly to meet the demand of the residual water controlled output from the water outlet 12.

[0048] Embodiment 2:

[0049] A water level sensor is arranged in the water storage space 211, and when the water level sensor senses a low water level, the filter module 4 is driven to produce clean water and inject the clean water into the water storage space 211; when the water level sensor senses a high water level, the water injection into the water storage space 211 is stopped.

[0050] In order to avoid the overflow of the clean water in the water storage space 211 due to the failure of the water level sensor, an overflow hole 212 is arranged on the upper or middle part of the ice making box body and extends outward, a water guide space 25 is arranged on the bottom of the cabinet, and the overflow hole 212 is communicated with the water guide space 25. A water source sensor is arranged in the water guide space 25, and when the water source sensor senses the water source input, a feedback control signal is fed back to control the filter module 4 to stop producing clean water and injecting the clean water into the water storage space 211; and an optional feedback control warning device can be used to send a warning signal to the user.

[0051] Specifically, the overflow hole 212 can be arranged at the transition change position 213 of the ice making box body 21, and the water guide space 25 is arranged at the middle position of the bottom side of the cabinet. Alternatively, the front end of the ice making box body 21 is inwardly recessed to form a mounting space 210, and the overflow hole 212 is arranged on the upper part of the front side of the ice making box body 21 and faces the mounting space 210; and the water guide space 25 is arranged at the front position of the bottom side of the cabinet 1.

[0052] The above only describes the preferred embodiments of the present application, and for those skilled in the art, the embodiments can be modified without departing from the principle of the present application, and the corresponding modification schemes should also be regarded as the protection scope of the present application.

Claims

1. Ice draining structure, characterized in that, The ice outlet of the ice outlet position of the ice outlet transmission mechanism is provided with a pivot shaft to connect a shutter, and the shutter is configured to be normally closed to the ice outlet position.

2. The ice ejecting structure according to claim 1, wherein The pivot shaft is arranged at the edge of the ice outlet, and the shutter comprises an ice blocking section arranged on one side of the ice outlet and a counterweight section arranged on the outside of the ice outlet.

3. The ice ejecting structure according to claim 2, wherein The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

4. The ice ejecting structure according to claim 2, wherein The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

5. The ice ejecting structure according to claim 4, wherein The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

6. Ice-making module, characterized in that The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

7. The ice-making module of claim 6, wherein, The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

8. The ice-making module of claim 7, wherein, The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

9. The ice-making module of claim 8, wherein, The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section.

10. A water purifying ice maker characterized by The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. The ice outlet is provided with a retreat recess position matched with the shape of the counterweight section. 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