Ice-water separation structure
By adopting a separation rack and ice storage basket structure in the water dispenser, the problem of ice and water mixing is solved, enabling neat storage of ice and recycling of water resources, thus improving the efficiency and environmental friendliness of the water dispenser.
Patent Information
- Application Number
- CN202422984490.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-04
AI Technical Summary
In the current water dispenser ice-making process, ice and water mix, which leads to a decrease in the purity of the ice, a faster melting speed, and water retention in the refrigerator, affecting efficiency and energy consumption.
The system employs a separation rack and ice storage basket structure within the enclosure. The inclined dividers and sliding plate design enable rapid separation of ice and water. Combined with insulation materials and filter plates, it ensures neat storage of ice and recycling of water resources.
It improves ice separation efficiency, extends ice storage time, reduces energy consumption, enables effective water recycling and reuse, and avoids water retention and accelerated ice melting.
Smart Images

Figure CN223726654U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of water dispenser, concretely relates to an ice water separation structure. BACKGROUND
[0002] As a common water dispenser, it is widely used in family, office, public place and other environments, and provides convenient and safe drinking water service for users. With the development of science and technology, the functional requirements of users for water dispenser are increasingly diversified, and the ice water separation function has become the focus of many users.
[0003] The existing water dispenser, the ice block and the residual water are often mixed together during the ice making process of the water dispenser, which not only affects the purity and taste of the ice block, but also may cause the ice block to melt faster due to water retention during storage, thereby reducing the storage time and use efficiency of the ice block. After ice water separation, the ice block is stored in the ice storage box, and when the ice block melts, part of the ice water will be retained in the ice storage box, which will cause the ice block to be taken together with the water when taking the ice block, and the accumulated water and the ice block are mixed together, which accelerates the melting speed of the ice block, so the ice making system needs to work frequently, thereby increasing the energy consumption of the system. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing an ice water separation structure to solve the problems of ice and water separation and water retention in the ice storage box in the prior art.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] An ice water separation structure, comprising a box body, a water storage chamber is arranged below the inside of the box body, an ice storage box is installed on one side of the box body, and a separation frame is arranged above the ice storage box;
[0007] The ice storage box comprises a water retaining frame and an ice storage basket, the water retaining frame is fixedly installed in the box body with an upward opening, the ice storage basket is slidingly installed in the water retaining frame with an upward opening, a hollow groove is formed in the bottom of the water retaining frame, and an opening is formed in one end of the bottom of the ice storage basket.
[0008] The separation frame comprises a support plate, a sliding plate and a partition strip, the side surface of the support plate is provided with a protruding shaft, and the sliding plate and the partition strip are arranged on the inner side of the support plate.
[0009] Further, a plurality of vertical plates are arranged on the sliding plate, a cross beam is arranged on the top of the vertical plate, and the two ends of the partition strip are connected to the cross beam and the sliding plate respectively, and each partition strip is in a hollow structure.
[0010] Further, the installation of the separation frame is referenced to the horizontal reference line, the slide plate and the partition strip are respectively inclinedly distributed towards different directions, and the included angle between the slide plate and the partition strip is an acute angle.
[0011] Further, the left end of the slide plate is provided with a circular arc end surface, the partition strip and the circular arc end are provided with a rib, and the lower portion of the partition strip is provided with a reinforcing plate, and the lower portion of the reinforcing plate is connected with the slide plate.
[0012] Further, the horizontal reference surface at the rear of the vertical plate is kept at the same horizontal plane with the horizontal reference surface at the rear of the supporting plate, and the horizontal reference surface at the rear of the slide plate is lower than the horizontal reference surface at the rear of the vertical plate.
[0013] Further, the ice storage basket is inclined downwards from right to left, and the lower inclined end is the opening position.
[0014] Further, the outer wall of the box body is covered with thermal insulation material. The thermal insulation material helps to reduce the loss of internal heat to the external environment, thereby maintaining the stability of the internal temperature and improving the storage time of the ice blocks in the ice storage basket. Therefore, the energy consumption of the system is relatively reduced, and the energy consumption of the entire ice maker is reduced.
[0015] Further, the inner wall of the hollow groove is provided with a plurality of limiting strips, the hollow groove is provided with a filter plate, the surface of the filter plate is provided with filter holes, the periphery of the filter plate is provided with side blocks, the middle of one end of the filter plate is provided with a U-shaped plate, and the U-shaped plate is provided with double-layer strips.
[0016] Further, the tail end of the water blocking frame is provided with a frame plate, the left side of the top end of the ice storage basket is provided with a protruding block, and the right side of the top end of the ice storage basket is provided with an elastic strip.
[0017] Further, the tail end of the ice storage basket is provided with a recessed opening, and a pull plate is installed above the recessed opening.
[0018] The technical scheme of the utility model has the following beneficial effects:
[0019] 1. The partition strip is inclined upwards, when the ice blocks in the ice making box fall on the surface of the partition strip, the ice blocks will quickly slide to the left on the partition strip and fall into the ice storage box, improving the efficiency of ice block separation, and ensuring that the ice blocks are stored in the ice storage box in an orderly and neat manner, facilitating subsequent use and management.
[0020] 2. The water remaining in the ice making box can pass through the hollow parts between the partition strips and reach the surface of the slide plate. The downwardly inclined slide plate can quickly guide the water flow to the right, thereby entering the water storage chamber in the box body, preventing the water from accelerating the melting of the ice blocks, avoiding the retention and waste of water, and realizing effective recycling and reuse of water resources, improving the efficiency and environmental protection of the entire system.
[0021] 3. The ice cubes falling from the ice making box will enter the ice storage basket, the ice cubes in the ice storage basket are stored for a long time, the ice cubes will absorb heat and melt into water, the melted water will flow out from the openings of the ice storage basket, the openings are arranged in an equidistant ellipse shape, which can improve the flowability of the melted water, prevent the water and ice cubes from mixing together, accelerate the melting speed of the ice cubes, and avoid the problem of taking the water together with the ice cubes when taking the ice cubes. The ice storage box can realize the function of separating the water and ice cubes twice. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description.
[0023] Figure 1 It is an overall internal structure diagram of the present application.
[0024] Figure 2 It is a separation frame structure diagram of the present application.
[0025] Figure 3 It is a three-dimensional sectional view of the ice storage box of the present application.
[0026] Figure 4 It is a planar sectional view of the ice storage box of the present application.
[0027] Figure 5 It is a separation installation diagram of the ice storage box of the present application.
[0028] Figure 6 It is a filter plate installation diagram of the present application.
[0029] Figure 7 It is an enlarged view of A of the present application.
[0030] Figure 8 It is a three-dimensional sectional view of the separation frame of the present application.
[0031] Figure 9 It is a three-dimensional sectional view of the separation frame of the present application.
[0032] Figure 10 It is a planar installation diagram of the separation frame of the present application.
[0033] 10, box; 11, water storage chamber; 12, ice storage box; 13, ice making box; 14, motor; 20, separation frame; 21, support plate; 22, partition strip; 23, sliding plate; 24, vertical plate; 25, cross beam; 30, water baffle; 31, frame plate; 32, hollow groove; 33, limiting strip; 34, filter plate; 35, filter hole; 36, side block; 37, U-shaped plate; 38, double-layer strip; 40, ice storage basket; 42, opening; 43, inward opening; 44, pull plate; 45, protruding block; 46, elastic strip; 211, protruding shaft; 341, circular arc end; 351, reinforcing plate; 361, rib. DETAILED DESCRIPTION
[0034] In order to make the purpose, technical scheme and advantages of the utility model clearer, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model. Based on the examples in the utility model, all other examples obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0035] Example one:
[0036] Reference Figure 1 An ice-water separation structure, comprising a box 10, a water storage chamber 11 is arranged below the inside of the box 10, an ice storage box 12 is mounted on one side of the box 10, and a separation frame 20 is arranged above the ice storage box 12.
[0037] In the above scheme, an ice making box 13 is mounted above the box 10, a motor 14 is mounted on the side of the box 10, and the output end of the motor 14 is connected with the ice making box 13. A water pipe is connected to the top end of the box 10, and the filtered water is sent into the water pipe through the water pump to flow into the ice making box 13, and the water enters the ice making box 13, and the refrigeration system starts to work. The refrigerant is compressed and heated under the action of the compressor, and then enters the condenser to release heat. Then, the liquid refrigerant is depressurized by the throttling device and enters the evaporator inside or near the ice making box. In the evaporator, the refrigerant absorbs the heat of the water and evaporates into a gaseous state, so that the temperature of the water is reduced below the freezing point; after the ice making in the ice making box 13 is completed, the ice blocks are temporarily stored in the ice making box 13, and the system controls the motor 14 to start to overturn the ice making box 13, so that the ice blocks in the ice making box 13 fall on the separation frame 20 for ice-water separation.
[0038] Further reference Figure 8 And Figure 9The separating frame 20 comprises a support plate 21, a sliding plate 23 and a partition strip 22, the side of the support plate 21 is provided with a protruding shaft 211, and the sliding plate 23 and the partition strip 22 are arranged on the inner side of the support plate 21; a plurality of vertical plates 24 are arranged on the sliding plate 23, the top of each vertical plate 24 is provided with a cross beam 25, and the two ends of each partition strip 22 are connected to the cross beam 25 and the sliding plate 23 respectively, and the partition strips 22 are in a hollow structure.
[0039] In the above scheme, the box body 10 is provided with a hole position matched with the protruding shaft 211, the protruding shaft 211 is inserted into the hole in the box body 10, so that the separating frame 20 is installed; the support plate 21 is abutted against the inner wall of the box body 10, so that the separating frame 20 cannot rotate in the box body 10, and no other positioning device is needed to position the separating frame 20, thereby improving the stability of the separating frame 20; the ice blocks in the ice making box 13 will fall on the partition strips 22, and the ice blocks will automatically slide down on the partition strips 22 and fall into the ice storage box 12. The separating frame 20 is integrally formed, which can greatly reduce the assembly steps in the production process, thereby shortening the production cycle; the assembly steps and related quality control links are reduced; and the material waste is reduced without additional connecting parts or fasteners.
[0040] The vertical plates 24 support and connect the cross beams 25, the overall structure of the separating frame 20 is stable, the sliding plate 23 and the partition strip 22 can better bear the weight of the ice blocks and water, and the damage risk caused by uneven stress is reduced.
[0041] Further referring to Figure 10 The separating frame 20 is installed with reference to a horizontal reference line, the sliding plate 23 and the partition strip 22 are respectively inclined and distributed in different directions, and the included angle between the sliding plate 23 and the partition strip 22 is an acute angle.
[0042] In this further embodiment, the partition strips 22 are upwardly inclined, when the ice blocks in the ice making box 13 fall on the surface of the partition strips 22, the ice blocks will quickly slide leftward on the partition strips 22 and fall into the ice storage box 12, thereby improving the ice block separation efficiency and ensuring that the ice blocks can be stored in the ice storage box 12 in an orderly and organized manner, which is convenient for subsequent taking and management. The water remaining in the ice making box 13 can pass through the hollow parts between the partition strips 22 and come to the surface of the sliding plate 23, the downwardly inclined sliding plate 23 can quickly guide the water flow to the right and thus into the water storage chamber 11 in the box body 10, thereby preventing the water from affecting the melting of the ice blocks, avoiding the retention and waste of water, achieving effective recycling and reuse of water resources, and improving the efficiency and environmental protection of the whole system.
[0043] Further referring to Figure 9 The left end of the sliding plate 23 is provided with a circular arc end 341, and a rib 361 is arranged between the partition strip 22 and the circular arc end 341.
[0044] The further embodiment is that the ice cubes slide on the partition strips 22 to the left and will contact the circular arc end 341, so that the ice cubes can have a smooth transition when sliding to the slide plate 23, avoiding the impact and collision of the ice cubes due to sudden change of sliding direction. This smooth transition helps to reduce the breakage and fragmentation of the ice cubes, maintaining the integrity and aesthetics of the ice cubes. The design of the circular arc end 341 not only protects the ice cubes, but also protects the slide plate 23 itself. By reducing the direct impact of the ice cubes on the slide plate, the service life of the slide plate is prolonged, and the maintenance cost caused by frequent replacement of the slide plate is reduced. The circular arc end 341 also serves to block the water from flowing out of the outside, and the rib 361 is used to reduce the water flow to prevent water from flowing into the ice storage box 12.
[0045] Further reference Figure 9 The reinforcing plate 351 is provided below the partition strips 22, and the lower part of the reinforcing plate 351 is connected with the slide plate 23.
[0046] The further embodiment is that the reinforcing plate 351 connects the partition strips 22 and the slide plate 23 with each other, significantly enhancing the structural stability of the entire separation frame 20. It effectively connects the partition strips 22 and the slide plate 23 into a whole, preventing deformation or damage caused by uneven stress or external impact. At the same time, it promotes the load-bearing capacity of the partition strips 22 and the slide plate 23 to be significantly improved; this makes the separation frame 20 better able to withstand the weight of the ice cubes and water, as well as various dynamic loads that may occur during use.
[0047] Example two:
[0048] Reference Figure 2 The horizontal reference surface at the back of the vertical plate 24 is kept at the same level as the horizontal reference surface at the back of the support plate 21, and the horizontal reference surface at the back of the slide plate 23 is lower than the horizontal reference surface at the back of the vertical plate 24.
[0049] In the above scheme, since the horizontal reference surface at the back of the support plate 21 is attached to the inner wall of the box body 10, and the horizontal reference surface at the back of the slide plate 23 is lower than the horizontal reference surface at the back of the vertical plate 24, when the water remaining in the ice-making box 13 passes through the hollow parts between the partition strips 22 to the surface of the slide plate 23, it will be guided out of the water flow from the height difference between the back of the slide plate 23 and the back of the vertical plate 24, so that the water is not retained on the surface of the slide plate 23, thereby quickly reducing the load on the surface of the slide plate 23.
[0050] Example three (combined with example one and example two):
[0051] Further reference Figures 3-6The ice storage box 12 comprises a water retaining frame 30 and an ice storage basket 40. The water retaining frame 30 is fixedly installed in the upper portion of the box body 10 and the ice storage basket 40 is slidably installed in the water retaining frame 30. The bottom of the water retaining frame 30 is provided with a hollow groove 32 and the bottom end of the ice storage basket 40 is provided with an opening 42.
[0052] In the above scheme, the water retaining frame 30 is fixedly installed in the box body 10 and is communicated with the upper portion and the right side thereof, and the ice storage basket 40 is slidably installed from the right side of the water retaining frame 30. The water retaining frame 30 provides the installation position of the ice storage basket 40, and the ice blocks falling from the ice making box 13 will enter the ice storage basket 40. When the ice blocks stored in the ice storage basket 40 need to be taken out, the ice storage basket 40 is pulled out of the water retaining frame 30. The ice blocks in the ice storage basket 40 are stored for a long time, and the ice blocks will absorb heat and melt into water. The melted water will flow out of the opening 42 at one end of the ice storage basket 40. The opening 42 is arranged in an oval shape and is equidistantly arranged, which can improve the flowability of the melted water, prevent the water from mixing with the ice blocks, accelerate the melting speed of the ice blocks, and avoid the problem that the ice blocks are taken out together with the water. The opening 42 is arranged at the bottom end of the ice storage basket 40, which can improve the heat preservation effect of the entire ice storage basket 40 and prevent the temperature from being lost quickly due to the arrangement of multiple openings 42. The ice water flowing out of the opening 42 enters the water retaining frame 30, and the bottom of the water retaining frame 30 is provided with a hollow groove 32. The water is discharged from the water retaining frame 30 through the hollow groove 32, so that the ice water directly enters the water storage chamber 11. The ice storage box 12 can realize the function of twice separation of ice water.
[0053] Further reference Figure 3 and Figure 4 The ice storage basket 40 is inclined from right to left and downward, and the lower inclined end is the position of the opening 42. The ice blocks absorb heat and melt into water. In the inclined state, the residence time of the water in the ice storage basket 40 can be reduced, the separation effect of the ice and water can be improved, the storage time of the ice can be prolonged, and the risk of bacterial growth and dirt accumulation can be reduced.
[0054] Further reference Figure 1 The entire outer wall of the box body 10 is covered with heat preservation material, which helps to reduce the loss of internal heat to the external environment, thereby maintaining the stability of the internal temperature and improving the storage time of the ice blocks in the ice storage basket 40. Therefore, the energy consumption of the system is relatively reduced, and the energy consumption of the entire ice maker is reduced.
[0055] Further reference Figure 3 and Figure 6 The inner wall of the hollow groove 32 is provided with a plurality of limiting strips 33, the hollow groove 32 is provided with a filter plate 34, the surface of the filter plate 34 is provided with a filter hole 35, the periphery of the filter plate 34 is provided with a side block 36, the middle of one end of the filter plate 34 is provided with a U-shaped plate 37, and the U-shaped plate 37 is provided with a double-layer strip 38.
[0056] In this technical solution, gaps are provided between multiple limiting strips 33 to facilitate the connection of side blocks 36. When the side blocks 36 are inserted into the gaps between the limiting strips 33, pressing the side with the U-shaped plate 37 causes one end of the U-shaped plate 37 to shift inwards, inserting the double-layered strips 38 on the U-shaped plate 37 and placing them upside down under the frame plate 31. A filter plate 34 replaces the perforated groove 32 for drainage. Multiple filter holes 35 are provided on the surface of the filter plate 34, through which the ice water in the water-blocking frame 30 is drained into the water storage chamber 11 for recycling. The filter plate 34 uses an upside-down, detachable connection method, which facilitates disassembly and installation by workers, and makes subsequent maintenance and cleaning easier.
[0057] Further reference Figure 5 and Figure 7 The water-blocking frame 30 has a frame plate 31 at its tail end, the ice storage basket 40 has a protrusion 45 on the top left side, and the ice storage basket 40 has an elastic strip 46 on the top right side.
[0058] In this technical solution, when the ice storage basket 40 moves outward, the protrusion 45 contacts the frame plate 31, thereby limiting the maximum unfolding distance of the ice storage basket 40 and avoiding structural damage or instability caused by over-expansion, ensuring the safety and stability of the device. When the ice storage basket 40 moves inward, the elastic strip 46 is pushed downward by the frame plate 31 and deforms. When the ice storage basket 40 is completely retracted within the water-blocking frame 30, the elastic strip 46 is released from the pressure of the frame plate 31 and automatically resets. The elastic strip 46 has triangular protrusions. Whether the ice storage basket 40 moves outward or inward, the elastic strip 46 will pass through the frame plate 31. Pulling the ice storage basket 40 outward requires a certain force, while retracting the ice storage basket 40 inward produces a crisp sound when the elastic strip 46 resets, providing clear operational feedback. This allows users to intuitively perceive the changes in the state of the ice storage basket 40, increasing the fun and interactivity of use.
[0059] Further reference Figure 3 and Figure 5 The ice storage basket 40 has a recessed opening 43 at its tail end, and a pull plate 44 is installed above the recessed opening 43. When pulling the ice storage basket 40, put your finger into the recessed opening 43 and hook your finger onto the pull plate 44 to facilitate pulling the ice storage basket 40.
[0060] The specific implementation process of this utility model is as follows:
[0061] After ice is made inside ice maker 13, the ice is temporarily stored inside ice maker 13. The system controls motor 14 to start and flip ice maker 13 (see reference). Figure 10The ice cubes in the ice making box 13 fall on the separation frame 20 for ice water separation, that is, the ice cubes in the ice making box 13 fall on the surface of the separation strip 22 and slide on the separation strip 22 to the left and then fall in the ice storage box 12. The water in the ice making box 13 can pass through the hollow parts between the separation strips 22 and reach the surface of the sliding plate 23. The downwardly inclined sliding plate 23 can quickly guide the water to flow to the right and then enter the water storage chamber 11 in the box body 10.
[0062] When the ice cubes in the ice storage basket 40 need to be taken out, the ice storage basket 40 is pulled out of the water blocking frame 30. The ice cubes on the surface of the ice storage basket 40 are stored for a long time, absorb heat and melt into water. The melted water flows out of the opening 42 at one end of the ice storage basket 40, enters the water blocking frame 30, is discharged from the water blocking frame 30 through the filter holes 35 in the filter plate 34 and then enters the water storage chamber 11 to be recycled for use in the water circulation of the whole system.
[0063] The above embodiments are only exemplary embodiments of the present application and are not used to limit the present application. The protection scope of the present application is defined by the claims. Various modifications or equivalent replacements can be made to the present application within the spirit and protection scope of the present application. Such modifications or equivalent replacements should also be considered to fall within the protection scope of the present application.
[0064] In the description of the present application, it should be explained that the terms "in", "front", "back", "left", "right" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings or the orientation or positional relationship commonly used when the product of the present application is used, and are only used to facilitate the description of the present application and simplify the description, and do not indicate or imply that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, these terms indicating the orientation or positional relationship should not be understood as limiting the present application.
[0065] In the description of the present application, it should be further explained that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, these terms can represent fixed connection, detachable connection or integral connection between elements; can also represent mechanical connection, electrical connection; can also represent direct connection or indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of these terms in the present application according to the specific circumstances.
Claims
1. An ice-water separation structure, characterized in that: Includes a box body (10), with a water storage chamber (11) located at the bottom inside the box body (10), a refrigerator (12) installed on one side of the box body (10), and a separation rack (20) located above the refrigerator (12); The refrigerator (12) includes a water baffle frame (30) and an ice storage basket (40). The water baffle frame (30) is fixedly installed inside the cabinet (10) with an upward opening. The ice storage basket (40) is slidably installed inside the water baffle frame (30) with an upward opening. The bottom of the water baffle frame (30) is provided with a hollow groove (32). One end of the bottom of the ice storage basket (40) is provided with an opening (42). The separation frame (20) includes a support plate (21), a slide plate (23) and a separator (22). The support plate (21) has a raised shaft (211) on its side, and the slide plate (23) and the separator (22) are arranged inside the support plate (21).
2. The ice-water separation structure according to claim 1, characterized in that: The slide plate (23) is provided with several vertical plates (24), and the top of the vertical plates (24) is provided with a crossbeam (25). The two ends of the separator (22) are respectively connected to the crossbeam (25) and the slide plate (23), and each separator (22) has a hollow structure.
3. The ice-water separation structure according to claim 2, characterized in that: The separation frame (20) is installed with reference to the horizontal baseline. The slide plate (23) and the partition strip (22) are inclined in different directions, and the included angle between the slide plate (23) and the partition strip (22) is acute.
4. The ice-water separation structure according to claim 3, characterized in that: The left end of the slide plate (23) is provided with an arc end (341) surface, and a rib (361) is provided between the partition strip (22) and the arc end (341). A reinforcing plate (351) is provided below the partition strip (22), and the bottom of the reinforcing plate (351) is connected to the slide plate (23).
5. The ice-water separation structure according to claim 4, characterized in that: The horizontal reference plane behind the vertical plate (24) is on the same horizontal plane as the horizontal reference plane behind the support plate (21), and the horizontal reference plane behind the sliding plate (23) is lower than the horizontal reference plane behind the vertical plate (24).
6. The ice-water separation structure according to claim 1, characterized in that: The ice storage basket (40) tilts downward from right to left, with the downward tilting end being the position of the opening (42).
7. The ice-water separation structure according to claim 6, characterized in that: The outer walls of the box (10) are all covered with thermal insulation material.
8. The ice-water separation structure according to claim 7, characterized in that: The inner wall of the hollow groove (32) is provided with several limiting strips (33). A filter plate (34) is installed on the hollow groove (32). The surface of the filter plate (34) is provided with filter holes (35). Side blocks (36) are provided around the filter plate (34). A U-shaped plate (37) is provided in the middle of one end of the filter plate (34). Double-layer strips (38) are provided on the U-shaped plate (37).
9. The ice-water separation structure according to claim 8, characterized in that: The water-blocking frame (30) has a frame plate (31) at its tail end, the ice storage basket (40) has a protrusion (45) on the left side of its top end, and the ice storage basket (40) has an elastic strip (46) on the right side of its top end.
10. The ice-water separation structure according to claim 9, characterized in that: The ice storage basket (40) has an indentation (43) at its tail end, and a pull plate (44) is installed above the indentation (43).