Two-side pressing type ice cube tray

By designing the press-type ice grid on both sides, using the coordination of the limiting part, the clamping part and the pressing part, the problem of hand contacting ice cubes during the ice extraction process of the existing ice grid is solved, and a more hygienic and convenient ice separation process is achieved.

CN223036683UActive Publication Date: 2025-06-27应美
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Patent Information

Application Number
CN202421943942.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-27
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

During the process of ice picking, existing ice grids need to be flipped and pressed, resulting in direct contact with the ice cubes of hands, which is time-consuming and labor-intensive, and may contaminate the ice cubes and affect the quality of hygiene.

Method used

A press-type ice lattice on both sides is designed, including the box body and the box cover, with upper and lower lattice inside. Through the coordination of the limiting part, the clamping part and the pressing part, the function of easily getting rid of the ice cube without flipping.

Benefits of technology

It effectively avoids direct contact with ice on the hands, reduces the possibility of cold and ice contamination on the hands, and improves the hygiene and convenience of use of ice.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of ice cube trays, and particularly relates to a two-side pressing type ice cube tray which comprises a box body and a box cover, the box body is internally provided with ice cube trays, divided into an upper lattice and a lower lattice, and can contain water and control the shape of ice cubes, and a limiting part is arranged on the inner wall of the box body to prevent the upper lattice from falling off; the upper grid is provided with a placing part which is matched with the limiting part to ensure stability, the upper grid is provided with a clamping part, the lower grid is provided with a clamping groove, the clamping part and the clamping groove are matched to firmly connect the upper grid and the lower grid, pressing pieces are arranged on the two sides of the box cover, the lower grid is provided with a stress part, and the clamping part can be separated and the lower grid falls off during pressing, so that the stability is ensured through the design, ice blocks are prevented from falling off, and disassembly and cleaning are convenient. And after being taken out, the upper lattice is turned over, the pressing piece extrudes the stress part, the lower lattice is separated, and demolding is completed, so that the separation efficiency is improved, the ice block quality and the use experience are ensured, and meanwhile, the operation safety and sanitation are ensured.
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Description

Technical Field

[0001] The utility model belongs to the technical field of ice trays, in particular to a two-side pressing type ice tray. Background Art

[0002] With the continuous advancement of ice tray technology, a more convenient way to take ice has appeared on the market, namely the flipping and pressing demoulding technology. This method has replaced the traditional knocking demoulding method. The new ice-taking method has significantly improved both the convenience and safety of use. However, despite these improvements, when using it, it is necessary to first take the ice tray out of the box body, flip it over and put it back into the box, and then apply pressure to make the ice cubes separate from the ice tray. During this process, the operator's hands will directly contact the ice cubes. This method is not only time-consuming and labor-intensive, but also may cause contamination to the ice cubes, affecting the sanitary quality of the ice cubes. Therefore, there is still room for improvement in the design of the ice tray box to improve the convenience during use and the hygiene of the ice cubes. Summary of the invention

[0003] The utility model aims to provide a double-sided press-type ice tray which has a simple structure and can effectively prevent the user's hands from directly contacting the ice cubes during operation, thereby reducing the possibility of the hands being cold or being contaminated by the ice cubes, and is more hygienic and convenient.

[0004] The purpose of the utility model is achieved in this way:

[0005] A double-sided press-type ice tray comprises a box body and a box cover, wherein the box body is provided with an ice tray, the ice tray comprises an upper tray and a lower tray, a accommodating cavity is provided between the upper tray and the lower tray, a limiting portion is provided at the periphery of the inner wall of the box body, a placing portion is provided at the periphery of the upper tray, the placing portion and the limiting portion abut against each other, the limiting portion restricts the upper tray from falling, a clamping portion is provided on the upper tray, a clamping groove matched with the clamping portion is convexly formed on the lower tray, the clamping portion is clamped with the clamping groove, pressing pieces are provided on both sides of the box cover, force-bearing portions are provided on both sides of the lower tray, the force-bearing portions are matched with the pressing pieces, the lower end of the pressing piece abuts against the force-bearing portion, the pressing piece is pressed downward, and the lower end of the pressing piece squeezes the force-bearing portion, thereby causing the clamping portion to be disengaged from the clamping groove, so that the lower tray falls to the bottom of the box body.

[0006] Preferably, pressing holes are provided on both sides of the box cover, and an upper limit block is protruded from the lower end of the pressing hole. A lower limit piece is provided on the pressing piece, and the upper limit portion of the pressing piece is pressed downward to abut against the lower limit piece, so that the lower grid is disengaged from the clamping connection with the upper grid and falls into the box body.

[0007] Preferably, the force-receiving part protrudes from both sides of the lower grid and is located below the pressing hole. When the pressing member moves downward, it passes through the pressing hole and presses the force-receiving part.

[0008] Preferably, a hook member is provided on the upper grid, and a clamping hole is formed on the lower grid. The hook member is inserted into the clamping hole and is clamped with the periphery of the clamping hole. The upper grid and the lower grid are connected through the connection between the hook member and the clamping hole.

[0009] Preferably, a plurality of upwardly protruding upper ice grooves are provided on the upper grid, and a plurality of downwardly concave lower ice grooves are provided on the lower grid. An accommodation cavity is formed between the upper ice grooves and the lower ice grooves.

[0010] Preferably, a groove is formed by downwardly concave molding on the periphery of the upper ice groove, and the groove is arranged around the upper ice groove. A convex block is formed by upwardly protruding molding on the periphery of the lower ice groove, and the convex block is arranged around the lower ice groove and protrudes from the lower ice groove; or a convex block is formed by downwardly concave molding on the periphery of the upper ice groove, and the convex block is arranged around the upper ice groove and protrudes from the upper ice groove. A groove is formed by upwardly protruding molding on the periphery of the lower ice groove, and the groove is arranged around the lower ice groove. The groove and the convex block are in mutual abutment.

[0011] Preferably, a drain port is provided on the lower ice groove, and the drain port is located at the topmost protruding position of the upper ice groove. Before freezing, the lower grid is placed upward.

[0012] Preferably, an ice outlet is formed on one side or multiple sides of the box body, and an ice outlet cover is provided on the ice outlet. An ice outlet grid is covered on the ice outlet.

[0013] Preferably, the box body includes an upper box and a lower box. The upper box is connected to the upper grid, and the lower box is connected to the lower grid. Before freezing, water is injected into the ice grid. At this time, the upper grid is located below the lower grid. After the ice cubes are formed, the whole can be turned over so that the upper grid is located above the lower grid.

[0014] The prominent and beneficial technical effects of the present utility model compared with the prior art are:

[0015] The purpose of the present utility model is to provide a two - side pressing ice tray that is simple in structure and can effectively prevent the user's hand from directly contacting the ice cubes during operation and use, thereby reducing the possibility of the hand getting cold or the ice cubes being contaminated, and is more hygienic and convenient. It includes a box body and a box cover. Inside the box body, there is an ice tray, which is divided into an upper grid and a lower grid. Water can be placed in the accommodating cavity, and the shape of the ice cubes can be controlled. To ensure the stability of the ice tray, limiting parts are specially designed on the peripheral edge of the inner wall of the box body. The function of these limiting parts is to prevent the upper grid from accidentally falling during use. The peripheral edge of the upper grid is also equipped with placing parts, which closely cooperate with the limiting parts. When the placing parts and the limiting parts are in contact with each other, the limiting parts can effectively restrict the movement of the upper grid, thus avoiding the accidental detachment of the ice tray during use. There is a clamping part on the upper grid and a clamping groove on the lower grid. The clamping part and the clamping groove cooperate with each other to ensure that the upper grid and the lower grid are firmly connected together without external force driving, so that when freezing, the lower grid will not fall off from the connection with the upper grid. To facilitate the user's use, pressing parts are designed on both sides of the box cover. There is a force - receiving part on the lower grid, and the lower end of the pressing part abuts against the force - receiving part. When the user presses the pressing part downward, the lower end of the pressing part will closely abut against the force - receiving part. By applying pressure, the clamping part can be disengaged from the clamping state with the clamping groove, so that the lower grid can easily fall to the bottom of the box body. Through the design of the limiting parts and the clamping parts, the stability of the ice tray during use is ensured, preventing the accidental dropping of the ice cubes, and at the same time making the disassembly and cleaning of the ice tray simple and convenient. This design is both practical and user - friendly, greatly improving the user's experience. First, turn the whole ice tray upside down so that the upper grid is below the lower grid. After injecting water into the accommodating cavity and putting it into the freezer, the water will gradually freeze and finally form solid ice cubes. After the ice cubes are formed, take the whole ice tray out of the freezer. At this time, the ice tray is still in the position where the upper grid is below and the lower grid is above. So after taking it out, through a simple flipping action, the upper grid part can be flipped above the lower grid part, making the original upper grid below now above. Driving the pressing part to move downward can squeeze the force - receiving part, so that the lower grid is disengaged from the connection with the upper grid, thus completing the demolding of the ice cubes. In this way, the demolding process of the ice cubes is successfully completed, and the operation is very convenient. It avoids the direct contact between the user's hand and the ice cubes when separating the ice cubes, thus greatly reducing the possibility of the ice cubes being contaminated. In addition, due to the simple and fast operation process, the user can feel higher efficiency and convenience during use. At the same time, this design also ensures the safety and hygiene of the operation, making the preparation and use process of the ice cubes more hygienic and safe. Generally speaking, the ice box of the present utility model not only improves the efficiency of ice cube separation, but also ensures the quality of the ice cubes and the user's experience. Brief Description of the Drawings

[0016] Figure 1 is a three - dimensional view of the present utility model.

[0017] Figure 2 is a cross-sectional view of the present utility model.

[0018] Figure 3 is Figure 2 an enlarged view of part A in

[0019] Figure 4 is an exploded view of the present utility model.

[0020] Figure 5 is a schematic structural view of the present utility model with the connection structure of the upper box and the box cover removed.

[0021] Figure 6 is a schematic structural view of the connection structure between the ice tray and the box cover of the present utility model.

[0022] Figure 7 is a schematic structural view of the ice tray of the present utility model.

[0023] Figure 8 is an exploded view of the ice tray of the present utility model.

[0024] Figure 9 is Figure 8 an enlarged view of part C in

[0025] Figure 10 is a schematic structural view of the lower grid of the present utility model.

[0026] Figure 11 is a schematic structural view of the upper grid of the present utility model.

[0027] Figure 12 is a schematic structural view of the box cover of the present utility model.

[0028] Figure 13 is a schematic structural view of the box cover of the present utility model with the pressing member removed.

[0029] The meanings represented by the reference numerals in the figure:

[0030] 1 - box body; 2 - box cover; 3 - ice tray; 4 - upper grid; 5 - lower grid; 6 - limiting part; 7 - placing part; 8 - clamping part; 9 - clamping groove; 10 - pressing member; 11 - stress part; 12 - pressing hole; 13 - upper limiting block; 14 - lower limiting member; 15 - hook member; 16 - clamping hole; 17 - upper ice groove; 18 - lower ice groove; 19 - groove; 20 - convex block; 21 - drain port; 22 - ice outlet; 23 - ice outlet cover; 25 - upper box; 26 - lower box; 27 - buckle member; 28 - buckle groove. Detailed implementation manners

[0031] The present utility model will be further described below in conjunction with specific embodiments:

[0032] A two-sided pressing ice tray, comprising a box body 1 and a box cover 2. An ice tray 3 is provided inside the box body 1. The ice tray 3 includes an upper grid 4 and a lower grid 5. There is a receiving cavity between the upper grid 4 and the lower grid 5. A limiting portion 6 is provided at the periphery of the inner wall of the box body 1. A placing portion 7 is provided at the periphery of the upper grid 4. The placing portion 7 abuts against the limiting portion 6, and the limiting portion 6 restricts the upper grid 4 from falling. A clamping portion 8 is provided on the upper grid 4. A clamping groove 9 adapted to the clamping portion 8 is formed in a protruding manner on the lower grid 5. The clamping portion 8 is clamped with the clamping groove 9. Pressing members 10 are provided on both sides of the box cover 2. Force-receiving portions 11 are provided on both sides of the lower grid 5. The force-receiving portions 11 are adapted to the pressing members 10. The lower end of the pressing member 10 abuts against the force-receiving portion 11. By pressing down the pressing member 10, the lower end of the pressing member 10 squeezes the force-receiving portion 11, so that the clamping portion 8 is disengaged from the clamping with the clamping groove 9, and the lower grid 5 falls to the bottom of the box body 1.

[0033] The purpose of the present utility model is to provide a two-sided pressing ice tray that is simple in structure and can effectively prevent the user's hand from directly contacting the ice cubes during operation, thereby reducing the possibility of the hand getting cold or the ice cubes being contaminated, and is more hygienic and convenient. It includes a box body 1 and a box cover 2. Inside the box body 1, there is an ice tray 3. The ice tray 3 is divided into an upper grid 4 and a lower grid 5. Water can be placed in the accommodating cavity, and the shape of the ice cubes can be controlled. To ensure the stability of the ice tray 3, limiting parts 6 are specially designed on the peripheral edge of the inner wall of the box body 1. The function of these limiting parts 6 is to prevent the upper grid 4 from accidentally falling during use. The peripheral edge of the upper grid 4 is also equipped with placing parts 7. These placing parts 7 are closely matched with the limiting parts 6. When the placing parts 7 and the limiting parts 6 are in contact with each other, the limiting parts 6 can effectively limit the movement of the upper grid 4, thereby avoiding the accidental detachment of the ice tray 3 during use. A clamping part 8 is provided on the upper grid 4, and a clamping groove 9 is provided on the lower grid 5. The clamping part 8 and the clamping groove 9 cooperate with each other to ensure that the upper grid 4 and the lower grid 5 are firmly connected together without external force driving, so that when freezing, the lower grid 5 will not fall off from the connection with the upper grid 4. To facilitate the user's use, pressing parts 10 are designed on both sides of the box cover 2. A force-receiving part 11 is provided on the lower grid 5. The lower end of the pressing part 10 abuts against the force-receiving part 11. When the user presses the pressing part 10 downward, the lower end of the pressing part 10 will closely abut against the force-receiving part 11. By applying pressure, the clamping part 8 can be disengaged from the clamped state with the clamping groove 9, so that the lower grid 5 can easily fall to the bottom of the box body 1. Through the design of the limiting parts 6 and the clamping part 8, the stability of the ice tray 3 during use is ensured, the accidental falling of the ice cubes is prevented, and at the same time, the disassembly and cleaning of the ice tray 3 become simple and convenient. This design is both practical and user-friendly, greatly improving the user's experience. First, turn the whole upside down so that the upper grid 4 is located below the lower grid 5. After injecting water into the accommodating cavity and putting it into the freezer, the water will gradually freeze and finally form solid ice cubes. After the ice cubes are formed, take out the whole ice tray 3 from the freezer. At this time, the ice tray 3 is still in the position where the upper grid 4 is below and the lower grid 5 is above. So after taking out, through a simple flipping action, the upper grid 4 part can be flipped above the lower grid 5 part, so that the original upper grid 4 below is now located above. Driving the pressing part 10 to move downward can squeeze the force-receiving part 11, so that the lower grid 5 is disengaged from the connection with the upper grid 4, thus completing the demoulding of the ice cubes. In this way, the demoulding process of the ice cubes is successfully completed, and the operation is very convenient. It avoids the direct contact between the user's hand and the ice cubes when separating the ice cubes, thus greatly reducing the possibility of the ice cubes being contaminated. In addition, due to the simple and fast operation process, the user can feel higher efficiency and convenience during use. At the same time, this design also ensures the safety and hygiene of the operation, making the preparation and use process of the ice cubes more hygienic and safe. Generally speaking, the ice box of the present utility model not only improves the efficiency of ice cube separation, but also ensures the quality of the ice cubes and the user's experience.

[0034] Further, pressing holes 12 are formed on both sides of the box cover 2. An upper limit block 13 is formed by protruding at the lower end of the pressing hole 12. A lower limit member 14 is provided on the pressing member 10. When the pressing member 10 is pressed downward, the upper limit member 13 abuts against the lower limit member 14, and the lower compartment 5 is disengaged from the snap connection with the upper compartment 4 and drops into the box body 1. During use, the user can easily open the box without using additional tools or applying excessive force. When the pressing member 10 is pressed downward, the upper limit member 13 on the pressing member 10 contacts and abuts against the lower limit member 14 on the box cover 2, so that the snap connection structure between the lower compartment 5 and the upper compartment 4 is released, enabling the lower compartment 5 to drop and finally fall into the internal space of the box. The lower limit member 14 plays a limiting role. While the pressing member 10 moves downward, the limiting portion 6 contacts and abuts against the lower limit member 14 to ensure that the pressing member 10 does not exceed the predetermined range limit during movement and prevent it from continuing to drop downward through the pressing hole 12, thereby avoiding the possibility of the pressing member 10 accidentally falling into the box body 1.

[0035] Further, the force-receiving portion 11 protrudes from both sides of the lower compartment 5 and is located below the pressing hole 12. When the pressing member 10 moves downward, it passes through the pressing hole 12 and presses the force-receiving portion 11. The force-receiving portion 11 protrudes from the left and right side edges of the lower compartment 5 and is located in the area directly below the pressing hole 12, ensuring that the pressing action can be effectively transmitted to the force-receiving portion 11, thereby achieving the expected function or operation effect. In this way, the downward movement of the pressing member 10 not only passes through the pressing hole 12 but also can precisely press the lower force-receiving portion 11.

[0036] Further, a hook member 15 is provided on the upper compartment 4, and a snap hole 16 is formed on the lower compartment 5. The hook member 15 is inserted into the snap hole 16 and is snap-connected to the periphery of the snap hole 16. The upper compartment 4 and the lower compartment 5 are connected through the connection between the hook member 15 and the snap hole 16. In the snap hole 16, the hook member 15 is inserted and fixed to facilitate snap connection in the peripheral area of the snap hole 16. This design enables the hook member 15 to be firmly fixed in the snap hole 16, thereby ensuring its stability. Through this connection method between the hook member 15 and the snap hole 16, a firm connection can be achieved between the upper compartment 4 and the lower compartment 5, making the entire structure stable and reliable during use, not only ensuring the strength of the structure but also facilitating disassembly and assembly.

[0037] Further, several upwardly protruding upper ice grooves 17 are provided on the upper grid 4, and several downwardly concave lower ice grooves 18 are provided on the lower grid 5. A receiving cavity is formed between the upper ice grooves 17 and the lower ice grooves 18. The lower ice grooves 18 correspond to the upper ice grooves 17, and their concave design is to form a complement with the upper ice grooves 17. The upper ice grooves 17 and the lower ice grooves 18 are both arranged in an orderly manner, and the shape and size of the ice grooves can be adjusted according to actual needs to better accommodate ice cubes of different shapes and sizes.

[0038] Further, a groove 19 is formed by downwardly concave molding on the periphery of the upper ice groove 17. The groove 19 is disposed around the upper ice groove 17. A convex block 20 is formed by upwardly protruding molding on the periphery of the lower ice groove 18. The convex block 20 is disposed around the lower ice groove 18 and protrudes from the lower ice groove 18; or a convex block 20 is formed by downwardly concave molding on the periphery of the upper ice groove 17. The convex block 20 is disposed around the upper ice groove 17 and protrudes from the upper ice groove 17. A groove 19 is formed by upwardly protruding molding on the periphery of the lower ice groove 18. The groove 19 is disposed around the lower ice groove 18. The groove 19 and the convex block 20 are in mutual contact. When the convex block 20 of the upper ice groove 17 cooperates with the groove 19 of the lower ice groove 18, they can be tightly combined together to form a mutually contacting relationship. Such a design not only ensures the structural stability, but also special grooves 19 and convex structures are designed at the edges of the two ice grooves. These structures can be engaged with each other when closed, forming a more airtight closed system, so that the upper ice groove 17 and the lower ice groove 18 are not simply covered, preventing water from flowing out through the gap between the upper ice groove 17 and the lower ice groove 18.

[0039] Further, a drain port 21 is provided on the lower ice groove 18. The drain port 21 is located at the topmost protruding part of the lower ice groove 18. Before freezing, the lower grid 5 is placed upward. The drain port 21 is arranged at the topmost part of the lower ice groove 18, that is, the highest protruding point of the lower ice groove 18. Such a design ensures that during the water filling process, excess water can be smoothly discharged through this drain port 21, ensuring the smooth progress of the freezing process, as well as ensuring the quality and purity of the ice cubes. Before the freezing starts, the grid part of the lower ice groove 18 needs to be placed upward. Such a placement method is to prevent the water in the receiving cavity from being discharged through the drain port 21.

[0040] Further, an ice outlet 22 is formed on one side or multiple sides of the box body 1. An ice outlet cover 23 is covered on the ice outlet 22. The ice outlet grid 3 is covered on the ice outlet 22. The position and number of the ice outlets 22 are determined according to actual usage requirements and operation convenience to ensure that users can easily take out ice cubes from the box body 1. The ice outlet cover 23 is to protect these ice outlets 22 and prevent the ice cubes from accidentally slipping or melting during storage, and the ice outlet cover 23 can effectively close the ice outlets 22, maintaining the low-temperature environment inside the box body 1, and at the same time avoiding dust or other impurities from entering, ensuring the cleanliness and hygiene of the ice cubes.

[0041] Furthermore, the box body 1 includes an upper box 25 and a lower box 26. The upper box 25 is connected to the upper end of the box cover 2, and the lower box 26 is connected to the lower end of the box cover 2. The box cover 2 is provided with a buckle 27, and a buckle groove 28 is formed on the lower box 26. The buckle 27 is connected to the buckle groove 28. The box body 1 of the present utility model includes two boxes, namely the upper box 25 and the lower box 26. Both the upper box 25 and the lower box 26 can be detached relative to the box cover 2. The lower box 26 is used for defrosting and storing ice. After the lower box 26 is full, the ice can be poured into the upper box 25. And when the box cover 2 is closed, the buckle 27 will accurately fall into the buckle groove 28, thereby realizing the locking of the box. The design of the buckle groove 28 also needs to consider durability and ease of use to ensure that the user can easily open and close the box body 1 during use.

[0042] The above embodiments are only preferred embodiments of the present utility model, and do not limit the protection scope of the present utility model accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present utility model shall be covered within the protection scope of the present utility model.

Claims

1. A double-side pressing ice tray, characterized in that: The invention comprises a box body (1) and a box cover (2), wherein an ice tray (3) is arranged inside the box body (1), wherein the ice tray (3) comprises an upper tray (4) and a lower tray (5), wherein a receiving cavity is arranged between the upper tray (4) and the lower tray (5), wherein a limiting portion (6) is arranged on the periphery of the inner wall of the box body (1), wherein a placing portion (7) is arranged on the periphery of the upper tray (4), wherein the placing portion (7) and the limiting portion (6) abut against each other, wherein the limiting portion (6) limits the upper tray (4) from falling, wherein a clamping portion (8) is arranged on the upper tray (4), and wherein a protruding portion (8) is arranged on the lower tray (5) and is engaged with the clamping portion (8). The clamping portion (8) is clamped with the clamping groove (9), pressing pieces (10) are provided on both sides of the box cover (2), and force-bearing portions (11) are provided on both sides of the lower compartment (5), the force-bearing portions (11) are adapted to the pressing piece (10), the lower end of the pressing piece (10) abuts against the force-bearing portion (11), and the pressing piece (10) is pressed downward, so that the lower end of the pressing piece (10) squeezes the force-bearing portion (11), thereby disengaging the clamping portion (8) from the clamping groove (9), and causing the lower compartment (5) to fall to the bottom of the box body (1).

2. The double-side pressing ice tray according to claim 1, characterized in that: The box cover (2) is provided with pressing holes (12) on both sides, and an upper limit block (13) is protruding from the lower end of the pressing hole (12). The pressing piece (10) is provided with a lower limit piece (14). When the pressing piece (10) is pressed downward, the upper limit block (13) abuts against the lower limit piece (14), and the lower compartment (5) is disengaged from the clamping connection with the upper compartment (4) and falls into the box body (1).

3. The double-side pressing ice tray according to claim 2, characterized in that: The force-bearing portion (11) protrudes from both sides of the lower grid (5) and is located below the pressing hole (12); when the pressing member (10) moves downward, it passes through the pressing hole (12) and presses the force-bearing portion (11).

4. The double-side pressing ice tray according to claim 1, characterized in that: The upper compartment (4) is provided with a hook piece (15), and the lower compartment (5) is provided with a hook hole (16). The hook piece (15) is inserted into the hook hole (16) and is hooked with the periphery of the hook hole (16). The upper compartment (4) and the lower compartment (5) are connected via the hook piece (15) and the hook hole (16).

5. The double-side pressing ice tray according to claim 1, characterized in that: The upper compartment (4) is provided with a plurality of upper ice grooves (17) protruding upward, and the lower compartment (5) is provided with a plurality of lower ice grooves (18) recessed downward, and a receiving cavity is formed between the upper ice grooves (17) and the lower ice grooves (18).

6. The double-side pressing ice tray according to claim 5, characterized in that: The upper ice trough (17) is provided with a concave groove (19) on its periphery, the groove (19) is arranged around the upper ice trough (17), the lower ice trough (18) is provided with a protruding block (20) on its periphery, the block (20) is arranged around the lower ice trough (18) and protrudes from the lower ice trough (18); or the upper ice trough (17) is provided with a concave groove (20) on its periphery, the block (20) is arranged around the upper ice trough (17) and protrudes from the upper ice trough (17), the lower ice trough (18) is provided with a protruding groove (19) on its periphery, the groove (19) is arranged around the lower ice trough (18), and the groove (19) and the block (20) are in contact with each other.

7. The double-side pressing ice tray according to claim 5, characterized in that: The lower ice trough (18) is provided with a drainage port (21), which is located at the top of the protruding upper ice trough (17). Before freezing, the lower compartment (5) is placed upward.

8. The double-side pressing ice tray according to any one of claims 1 to 7, characterized in that: An ice outlet (22) is provided on one or more sides of the box body (1); an ice outlet cover (23) is provided on the ice outlet (22); and an ice outlet tray (3) is covered on the ice outlet (22).

9. The double-side pressing ice tray according to any one of claims 1 to 7, characterized in that: The box body (1) comprises an upper box (25) and a lower box (26); the upper box (25) is connected to the upper end of the box cover (2); the lower box (26) is connected to the lower end of the box cover (2); the box cover (2) is provided with a snap fastener (27); a snap fastener groove (28) is provided on the lower box (26); and the snap fastener (27) is connected to the snap fastener groove (28).