Ice removing tool
By introducing a stroke limiting structure and limiting components into the ice removal tool, the problem of breakage caused by inaccurate twisting of the ice tray mold in the existing technology is solved, and fast and safe ice removal is achieved.
Patent Information
- Application Number
- CN202423058690.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Existing technologies struggle to efficiently remove ice cubes because they cannot accurately determine the direction of twisting, leading to breakage of the ice cube tray mold and impacting the user experience.
An ice removal tool was designed, including an ice removal body and an ice twisting part. A stroke limiting structure was set up, and the twisting stroke was limited by the stroke groove and the limiting protrusion to prevent excessive deformation of the ice tray mold. Combined with the limiting component and the anti-detachment rib, it ensures rapid ice removal and protects the mold.
It enables quick and efficient de-icing, prevents ice tray mold breakage, and improves the user experience.
Smart Images

Figure CN223460661U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of household articles, and particularly relates to a deicing tool. BACKGROUND
[0002] With the continuous improvement of people's living standards, drinking cold drinks with ice cubes has become a fashion, and more and more families are equipped with ice cube making ice cube molds. The ice cubes made by the ice cube molds are generally adhered to the molds, and the ice cubes can be completely and quickly taken out by knocking or twisting the ice cube molds. A deicing tool is disclosed in a document with a patent announcement number CN221666342U. The technical solution is to put the ice cube mold with ice cubes into the tool, deform the ice cube mold by twisting, and make the ice cubes fall off. The main defect of this technical solution is that it is difficult to accurately determine the direction of twisting. Sometimes, the ice cube mold needs to be twisted for half a circle or more than half a circle to reach the limiting rib, and then the ice cube mold needs to be kept fixed and twisted to deform the ice cube mold and complete the deicing. On the other hand, when the ice cube mold is deformed by twisting, there is no limiting structure to control the deformation, which may cause the ice cube mold to be damaged or broken due to excessive force, affecting the use experience and causing loss. SUMMARY
[0003] The utility model aims at providing a deicing tool which can quickly and effectively twist the ice cube mold and prevent the ice cube mold from being broken.
[0004] The utility model is realized in the following way: a deicing tool includes a deicing main body for placing an ice cube mold, a twist ice part which is rotatable relative to the deicing main body, and the deicing main body and the twist ice part are respectively limited and fixed with part of the ice cube mold. When deicing, the twist ice part is rotated to make the ice cube mold deform and the ice cubes fall off. The deicing main body and the twist ice part are provided with a stroke limiting structure for limiting the relative rotation stroke between the twist ice part and the deicing main body. The stroke limiting structure includes a stroke groove and a limiting protrusion. The stroke groove is arranged on the upper end of the deicing main body or the lower end of the twist ice part, and the limiting protrusion is used in cooperation with the stroke groove. When the stroke groove is arranged on the upper end of the deicing main body, the limiting protrusion is arranged on the lower end of the twist ice part. When the stroke groove is arranged on the lower end of the twist ice part, the limiting protrusion is arranged on the upper end of the deicing main body.
[0005] Further optimization: the stroke groove has a protruding inlet end which is located on the upper edge of the deicing main body or the lower edge of the twist ice part. The limiting protrusion used in cooperation with the stroke groove can reciprocate in the stroke groove from the protruding inlet end.
[0006] Further optimization: the stroke slot is located at the upper end of the ice removing body and is parallel to the upper edge of the ice removing body, and the protruding entrance end is substantially perpendicular to the stroke slot, forming a "┗" structure.
[0007] Further optimization: the stroke slot has an arc, and the specific structure is a strip slot with an opening facing the inner cavity of the ice removing body or a strip hole penetrating through the inner and outer surfaces of the ice removing body.
[0008] Further optimization: the ice twisting part is provided with a limiting hole for limiting the upper end of the ice cube mold, the ice removing body is provided with a limiting part for limiting the lower end of the ice cube mold, and an ice outlet is formed at the bottom of the ice removing body, and a falling ice space is reserved between the ice outlet and the limiting part.
[0009] Further optimization: the limiting part is integrally formed on the inner wall of the ice removing body or is separately arranged on the inner wall of the ice removing body; the limiting part comprises two oppositely arranged limiting slots, and at least the two sides of the lower end of the ice cube mold are clamped into the two oppositely arranged limiting slots after the ice cube mold enters the ice removing body.
[0010] Further optimization: the limiting part is a separate part, the outer wall of which is matched with the inner wall of the ice removing body, and a clamping structure is arranged on the inner wall of the ice removing body, and the clamping structure is used for fixing the limiting part.
[0011] Further optimization: the clamping structure comprises a step arranged on the inner wall of the ice removing body, and the lower end of the limiting part abuts against the step.
[0012] Further optimization: the inner wall of the ice removing body is further provided with an anti-disengagement rib and a limiting block for matching the ice cube mold, and the anti-disengagement rib and the step jointly form a limiting area, and the limiting part is fixed in the limiting area after the upper end of the limiting part passes through the anti-disengagement rib.
[0013] Further optimization: an ice receiving part is arranged at the ice outlet, and a cover part is arranged on the ice twisting part.
[0014] Compared with the prior art, the ice cube mold can be quickly positioned, and after entering the ice removing body, the ice cube mold is quickly in a waiting twisting state, so that unnecessary rotation is avoided; the stroke slot can limit the stroke and guide, the ice cube mold is twisted in a certain range, the ice cube mold is deformed to remove ice, the ice cube mold can be quickly removed, and the ice cube mold can be effectively protected from being broken due to excessive deformation. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a structural schematic diagram of the utility model;
[0016] Figure 2 is the explosion structure schematic diagram of the utility model;
[0017] Figure 3 is the ice grid mold installation structure schematic diagram of the ice removing main body of the utility model;
[0018] Figure 4 is the structure schematic diagram of the ice removing main body of the utility model;
[0019] Figure 5 is the structure schematic diagram of the limiting component of the utility model;
[0020] Figure 6 is the structure schematic diagram of the cover component of the utility model;
[0021] In the drawing: 1-ice grid mold, 2-ice removing main body, 21-travel groove, 22-protruding entrance end, 23-ice outlet, 24-limiting block, 25-anti-removal rib, 26-step, 3-ice twisting part, 31-limiting protrusion, 32-limiting hole, 33-lock hole, 34-indication mark, 4-limiting component, 41-limiting groove, 5-ice falling space, 6-ice receiving component, 7-cover component, 71-latch. DETAILED DESCRIPTION
[0022] The utility model will be further described in conjunction with the specific embodiment with the accompanying drawings, referring to Figure 1 -6: a kind of ice removing tool, including the ice grid mold 1 of placing 2, ice removing main body 2 is provided with the ice twisting part 3 with its relatively rotatable, the ice twisting part 3 is provided with the limiting hole 32 for limiting the upper end of ice grid mold 1, limiting component 4 is arranged in the ice removing main body 2 for limiting the lower end of ice grid mold 1, ice removing main body 2 and ice twisting part 3 are respectively with the part of ice grid mold 1 remain limiting fixed, when ice is removed, rotate the ice twisting part 3, ice twisting part 3 can make ice grid mold 1 produce torsional deformation and remove ice block, ice outlet 23 is set in the bottom of ice removing main body 2, ice falling space 5 is reserved between ice outlet 23 and limiting component 4, facilitate ice block to fall off, prevent that ice block falls off and mutually extrude cannot normally fall, ice receiving component 6 is arranged at ice outlet 23, ice block falls into ice receiving component 6 along ice outlet 23, ice receiving component 6 is detachably connected on ice removing main body 2, and it can be transferred to other container received ice block, the ice twisting part 3 is provided with cover component 7, cover component 7 can seal limiting hole 32, in addition, lock strip is arranged on cover component 7, the end of lock strip is provided with latch 71, ice twisting part 3 is provided with the lock hole 33 matched with latch 71, the lock strip can be bent, combined Figure 1 、 Figure 6As shown, the latch 71 is bent and inserted into the lock hole 33 to lock the cover part 7 at the port of the ice twisting part 3, which can prevent dust or sundries from falling into the ice body 2 to keep the inside clean and hygienic. Figure 2 As shown, when the travel groove 21 is arranged at the upper end of the ice body 2, the limiting protrusion 31 is arranged at the lower end of the ice twisting part 3; alternatively, the travel groove 21 can be arranged at the lower end of the ice twisting part 3, and the limiting protrusion 31 can be arranged at the upper end of the ice body 2.
[0023] Specifically, the travel groove 21 has a protruding entrance end 22 located at the upper edge of the ice body 2, and the limiting protrusion 31 used in cooperation with the travel groove 21 can reciprocate in the travel groove 21 from the protruding entrance end 22. When the protruding entrance end 22 is arranged at the lower edge of the ice twisting part 3, the travel groove 21 is arranged at the lower end of the ice twisting part 3, and the limiting protrusion 31 is arranged at the upper end of the ice body 2, which has the same effect and purpose of facilitating the quick and accurate insertion of the limiting protrusion 31 into the travel groove 21.
[0024] The travel groove 21 is arranged at the upper end of the ice body 2 and parallel to the upper edge of the ice body 2, and the protruding entrance end 22 and the travel groove 21 are arranged substantially vertically to form a “┗” structure. The relative sliding of the ice twisting part 3 and the ice body 2 is completed in the travel groove 21, which can effectively twist the ice cell mold 1 and prevent the ice cell mold 1 from deforming too much and breaking.
[0025] In specific implementation, the travel groove 21 can be a groove structure or a hole structure, specifically a strip-shaped groove with an opening facing the inner cavity of the ice body 2, or a strip-shaped hole penetrating the inner and outer surfaces of the ice body 2. The purpose of the two ways is to ensure that the limiting protrusion 31 can slide smoothly in the travel groove 21. The travel groove 21 can also be arranged with a certain arc, similar to a spiral shape, so that when the ice twisting part 3 and the ice body 2 rotate relatively, axial displacement is generated simultaneously, improving the ice removal efficiency.
[0026] The limiting part 4 is integrally formed on the inner wall of the ice body 2 or is separately arranged with the inner wall of the ice body; the limiting part 4 includes two oppositely arranged limiting grooves 41, and after the ice cell mold 1 enters the ice body 2, at least the lower end of the ice cell mold 1 is partially clamped into the two oppositely arranged limiting grooves 41. The limiting groove 41 is a horn-shaped structure arranged upward to facilitate the quick clamping of the ice cell mold into the limiting groove.
[0027] In order to facilitate production and manufacturing, the limiting part 4 can also be a separate part, the outer wall of which is matched with the inner wall of the ice removing body 2, and a clamping structure is arranged on the inner wall of the ice removing body 2, the clamping structure being used for fixing the limiting part 4. The separately produced limiting part 4 can be quickly installed into the ice removing body 2, which can reduce the manufacturing difficulty of the ice removing body in one-piece forming, and on the other hand, the limiting part belongs to a main stress part and is easy to wear and damage after long-time use. As a separate part, it is convenient to replace the damaged part without considering replacing the ice removing body.
[0028] The specific installation structure of the limiting part 4 as a separate part is as follows: the clamping structure includes a step 26 arranged on the inner wall of the ice removing body, and the lower end of the limiting part 4 abuts against the step 26. The inner wall of the ice removing body 2 is further provided with an anti-disengagement rib 25 and a limiting block 24 used for cooperating with the ice cube mold 1. The outwardly protruding limiting block 24 can provide a larger contact area with the ice cube mold 1 and increase the blocking force when the ice cube mold 1 is twisted and deformed. In addition, the anti-disengagement rib 25 and the step 26 jointly form a limiting area, and when the upper end of the limiting part 4 passes the anti-disengagement rib 25, the whole limiting part 4 is fixed in the limiting area and is not easy to fall off, and the installation is also convenient.
[0029] A half of the indicating mark 34 is arranged at the joint of the ice twisting part 3 and the ice removing body 2. When the ice is removed, the indicating mark 34 is used as the initial position reference when the ice twisting part is combined with the ice removing body, so that the two parts can be accurately connected together. At this time, the limiting protrusion 31 is located at the starting position of the stroke groove 21, that is, the protrusion entrance end 22. The ice twisting part 3 and the ice removing body 2 are relatively rotated, the limiting protrusion 31 moves in the stroke groove 21 at the same time, the ice cube mold is deformed in the stroke range, the ice block is quickly removed, and falls into the ice receiving part along the ice outlet, and the ice removing is completed.
[0030] The above embodiments are only preferred embodiments of the utility model, and do not limit the protection scope of the utility model, so that: equivalent changes made according to the structure, shape and principle of the utility model should be covered in the protection scope of the utility model.
Claims
1. A deicing tool, comprising a deicing body (2) for placing an ice cube mold (1), a twist ice part (3) being rotatably arranged on the deicing body (2), the deicing body (2) and the twist ice part (3) being respectively fixedly arranged with a part of the ice cube mold (1), during deicing, the twist ice part (3) is rotated to make the ice cube mold (1) twist and deform to release ice cubes, characterized in that: a stroke limiting structure is arranged between the deicing body (2) and the twist ice part (3) to limit the relative rotation stroke between the twist ice part (3) and the deicing body (2); the stroke limiting structure comprises a stroke slot (21) and a limiting protrusion (31); the stroke slot (21) is arranged on the upper end of the deicing body (2) or the lower end of the twist ice part (3), and the limiting protrusion (31) is used in cooperation with the stroke slot (21); when the stroke slot (21) is arranged on the upper end of the deicing body (2), the limiting protrusion (31) is arranged on the lower end of the twist ice part (3); when the stroke slot (21) is arranged on the lower end of the twist ice part (3), the limiting protrusion (31) is arranged on the upper end of the deicing body (2). The stroke slot (21) has a protruding entrance end (22) which is located on the upper edge of the deicing body (2) or the lower edge of the twist ice part (3), and the limiting protrusion (31) used in cooperation with the stroke slot (21) can reciprocate in the stroke slot (21) from the protruding entrance end (22).
2. The de-icing tool of claim 1, wherein: The stroke slot (21) is arranged on the upper end of the deicing body (2) and parallel to the upper edge of the deicing body (2), the protruding entrance end (22) and the stroke slot (21) are arranged substantially vertically to form a "┗" structure.
3. The de-icing tool of claim 2, wherein: The stroke slot (21) has an arc, and the specific structure is a strip slot with an opening facing the inner cavity of the deicing body (2) or a strip hole penetrating through the inner and outer surfaces of the deicing body (2).
4. The de-icing tool of claim 3, wherein: The twist ice part (3) is provided with a limiting hole (32) for limiting the upper end of the ice cube mold (1), the deicing body (2) is provided with a limiting part (4) for limiting the lower end of the ice cube mold (1), an ice outlet (23) is arranged on the bottom of the deicing body (2), and a falling ice space (5) is reserved between the ice outlet (23) and the limiting part (4).
5. A de-icing tool according to any one of claims 1-4, characterized in that: The limiting part (4) is integrally formed on the inner wall of the deicing body (2) or is separately arranged with the inner wall of the deicing body (2); the limiting part (4) comprises two oppositely arranged limiting slots (41), and after the ice cube mold (1) enters the deicing body (2), at least the lower end of the ice cube mold (1) is clamped into the two oppositely arranged limiting slots (41).
6. The de-icing tool of claim 5, wherein: The limiting part (4) is a separate part, the outer wall of which is matched with the inner wall of the deicing body (2), and a clamping structure is arranged on the inner wall of the deicing body (2) to fix the limiting part (4).
7. The de-icing tool of claim 6, wherein: The clamping structure comprises a step (26) arranged on the inner wall of the deicing body (2), and the lower end of the limiting part (4) abuts against the step (26).
8. The de-icing tool of claim 7, wherein: 9. The de-icing tool of claim 8, wherein: The inner wall of the ice removing body (2) is further provided with an anti-removal rib (25) and a limiting block (24) for matching the ice cube mold (1), the anti-removal rib (25) and the step (26) jointly form a limiting area, when the upper end of the limiting component (4) passes the anti-removal rib (25), the whole limiting component (4) is fixed in the limiting area.
10. The de-icing tool of claim 5, wherein: The ice outlet (23) is provided with an ice receiving component (6), and the ice twisting part (3) is provided with a cover component (7).
Citation Information
Patent Citations
Ice removing tool
CN221666342U