Silica gel ice cube tray convenient to demould
By designing structures such as toothed plates and rotating shafts, the silicone ice cube tray can automatically demold after rotation, solving the problem of time-consuming and laborious manual pressing in existing technologies, and achieving a fast, convenient and hygienic ice cube demolding effect.
Patent Information
- Application Number
- CN202520190775.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-02-07
AI Technical Summary
Existing silicone ice cube trays require manual pressing after rotation to release the ice cubes, which is time-consuming, laborious, and not hygienic.
A structure including a toothed plate, an operation button, a rotating shaft, a toothed shaft, a mounting plate, a demolding protrusion, a sliding shaft, and an adjusting shaft is designed. The toothed plate drives the toothed shaft to rotate, which in turn drives the support plate and the mounting frame to rotate, so that the ice tray body rotates from a horizontal state to a vertical state. The adjusting shaft is limited by the curved sliding groove of the second shell. The sliding shaft slides along the sliding groove of the support plate. The mounting plate drives the demolding protrusion to push out the ice block.
It enables rapid demolding of ice cubes, and is convenient, time-saving, labor-saving, safe and hygienic.
Smart Images

Figure CN223925181U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ice making appliance technical field, concretely is a silica gel ice grid convenient to demould. BACKGROUND
[0002] The silica gel ice grid is the life supply that liquid is contained after through the refrigerator refrigeration will inside liquid solidify into ice block, the silica gel ice grid usually is equipped with rotatable mechanism, is convenient for rotating ice grid after liquid solidifies into ice block and carries out demoulding.
[0003] The silica gel ice grid needs manual pressing after rotating and makes ice block demoulding, otherwise ice block cannot complete demoulding quickly all with the help of gravity, this mode is more time -consuming and labor -intensive, and needs to contact silica gel ice grid with hand, is not enough sanitary, therefore, aiming at above -mentioned problem proposes a silica gel ice grid convenient to demould. UTILITY MODEL CONTENT
[0004] The utility model discloses a silica gel ice grid convenient to demould to solve the silica gel ice grid of part in prior art needs manual pressing after rotating and makes ice block demoulding, otherwise ice block cannot complete demoulding quickly all with the help of gravity, this mode is more time -consuming and labor -intensive, and needs to contact silica gel ice grid with hand, is not enough sanitary.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A silica gel ice grid convenient to demould, including first shell, storage box and second shell, the inside slide of first shell is connected with storage box, the upper side of first shell is fixedly connected with second shell, the front side of second shell is fixedly connected with limit seat, the inside of limit seat is fixedly connected with a pair of left and right symmetrical distribution's compression spring, the lower extreme of compression spring is fixedly connected with the clamping tooth board, the front side of clamping tooth board is fixedly connected with operating button, the inside of second shell is equipped with two ice grid bodies, the lower side of ice grid body is fixedly connected with the mounting frame, the lower side of mounting frame is fixedly connected with a pair of front and back symmetry distribution's support plate, the opposite outside of every pair of support plate is fixedly connected with the rotating shaft, the rotating shaft and second shell rotation connection, the front end of rotating shaft located in the front is fixedly connected with the clamping tooth shaft, the clamping tooth shaft and clamping tooth board engage, the opposite inside of every pair of support plate is equipped with the mounting plate, the upper side of mounting plate is fixedly connected with a group of even distribution's demoulding protruding, the front and back two sides of mounting plate are fixedly connected with a group of sliding shafts, every group of sliding shafts is connected with support plate slidingly, one of every group three sliding shafts is fixedly connected with the adjusting shaft, the adjusting shaft is connected with second shell slidingly.
[0007] Preferably, the left half and the right half of the second shell are each provided with a pair of rotation slots symmetrically distributed front and back, and the left half and the right half of the second shell are each provided with a pair of curved sliding slots symmetrically distributed front and back, and the distance between the lowermost end of the curved sliding slot of the second shell and the rotation slot is greater than the distance between the uppermost end of the curved sliding slot of the second shell and the rotation slot.
[0008] Preferably, the limiting seat is a "U"-shaped bending structure, the compression springs are vertically distributed, the toothed plate is a "U"-shaped bending structure, the left and right sides of the toothed plate are each provided with a tooth, the rear side of the toothed plate is in sliding connection with the second shell, and the toothed plate and the operation button are in sliding connection with the limiting seat.
[0009] Preferably, the ice tray body is provided with a plurality of uniformly distributed freezing slots, the mounting frame is a rectangular frame, the lower half of the support plate is provided with a group of rectangular sliding slots, each group of the rectangular sliding slots of the support plate has three, and each pair of the rotation shafts is symmetrically distributed front and back.
[0010] Preferably, the curved side of the toothed shaft is provided with a tooth, the mounting plate is located directly below the ice tray body, the upper side of each group of the demolding protrusions is in contact with the ice tray body, each group of the sliding shafts has three, the sliding shafts are rectangular shafts, and the adjusting shafts are cylindrical shafts.
[0011] Compared with the prior art, the ice tray body can be quickly demolded, and the operation is convenient, time-saving, labor-saving, safe and sanitary.
[0012] In the utility model, through the toothed plate, the operation button, the rotation shaft, the toothed shaft, the mounting plate, the demolding protrusion, the sliding shaft and the adjusting shaft, the device can drive the toothed shaft to rotate through the toothed plate, drive the support plate and the mounting frame to rotate through the rotation shaft, make the ice tray body rotate from a horizontal state to a vertical state, limit the adjusting shaft through the curved sliding slot of the second shell, make the sliding shaft slide along the rectangular sliding slot of the support plate, drive the demolding protrusion to move through the mounting plate, and the device can realize quick demolding, and the operation is convenient, time-saving, labor-saving, safe and sanitary. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is whole structure schematic view of the utility model;
[0014] Figure 2 It is limiting seat installation structure sectional view of the utility model;
[0015] Figure 3 It is mounting plate installation structure schematic view of the utility model;
[0016] Figure 4 It is adjusting shaft installation structure schematic view of the utility model;
[0017] Figure 5 For the utility model Figure 1 The structure schematic view of A place of the utility model is shown in the figure.
[0018] Figure 6 For the utility model Figure 3 The structure schematic view of B place of the utility model is shown in the figure.
[0019] In the figure: 1, first shell;2, storage box;3, second shell;4, limit seat;5, compression spring;6, pawl plate;7, operation button;8, ice grid body;9, mounting frame;10, support plate;11, rotating shaft;12, pawl shaft;13, mounting plate;14, demolding protrusion;15, sliding shaft;16, adjusting shaft. Specific implementation
[0020] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0021] In the description of the utility model, it is understood that the orientation words such as 'front, back, up, down, left, right', 'transverse, vertical, perpendicular, horizontal' and 'top, bottom' and the like indicated orientation or position relationship is usually based on the orientation or position relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, without making the opposite statement, these orientation words do not indicate and imply that the indicated device or element must have a particular orientation or be constructed and operated in a particular orientation, therefore, it cannot be understood as the limitation of the protection scope of the utility model;The orientation words 'in, out' refer to the inside and outside relative to the contour of each component.
[0022] In addition, it should be noted that the use of 'first','second' and the like to limit parts is only for the convenience of distinguishing the corresponding parts, and the above words have no special meaning unless otherwise stated, therefore, it cannot be understood as the limitation of the protection scope of the utility model.
[0023] Please refer to Figures 1-6 The utility model provides a technical scheme:
[0024] The utility model provides a silica gel ice grid of easy demoulding, including first casing 1, receiving box 2 and second casing 3, the inside slide connection of first casing 1 has receiving box 2, the upper side fixed connection of first casing 1 has second casing 3, the front side fixed connection of second casing 3 has the limiting seat 4, the inside fixed connection of limiting seat 4 has a pair of left and right symmetry distribution's compression spring 5, the lower end fixed connection of compression spring 5 has the toothed plate 6, the front side fixed connection of toothed plate 6 has the operation button 7, the inside of second casing 3 is equipped with two ice grid body 8, the lower side fixed connection of ice grid body 8 all has the installation frame 9, the lower side fixed connection of installation frame 9 all has a pair of front and rear symmetry distribution's support plate 10, the opposite outside of every pair of support plate 10 all is fixedly connected with rotating shaft 11, rotating shaft 11 and second casing 3 rotationally connected, the front end of rotating shaft 11 located at the front all is fixedly connected with the toothed shaft 12, toothed shaft 12 and toothed plate 6 engage, the opposite inside of every pair of support plate 10 all is equipped with mounting plate 13, the upper side fixed connection of mounting plate 13 all has a group of evenly distribution's demoulding protruding 14, the front and rear sides of mounting plate 13 all are fixedly connected with a group of sliding shafts 15, every group of sliding shafts 15 all and support plate 10 slidingly connected, one of every group of three sliding shafts 15 is fixedly connected with the adjusting shaft 16, adjusting shaft 16 all and second casing 3 slidingly connected.
[0025] The left half and the right half of second casing 3 are each provided with a pair of front and rear symmetrical rotating groove holes, the left half and the right half of second casing 3 are each provided with a pair of front and rear symmetrical curved sliding grooves, the distance between the lowermost end of the curved sliding groove of second casing 3 and the rotating groove hole is greater than the distance between the uppermost end of the curved sliding groove of second casing 3 and the rotating groove hole, and the adjusting shaft 16 can be limited through the curved sliding groove of second casing 3; the limiting seat 4 is a "U"-shaped bending structure, the compression springs 5 are vertically distributed, the toothed plate 6 is a "U"-shaped bending structure, the left and right sides of the toothed plate 6 are each provided with a tooth, the rear side of the toothed plate 6 is slidingly connected with second casing 3, the toothed plate 6 and the operation button 7 are slidingly connected with the limiting seat 4, and the toothed plate 6 can drive the toothed shaft 12 to rotate; the ice grid body 8 is provided with a plurality of evenly distributed freezing grooves, the installation frame 9 is a rectangular frame, the lower half of the support plate 10 is provided with a group of rectangular sliding grooves, each group of the rectangular sliding grooves of the support plate 10 has three, each pair of rotating shafts 11 is front and rear symmetrical, and the rotating shaft 11 can drive the support plate 10 and the installation frame 9 to rotate; the curved side of the toothed shaft 12 is provided with a tooth, the mounting plate 13 is located directly below the ice grid body 8, the upper side of each group of demoulding protrusions 14 is in contact with the ice grid body 8, each group of sliding shafts 15 has three, the sliding shaft 15 is a rectangular shaft, and the adjusting shaft 16 is a cylindrical shaft; the sliding shaft 15 can slide along the rectangular sliding groove of the support plate 10, so that the distance between the mounting plate 13 and the ice grid body 8 changes.
[0026] Workflow: check the device before use, the second shell 3 of the device is provided with a pair of front and rear symmetrical rotating slot holes, the second shell 3 is provided with a pair of front and rear symmetrical curved sliding grooves, the distance between the lowermost end of the curved sliding groove of the second shell 3 and the rotating slot hole is greater than the distance between the uppermost end of the curved sliding groove of the second shell 3 and the rotating slot hole, the lower half of the support plate 10 is provided with a group of rectangular sliding grooves, all of the above are prior art; when the device is not used, the compression spring 5 is in a slightly compressed state, the lower side of the toothed plate 6 is in contact with the limiting seat 4, the ice grid body 8 is horizontally distributed, the upper side of the demolding protrusion 14 is in contact with the ice grid body 8, at this time the user pours the liquid to be frozen into the freezing groove of the ice grid body 8, and then puts the device into the refrigerator, after a period of time the liquid solidifies into ice blocks, at this time the user holds the first shell 1 with one hand and pushes the operating button 7 upward with the other hand, the operating button 7 drives the toothed plate 6 to move upward, so that the compression spring 5 is compressed, and then the two toothed shafts 12 rotate in opposite directions at the same time, and then the two pairs of support plates 10 are synchronously rotated through the rotating shaft 11 limited by the second shell 3, the ice grid body 8 is rotated through the mounting frame 9, so that the upper side of the two ice grid bodies 8 is rotated into a vertical surface, at the same time, the adjusting shaft 16 slides along the curved sliding groove of the second shell 3, since the curved sliding groove of the second shell 3 is not centered on the rotating slot hole of the second shell 3, the adjusting shaft 16 is closer and closer to the rotating shaft 11 during the sliding process, so that the sliding shaft 15 slides along the rectangular sliding groove of the support plate 10, and then the mounting plate 13 approaches the ice grid body 8, and finally the mounting plate 13 and the ice grid body 8 are in contact, the demolding protrusion 14 fixed by the mounting plate 13 abuts against the ice grid body 8, so that the ice blocks are quickly demolded, and when the ice grid body 8 is rotated by ninety degrees, the ice blocks can fall into the storage box 2 connected with the first shell 1 in sliding mode; the device can realize quick demolding, and the operation mode is relatively convenient, which saves time and effort, and is safe and sanitary.
[0027] The contents not described in detail in the specification belong to the prior art known to those skilled in the art. The standard parts used in the utility model can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, and the specific connection mode of each part adopts the conventional means such as bolts, rivets and welding in the prior art, the machinery, parts and equipment adopt the conventional models in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here.
[0028] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A silica gel ice cube tray facilitating demolding, comprising a first shell (1), a receiving box (2) and a second shell (3), characterized in that: The inner side of the first shell (1) is slidably connected with a receiving box (2), the upper side of the first shell (1) is fixedly connected with a second shell (3), the front side of the second shell (3) is fixedly connected with a limiting seat (4), the inner side of the limiting seat (4) is fixedly connected with a pair of left and right symmetrical compression springs (5), the lower end of the compression spring (5) is fixedly connected with a toothed plate (6), the front side of the toothed plate (6) is fixedly connected with an operation button (7), the inner side of the second shell (3) is provided with two ice cell bodies (8), the lower side of the ice cell body (8) is fixedly connected with a mounting frame (9), the lower side of the mounting frame (9) is fixedly connected with a pair of front and rear symmetrical support plates (10), the opposite outer sides of each pair of support plates (10) are fixedly connected with rotating shafts (11), the rotating shaft (11) and the second shell (3) are rotatably connected, the front ends of the rotating shafts (11) located on the front side are fixedly connected with toothed shafts (12), the toothed shaft (12) is engaged with the toothed plate (6), the opposite inner sides of each pair of support plates (10) are provided with mounting plates (13), the upper side of the mounting plate (13) is fixedly connected with a group of evenly distributed demolding protrusions (14), the front and rear sides of the mounting plate (13) are fixedly connected with a group of sliding shafts (15), each group of sliding shafts (15) is slidably connected with the support plate (10), one of each group of three sliding shafts (15) is fixedly connected with an adjusting shaft (16), the adjusting shaft (16) is slidably connected with the second shell (3).
2. The ice cube tray according to claim 1, wherein: The left half and the right half of the second shell (3) are each provided with a pair of front and rear symmetrical rotating groove holes, the left half and the right half of the second shell (3) are each provided with a pair of front and rear symmetrical curved sliding grooves, the distance between the lowermost end of the curved sliding groove of the second shell (3) and the rotating groove hole is greater than the distance between the uppermost end of the curved sliding groove of the second shell (3) and the rotating groove hole.
3. The ice cube tray of claim 1, wherein: The limiting seat (4) is a "U"-shaped bending structure, the compression springs (5) are vertically distributed, the toothed plate (6) is a "U"-shaped bending structure, the left and right sides of the toothed plate (6) are each provided with a tooth, the rear side of the toothed plate (6) is slidably connected with the second shell (3), the toothed plate (6) and the operation button (7) are slidably connected with the limiting seat (4).
4. The silicone ice cube tray of claim 1, wherein: The ice cell body (8) is provided with a plurality of evenly distributed freezing grooves, the mounting frame (9) is a rectangular frame, the lower half of the support plate (10) is provided with a group of rectangular sliding grooves, each group of the rectangular sliding grooves of the support plate (10) has three, each pair of rotating shafts (11) is front and rear symmetrical.
5. The silicone ice cube tray of claim 1, wherein: The curved side of the toothed shaft (12) is provided with a tooth, the mounting plate (13) is located directly below the ice cell body (8), the upper side of each group of demolding protrusions (14) is in contact with the ice cell body (8), each group of sliding shafts (15) has three, the sliding shaft (15) is a rectangular shaft, the adjusting shaft (16) is a cylindrical shaft.