Bullet ice making structure
By designing a driving mechanism in the ice making equipment to drive the water tank away and flip, the problem of interference between the ice head and the evaporator bullet is solved, the ice making efficiency is improved and the equipment structure is simplified.
Patent Information
- Application Number
- CN202421727417.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-19
AI Technical Summary
During the process of turning over water, some ice heads interfere with the evaporator bullet head during the existing ice making equipment, resulting in low ice making efficiency.
A bullet ice ice-making structure is designed, and a driving mechanism is used to drive the water tank to stay away from the evaporator part first, and then flip it to avoid interference between the ice head and the evaporator bullet head. The driving mechanism includes a lifting assembly and a flip assembly, and the staged movement of the water tank is realized through the cooperation of the gear and rack.
It effectively avoids interference between the ice head and the evaporator bullet, improves the ice making efficiency, and simplifies the structural design of the equipment.
Smart Images

Figure CN222895359U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of ice making equipment, in particular to a bullet ice making structure. Background Art
[0002] In order to improve the ice-making efficiency of the ice-making machine, the structure can be compatible with any number of evaporator bullet heads. However, the bullet-shaped water box needs to have a certain length, so the depth of the wrapping is deeper and the diameter of the wrapping is as small as possible. Therefore, the commonly used flipping and pouring water structure is used. During the flipping process, the ice head with a certain thickness will interfere with the movement of the evaporator bullet head. Utility Model Content
[0003] In order to solve the above problems, the present technical solution provides a bullet ice making structure.
[0004] To achieve the above purpose, the technical solution is as follows:
[0005] A bullet ice making structure, comprising:
[0006] A shell body, in which an ice-making cavity is arranged;
[0007] An ice-making mechanism, comprising an evaporator and a water box arranged in the ice-making cavity;
[0008] The evaporator comprises an evaporation part, and the water box is provided with a water storage cavity for the evaporation part to enter;
[0009] The driving mechanism is used to drive the water box to move in a direction away from the evaporation part and to turn over after the water storage chamber is separated from the evaporation part.
[0010] In the bullet ice making structure as described above, the driving mechanism includes a lifting component for driving the water pocket box to rise and fall, and a flipping component for driving the water pocket box to flip during the descent of the water pocket box.
[0011] In the bullet ice making structure as described above, the lifting assembly includes a motor, a main shaft arranged on the output end of the motor, a rotating shaft arranged on the water pocket box, and a lever arranged on the main shaft and used to move the rotating shaft, and the lever is slidably hinged with the rotating shaft to allow the rotating shaft to move or rotate relative to the main shaft.
[0012] In the bullet ice making structure as described above, the lever is provided with a slot for the rotating shaft to be inserted into, so that the rotating shaft is kept in the slot when moving and rotating.
[0013] In the bullet ice making structure as described above, the flip assembly includes a gear arranged on the rotating shaft and a rack arranged on the shell, and the water pocket box is lowered until the gear is engaged with the gear. As the water pocket box continues to descend, the rack drives the water pocket box to rotate through the gear.
[0014] In the bullet ice making structure as described above, a limit shaft is provided on the water pocket box, a limit block is provided on the limit shaft, a linear slide rail and a rotating slide rail overlapped with the linear slide rail are provided on the shell body, when the limit block is in the linear slide rail, the rotation of the limit block is restricted, and the cooperation of the two allows only the water pocket box to be lifted and lowered; when the limit block is in the rotating slide rail, the rotation restriction on the limit block is released, and the limit shaft cooperates with the linear slide rail to allow the water pocket box to be lifted and lowered and rotated.
[0015] In the bullet ice making structure as described above, the rotating shaft and the limiting shaft are coaxially arranged.
[0016] In the bullet ice making structure as described above, the levers are provided at both ends of the main shaft, one of the levers is clamped on the limiting shaft between the water pocket box and the limiting block, and the other lever is located on the rotating shaft between the water pocket box and the gear.
[0017] In the bullet ice making structure as described above, the plurality of evaporation parts are arranged at intervals, and the water storage chambers are arranged in one-to-one correspondence with the evaporation parts.
[0018] The beneficial effects of this application are:
[0019] The utility model provides a bullet ice making structure, which utilizes a driving mechanism to drive a water box to first move away from an evaporation part and then flip it over to avoid interference. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following briefly introduces the drawings required for describing the embodiments.
[0021] Figure 1 It is a structural schematic diagram of the utility model;
[0022] Figure 2 yes Figure 1 sectional view of . DETAILED DESCRIPTION
[0023] In order to make the technical problems, technical solutions and beneficial effects solved by the utility model more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.
[0024] A bullet ice making structure, comprising:
[0025] A housing 1, in which an ice-making cavity 11 is provided;
[0026] An ice-making mechanism 2, comprising an evaporator 21 and a water box 22 arranged in the ice-making cavity 11;
[0027] The evaporator 21 includes an evaporation portion 211, and the water box 22 is provided with a water storage chamber 221 for the evaporation portion 211 to enter;
[0028] The driving mechanism 3 is used for driving the water box 22 to move in a direction away from the evaporation portion 211 and to flip over after the water storage chamber 221 is separated from the evaporation portion 211 .
[0029] The utility model provides a bullet ice making structure, which utilizes a driving mechanism to drive a water box to first move away from an evaporation part and then flip it over to avoid interference.
[0030] Further, as a preferred embodiment of the present invention but not limiting, the driving mechanism 3 includes a lifting assembly 31 for driving the water box 22 to be lifted and lowered, and a flipping assembly 32 for driving the water box 22 to be flipped during the descent of the water box 22. The driving mechanism realizes the staged movement of the water box, which is only lifted and lowered, and flipped while lifted and lowered.
[0031] Furthermore, as a preferred embodiment of the present invention but not a limitation, the lifting assembly 31 includes a motor 311, a main shaft 312 provided on the output end of the motor 311, a rotating shaft 315 provided on the water box 22, and a lever 313 provided on the main shaft 312 and used to move the rotating shaft 315, and the lever 313 is slidably hinged to the rotating shaft 315 so that the rotating shaft 315 can move or rotate relative to the main shaft 312.
[0032] Further, as a preferred embodiment of the present invention but not limiting, a slot 314 is provided on the lever 313, and the slot 314 is for the rotating shaft 315 to be inserted, so that the rotating shaft 315 is kept in the slot 314 during movement and rotation. The slot can drive the water box to rise and fall by rotating, and the rotating shaft slides in the slot to support the distance change during the rise and fall.
[0033] Further, as a preferred embodiment of the present solution but not limiting, the flip assembly 32 includes a gear 321 provided on the rotating shaft 315, and a rack 322 provided on the housing 1, and the water box 22 is lowered to make the gear 321 mesh with the gear 321, and as the water box 22 continues to descend, the rack 322 drives the water box 22 to rotate through the gear 321. The position of the rack is set according to the lifting distance of the water box, and the rack begins to mesh with the gear after the water box leaves the evaporation part.
[0034] Further, as a preferred embodiment of the present invention but not a limitation, the water-pocket box 22 is provided with a limit shaft 222, and a limit block 223 is provided on the limit shaft 222. The housing 1 is provided with a linear slide 12, and a rotating slide 13 superimposed on the linear slide 12. When the limit block 223 is in the linear slide 12, the limit block 223 is limited to rotate, and the two cooperate to allow the water-pocket box 22 to be lifted and lowered; when the limit block 223 is in the rotating slide 13, the rotation restriction on the limit block 223 is released, and the limit shaft 222 cooperates with the linear slide 12 to allow the water-pocket box 22 to be lifted and rotated. When the water-pocket box is lowered from top to bottom, the first stage is that the limit block is restricted and cannot be rotated, and can only be lifted and lowered. The second stage is that the limit block is not restricted and can be lifted and lowered and rotated. Because the rotating slide provides rotation space.
[0035] Further, as a preferred implementation of the present solution but not limiting, the rotating shaft 315 is coaxially arranged with the limiting shaft 222. Both sides of the water box are restricted by the linear slide rail and the rotating slide rail.
[0036] Further, as a preferred embodiment of the present invention but not limiting, the two ends of the main shaft 312 are provided with the levers 313, one of the levers 313 is clamped on the limit shaft 222 between the water pocket box 22 and the limit block 223, and the other lever 313 is located on the rotating shaft 315 between the water pocket box 22 and the gear 321. The two ends of the water pocket box can be smoothly raised and lowered by a single motor, which is conducive to reducing costs.
[0037] Further, as a preferred implementation of this solution but not limiting, a plurality of evaporation parts 211 are arranged at intervals, and the water storage chambers 221 are arranged one-to-one corresponding to the evaporation parts 211. Reducing the amount of water stored in the water storage chamber is conducive to accelerating the condensation of ice cubes.
[0038] The above description is only a preferred embodiment of the present application and is not intended to limit the scope of implementation of the present application. Other principles and basic structures that are the same or similar to those of the present application are within the protection scope of the present application.
Claims
1. A bullet ice making structure, characterized in that: include A shell (1) having an ice-making cavity (11) disposed therein; An ice-making mechanism (2) comprising an evaporator (21) and a water box (22) arranged in the ice-making cavity (11); The evaporator (21) comprises an evaporation portion (211), and the water storage box (22) is provided with a water storage chamber (221) for the evaporation portion (211) to enter; A driving mechanism (3) is used to drive the water box (22) to move in a direction away from the evaporation portion (211), and to turn over after the water storage chamber (221) is separated from the evaporation portion (211).
2. The bullet ice making structure according to claim 1, characterized in that: The driving mechanism (3) comprises a lifting component (31) for driving the water pocket box (22) to be lifted or lowered, and a flipping component (32) for driving the water pocket box (22) to be flipped when the water pocket box (22) is lowered.
3. The bullet ice making structure according to claim 2, characterized in that: The lifting assembly (31) comprises a motor (311), a main shaft (312) arranged on the output end of the motor (311), a rotating shaft (315) arranged on the water box (22), and a lever (313) arranged on the main shaft (312) and used to move the rotating shaft (315); the lever (313) is slidably hinged to the rotating shaft (315) so that the rotating shaft (315) can move or rotate relative to the main shaft (312).
4. The bullet ice making structure according to claim 3, characterized in that: The lever (313) is provided with a slot (314), and the slot (314) is for the rotating shaft (315) to be embedded in, so that the rotating shaft (315) remains in the slot (314) when moving and rotating.
5. The bullet ice making structure according to claim 3, characterized in that: The flip assembly (32) comprises a gear (321) arranged on the rotating shaft (315) and a rack (322) arranged on the housing (1); the water box (22) descends until the gear (321) meshes with the gear (321); as the water box (22) continues to descend, the rack (322) drives the water box (22) to rotate via the gear (321).
6. The bullet ice making structure according to claim 5, characterized in that: The water-pocket box (22) is provided with a limit shaft (222), and the limit shaft (222) is provided with a limit block (223). The shell (1) is provided with a linear slide rail (12) and a rotary slide rail (13) superimposed on the linear slide rail (12). When the limit block (223) is in the linear slide rail (12), the limit block (223) is restricted from rotating, and the two cooperate to allow the water-pocket box (22) to be lifted or lowered; when the limit block (223) is in the rotary slide rail (13), the rotation restriction on the limit block (223) is released, and the limit shaft (222) cooperates with the linear slide rail (12) to allow the water-pocket box (22) to be lifted or lowered and rotated.
7. The bullet ice making structure according to claim 6, characterized in that: The rotating shaft (315) and the limiting shaft (222) are coaxially arranged.
8. The bullet ice making structure according to claim 6, characterized in that: The levers (313) are provided at both ends of the main shaft (312); one of the levers (313) is clamped on the limit shaft (222) between the water pocket box (22) and the limit block (223); and the other lever (313) is located on the rotating shaft (315) between the water pocket box (22) and the gear (321).
9. The bullet ice making structure according to claim 1, characterized in that: The plurality of evaporation parts (211) are arranged at intervals, and the water storage chamber (221) is arranged in a one-to-one correspondence with the evaporation parts (211).