Portable full-automatic ice maker
By introducing ice extraction components and screening components into the portable fully automatic ice maker, automated ice extraction and crushed ice screening is achieved, solving the problems of low ice extraction efficiency and hygiene, and improving the convenience and hygiene of the ice maker.
Patent Information
- Application Number
- CN202422602795.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-28
AI Technical Summary
The existing portable fully automatic ice maker needs to be extended into the machine multiple times when taking ice, reducing efficiency and risk of cross-contamination, and it is difficult to clean up broken ice and affecting sanitary quality.
Ice extraction and screening components are designed, including transport boards, support rods, anti-slip pads, baffles, leak holes and storage boxes. The ice outlet is opened through the sliding baffles, and the ice cubes are automatically removed using the inclined slide boards and leak holes, and crushed ice is screened out, and concentratedly collected into the storage box.
Improve the efficiency of ice extraction, avoid cross-contamination and accumulation of broken ice, maintain the hygienic quality of ice cubes, and prevent blockage of ice makers and bacterial growth.
Smart Images

Figure CN223283280U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of ice making machines, and more particularly to a portable fully automatic ice making machine. Background Art
[0002] An ice maker is a mechanical device that uses a refrigeration system to cool water and produce ice cubes. Water automatically enters a reservoir through a make-up water valve. Then, through a flow control valve, it is pumped to a diverter head, where it is evenly sprayed onto the surface of the ice maker. It flows across the walls of the ice maker like a curtain of water, cooling the water to freezing point. Any water that remains frozen flows through a porous groove into the reservoir, restarting the cycle. When the ice reaches the desired thickness (selectable by the operator / user), the hot exhaust from the compressor is redirected back into the ice maker's walls, replacing the low-temperature liquid refrigerant. This creates a thin film of water between the ice and the evaporator tube walls, acting as a lubricant as the ice falls freely by gravity into the trough below. Water generated during the harvesting cycle returns through the porous grooves to the reservoir, preventing wet ice from being discharged by the machine.
[0003] A portable fully automatic ice maker is a small, lightweight and automated ice-making device that can make ice cubes quickly and conveniently to meet users' ice needs in various occasions. The portable fully automatic ice maker uses a built-in refrigeration system to cool water and freeze it into ice cubes. This process usually includes steps such as water intake, ice making, ice removal and ice storage. The entire process is automated and requires no human intervention. In summary, a portable fully automatic ice maker is a powerful and easy-to-use ice-making device suitable for a variety of occasions and needs.
[0004] The ice cubes prepared by the ice maker are stored in the ice maker and wait for users to take them. Users need to use special tools to take out the ice cubes. However, the ice taking tools of existing ice makers need to be placed separately. When taking ice, users need to take the ice taking tools first, and then reach into the ice maker with hand tools to take out the ice cubes. If a large amount of ice cubes needs to be taken out, it is necessary to reach into the ice maker multiple times, which is inconvenient to take out the ice, thereby reducing the ice removal efficiency. In addition, direct contact with ice cubes by hand with unsterilized tools may increase the risk of cross contamination and affect the sanitary quality of the ice cubes.
[0005] Therefore, in order to solve the above technical problems, the present application proposes a portable fully automatic ice maker. Utility Model Content
[0006] In view of the deficiencies in the prior art, the present invention aims to provide a portable fully automatic ice maker.
[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a portable fully automatic ice maker, comprising a base, an ice-making plate, and a storage chamber, and further comprising: an ice-taking assembly disposed on the base, the ice-taking assembly comprising a transport plate, a support rod slidably mounted on the base, one end of the support rod extending out of the base and mounted with an anti-slip pad;
[0008] An ice outlet is provided on the base corresponding to the storage cavity, a limiting groove is provided at the bottom of the ice outlet, and a baffle is slidably installed between the ice outlet and the base, and the baffle is connected to the support rod;
[0009] The end of the ice outlet close to the limiting groove is connected to the ice making plate through a transport plate. The transport plate is in the storage cavity and is inclined. The end of the transport plate close to the ice making plate is higher than the end close to the ice outlet.
[0010] Preferably, a screening component is provided on the base at the position of the storage cavity, the screening component includes a leakage hole, and a plurality of equal leakage holes are provided on the transport plate. The size of the leakage holes is smaller than that of normal ice cubes, and is used to screen the ice cubes.
[0011] A support block is installed on the outer side of the base below the storage cavity, and a storage groove is provided on the support block. The leakage hole is communicated with the support block. A storage box is slidably installed in the storage groove, and a handle is installed on the storage box, which is used to realize the function of centrally collecting the screened ice cubes.
[0012] Preferably, a water tank is installed on the base, and a water inlet is opened on the water tank to facilitate the storage of water needed to form ice cubes.
[0013] Preferably, a water storage tank and a storage cavity are sequentially provided in the base in front of the water tank, and an ice-making plate is installed between the water storage tank and the storage cavity to facilitate the production of ice cubes.
[0014] Preferably, a conveying plate is installed between the ice-making plate and the water tank, the conveying plate is inclined between the ice-making plate and the water tank, and the end of the conveying plate at the water tank position is higher than the end at the ice-making plate, a cross plate is installed at the end of the conveying plate at the ice-making plate, a water flow groove is opened at the end of the ice-making plate away from the conveying plate, and a slide plate is installed between the ice-making plate and the water flow groove, the slide plate is inclined, the water flow groove passes through the ice-making plate and is connected to the water storage tank, so as to facilitate the water transportation.
[0015] Preferably, the base is located at the storage cavity position and is vertically slidably installed with a cover plate to facilitate dust prevention and heat preservation.
[0016] Preferably, the base is provided with a drain outlet at the water storage tank, and a plug is slidably mounted on the drain outlet to facilitate the control of the discharge of water in the water storage tank.
[0017] Preferably, the baffle can slide vertically in the limiting groove and the base to facilitate stabilization.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. In the utility model, the ice taking assembly provided on the base is used to hold the anti-slip pad and then pull the anti-slip pad upward. When the anti-slip pad moves upward, it will move the support rod with it. When the support rod moves, it will move the baffle upward. At this time, the baffle will leave the limiting groove and open the ice outlet. At this time, the ice cubes will flow out of the ice outlet through the inclined slide, thereby solving the problem in the background technology that if a large amount of ice cubes need to be taken out, it is necessary to reach out of the ice maker multiple times, which is inconvenient to take out ice, thereby reducing the ice removal efficiency. In addition, directly touching the ice cubes with unsterilized tools may increase the risk of cross contamination and affect the sanitary quality of the ice cubes.
[0020] 2. In the present invention, a screening assembly is provided on the base at the position of the storage cavity. When ice cubes need to be taken out, the crushed ice will slide along with the ice cubes toward the ice outlet. When sliding, the crushed ice will flow from each leakage hole into the storage box in the support block. When the ice cubes in the storage box are stored to a certain amount, the storage handle is held and the storage handle is pulled out of the storage slot, and then the crushed ice is processed in a centralized manner, so as to avoid the accumulation of crushed ice inside the ice maker to form ice chips or ice shavings. These ice chips or ice shavings are not only difficult to clean, but may also clog the drainage hole or water spray pipe of the ice maker, affecting the normal operation of the ice maker. Long-term accumulation may also cause bacteria to grow inside the ice maker, affecting the sanitary quality of the ice cubes. At the same time, the problem of crushed ice affecting the appearance when taking out ice cubes can be avoided. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0022] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0023] Figure 2 This is a schematic structural diagram of the base in the present utility model;
[0024] Figure 3 It is a structural schematic diagram of the storage box in the utility model.
[0025] 1. Base; 2. Water tank; 3. Water inlet; 4. Ice-making plate; 5. Transport plate; 6. Water storage tank; 7. Slide plate; 8. Water flow tank; 9. Horizontal plate; 10. Storage chamber; 11. Cover plate; 12. Stopper; 13. Ice retrieval assembly; 1301. Transport plate; 1302. Support rod; 1303. Anti-slip pad; 1304. Baffle; 1305. Ice outlet; 1306. Limiting groove; 14. Screening assembly; 1401. Leakage hole; 1402. Support block; 1403. Storage slot; 1404. Storage box; 1405. Handle; 15. Drain outlet. DETAILED DESCRIPTION
[0026] like Figure 1-3 As shown, the utility model provides a portable fully automatic ice maker, comprising a base 1, an ice making plate 4 and a storage chamber 10, and further comprising: an ice taking assembly 13 arranged on the base 1, which is used to realize the movement of the baffle 1304 by pulling the support rod 1302 until the ice outlet 1305 is opened, and then the ice cubes in the storage chamber 10 are transported to the ice outlet 1305 by the inclined slide 7, and then flow out from the ice outlet 1305, so as to avoid using the ice taker to take out the ice cubes in the storage chamber 10, thereby avoiding the need to take out the ice cubes. The ice taking device pollutes the ice cubes in the storage and improves the efficiency of ice taking. The ice taking assembly 13 includes a transport plate 1301. A support rod 1302 is slidably installed on the base 1, which is used to realize the transmission effect of the baffle 1304. One end of the support rod 1302 extends from the base 1 and is installed with an anti-slip pad 1303, which is used to prevent the user from slipping when holding it, so as to achieve the anti-slip effect. An ice outlet 1305 is opened on the base 1 corresponding to the storage cavity 10, which is used to ensure that the ice in the storage cavity 10 is kept in the ice. When the baffle 1304 is opened, the ice cubes can flow out. A limiting groove 1306 is provided at the bottom of the ice outlet 1305, which is used to fix and stabilize the baffle 1304. A baffle 1304 is slidably installed between the ice outlet 1305 and the base 1, which is used to achieve the effect of circulating and blocking the ice cubes. The baffle 1304 can slide vertically in the limiting groove 1306 and the base 1, which is used to achieve the effect of smoothly opening the baffle 1304. The baffle 1304 is connected to the support rod 1302, which is used to In order to realize the transmission function, the end of the ice outlet 1305 close to the limiting groove 1306 is connected to the ice making plate 4 through the transport plate 1301, which is used to support and transport the ice cubes. The transport plate 1301 is in the storage chamber 10, and the transport plate 1301 is inclined, which is used to give the ice cubes a sliding force. The end of the transport plate 1301 close to the ice making plate 4 is higher than the end close to the ice outlet 1305, which is used to facilitate the ice cubes to slide toward the ice outlet 1305 when the baffle 1304 is opened.
[0027] A screening assembly 14 is provided at the position of the storage chamber 10 on the base 1, which is used to screen the ice cubes. When the ice cubes slide toward the ice outlet 1305, the ice cubes smaller than the size of the leak hole 1401 and some crushed ice can be transported to the storage box 1404 through the leak hole 1401, thereby preventing the crushed ice from accumulating inside the ice maker to form ice chips or ice shavings. At the same time, it prevents the ice chips or ice shavings from clogging the drainage hole or water spray pipe of the ice maker and affecting the normal operation of the ice maker. It also prevents the long-term accumulation of ice chips or ice shavings leading to the growth of bacteria inside the ice maker. The screening assembly 14 includes a leak hole 1401, and a plurality of equal leak holes 1401 are provided on the transport plate 1301. It is used to screen ice cubes. The size of the leakage hole 1401 is smaller than that of normal ice cubes. It is used to screen ice cubes with a size smaller than the leakage hole 1401. A support block 1402 is installed on the outer side of the base 1 below the storage cavity 10. The support block 1402 is provided with a storage groove 1403, which is used to put in and take out the storage groove 1403. The leakage hole 1401 is communicated with the support block 1402, which is used to drop the screened ice cubes into the storage box 1404. A storage box 1404 is slidably installed in the storage groove 1403 to facilitate the centralized collection of the screened ice cubes. A handle 1405 is installed on the storage box 1404 to facilitate anti-slip.
[0028] A water tank 2 is mounted on the base 1 for storing water required for ice making. A water inlet 3 is provided on the water tank 2 for adding water to the storage tank.
[0029] A water storage tank 6 and a storage chamber 10 are provided in the base 1 in front of the water tank 2, which are used to store water for ice making and to store ice cubes. An ice-making plate 4 is installed between the water storage tank 6 and the storage chamber 10, which is used to turn water into ice cubes. A conveying plate 5 is installed between the ice-making plate 4 and the water tank 2, which is used to convey the water in the water tank 2 to the ice-making plate 4. The conveying plate 5 is inclined between the ice-making plate 4 and the water tank 2, and the end of the conveying plate 5 at the water tank 2 position is higher than the ice-making plate 4. At one end of the ice-making plate 4, it is used to ensure that the water in the water tank 2 can flow smoothly and accurately into the ice-making plate 4. The conveying plate 5 is at one end of the ice-making plate 4 and is installed with a horizontal plate 9, which is used to achieve the function of water blocking. The ice-making plate 4 is provided with a water flow groove 8 at the end away from the conveying plate 5, which is used to facilitate the flow of water into the water storage tank 6. A slide plate 7 is installed between the ice-making plate 4 and the water flow groove 8. The slide plate 7 is inclined, which is used to increase the fluidity of the water. The water flow groove 8 runs through the ice-making plate 4 and is connected to the water storage tank 6.
[0030] The base 1 is located at the storage cavity 10 and is provided with a cover plate 11 which is slidably mounted vertically. The cover plate 11 is used to keep the ice in the storage cavity warm and to protect it from dust.
[0031] The base 1 is provided with a drain port 15 at the water storage tank 6, which is used to facilitate the discharge of water in the water storage tank 6.
[0032] A plug 12 is slidably mounted on the drain outlet 15 , and is used to control the discharge of water in the water storage tank 6 .
[0033] Working principle: When you need to remove ice cubes, first hold the anti-skid pad 1303, then pull the anti-skid pad 1303 upwards. When the anti-skid pad 1303 moves upwards, it will move with the support rod 1302. When the support rod 1302 moves, it will move with the baffle 1304 upwards. At this time, the baffle 1304 will leave the limiting groove 1306 and open the ice outlet 1305. At this time, the ice will flow out of the ice outlet 1305 through the inclined slide 7, so as to achieve the purpose of automatically removing ice cubes. When ice cubes are formed, crushed ice may appear. When you need to take ice cubes, the crushed ice will slide with the ice cubes to the ice outlet 1305. During sliding, the crushed ice will flow from each leakage hole 1401 into the storage box 1404 in the support block 1402. When the ice in the storage box 1404 reaches a certain amount, the handle 1405 will be held to pull the storage handle out of the storage slot 1403, and then the crushed ice will be processed in a centralized manner, so as to avoid the accumulation of crushed ice inside the ice maker to form ice chips or ice shavings. These ice chips or ice shavings are not only difficult to clean, but may also clog the drainage holes or water spray pipes of the ice maker, affecting the normal operation of the ice maker. Long-term accumulation may also cause bacteria to grow inside the ice maker, affecting the sanitary quality of the ice. At the same time, it can avoid the appearance of crushed ice when taking out ice.
[0034] The above description is only a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Any ordinary technician in this industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with this profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the scope of protection of the technical solution of the present invention.
Claims
1. A portable fully automatic ice maker, comprising a base (1), an ice making plate (4) and a storage chamber (10), characterized in that: Also includes: An ice retrieval assembly (13) is arranged on the base (1), the ice retrieval assembly (13) comprising a transport plate (1301), a support rod (1302) being slidably mounted on the base (1), one end of the support rod (1302) extending out of the base (1) and being mounted with an anti-slip pad (1303); An ice outlet (1305) is provided on the base (1) corresponding to the storage cavity (10), a limiting groove (1306) is provided at the bottom end of the ice outlet (1305), and a baffle (1304) is slidably installed between the ice outlet (1305) and the base (1), and the baffle (1304) is connected to the support rod (1302); One end of the ice outlet (1305) close to the limiting groove (1306) is connected to the ice-making plate (4) via a transport plate (1301); the transport plate (1301) is located in the storage cavity (10), and the transport plate (1301) is inclined; the end of the transport plate (1301) close to the ice-making plate (4) is higher than the end close to the ice outlet (1305).
2. The portable fully automatic ice maker according to claim 1, characterized in that: A screening assembly (14) is provided on the base (1) at a position of the storage chamber (10), the screening assembly (14) including a leak hole (1401), a plurality of equal leak holes (1401) are provided on the transport plate (1301), and the size of the leak holes (1401) is smaller than that of normal ice cubes; A support block (1402) is installed on the outer side of the base (1) below the storage cavity (10), a storage groove (1403) is provided on the support block (1402), the leakage hole (1401) is communicated with the support block (1402), a storage box (1404) is slidably installed in the storage groove (1403), and a handle (1405) is installed on the storage box (1404).
3. The portable fully automatic ice maker according to claim 2, characterized in that: A water tank (2) is installed on the base (1), and a water inlet (3) is provided on the water tank (2).
4. The portable fully automatic ice maker according to claim 3, characterized in that: A water storage tank (6) and a storage cavity (10) are sequentially provided in the base (1) in front of the water tank (2), and an ice-making plate (4) is installed between the water storage tank (6) and the storage cavity (10).
5. The portable fully automatic ice maker according to claim 4, characterized in that: A conveying plate (5) is installed between the ice-making plate (4) and the water tank (2). The conveying plate (5) is in an inclined state between the ice-making plate (4) and the water tank (2), and the end of the conveying plate (5) located at the water tank (2) is higher than the end located at the ice-making plate (4). A transverse plate (9) is installed at the end of the conveying plate (5) located at the ice-making plate (4). A water flow trough (8) is provided at the end of the ice-making plate (4) away from the conveying plate (5), and a slide plate (7) is installed between the ice-making plate (4) and the water flow trough (8). The slide plate (7) is in an inclined state. The water flow trough (8) passes through the ice-making plate (4) and is communicated with the water storage tank (6).
6. The portable fully automatic ice maker according to claim 5, characterized in that: The base (1) is located at the storage cavity (10) and is provided with a cover plate (11) which is vertically slidably mounted thereon.
7. The portable fully automatic ice maker according to claim 6, characterized in that: The base (1) is provided with a drain outlet (15) at the water storage tank (6), and a plug (12) is slidably mounted on the drain outlet (15).
8. The portable fully automatic ice maker according to claim 7, characterized in that: The baffle (1304) can slide vertically in the limiting groove (1306) and the base (1).