Portable ice maker inner wall disinfection device
This convenient ice maker inner wall disinfection device, which combines hot water circulation and a scraper, solves the problem of ice blocks and ice slag on the inner wall of the ice maker being difficult to melt and clean quickly, achieving a highly efficient disinfection and cleaning effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-03-20
AI Technical Summary
Existing ice makers have a large amount of ice or ice shavings adhering to their inner walls. The sterilization device cannot accelerate melting while sterilizing, which increases the subsequent cleaning time and is inefficient.
Design a convenient ice maker inner wall disinfection device that accelerates ice melting through hot water circulation and thermal disinfection, and is equipped with a scraper to automatically scrape off residual ice slag, combining hot water circulation and mechanical scraping methods.
It enables the rapid melting and removal of ice and ice slag from the inner wall of the ice maker while simultaneously disinfecting, improving work efficiency and simplifying the subsequent cleaning process.
Smart Images

Figure CN224018607U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ice maker inner wall disinfection technology, and in particular to a convenient ice maker inner wall disinfection device. Background Technology
[0002] In many industries such as catering, medical care, and food processing, ice makers are key equipment. Their hygiene directly affects the quality and safety of the ice produced, which in turn affects the quality of end products and the health of consumers. As people's requirements for food safety and hygiene standards continue to increase, they are paying more and more attention to the daily cleaning and disinfection of ice makers.
[0003] Existing methods for disinfecting the inner walls of ice makers typically involve using disinfection lamps or hot water, or wiping or soaking with disinfectant. However, because a large amount of ice or ice shavings adhere to the inner walls of ice makers, current disinfection devices cannot effectively melt the ice while disinfecting, increasing subsequent cleaning time and resulting in low efficiency.
[0004] Therefore, it is necessary to design a convenient ice maker inner wall disinfection device that can perform thermal disinfection while accelerating the melting of ice adhering to the inner wall of the ice maker through hot water circulation, so as to facilitate rapid subsequent ice removal and improve work efficiency. Utility Model Content
[0005] To overcome the shortcomings of existing ice makers where a large amount of ice or ice shavings adhere to the inner wall, and the current disinfection devices' inconvenience in simultaneously disinfecting and accelerating the melting of the ice adhering to the inner wall of the ice maker, which increases subsequent cleaning time and is inefficient, this utility model provides a convenient ice maker inner wall disinfection device that can perform thermal disinfection while simultaneously accelerating the melting of the ice adhering to the inner wall of the ice maker through hot water circulation, facilitating rapid subsequent de-icing and improving work efficiency.
[0006] The technical implementation scheme of this utility model is as follows: a convenient ice maker inner wall disinfection device, including an ice maker, a water inlet frame, a touch screen, a sliding door, a rear cover groove, a heat dissipation rear cover, and a disinfection component. The water inlet frame is connected to the front left side of the ice maker, the touch screen is connected to the upper left side of the ice maker, the sliding door is slidably connected to the upper part of the ice maker, the left side of the ice maker has two rear cover grooves connected to the front and rear sides, and the heat dissipation rear cover is slidably connected between the rear cover grooves. The ice maker is equipped with a disinfection component that can perform thermal disinfection while accelerating the melting of ice adhering to the inner wall of the ice maker through hot water circulation.
[0007] Furthermore, the disinfection components include a water reservoir, a regulating valve, a circulation pipe, nozzles, a compressor, connecting pipes, and an exhaust pipe. The water reservoir is connected to the lower left of the ice maker, and a regulating valve is located on the right side of the water reservoir. The regulating valve is connected to the touch screen via a wire. A circulation pipe is connected inside the ice maker and is connected to the water reservoir. Multiple nozzles are connected to the lower part of the circulation pipe, and each nozzle is connected to the ice maker. A compressor is connected to the upper left of the ice maker, and a connecting pipe is connected to the compressor. An exhaust pipe is connected to the lower left of the ice maker.
[0008] Furthermore, it also includes a handle, which is rotatably connected to the upper part of the ice maker.
[0009] Furthermore, it also includes a circular filter screen, with a threaded connection at the rear of the exhaust pipe.
[0010] Furthermore, it also includes a support plate, a cylinder, and a scraper. The support plate is placed on the upper right side of the ice maker, and a cylinder is connected to the lower side of the support plate. A scraper is connected to the telescopic end of the cylinder.
[0011] Furthermore, a handle is provided on the upper side of the middle of the support plate.
[0012] The present invention has the following advantages: 1. The present invention allows hot water to enter the bottom of the circulation pipe, so that the hot water is atomized and sprayed out through the nozzle. At the same time, the hot water fills the circulation pipe. The hot water in the circulation pipe accelerates the melting of the ice attached to the inner wall of the ice maker. This achieves the effect of heat sterilization and accelerated melting of the ice attached to the inner wall of the ice maker through hot water circulation, which facilitates subsequent rapid de-icing and improves work efficiency.
[0013] 2. This utility model uses a starting cylinder to drive the scraper downwards, causing the scraper to contact the inner wall of the ice maker and scrape off the residual ice residue on the inner wall of the ice maker. This achieves the effect of automatically scraping off the residual ice residue on the inner wall of the ice maker, making it easy to quickly and effectively remove ice residue from the inner wall of the ice maker. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0015] Figure 2 This is a three-dimensional structural diagram of the rear cover groove and heat dissipation rear cover of this utility model.
[0016] Figure 3 This is a cross-sectional three-dimensional structural diagram of the water storage device and regulating valve of this utility model.
[0017] Figure 4 This is a three-dimensional structural diagram of the cylinder and scraper components of this utility model.
[0018] Figure 5This is a cross-sectional three-dimensional structural diagram of the connecting pipe and exhaust pipe components of this utility model.
[0019] In the attached diagram: 1: Ice maker, 2: Water inlet frame, 3: Handle, 4: Touch screen, 5: Sliding door, 6: Circular filter, 7: Rear cover groove, 8: Heat dissipation rear cover, 9: Water tank, 10: Regulating valve, 11: Circulation pipe, 12: Nozzle, 13: Compressor, 14: Support plate, 15: Cylinder, 16: Scraper, 17: Connecting pipe, 18: Exhaust pipe. Detailed Implementation
[0020] References to embodiments herein mean that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0021] A portable ice maker inner wall disinfection device, such as Figure 1 and Figure 2 As shown, the device includes an ice maker 1, a water inlet frame 2, a handle 3, a touch screen 4, a sliding door 5, a rear cover groove 7, a heat dissipation rear cover 8, and a sterilization component. The water inlet frame 2 is connected to the front left side of the ice maker 1. The handle 3 is rotatably connected to the upper middle part of the ice maker 1. The touch screen 4 is connected to the upper left side of the ice maker 1. The sliding door 5 is slidably connected to the upper part of the ice maker 1. The front and rear rear cover grooves 7 are connected to the left side of the ice maker 1. The heat dissipation rear cover 8 is slidably connected between the rear cover grooves 7. The sterilization component is installed inside the ice maker 1.
[0022] like Figure 3 and Figure 5 As shown, the disinfection assembly includes a water reservoir 9, a regulating valve 10, a circulation pipe 11, a nozzle 12, a compressor 13, a connecting pipe 17, and an exhaust pipe 18. The water reservoir 9 is connected to the lower left of the ice maker 1, and the regulating valve 10 is located on the right side of the water reservoir 9. The regulating valve 10 is connected to the touch screen 4 via a wire. The circulation pipe 11 is connected inside the ice maker 1 and is connected to the water reservoir 9. Twenty-four nozzles 12 are connected to the lower part of the circulation pipe 11, and each nozzle 12 is connected to the ice maker 1. The compressor 13 is connected to the upper left of the ice maker 1, and the connecting pipe 17 is connected to the compressor 13. The exhaust pipe 18 is connected to the lower left of the ice maker 1.
[0023] like Figure 2 and Figure 4As shown, it also includes a circular filter screen 6, a support plate 14, a cylinder 15, and a scraper 16. The circular filter screen 6 is threadedly connected to the rear of the exhaust pipe 18. The support plate 14 is placed on the upper right side of the ice maker 1. A handle is provided on the upper side of the middle of the support plate 14 for easy gripping. The cylinder 15 is connected to the lower side of the support plate 14. The scraper 16 is connected to the telescopic end of the cylinder 15.
[0024] When using this device, first hold the handle 3 to carry the ice maker 1 to the area of use. Then, the compressor 13 pressurizes the refrigerant into the connecting pipe 17, where the refrigerant in the connecting pipe 17 provides cooling. Heat is dissipated through the heat dissipation cover 8 on the rear cover slide 7. When it is necessary to disinfect the inner wall of the ice maker 1, pour hot water into the water inlet frame 2, allowing the hot water to enter the water reservoir 9. Then, control the touch screen 4 to open the regulating valve 10, allowing hot water to enter the bottom of the circulation pipe 11. The hot water is then atomized and sprayed out through the nozzle 12, disinfecting the inner wall of the ice maker 1 at high temperature. The rising mist is discharged through the exhaust pipe 18 and filtered through the circular filter screen 6 to remove impurities. Hot water continues to flow from the water reservoir... When the water is discharged from the 9th chamber, hot water will fill the circulation pipe 11. The hot water in the circulation pipe 11 will accelerate the melting of the ice adhering to the inner wall of the ice maker 1. This will allow for thermal sterilization while the hot water circulation will accelerate the melting of the ice adhering to the inner wall of the ice maker 1, facilitating subsequent rapid de-icing and improving work efficiency. Then, the sliding door 5 will be moved to the left to open, and the support plate 14 will be placed on the ice maker 1. Then, the cylinder 15 will be activated to drive the scraper 16 to move downward, so that the scraper 16 contacts the inner wall of the ice maker 1 and scrapes off the remaining ice residue on the inner wall of the ice maker 1. This will facilitate the automatic scraping off of the remaining ice residue on the inner wall of the ice maker 1, making it easy to quickly and effectively remove the ice residue on the inner wall of the ice maker 1.
[0025] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.
Claims
1. A portable ice maker inner wall disinfection device, characterized in that: The device includes an ice maker (1), a water inlet frame (2), a touch screen (4), a sliding door (5), a rear cover groove (7), a heat dissipation rear cover (8), and a disinfection component. The water inlet frame (2) is connected to the front left side of the ice maker (1), the touch screen (4) is connected to the upper left side of the ice maker (1), the sliding door (5) is connected to the upper part of the ice maker (1), the front and rear rear cover grooves (7) are connected to the left side of the ice maker (1), and the heat dissipation rear cover (8) is connected between the rear cover grooves (7). The ice maker (1) is equipped with a disinfection component that can perform thermal disinfection and accelerate the melting of ice attached to the inner wall of the ice maker (1) through hot water circulation.
2. A portable ice maker inner wall disinfection device according to claim 1, characterized in that: The disinfection components include a water tank (9), a regulating valve (10), a circulation pipe (11), a nozzle (12), a compressor (13), a connecting pipe (17), and an exhaust pipe (18). The water tank (9) is connected to the lower left of the ice maker (1). The regulating valve (10) is located on the right side of the water tank (9). The regulating valve (10) is connected to the touch screen (4) via a wire. The circulation pipe (11) is connected inside the ice maker (1). The circulation pipe (11) is connected to the water tank (9). Multiple nozzles (12) are connected to the lower part of the circulation pipe (11). All nozzles (12) are connected to the ice maker (1). The compressor (13) is connected to the upper left of the ice maker (1). The connecting pipe (17) is connected to the compressor (13). The exhaust pipe (18) is connected to the lower left of the ice maker (1).
3. A portable ice maker inner wall disinfection device according to claim 1, characterized in that: It also includes a handle (3), and the upper part of the ice maker (1) is connected to the handle (3) in a rotating manner.
4. A portable ice maker inner wall disinfection device according to claim 2, characterized in that: It also includes a circular filter screen (6), and the exhaust pipe (18) is threadedly connected to the rear of the circular filter screen (6).
5. A portable ice maker inner wall disinfection device according to claim 1, characterized in that: It also includes a support plate (14), a cylinder (15) and a scraper (16). The support plate (14) is placed on the upper right side of the ice maker (1). The cylinder (15) is connected to the lower side of the support plate (14). The scraper (16) is connected to the telescopic end of the cylinder (15).
6. A portable ice maker inner wall disinfection device according to claim 5, characterized in that: A handle is provided on the upper side of the middle part of the support plate (14).