Fresh-keeping refrigeration cabinet with partitioned independent purification function
Through independent zoning purification design and information verification technology, the cross-contamination of the fresh-keeping refrigerator and inconvenient material management problems are solved, independent storage and safe removal of refrigerated items are realized, and the efficiency of use is improved.
Patent Information
- Application Number
- CN202421906637.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The refrigeration spaces of existing fresh-keeping refrigerators are interconnected to cause cross-contamination of smells, and the location of items is inconvenient to manage, affecting the independent storage function.
The partition independent purification design is adopted, and the information entry and reading verification of refrigerated items is achieved by scanning code interactive screen and scanning code gun. Combined with components such as sealing cover, evaporator and electromagnetic catapult, an independent refrigeration space is formed to prevent cross-contamination, and the items are removed by scanning code verification.
It realizes independent storage and safe removal of refrigerated items, avoids cross-contamination of smells, and improves item management efficiency and convenience of use.
Smart Images

Figure CN223121761U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fresh-keeping refrigerators, and particularly relates to a fresh-keeping refrigerator with independent purification in different zones. Background Art
[0002] Fresh-keeping refrigerators extend the shelf life of food and maintain the nutritional components and taste of food by controlling environmental factors such as temperature and humidity.
[0003] However, the existing fresh-keeping refrigerators generally have the problem that the refrigerated spaces are interconnected, which leads to cross-tainting and cross-contamination of odorous items in the fresh-keeping chamber. Specifically, since the internal space of the fresh-keeping refrigerator is open, different types of food will release their respective odors during storage. These odors circulate inside the refrigerator and are easily mixed with each other, thus affecting the original flavor of the food. In addition to the problem of cross-tainting and cross-contamination, there are also inconveniences in the management of the placement and retrieval positions of fresh-keeping items in the existing fresh-keeping refrigerators, which is not conducive to realizing the function of independent storage. Due to the limited internal space of the refrigerator and the lack of a scientific zoning design, users often need to spend more time and effort looking for the target items when storing and retrieving food. This not only reduces the usage efficiency but also may cause temperature fluctuations due to frequent opening and closing of the refrigerator door, affecting the fresh-keeping effect. Summary of the Utility Model
[0004] In order to overcome the problems of the existing fresh-keeping refrigerators, due to the interconnection of their refrigerated spaces, resulting in cross-tainting and cross-contamination of odorous items in the fresh-keeping chamber, and the inconvenience in the management of the placement and retrieval positions of fresh-keeping items, which is not conducive to realizing the function of independent storage.
[0005] The technical solution of the utility model is: a fresh-keeping refrigerator with independent purification in different zones, including a cabinet, a refrigerated preservation component, and also including an interaction component and a refrigeration mechanism; an interaction component is arranged inside the cabinet; a refrigeration mechanism is arranged below the interaction component; refrigerated preservation components are arranged on both sides of the interaction component; the refrigerated preservation component includes a track frame, a preservation drawer, a sealing cover, an electromagnetic ejector, an energy storage capacitor, a linkage slide rail, and an evaporator.
[0006] Preferably, the refrigerated preservation component is systematically managed through a code-scanning interaction screen. The code-scanning interaction screen generates the position of refrigerated items and other relevant information, and the code-scanning gun is used to scan the bar code or two-dimensional code information on the refrigerated packaging bag, thereby realizing the information input and reading verification functions of refrigerated items and realizing the function of independent chamber refrigerated management, solving the problems of the existing fresh-keeping refrigerators, due to the interconnection of their refrigerated spaces, resulting in cross-tainting and cross-contamination of odorous items in the fresh-keeping chamber, and the inconvenience in the management of the placement and retrieval positions of fresh-keeping items, which is not conducive to realizing the function of independent storage.
[0007] Preferably, the interaction component includes a code-scanning interactive screen and a code-scanning gun; a code-scanning gun is arranged on one side of the code-scanning interactive screen.
[0008] Preferably, a track frame is arranged on the inner wall of the cabinet, and the track frame is fixedly connected to the cabinet.
[0009] Preferably, a linkage slide rail is arranged inside the track frame, and the linkage slide rail is slidably connected to the track frame in an orbital manner. The linkage slide rail is used to connect and drive the insurance drawer to slide along its track.
[0010] Preferably, an insurance drawer is arranged inside the linkage slide rail, and the insurance drawer is fixedly connected to the sliding inner side plate of the linkage slide rail. The insurance drawer is used to store refrigerated products.
[0011] Preferably, a sealing cover is arranged at the upper end of the insurance drawer, and the sealing cover is rotatably connected to the insurance drawer; an evaporator is arranged at the rear end of the sealing cover, and the evaporator is fixedly connected to the insurance drawer. Moreover, the evaporator is connected to the refrigerant circulation mechanism of the refrigeration mechanism through a low-temperature-resistant refrigerant connecting pipe. An independent evaporator is used to wrap the internal environment of the insurance drawer to form an independent refrigerated space, thereby preventing the problem of cross-contamination between refrigerated items. A low-temperature-resistant refrigerant hose is used to realize the function of refrigerant transmission connection between the evaporator and the refrigeration mechanism of the refrigeration machine.
[0012] Preferably, an electromagnetic ejector is arranged behind the insurance drawer, and the electromagnetic ejector is fixedly connected to the track frame; a storage capacitor is arranged on one side of the electromagnetic ejector, and the storage capacitor is connected to the electromagnetic ejector for power supply. After the interaction component completes the information interaction and verification of the refrigerated items, the storage capacitor provides an instantaneous current for the electromagnetic ejector, so that the movable push rod inside the electromagnetic ejector is subjected to electromagnetic force and pops out externally to push the insurance drawer to slide away from the cabinet along the linkage slide rail, thereby realizing the functions of independent storage of refrigerated items and safe and independent information verification and retrieval.
[0013] Advantages of the present utility model:
[0014] 1. For existing fresh-keeping refrigerators, because their refrigerated spaces are interconnected, it causes the problem that items with odors will have cross-taste contamination in the fresh-keeping chamber, and it is inconvenient to manage the placement positions of fresh-keeping items, which is not conducive to realizing the function of independent warehousing; through the code-scanning interactive screen, the refrigeration insurance component is systematically managed. The code-scanning interactive screen generates the positions and other relevant information of the refrigerated items, and the code-scanning gun is used to scan the barcodes or QR codes on the refrigerated packaging bags, thereby realizing the functions of information input and reading verification of the refrigerated items and realizing the function of independent chamber refrigeration management; it solves the problems of existing fresh-keeping refrigerators, because their refrigerated spaces are interconnected, resulting in cross-taste contamination of items with odors in the fresh-keeping chamber, and it is inconvenient to manage the placement positions of fresh-keeping items, which is not conducive to realizing the function of independent warehousing.
[0015] 2. With the setting of the refrigerated storage component, after placing the refrigerated items inside the storage drawer of the refrigerated storage component, press down on the notch above the sealing cover with your hand to seal the storage drawer. Then, push the storage drawer into the inside of the track frame. At this time, the storage drawer will push the ejection column of the electromagnetic ejector back into place. The storage drawer is completely stored inside the cabinet, and an independent evaporator is used to wrap the internal environment of the storage drawer to form an independent refrigerated space, thereby preventing cross-contamination problems between refrigerated items. A low-temperature resistant refrigerant hose is used to achieve the refrigerant transmission connection function between the evaporator and the refrigeration mechanism of the refrigerator; when the operator needs to take out the refrigerated items, after the interaction component completes the information interaction verification of the refrigerated items, the energy storage capacitor provides instantaneous current for the electromagnetic ejector, so that the movable push rod inside the electromagnetic ejector is subjected to electromagnetic force and pops out externally, pushing the storage drawer to slide along the linkage slide rail and leave the cabinet, thus realizing the functions of independent storage of refrigerated items and safe and independent information verification and extraction. Description of the Drawings
[0016] Figure 1 Shown is a schematic diagram of the overall three-dimensional structure of a partition-independent purification fresh-keeping refrigerator of the present utility model;
[0017] Figure 2 Shown is a schematic diagram of the overall side view three-dimensional structure of the refrigerated storage component of a partition-independent purification fresh-keeping refrigerator of the present utility model when it is unfolded;
[0018] Figure 3 Shown is a schematic diagram of the three-dimensional structure of the refrigerated storage component of a partition-independent purification fresh-keeping refrigerator of the present utility model;
[0019] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the electromagnetic ejector and the energy storage capacitor of a partition-independent purification fresh-keeping refrigerator of the present utility model.
[0020] The reference signs in the drawings are: 1. Cabinet; 2. Interaction component; 3. Refrigeration mechanism; 4. Refrigerated storage component; 201. Scanning code interaction screen; 202. Scanning code gun; 401. Track frame; 402. Storage drawer; 403. Sealing cover; 404. Electromagnetic ejector; 405. Energy storage capacitor; 406. Linkage slide rail; 407. Evaporator. Detailed Description of the Preferred Embodiments
[0021] The present utility model will be further described below with reference to the drawings and embodiments.
[0022] Please refer to Figures 1-4, the present utility model provides an embodiment: a fresh-keeping refrigerator with independent purification in zones, which includes a cabinet 1 and a refrigerated fresh-keeping component 4, and also includes an interaction component 2 and a refrigeration mechanism 3; an interaction component 2 is arranged inside the cabinet 1; a refrigeration mechanism 3 is arranged below the interaction component 2; refrigerated fresh-keeping components 4 are arranged on both sides of the interaction component 2; the refrigerated fresh-keeping component 4 includes an orbital frame 401, a fresh-keeping drawer 402, a sealing cover 403, an electromagnetic ejector 404, an energy storage capacitor 405, a linkage slide rail 406, and an evaporator 407.
[0023] Please refer to Figures 1-4 , in this embodiment, the interaction component 2 includes a code-scanning interaction screen 201 and a code-scanning gun 202; a code-scanning gun 202 is arranged on one side of the code-scanning interaction screen 201, an orbital frame 401 is arranged on the inner wall of the cabinet 1, and the orbital frame 401 is fixedly connected to the cabinet 1; a linkage slide rail 406 is arranged inside the orbital frame 401, and the linkage slide rail 406 is slidably connected to the orbital frame 401 through a track; a fresh-keeping drawer 402 is arranged inside the linkage slide rail 406, and the fresh-keeping drawer 402 is fixedly connected to the sliding inner side plate of the linkage slide rail 406.
[0024] Please refer to Figures 1-4 , in this embodiment, a sealing cover 403 is arranged at the upper end of the fresh-keeping drawer 402, and the sealing cover 403 is rotatably connected to the fresh-keeping drawer 402; an evaporator 407 is arranged at the rear end of the sealing cover 403, and the evaporator 407 is fixedly connected to the fresh-keeping drawer 402, and the evaporator 407 is connected to the refrigerant circulation mechanism of the refrigeration mechanism 3 through a low-temperature-resistant refrigerant connecting pipe; an electromagnetic ejector 404 is arranged behind the fresh-keeping drawer 402, and the electromagnetic ejector 404 is fixedly connected to the orbital frame 401; an energy storage capacitor 405 is arranged on one side of the electromagnetic ejector 404, and the energy storage capacitor 405 is electrically connected to the electromagnetic ejector 404 for power supply.
[0025] When working, after placing the refrigerated items inside the storage drawer 402 of the refrigerated storage component 4, press down on the notch above the sealing cover 403 with your hand to seal the storage drawer 402. Then, push the storage drawer 402 into the inside of the track frame 401. At this time, the storage drawer 402 will push the ejection column of the electromagnetic ejector 404 to reset. The storage drawer 402 is completely stored inside the cabinet 1, and the independent evaporator 407 is used to wrap the internal environment of the storage drawer 402 to form an independent refrigerated space, thereby preventing cross-contamination problems between refrigerated items. The low-temperature resistant refrigerant hose is used to realize the refrigerant transmission connection function between the evaporator 407 and the refrigerator mechanism 3 of the refrigerator; when the operator needs to take out the refrigerated items, after the interaction component 2 completes the information interaction verification of the refrigerated items, the energy storage capacitor 405 provides an instantaneous current for the electromagnetic ejector 404, so that the movable push rod inside the electromagnetic ejector 404 is ejected outward under the action of electromagnetic force and pushes the storage drawer 402 to slide along the linkage slide rail 406 away from the cabinet 1, thereby realizing the functions of independent storage of refrigerated items and safe and independent information verification and extraction;
[0026] Next, the refrigerated storage component 4 is systematically managed through the code-scanning interaction screen 201. The code-scanning interaction screen 201 generates the position of the refrigerated items and other relevant information, and the code-scanning gun 202 is used to scan the bar code or two-dimensional code information on the refrigerated packaging bag, thereby realizing the functions of information entry and reading verification of the refrigerated items and realizing the independent chamber refrigerated management function; it solves the problems of the existing fresh-keeping refrigerator, because its refrigerated spaces are interconnected, resulting in the smell of items in the fresh-keeping chamber being cross-contaminated by odor, and the inconvenient management of the placement and retrieval positions of fresh-keeping items is not conducive to realizing the independent storage function.
[0027] Through the above steps, the refrigerated storage component 4 is systematically managed through the code-scanning interaction screen 201. The code-scanning interaction screen 201 generates the position of the refrigerated items and other relevant information, and the code-scanning gun 202 is used to scan the bar code or two-dimensional code information on the refrigerated packaging bag, thereby realizing the functions of information entry and reading verification of the refrigerated items and realizing the independent chamber refrigerated management function, avoiding the problems of the existing fresh-keeping refrigerator, because its refrigerated spaces are interconnected, resulting in the smell of items in the fresh-keeping chamber being cross-contaminated by odor, and the inconvenient management of the placement and retrieval positions of fresh-keeping items is not conducive to realizing the independent storage function.
[0028] The above has described the embodiments of the present invention in detail with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.
Claims
1. A fresh-keeping refrigerating cabinet with independent purification in partitions, comprising a cabinet (1) and a refrigerating and fresh-keeping component (4), characterized in that: It also includes an interaction component (2) and a refrigerating machine mechanism (3); an interaction component (2) is arranged inside the cabinet (1); a refrigerating machine mechanism (3) is arranged below the interaction component (2); refrigerating and insurance components (4) are arranged on both sides of the interaction component (2); the refrigerating and insurance component (4) includes an orbital frame (401), an insurance drawer (402), a sealing cover (403), an electromagnetic ejector (404), an energy storage capacitor (405), a linkage slide rail (406), and an evaporator (407).
2. The fresh-keeping refrigerator with partition-independent purification according to claim 1, characterized in that: The interaction component (2) includes a code scanning interaction screen (201) and a code scanning gun (202); a code scanning gun (202) is arranged on one side of the code scanning interaction screen (201).
3. The fresh-keeping refrigerator with partition-independent purification according to claim 1, wherein: An orbital frame (401) is arranged on the inner wall of the cabinet (1), and the orbital frame (401) is fixedly connected to the cabinet (1).
4. A fresh-keeping refrigerator with independent purification in partitions according to claim 3, characterized in that: A linkage slide rail (406) is arranged inside the orbital frame (401), and the linkage slide rail (406) is slidably connected to the orbital frame (401) through a track.
5. A fresh-keeping refrigerating cabinet with independent purification in zones according to claim 4, characterized in that: An insurance drawer (402) is arranged inside the linkage slide rail (406), and the insurance drawer (402) is fixedly connected to the sliding inner side plate of the linkage slide rail (406).
6. The fresh-keeping refrigerating cabinet with partition-independent purification according to claim 5, characterized in that: A sealing cover (403) is arranged at the upper end of the insurance drawer (402), and the sealing cover (403) is rotatably connected to the insurance drawer (402); an evaporator (407) is arranged at the rear end of the sealing cover (403), and the evaporator (407) is fixedly connected to the insurance drawer (402), and the evaporator (407) is connected to the refrigerant circulation mechanism of the refrigerating machine mechanism (3) through a low-temperature-resistant refrigerant connecting pipe.
7. The fresh-keeping refrigerating cabinet with partition-independent purification according to claim 5, characterized in that: An electromagnetic ejector (404) is arranged behind the insurance drawer (402), and the electromagnetic ejector (404) is fixedly connected to the orbital frame (401); an energy storage capacitor (405) is arranged on one side of the electromagnetic ejector (404), and the energy storage capacitor (405) is electrically connected to the electromagnetic ejector (404) for power supply.