Partitioned temperature-controllable heat preservation device

The design of a zoned temperature-controllable insulation device solves the problem of water droplet accumulation and inconvenience in cleaning of aquatic products in the insulation equipment, realizes the centralized collection of water and drying of cold air, and improves the convenience and energy efficiency of the equipment.

CN223371542UActive Publication Date: 2025-09-23GUANGDONG GUANZHAN NUTRITION & HEALTH TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422272907.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-09-23
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

During use of existing thermal insulation equipment, water droplets easily accumulate at the bottom of aquatic products to form ice cubes, making it difficult to take out. In addition, all the products need to be taken out for cleaning, which is a cumbersome operation.

Method used

A partitioned temperature-controllable insulation device was designed, which includes a fresh-keeping chamber and a refrigerated chamber. It uses an air pump and a drying mechanism to dry and filter the cold air through a drying cylinder and a filter screen. Combined with a guide plate and a rotor structure, it facilitates the centralized collection and cleaning of water.

Benefits of technology

It realizes the centralized collection and convenient cleaning of water bodies, saves energy, ensures the drying and filtration of cold air, realizes precise temperature control, and improves the convenience of equipment use and energy utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of heat preservation, in particular to a partition temperature-controllable heat preservation device which comprises a heat preservation box and a cabinet door, the upper side and the lower side of the heat preservation box are respectively provided with a fresh-keeping cavity and a refrigeration cavity, the cabinet door is rotationally connected to the lower portion of the front side of the heat preservation box, and a storage mechanism is arranged in the refrigeration cavity. An air extracting pump is installed on the side face of the heat preservation box, a drying mechanism is installed at the input end of the air extracting pump, and the other end of the air extracting pump is input into the fresh-keeping cavity above the air extracting pump; aquatic products are placed in the storage box and located on the surface of the net cover, water drops can drop into the water collecting box through the net cover, water can be conveniently collected in a centralized mode, the products can be conveniently taken out, the water collecting box can be directly slid forwards to be taken out during cleaning, the arranged protruding block plays a role in guiding, the water collecting box is convenient to install, and the water collecting box is convenient to clean. Meanwhile, the water collecting tank can be conveniently taken out in a sliding mode through the rotating wheel, and water can be conveniently taken out and treated in a centralized mode.
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Description

Technical Field

[0001] The utility model relates to the technical field of heat preservation, in particular to a zoned temperature-controllable heat preservation device. Background Art

[0002] During the production process of aquatic products, they need to be preserved in a timely manner to ensure their freshness. A typical refrigeration and heat preservation device is a container used to keep items refrigerated or warm. It usually consists of a heat preservation mechanism and a refrigeration system, such as a common refrigerator in daily life. However, existing heat preservation devices have the following problems in actual use:

[0003] First, after the aquatic products are processed, they usually contain water. If they are placed directly in the cold storage container, it is very easy for water droplets to accumulate at the bottom, forming ice cubes over time, making the products difficult to take out.

[0004] Secondly, when cleaning the cold preservation equipment, all products need to be taken out before the interior can be cleaned, which is very troublesome. Therefore, a partitioned temperature-controllable heat preservation device is proposed to address the above problems. Utility Model Content

[0005] The purpose of the present invention is to provide a partitioned temperature-controllable heat preservation device to solve the problems raised in the above background technology.

[0006] To achieve the above purpose, the present invention provides the following technical solutions:

[0007] As an optional solution of the partitioned temperature-controllable heat preservation device described in the utility model, wherein: a partitioned temperature-controllable heat preservation device includes an insulation box and a cabinet door,

[0008] The upper and lower sides of the thermal insulation box are provided with a fresh-keeping cavity and a refrigeration cavity.

[0009] The front lower part of the thermal insulation box is rotatably connected to a cabinet door, a storage mechanism is provided inside the refrigeration chamber, an air extraction pump is installed on the side of the thermal insulation box, and a drying mechanism is installed at the input end of the air extraction pump, and the other end of the air extraction pump is input into the fresh-keeping chamber above;

[0010] The storage mechanism comprises a storage box, a mesh frame and a mesh cover. The mesh frame is installed inside the storage box, the mesh cover is fixedly connected to the inner side of the mesh frame, and a water collecting box is arranged below the mesh frame.

[0011] As an optional solution of the partitioned temperature-controllable heat preservation device described in the present invention, wherein: a guide plate which is symmetrically arranged on the left and right is fixedly connected to the bottom of the mesh frame, and the guide plate is arranged at an angle.

[0012] As an optional solution of the partitioned temperature-controllable insulation device described in the utility model, the inner bottom layer of the storage box is fixedly connected with protruding blocks distributed on the left and right, and the top of the protruding block is rotatably connected with a longitudinally arranged wheel, and the top of the wheel is in contact with the water collecting tank.

[0013] During the production process of aquatic products, it is necessary to preserve the aquatic products in a timely manner to ensure their freshness. A general refrigeration and heat preservation device is a container used to keep items refrigerated or insulated. It is usually composed of an insulation mechanism and a refrigeration system, such as a common refrigerator in life. However, the existing heat preservation equipment has the following problems during actual use: first, after the aquatic products are processed, they generally contain water. If they are placed directly in the cold-keeping container, it is very easy for water droplets to accumulate at the bottom, forming ice cubes over a long period of time, making it difficult to take out the products; second, when cleaning the cold-keeping equipment, all products need to be taken out before the interior can be cleaned, which is very troublesome. During use, the aquatic products are placed in the storage box and are located on the surface of the mesh cover. Water droplets can drip through the mesh cover into the water collection box, making it convenient for the water to be collected and the products to be taken out. When cleaning, the water collection box can be taken out by directly sliding it forward. The protruding blocks provided serve as a guide, facilitating the installation of the water collection box. At the same time, the setting of the rotary wheel facilitates the sliding removal of the water collection box, which is very convenient for centralized water removal and processing.

[0014] As an optional solution of the partitioned temperature-controllable insulation device described in the utility model, the drying mechanism includes a drying tube, one side of the drying tube is connected to the input end of the vacuum pump, two groups of drying cylinders are installed inside the drying tube, and ventilation holes are opened inside the drying cylinders, and the ventilation holes inside the two groups of drying cylinders are staggered.

[0015] As an optional solution of the partitioned temperature-controllable insulation device described in the utility model, a filter screen is installed at the opening of the drying tube, and a rotating plate rotatably connected to the drying tube is provided on one side of the filter screen, and the other end surface of the rotating plate is fixedly connected to a spring, and the other end of the spring is fixedly connected to the drying tube.

[0016] When the fresh-keeping cavity above is started, it is started by the vacuum pump, which drives the cold air inside the refrigeration cavity into the fresh-keeping cavity. At this time, full utilization of resources can be achieved and energy can be saved. When the cold air inside the refrigeration cavity passes through the vents inside the drying cylinder, it can dry the cold air to ensure that the cold air enters the fresh-keeping cavity for direct use. When the vacuum pump is started, its rotating plate rotates and compresses the spring. At this time, the air can flow smoothly, and the filter net set up serves the purpose of filtering. When not in use, the rotating plate is reset to prevent the cold air from flowing privately, thereby achieving the purpose of precise temperature control.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] When the utility model is in use, the aquatic products are placed inside the storage box and located on the surface of the mesh cover, and water droplets can drip into the water collection box through the mesh cover, which is convenient for centralized collection of water bodies and convenient for taking out products. When cleaning, the water collection box can be taken out by directly sliding it forward. The protruding blocks provided serve as a guide, which is convenient for installation of the water collection box. At the same time, the setting of the rotating wheel facilitates the sliding removal of the water collection box, which is very convenient for centralized removal and treatment of water bodies.

[0019] When the fresh-keeping chamber above is started, it is started by the vacuum pump, which drives the cold air inside the refrigeration chamber into the fresh-keeping chamber. At this time, resources can be fully utilized and energy can be saved. When the cold air inside the refrigeration chamber passes through the vents inside the drying cylinder, it can dry the cold air, ensuring that the cold air enters the fresh-keeping chamber for direct use;

[0020] When the vacuum pump is started, its rotating plate rotates and compresses the spring. At this time, the air can flow smoothly, and the filter net is set to filter. When not in use, the rotating plate is reset to prevent cold air from flowing privately, thereby achieving the purpose of precise temperature control. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0022] Figure 2 This is a schematic diagram of the structure of the storage mechanism of the utility model;

[0023] Figure 3 It is a structural diagram of the drying mechanism of the utility model.

[0024] In the figure: 1. Insulation box; 2. Cabinet door; 3. Storage mechanism; 301. Storage box; 302. Mesh frame; 303. Mesh cover; 304. Guide plate; 305. Water collecting box; 306. Protruding block; 307. Rotating wheel; 4. Vacuum pump; 5. Drying mechanism; 501. Drying tube; 502. Filter; 504. Rotating plate; 505. Spring; 506. Drying cylinder; 507. Vent. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] Example 1

[0027] See also Figure 1 and Figure 2 , the utility model provides a technical solution:

[0028] A zoned temperature-controllable heat preservation device comprises a heat preservation box 1 and a cabinet door 2.

[0029] The above-mentioned insulation box 1 is provided with a fresh-keeping cavity and a refrigeration cavity on both the upper and lower sides.

[0030] The front lower part of the thermal insulation box 1 is rotatably connected to a cabinet door 2, a storage mechanism 3 is provided inside the refrigeration chamber, an air pump 4 is installed on the side of the thermal insulation box 1, and a drying mechanism 5 is installed at the input end of the air pump 4, and the other end of the air pump 4 is input into the fresh-keeping chamber above;

[0031] The storage mechanism 3 includes a storage box 301 , a mesh frame 302 and a mesh cover 303 . The mesh frame 302 is installed inside the storage box 301 . The mesh cover 303 is fixedly connected to the inner side of the mesh frame 302 . A water collecting box 305 is provided below the mesh frame 302 .

[0032] A guide plate 304 symmetrically arranged on both sides is fixedly connected to the bottom of the screen frame 302 , and the guide plate 304 is inclined.

[0033] The bottom layer of the storage box 301 is fixedly connected to protruding blocks 306 distributed left and right, and the top of the protruding blocks 306 is rotatably connected to a longitudinally arranged rotating wheel 307, and the top of the rotating wheel 307 is in contact with the water collecting box 305.

[0034] During the production process of aquatic products, they need to be preserved in time to ensure their freshness. A general refrigeration and heat preservation device is a container used to keep items refrigerated or warm. It is usually composed of a heat preservation mechanism and a refrigeration system, such as a common refrigerator in life. However, the existing heat preservation equipment has the following problems during actual use: first, after the aquatic products are processed, they usually contain water. If they are placed directly in the cold preservation container, it is very easy for water droplets to accumulate at the bottom, forming ice cubes over a long period of time, making it difficult to take the products out; second, when cleaning the cold preservation equipment, it is necessary to All products must be taken out before the interior can be cleaned, which is very troublesome. When in use, the aquatic products are placed inside the storage box 301 and are located on the surface of the mesh cover 303, and water droplets can drip through the mesh cover 303 into the water collection box 305, which is convenient for centralized collection of water and convenient for taking out products. When cleaning, the water collection box 305 can be taken out by directly sliding it forward. The protruding block 306 provided serves as a guide, which facilitates the installation of the water collection box 305. At the same time, the setting of the runner 307 facilitates the sliding removal of the water collection box 305, which is very convenient for centralized removal and processing of water.

[0035] In this embodiment, the setting of the guide plate 304 facilitates the water droplets to drip smoothly into the water collecting box 305, avoiding the water body from entering the side gap of the water collecting box 305, and the setting of the mesh frame 302 serves the purpose of connecting the mesh cover 303. The area of ​​the mesh cover 303 is smaller than the opening of the water collecting box 305, ensuring that the water body is smoothly located inside the mesh cover 303. The set air pump 4 facilitates the extraction of cold air from the inside of the refrigeration chamber to the fresh-keeping chamber, realizing partition control, achieving full utilization of resources, and saving energy at the same time.

[0036] Example 2

[0037] This embodiment is an improvement on embodiment 1. Figure 3 Specifically, the drying mechanism 5 includes a drying tube 501, one side of which is connected to the input end of the vacuum pump 4, and two groups of drying cylinders 506 are installed inside the drying tube 501, and the interior of the drying cylinders 506 is provided with air vents 507, and the air vents 507 inside the two groups of drying cylinders 506 are staggered.

[0038] A filter screen 502 is installed at the opening of the drying tube 501, and a rotating plate 504 rotatably connected to the drying tube 501 is provided on one side of the filter screen 502. The other end surface of the rotating plate 504 is fixedly connected to a spring 505, and the other end of the spring 505 is fixedly connected to the drying tube 501.

[0039] When the fresh-keeping chamber above is started, it is started by the air extraction pump 4, which drives the cold air inside the refrigeration chamber to enter the fresh-keeping chamber, so that resources can be fully utilized and energy can be saved. When the cold air inside the refrigeration chamber passes through the vent 507 inside the drying cylinder 506, it can dry the cold air, ensuring that the cold air enters the fresh-keeping chamber for direct use. When the air extraction pump 4 is started, its rotating plate 504 rotates and compresses the spring 505, so that the air can flow smoothly, and the filter 502 provided plays a filtering purpose. When not in use, the rotating plate 504 is reset to prevent the cold air from flowing privately, thereby achieving the purpose of precise temperature control.

[0040] In this embodiment, temperature sensors are provided inside the safety chamber and the refrigeration chamber, which can ensure precise temperature control. When cold air is delivered to the fresh-keeping chamber, when the temperature is appropriate, the automatic vacuum pump 4 stops starting, and the drying cylinder 506 is provided with drying materials to facilitate drying the delivered air. The multiple air vents 507 can ensure smooth air circulation. At the same time, the staggered setting can ensure that the air is fully dried and the quality of the delivered air is guaranteed.

[0041] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0042] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A zoned temperature-controllable heat preservation device, characterized in that: It comprises an insulation box (1) and a cabinet door (2), The upper and lower sides of the thermal insulation box (1) are both provided with a fresh-keeping cavity and a refrigeration cavity. The front lower side of the heat preservation box (1) is rotatably connected to a cabinet door (2), the interior of the refrigeration chamber is provided with a storage mechanism (3), the side of the heat preservation box (1) is provided with an air extraction pump (4), and the input end of the air extraction pump (4) is provided with a drying mechanism (5), and the other end of the air extraction pump (4) is input into the interior of the fresh-keeping chamber above; The storage mechanism (3) comprises a storage box (301), a mesh frame (302) and a mesh cover (303); the mesh frame (302) is installed inside the storage box (301); the mesh cover (303) is fixedly connected to the inner side of the mesh frame (302); and a water collecting box (305) is provided below the mesh frame (302).

2. The zoned temperature controllable heat preservation device according to claim 1, characterized in that: A guide plate (304) is fixedly connected to the bottom of the screen frame (302) and is arranged in a bilaterally symmetrical manner. The guide plate (304) is arranged in an inclined manner.

3. The zoned temperature controllable heat preservation device according to claim 1, characterized in that: The bottom layer of the storage box (301) is fixedly connected to protruding blocks (306) distributed left and right, and the top of the protruding blocks (306) is rotatably connected to a longitudinally arranged rotating wheel (307), and the top of the rotating wheel (307) is in contact with the water collecting box (305).

4. The zoned temperature controllable insulation device according to claim 1, characterized in that: The drying mechanism (5) comprises a drying tube (501), one side of which is connected to the input end of the vacuum pump (4), two groups of drying cylinders (506) are installed inside the drying tube (501), and each drying cylinder (506) is provided with a vent hole (507), and the vent holes (507) inside the two groups of drying cylinders (506) are staggered.

5. The zoned temperature controllable heat preservation device according to claim 4, characterized in that: A filter screen (502) is installed at the opening of the drying tube (501), and a rotating plate (504) rotatably connected to the drying tube (501) is provided on one side of the filter screen (502). The other end surface of the rotating plate (504) is fixedly connected to a spring (505), and the other end of the spring (505) is fixedly connected to the drying tube (501).