High-body double-door push-in storage cabinet
By designing adjustable frame and support components, the problem of low cleaning efficiency of the internal grooves and shelves of the storage freezer was solved, achieving efficient cleaning and classified storage of items, and improving the efficiency and hygiene of the freezer.
Patent Information
- Application Number
- CN202423246800.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-27
AI Technical Summary
The existing storage freezers have low cleaning efficiency and are difficult to clean, which affects the hygiene and efficiency of the freezers.
Design a tall, double-door push-in storage cabinet with adjustable frame and support components. The support plate can be flexibly adjusted in height for easy categorization and storage of items. The support plate can be removed individually for cleaning by pulling the handle. The design of guide grooves and support wheels facilitates the movement and cleaning of the components.
It improves the cleaning efficiency of the freezer interior, avoids hygiene hazards caused by the difficulty in thoroughly cleaning fixed shelves, enhances space utilization and item management, facilitates classified storage, and improves the overall cleaning effect.
Smart Images

Figure CN223855944U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of storage cabinets, in particular to a high-body double-door push-in type storage cabinet. BACKGROUND
[0002] The storage refrigerator provides a suitable low-temperature environment for food, inhibits the growth of microorganisms and the activity of enzymes, prolongs the shelf life of food, such as fresh meat, vegetables, fruits and quick-frozen food, and effectively prolongs the storage time of food, centrally stores various foods and articles, keeps the space neat and orderly, avoids cross contamination, facilitates food management, utilizes the multi-layer shelf and drawer design, fully utilizes the vertical space, and increases the storage capacity.
[0003] When food is stored in the storage refrigerator, the cleanliness of the refrigerator needs to be ensured, some refrigerators need to be cleaned after use, the shelves in the refrigerator need to be removed one by one, and each groove in the refrigerator needs to be wiped and cleaned, then the storage plate installed in the groove needs to be cleaned, and after cleaning, the shelves are installed one by one, the cleaning efficiency is low, and the cleaning difficulty of the grooves in the refrigerator is high, therefore, the application provides a high-body double-door push-in type storage cabinet. CONTENT OF THE INVENTION
[0004] In order to improve the cleaning efficiency of the grooves in the refrigerator and the storage plate installed in the grooves, the application provides a high-body double-door push-in type storage cabinet.
[0005] The high-body double-door push-in type storage cabinet provided by the application adopts the following technical scheme:
[0006] A tall, double-door push-in storage cabinet includes a refrigerator body. Inside the refrigerator body is a frame assembly, which includes a rectangular frame installed inside the refrigerator body. Symmetrical grooves are formed on the inner side of the rectangular frame, within which a support assembly slides. A rectangular slot is symmetrically formed on one side of the top of the rectangular frame. A limit rod extends through the rectangular frame near the slot. A limit block A is fixedly connected to one end of the limit rod near the slot, and a positioning block is fixedly connected to the other end of the limit rod away from the limit block A. A compression spring A is fitted on the outer surface of the limit rod, with its two ends respectively abutting against the positioning block and the surface of the rectangular frame. Limit holes are symmetrically formed at the ends of the rectangular frame. The support assembly includes components that slide within the grooves. The support plate has a symmetrically fixed limiting block B on one side. Two limiting blocks B have movably inserted limiting pins that are inserted into limiting holes. The outer peripheral surfaces of the two limiting pins have limiting rings. The outer peripheral surfaces of the two limiting pins are fitted with compression springs B, whose two ends respectively abut against the surfaces of the limiting blocks B and the limiting rings. The two limiting pins have movably inserted limiting blocks C that are fixedly connected to the support plate. The ends of the two limiting pins near the limiting block C abut against a pressing plate. The ends of the two pressing plates have magnetic blocks that are attracted to the support plate. The side of the pressing plate away from the magnetic blocks has a guide pin. The guide pin has a movably inserted limiting block D that is fixedly connected to the support plate. The end of the guide pin near the limiting block D has a handle.
[0007] By adopting the above technical solution, through the cooperation of frame components and support components, users can flexibly adjust the internal space layout of the freezer according to actual needs. They can also adjust the distance between different support components according to the height of different items, thereby improving space utilization. This adjustable structure makes it convenient for users to classify and store different types of items. At the same time, different foods can be placed on support plates of different heights to avoid squeezing and cross-contamination between different items, making it easier to manage and retrieve items.
[0008] Preferably, the bottom of the freezer body is symmetrically provided with guide grooves, a sloping plate is fixedly connected to one side of the bottom of the freezer body, and two door panels are hinged to the front of the freezer body.
[0009] By adopting the above technical solutions, the opening of the guide groove and the installation of the inclined plate can play an auxiliary role, making it easier to move the frame components into the interior of the freezer body.
[0010] Preferably, the frame assembly also includes a bottom plate whose bottom surface is attached to the bottom surface inside the main body of the freezer. Support wheels that slide in guide grooves are symmetrically fixedly installed on both sides of the bottom of the bottom plate, and vertical plates that are fixedly connected to the rectangular frame are symmetrically fixedly connected to the top of the bottom plate.
[0011] By adopting the above technical solution, the installation of support wheels allows the frame assembly to be moved as a whole, thus facilitating subsequent operations.
[0012] Preferably, the two sides of the bottom of the rectangular frame are symmetrically fixed with support blocks A close to the bottom of the rectangular groove.
[0013] By adopting the above technical scheme, the installation of the support block A can improve the support strength of the support plate.
[0014] Preferably, the top of the upper support plate is provided with an anti-skid tooth groove, and the bottom of the support plate is symmetrically fixedly connected with a support block B whose bottom surface is in sliding connection with the top of the support block A.
[0015] By adopting the above technical scheme, the installation of the support block B can play a role in auxiliary positioning and improving the support strength of the support plate.
[0016] Preferably, a hand holding groove is formed in the middle of one side of the top of the support plate, and a limiting groove is formed in the bottom of one side of the bottom of the support plate.
[0017] By adopting the above technical scheme, the hand holding groove is formed.
[0018] Preferably, the end of the positioning block is arc-shaped, and the end of the positioning block abuts against the surfaces on both sides of the inner side of the refrigerator main body.
[0019] By adopting the above technical scheme, the abutment of the positioning block against the surfaces on both sides of the inner side of the refrigerator main body can play a role in fixing the frame assembly.
[0020] Preferably, the extrusion plate and the guide column are made of metal material which can generate an attractive force with the magnetic block.
[0021] By adopting the above technical scheme, the attraction between the extrusion plate and the magnetic block can play a role in fixing.
[0022] In summary, the present application includes at least one of the following beneficial technical effects:
[0023] 1. The support plate can be removed from the rectangular frame through a series of operations such as pulling the handle, solving the problem of inconvenient cleaning of the internal shelf of the refrigerator, so that the shelf can be removed and cleaned separately, the operation is simple, the cleaning efficiency is improved, and the sanitary hidden danger caused by difficult complete cleaning due to fixed shelf can be effectively avoided.
[0024] 2. The cooperation of the support wheel and the guide groove can facilitate the removal of the frame assembly and the support assembly as a whole from the refrigerator main body, and after removing these components, the inner surface of the refrigerator main body becomes flat and is no longer hindered by the component structure, so that the cleaning personnel can more comprehensively and conveniently clean the refrigerator interior, effectively overcoming the problem of difficult cleaning of the refrigerator interior and the position of the shelf, and improving the overall cleaning efficiency of the refrigerator interior. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is an overall structural schematic diagram of the present application file.
[0026] Figure 2 This is a schematic diagram of the overall unfolded structure of the application document;
[0027] Figure 3 This is a structural diagram of the framework and supporting components of this application.
[0028] Figure 4 This is a schematic diagram of the framework component structure of this application document;
[0029] Figure 5 This is a schematic diagram of the supporting component structure for this application.
[0030] Figure 6 This is a top view of the supporting components of this application.
[0031] Figure 7 This is a partial structural diagram of the framework components of this application document;
[0032] Figure 8 This is a partial structural diagram of the supporting components of this application.
[0033] Attached reference numerals: 1. Freezer body; 101. Guide groove; 2. Door panel; 3. Sloping plate;
[0034] 4. Frame components; 401. Base plate; 402. Support wheel; 403. Vertical plate; 404. Rectangular frame; 4040. Rectangular groove; 4041. Limiting rod; 4042. Limiting block A; 4043. Compression spring A; 4044. Positioning block; 4045. Slide groove; 405. Supporting block A; 406. Limiting hole;
[0035] 5. Support components; 501. Support plate; 5010. Hand grip groove; 5011. Limiting groove; 502. Support block B; 503. Anti-slip tooth groove; 504. Limiting block B;
[0036] 505. Limiting post; 506. Limiting ring; 507. Compression spring B; 508. Limiting block C; 509. Extrusion plate; 510. Magnetic block; 511. Guide post; 512. Limiting block D; 513. Handle. Detailed Implementation
[0037] The following is in conjunction with the appendix Figures 1-8 This application will be described in further detail.
[0038] The device's "up, down, left, right" perspectives are... Figure 1 The orientation of the attached diagram is the reference.
[0039] This application discloses a tall, double-door push-in storage cabinet.
[0040] ReferenceFigures 1-5 As shown, a high-body double-door push-in type storage cabinet comprises a refrigerator body 1, the inside of the refrigerator body 1 is provided with a frame assembly 4, the frame assembly 4 comprises a plurality of rectangular frames 404 installed inside the refrigerator body 1, the rectangular frames 404 are in the shape of a concave letter as a whole, the inner side of the rectangular frames 404 is symmetrically provided with a sliding groove 4045 flush with the side surface of the rectangular frames 404, a supporting assembly 5 is slidably arranged in the sliding groove 4045, the top two corners of the rectangular frames 404 are symmetrically provided with a rectangular slot 4040, the rectangular slot 4040 is formed by two grooves with different lengths in communication, a limiting rod 4041 movably penetrates the rectangular slot 4040, one end of the limiting rod 4041 close to the rectangular slot 4040 is fixedly connected with a limiting block A 4042 which is slidably matched in the rectangular slot 4040, the other end of the limiting rod 4041 away from the limiting block A 4042 is fixedly connected with a positioning block 4044 which is slidably matched in the rectangular slot 4040, a compression spring A 4043 is sleeved on the outer circumferential surface of the limiting rod 4041, one end of the compression spring A 4043 abuts against the positioning block 4044, the other end of the compression spring A 4043 away from the positioning block 4044 abuts against the rectangular frames 404, and limiting holes 406 are symmetrically provided in the two end portions of the rectangular frames 404 in the sliding groove 4045.
[0041] The rectangular frames 404 provide mounting positions for the supporting assembly 5, the two ends of the compression spring A 4043 abut against the surface of the positioning block 4044 and the rectangular frames 404 respectively, so that the positioning block 4044 at one end of the limiting rod 4041 is kept in a fixed position, thereby enabling the rectangular frames 404 to play a limiting role when being pushed into the refrigerator body 1, when the rectangular frames 404 are taken out of the refrigerator body 1, the positioning block 4044 moves to one side, thereby extruding the compression spring A 4043, so that the limiting block A 4042 moves away from the original position, and when the rectangular frames 404 are separated from the refrigerator body 1, the limiting block A 4042 can be released from the limitation of the positioning block 4044.
[0042] Referring to Figures 5-8As shown, the support assembly 5 includes a support plate 501 slidingly fitted on the sliding groove 4045, the bottom side of the support plate 501 is provided with a rectangular recess, the bottom of the support plate 501 is welded with a limiting block B504 at the rectangular recess, the inside of the two limiting blocks B504 is provided with a circular hole, a limiting column 505 used for inserting the limiting hole 406 is movably penetrated in the circular hole, the outer peripheral surface of the two limiting columns 505 is welded with a limiting ring 506 with a diameter smaller than the diameter of the end of the limiting block B504, the outer peripheral surface of the two limiting columns 505 is sleeved with a compression spring B507, one end of the compression spring B507 abuts against the limiting block B504, the end of the compression spring B507 away from the limiting block B504 abuts against the limiting ring 506, the two limiting columns 505 movably penetrate a limiting block C508, the limiting block C508 is welded with the support plate 501, the end of the two limiting columns 505 close to the limiting block C508 is arc-shaped and abuts against the outer side surface of an extrusion plate 509, the extrusion plate 509 is V-shaped, the end of the two extrusion plates 509 is adsorbed with a magnetic block 510, the magnetic block 510 is fixedly installed on the support plate 501, one side of the extrusion plate 509 away from the magnetic block 510 is fixedly connected with a guide column 511 for limiting, the guide column 511 movably penetrates a limiting block D512, the top of the limiting block D512 is fixedly connected with the support plate 501, the end of the guide column 511 close to the limiting block D512 is fixedly connected with a handle 513 with an outer side surface flush with the outer side surface of the limiting block B504.
[0043] The combination of the limiting ring 506 and the compression spring B507 makes the limiting column 505 be pushed into the limiting hole 406 by the compression spring B507 in the normal state, ensuring that the support plate 501 can be stably fixed at a specific position on the frame assembly 4, when it is necessary to adjust the position of the support plate 501, pulling the handle 513, the guide column 511 slides in the limiting block D512, ensuring the accuracy of the movement direction, the extrusion plate 509 moves and then separates from the magnetic block 510, the outer side surface thereof abuts against one end of the limiting column 505, so as to push the limiting column 505 to move inwardly against the action force of the compression spring B507, making the other end of the limiting column 505 be pulled out of the limiting hole 406. The support plate 501 is slidingly fitted on the sliding groove 4045, providing a flat support surface for the articles placed in the refrigerator, at the same time, through the cooperation of the limiting block B504 and the limiting column 505 and the like, the connection firmness between the support plate 501 and the frame assembly 4 is ensured, so that it can bear the weight of the articles placed thereon and provide stable support for the articles.
[0044] Referring to Figures 2-6As shown, the inside of the freezer body 1 is symmetrically provided with a guide groove 101 for guiding, the bottom of the freezer body 1 is fixedly connected with an inclined plate 3 below the front of the freezer body 1, the front of the freezer body 1 is hingedly connected with two door plates 2 for sealing the freezer body 1, the frame assembly 4 further includes a bottom plate 401 attached to the inside bottom of the freezer body 1, four supporting wheels 402 are symmetrically fixedly installed on the bottom of the bottom plate 401, the four supporting wheels 402 are slidingly fitted in the guide groove 101, the top of the bottom plate 401 is symmetrically fixedly connected with a vertical plate 403, the vertical plate 403 is fixedly connected with a rectangular frame 404, the bottom of the rectangular frame 404 is symmetrically fixedly connected with a support block A 405 near the bottom of the rectangular groove 404 for improving the supporting strength of the supporting plate 501, the top of the supporting plate 501 is provided with an anti-skid tooth groove 503 with a downward arc, the bottom of the supporting plate 501 is symmetrically fixedly connected with a support block B 502, the bottom surface of the support block B 502 is slidingly connected with the top of the support block A 405, a hand holding groove 5010 is formed in the middle of one side of the top of the supporting plate 501, a limiting groove 5011 is formed in the middle of one side of the bottom of the supporting plate 501, the end of the positioning block 4044 abuts against the two side surfaces inside the freezer body 1, and the end is arc-shaped, the extrusion plate 509 and the guide column 511 are of a whole metal material, and the metal material can generate an adsorption force with the magnetic block 510.
[0045] The guide groove 101 is provided for guiding the supporting wheels 402 at the bottom of the bottom plate 401, limiting the movement track of the supporting wheels 402, and ensuring that the bottom plate 401 and the entire frame assembly 4 connected thereto can smoothly slide in a specific direction inside the freezer body 1, the installation of the inclined plate 3 can facilitate the movement of the subsequent supporting wheels 402, the bottom surface of the bottom plate 401 is attached to the inside bottom of the freezer body 1, serving as the bottom basic structure of the entire frame assembly 4, bearing the weight of the vertical plate 403, the rectangular frame 404 and the articles placed on the supporting assembly 5, uniformly dispersing these weights to the bottom of the freezer body 1, ensuring the overall stability of the structure, the four supporting wheels 402 cooperate with the guide groove 101, so that the bottom plate 401 can relatively easily slide inside the freezer body 1, the sliding connection of the support block A 405 and the support block B 502 can provide additional support to the supporting plate 501, share the weight of the articles placed on the supporting plate 501, effectively improve the carrying capacity and supporting strength of the supporting plate 501, the arc-shaped end of the positioning block 4044 can reduce friction and collision between the limiting rod 4041 and the freezer body 1 when abutting against the two side surfaces inside the freezer body 1, making the limiting rod 4041 more smooth during pressing, rebounding and other operations, and avoiding damage to the inner wall of the freezer body 1.
[0046] The implementation principle of the high-body double-door push-in type storage cabinet according to an embodiment of the present application is as follows: by pulling the handle 513, the guide column 511 is slid in the limiting block D 512, the extrusion plate 509 is driven to move, the extrusion plate 509 is separated from the magnetic suction block 510, and the limiting column 505 is pushed to move inward under the reaction force of the compression spring B 507, so that the limiting column 505 is pulled out of the limiting hole 406, the supporting plate 501 can be removed from the rectangular frame 404, and the subsequent cleaning is facilitated. The supporting block A 405 and the supporting block B 502 are connected by sliding, and provide additional support force for the supporting plate 501, share the weight of the supported articles, significantly improve the carrying capacity and support strength of the supporting plate 501. The bottom plate 401 is the carrying part of the frame assembly 4, closely fits the lower bottom surface inside the refrigerator main body 1, receives the weight of the vertical plate 403, the rectangular frame 404 and the articles placed on the supporting assembly 5, and uniformly distributes the weight to the bottom of the refrigerator main body 1, ensures the stability of the overall structure, the combination of the supporting wheel 402 and the guide groove 101 effectively reduces the friction when the bottom plate 401 moves, so that the frame assembly 4 and the supporting assembly 5 can be more conveniently taken out from the refrigerator main body 1, thereby facilitating the subsequent cleaning. When the supporting assembly 5 and the frame assembly 4 are taken out, the inner surface of the refrigerator main body 1 is flat, thereby being more convenient for cleaning.
[0047] The above is only an optional embodiment of the present disclosure, and is not used to limit the present disclosure. For those skilled in the art, the present disclosure can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present disclosure shall be included in the protection scope of the present disclosure.
Claims
1. A high body, double door, push to open storage cabinet, characterized by: The application relates to a refrigerator body (1) provided with a frame assembly (4) in the interior of the refrigerator body (1), the frame assembly (4) comprises a rectangular frame (404) mounted in the interior of the refrigerator body (1), symmetrically-opened sliding grooves (4045) are formed in the inner side of the rectangular frame (404), a supporting assembly (5) is slidably arranged in the sliding grooves (4045), symmetrically-opened rectangular grooves (4040) are formed in the top side of the rectangular frame (404), a limiting rod (4041) is movably penetrated through one side of the rectangular frame (404) close to the rectangular groove (4040), a limiting block A (4042) is fixedly connected to one end of the limiting rod (4041) close to the rectangular groove (4040), a positioning block (4044) is fixedly connected to the other end of the limiting rod (4041) away from the limiting block A (4042), compression springs A (4043) are arranged on the outer circumferential surface of the limiting rod (4041) and abut against the surfaces of the positioning block (4044) and the rectangular frame (404) at two ends, and limiting holes (406) are symmetrically formed in the end of the rectangular frame (404). The supporting assembly (5) comprises a supporting plate (501) slidably matched with the sliding grooves (4045), limiting blocks B (504) are symmetrically fixed on one side of the supporting plate (501), limiting columns (505) are movably penetrated through the limiting blocks B (504) and are inserted into the limiting holes (406), limiting rings (506) are fixedly arranged on the outer circumferential surface of the limiting columns (505), compression springs B (507) are arranged on the outer circumferential surface of the limiting columns (505) and abut against the surfaces of the limiting blocks B (504) and the limiting rings (506) at two ends, limiting blocks C (508) are movably penetrated through the limiting columns (505) and are fixedly connected with the supporting plate (501), extrusion plates (509) abut against one end of the limiting columns (505) close to the limiting blocks C (508), magnetic attraction blocks (510) are fixedly arranged on the end of the extrusion plates (509) and are adsorbed on the supporting plate (501), guide columns (511) are fixedly arranged on the side of the extrusion plates (509) away from the magnetic attraction blocks (510), limiting blocks D (512) are movably penetrated through the guide columns (511) and are fixedly connected with the supporting plate (501), and handles (513) are fixedly arranged on one end of the guide columns (511) close to the limiting blocks D (512).
2. The high body double door push to open cabinet according to claim 1, characterized in that: The bottom of the refrigerator body (1) is symmetrically provided with guide grooves (101), and the bottom side of the refrigerator body (1) is fixedly connected with an inclined plate (3), and the front surface of the refrigerator body (1) is hingedly connected with two door plates (2).
3. The high body double door push to open cabinet according to claim 1, characterized in that: The frame assembly (4) further comprises a bottom plate (401) which is attached to the bottom surface of the interior of the refrigerator body (1), supporting wheels (402) are symmetrically fixedly mounted on the bottom plate (401) and are slidably matched with the guide grooves (101), and vertical plates (403) are symmetrically fixedly connected with the rectangular frame (404) on the top of the bottom plate (401).
4. The high body double door push to open cabinet according to claim 1, wherein: The two sides of the bottom of the rectangular frame (404) are symmetrically fixed with support blocks A (405) near the bottom of the rectangular groove (4040).
5. The high body double door push to open cabinet according to claim 1, wherein: The top of the support plate (501) is provided with anti-skid tooth grooves (503), and the bottom of the support plate (501) is symmetrically fixed with support blocks B (502) which are in sliding connection with the top of the support blocks A (405).
6. The high body double door push to open cabinet according to claim 1, wherein: The top of the support plate (501) is provided with anti-skid tooth grooves (503), and the bottom of the support plate (501) is symmetrically fixed with support blocks B (502) which are in sliding connection with the top of the support blocks A (405).
7. The high body double door push to open cabinet according to claim 1, wherein: The end of the positioning block (4044) is arc-shaped, and the end of the positioning block (4044) abuts against the inner side of the refrigerator body (1).
8. The high body double door push to open cabinet according to claim 1, wherein: The extrusion plate (509) and the guide column (511) are made of metal material which can generate adsorption force with the magnetic block (510).