Bacteria culture dish placing rack

By designing a bacterial culture dish rack with uprights and pull-out panels, the problems of inconvenience in accessing existing culture dish racks and easy damage to newspapers have been solved, enabling the orderly placement and convenient retrieval of culture dishes and improving the user experience.

CN223945712UActive Publication Date: 2026-02-27SHANDONG HEKANGYUAN GROUP
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Patent Information

Application Number
CN202520551562.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-02-27
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

The existing petri dish rack is designed as a single piece, which makes it inconvenient to take out the petri dishes. Furthermore, wrapping them in newspaper makes them easy to break, and they tend to stick to the walls and freeze when stored, making them difficult to handle.

Method used

Design a bacterial culture dish placement rack that includes a stand and a pull-out plate. The stand is equipped with hexagonal columns and a shelf, and the shelf is equipped with a pull-out plate on which culture dishes are placed. The hexagonal columns and limiting caps enable stable assembly of the multi-layer rack and convenient operation of the pull-out plate.

Benefits of technology

This allows for the orderly placement and easy access of petri dishes, avoiding problems such as torn newspapers and ice buildup on refrigerator walls, thus improving ease of use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223945712U_ABST
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Abstract

The utility model provides a bacterial culture dish placing rack, and belongs to the field of placing racks. According to the technical scheme, the device comprises a vertical frame and a plurality of placing frames arranged on the vertical frame, drawing plates are arranged on the placing frames, culture dishes are arranged on the drawing plates, each placing frame comprises a circular bottom plate and a circular top plate, a semicircular vertical plate is arranged between the edge position of the circular bottom plate and the edge position of the circular top plate, and the drawing plates are arranged on the circular bottom plates. A hexagonal stand column is arranged on the circular bottom plate, a connecting block is arranged in the middle of the outer side of the semicircular vertical plate, the connecting block is arranged on the periphery of the hexagonal stand column, L-shaped containing grooves are formed in the circular bottom plate and the semicircular vertical plate, and a drawing plate is arranged in each L-shaped containing groove. The culture dish rack has the beneficial effects that the structure is simple, the use is convenient, the culture dishes can be orderly placed one by one, and the subsequent taking and arrangement of the culture dishes are facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of storage racks, and more particularly to a bacterial culture dish storage rack. Background Technology

[0002] Currently, after bacterial culture dishes in the laboratory have solidified, they are usually wrapped in newspaper or resealable bags and stored in a 4-degree refrigerator for later use (e.g.) Figure 9 As shown, culture plates wrapped in newspaper or resealable bags are inconvenient to access, newspaper is easily damaged, and if newspaper is stored in the refrigerator, it is easy to stick to the wall and freeze, resulting in a messy arrangement. Existing culture dish racks and tube racks are generally designed as one piece, with multiple culture dishes stacked in contact in the rack. Each time a dish is taken out, it must be taken out in an orderly manner from top to bottom, which is quite inconvenient. Utility Model Content

[0003] The purpose of this invention is to provide a bacterial culture dish rack that is simple in structure, easy to use, and can arrange culture dishes in an orderly manner, making it convenient for subsequent retrieval and organization.

[0004] This utility model is achieved through the following measures:

[0005] A bacterial culture dish rack, characterized in that it includes a stand and a plurality of racks arranged on the stand, wherein each rack is provided with a pull-out plate and a culture dish is arranged on the pull-out plate;

[0006] The support frame includes a base, on which hexagonal columns are provided;

[0007] The display rack includes a circular base plate and a circular top plate. A semi-circular vertical plate is provided between the edges of the circular base plate and the circular top plate. The pull-out plate is provided on the circular base plate. A connecting block is provided at the middle position of the outer side of the semi-circular vertical plate. The connecting block is located around the hexagonal column.

[0008] The circular base plate and the semi-circular vertical plate are provided with L-shaped receiving grooves, and the pull-out plate is provided in the L-shaped receiving grooves;

[0009] The L-shaped receiving groove includes a horizontal groove provided on the circular base plate, and an arc-shaped vertical groove is provided on the inner wall of the semi-circular vertical plate. The pull-out plate includes a horizontal base plate, an inner arc-shaped vertical plate is provided at one end of the horizontal base plate, and an outer arc-shaped vertical plate is provided at the other end of the horizontal base plate. The horizontal base plate is located in the horizontal groove, and the inner arc-shaped vertical plate is located in the arc-shaped vertical groove.

[0010] The specific features of this utility model also include:

[0011] The connecting block has a hexagonal insertion hole that runs vertically through it, and the hexagonal column is placed in the hexagonal insertion hole.

[0012] A pair of insert posts are provided on both sides of the hexagonal column and on the circular base plate, and a first insertion hole corresponding to the position of the insert post is provided on the circular top plate;

[0013] The base has a pair of limiting holes corresponding to the positions of the two insertion posts.

[0014] Limit caps are provided at the ends of the hexagonal columns.

[0015] The circular base plate has a hexagonal insertion hole, and the bottom end of the hexagonal column is inserted into the hexagonal insertion hole.

[0016] A handle is provided on the outer side of the outer arc-shaped vertical plate.

[0017] During assembly, firstly, select hexagonal columns of appropriate length according to the number of culture dishes to be stored and the internal height of the storage device, insert the hexagonal columns into the base, then install the placement racks around the hexagonal columns, insert the bottom column of the bottom placement rack into the corresponding limiting holes, then assemble the placement racks from top to bottom, insert the columns of the upper and lower placement racks into the corresponding first holes, and finally install the limiting caps on the top of the hexagonal columns to limit the placement racks below, thus completing the assembly;

[0018] When placing the petri dishes, place the petri dishes in the pull-out plate, then place the pull-out plate in the placement rack (the outer surface shell of the outer arc-shaped vertical plate is marked with the time), and then place the entire petri dish rack into the storage device;

[0019] When using, simply pull out the slide plate that holds the petri dish as needed.

[0020] The advantages of this invention are: simple structure and easy to use, which allows for the orderly placement of petri dishes, facilitating subsequent retrieval and organization. Attached Figure Description

[0021] Figure 1 This is a structural schematic diagram of an embodiment of the present utility model.

[0022] Figure 2 This is a schematic diagram of the support frame in an embodiment of the present utility model.

[0023] Figure 3 This is a schematic diagram of the structure of the display rack and pull-out panel in the embodiment of this utility model.

[0024] Figure 4 This is a schematic diagram of the structure of the display rack in an embodiment of this utility model.

[0025] Figure 5 It is the structure schematic view of the placing rack in the embodiment of the utility model.

[0026] Figure 6 It is the structure schematic view of the placing rack in the embodiment of the utility model.

[0027] Figure 7 It is the structure schematic view of the pulling plate in the embodiment of the utility model.

[0028] Figure 8 It is the structure schematic view of the use state in the embodiment of the utility model.

[0029] Figure 9 It is the background technology schematic view.

[0030] Among them, the sign is: 1, stand; 101, base; 102, hexagonal column; 103, limit cap; 104, limit socket; 2, placing rack; 3, pulling plate; 301, horizontal bottom plate; 302, outer arc vertical plate; 303, inner arc vertical plate; 304, handle; 4, circular bottom plate; 5, semicircular vertical plate; 6, circular top plate; 7, connecting block; 8, first socket; 9, hexagonal socket; 10, plug-in column; 11, horizontal slot; 12, arc vertical slot; 13, culture dish. DETAILED DESCRIPTION

[0031] In order to clearly illustrate the technical features of the scheme, the scheme will be described below through specific embodiments.

[0032] Referring to Figures 1-8 A bacteria culture dish rack, including stand 1, a plurality of placing racks 2 are arranged on the stand 1, the pulling plate 3 is arranged on the placing rack 2, the culture dish 13 is arranged on the pulling plate 3;

[0033] The stand 1 includes the base 101, and the hexagonal column 102 is arranged on the base 101;

[0034] The placing rack 2 includes the circular bottom plate 4 and the circular top plate 6, and the semicircular vertical plate 5 is arranged between the edge positions of the circular bottom plate 4 and the circular top plate 6, the pulling plate 3 is arranged on the circular bottom plate 4, the connecting block 7 is arranged at the middle position of the outer side of the semicircular vertical plate 5, and the connecting block 7 is arranged on the periphery of the hexagonal column 102;

[0035] The L-shaped accommodating groove is arranged on the circular bottom plate 4 and the semicircular vertical plate 5, and the pulling plate 3 is arranged in the L-shaped accommodating groove;

[0036] The L-shaped accommodating groove comprises a horizontal groove 11 arranged on the circular bottom plate 4, an arc-shaped vertical groove 12 arranged on the inner wall of the semicircular vertical plate 5, the pull-out plate 3 comprises a horizontal bottom plate 301, one end of the horizontal bottom plate 301 is provided with an inner arc-shaped vertical plate 303, the other end of the horizontal bottom plate 301 is provided with an outer arc-shaped vertical plate 302, the horizontal bottom plate 301 is arranged in the horizontal groove 11, and the inner arc-shaped vertical plate 303 is arranged in the arc-shaped vertical groove 12.

[0037] The connecting block 7 is provided with a hexagonal insertion hole 9 penetrating from top to bottom, and the hexagonal column 102 is arranged in the hexagonal insertion hole 9.

[0038] A pair of insertion columns 10 are arranged on the two sides of the hexagonal column 102 and the circular bottom plate 4, and a first insertion hole 8 corresponding to the position of the insertion column 10 is arranged on the circular top plate 6.

[0039] A pair of limiting insertion holes 104 are arranged on the base 101 corresponding to the position of the pair of insertion columns 10.

[0040] The end of the hexagonal column 102 is provided with a limiting cap 103.

[0041] The circular bottom plate 4 is provided with a hexagonal insertion hole 9, and the bottom end of the hexagonal column 102 is inserted into the hexagonal insertion hole 9.

[0042] The outer side of the outer arc-shaped vertical plate 302 is provided with a handle 304.

[0043] During assembly, first, the hexagonal column 102 with appropriate length is selected according to the number of the to-be-stored culture dishes 13 and the height of the storage device, the hexagonal column 102 is inserted on the base 101, then the placing frame 2 is installed on the periphery of the hexagonal column 102, the column at the bottom of the bottom placing frame 2 is inserted into the limiting insertion hole 104, then the placing frame 2 is assembled from top to bottom, the insertion column 10 of the upper and lower placing frames 2 is inserted into the corresponding first insertion hole 8, finally, the limiting cap 103 is installed on the top of the hexagonal column 102, the limiting cap 103 limits the number of the lower placing frames 2, and the assembly is completed.

[0044] During placing of the culture dishes 13, the culture dishes 13 are placed in the pull-out plate 3, then the pull-out plate 3 is placed in the placing frame 2 (the outer surface of the outer arc-shaped vertical plate 302 is marked with time), and then the culture dish rack is placed in the storage device.

[0045] During use, the pull-out plate 3 on which the culture dishes 13 are placed is pulled out as needed.

[0046] The technical features not described in the utility model can be realized by or using the prior art, and will not be described here again, of course, the above description is not a limitation of the utility model, and the utility model is not limited to the above examples, the changes, modifications, additions or replacements made by the ordinary skilled in the art within the essential scope of the utility model should also belong to the protection scope of the utility model.

Claims

1. A bacterial culture dish holder characterized by, Including a stand, a plurality of placing racks arranged on the stand, the placing rack is provided with a pull-out plate, and the pull-out plate is provided with a culture dish; The stand comprises a base, and a hexagonal column is arranged on the base; The placing rack comprises a circular bottom plate and a circular top plate, a semicircular vertical plate is arranged between the edge positions of the circular bottom plate and the circular top plate, the pull-out plate is arranged on the circular bottom plate, a connecting block is arranged at the middle position of the outer side of the semicircular vertical plate, and the connecting block is arranged on the periphery of the hexagonal column; The circular bottom plate and the semicircular vertical plate are provided with L-shaped accommodating grooves, and the pull-out plate is arranged in the L-shaped accommodating grooves; The L-shaped accommodating grooves comprise horizontal grooves arranged on the circular bottom plate, and arc-shaped vertical grooves are formed in the inner walls of the semicircular vertical plates, the pull-out plate comprises a horizontal bottom plate, one end of the horizontal bottom plate is provided with an inner arc-shaped vertical plate, the other end of the horizontal bottom plate is provided with an outer arc-shaped vertical plate, the horizontal bottom plate is arranged in the horizontal groove, and the inner arc-shaped vertical plate is arranged in the arc-shaped vertical groove.

2. The bacterial petri dish holder of claim 1, wherein, A hexagonal insertion hole is formed in the connecting block and penetrates the upper and lower parts of the connecting block, and the hexagonal column is arranged in the hexagonal insertion hole.

3. The bacterial petri dish holder of claim 2, wherein, A pair of insertion columns are arranged on the two sides of the hexagonal column and the circular bottom plate, and a first insertion hole corresponding to the position of the insertion column is formed in the circular top plate; A pair of limiting insertion holes are formed in the base corresponding to the position of the pair of insertion columns.

4. The bacterial petri dish holder of claim 3, wherein, A limiting cap is arranged at the end of the hexagonal column.

5. The bacterial petri dish holder of claim 4, wherein, A hexagonal insertion hole is formed in the circular bottom plate, and the bottom end of the hexagonal column is inserted into the hexagonal insertion hole.

6. The bacterial petri dish holder of claim 5, wherein, A handle is arranged on the outer side of the outer arc-shaped vertical plate.