CN219884441U - Case is deposited to microbial reagent - Google Patents

Case is deposited to microbial reagent Download PDF

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Publication number
CN219884441U
CN219884441U CN202321270332.2U CN202321270332U CN219884441U CN 219884441 U CN219884441 U CN 219884441U CN 202321270332 U CN202321270332 U CN 202321270332U CN 219884441 U CN219884441 U CN 219884441U
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China
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storage box
clamping
pull plate
hole
plate
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CN202321270332.2U
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Chinese (zh)
Inventor
王凌
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Chengdu Xinjin District Center For Disease Prevention And Control
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Chengdu Xinjin District Center For Disease Prevention And Control
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Priority to CN202321270332.2U priority Critical patent/CN219884441U/en
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Abstract

The utility model belongs to the technical field of microbial reagent storage equipment, and particularly relates to a microbial reagent storage box. The technology comprises a storage box, wherein a pulling plate is horizontally arranged in the storage box, a plurality of first through holes for limiting microbial agents are formed in the pulling plate, and the first through holes are vertically communicated; a second through hole for the pull plate to penetrate out is formed in one side wall of the storage box, and a connecting block is connected with the second through hole penetrating out of one side of the pull plate; a sliding groove for sliding the pull plate towards the second through hole is formed in the storage box, and the pull plate is in sliding fit with the sliding groove; a plurality of first clamping blocks are fixed on the connecting block, and a plurality of first grooves which are in clamping connection with the first clamping blocks are formed in one side wall of the storage box; the first clamping block is made of elastic materials. The utility model solves the problem that the test tube groove with a certain depth is arranged in the storage box in the prior art, so that the cleaning is not easy.

Description

Case is deposited to microbial reagent
Technical Field
The utility model belongs to the technical field of microbial reagent storage equipment, and particularly relates to a microbial reagent storage box.
Background
The microbial reagent can be stored in the storage box in the storage process, and the reagent can be stably placed by storing the reagent in the storage box, so that the reagent can be conveniently taken and placed;
when the storage box in the prior art stores the reagent, a storage block is arranged in the storage box, a plurality of test tube grooves which are uniformly distributed in an array are formed in the upper end of the storage block, and a sponge bottom block with a U-shaped cross section is fixedly connected to the bottom in the test tube groove; when in use, the reagent is placed in the test tube groove, and then the bottom of the test tube is placed on the sponge cushion block; in the process, the test tube can be kept in a stable state, and the test tube is prevented from colliding with the inner wall of the test tube groove;
therefore, in the using process, the test tube needs to be continuously inserted into the test tube groove, so that bacteria remain in the storage box after the storage box is used for a period of time, and the interior of the storage box needs to be scrubbed or cleaned; but in the cleaning process, because the test tube groove is arranged and is designed according to the size of the test tube, the test tube groove has a certain depth, so that when the inside of the test tube groove needs to be cleaned, the cleaning process is inconvenient and wastes time and labor.
Disclosure of Invention
According to the defects in the prior art, the technical problems to be solved by the utility model are as follows: provided is a microbial agent storage box which can be conveniently cleaned inside the storage box.
The microbial reagent storage box comprises a storage box, a pulling plate is horizontally arranged in the storage box, a plurality of first through holes for limiting the microbial reagent are formed in the pulling plate, and the first through holes are vertically communicated; a second through hole for the pull plate to penetrate out is formed in one side wall of the storage box, and a connecting block is connected with the second through hole penetrating out of one side of the pull plate; a sliding groove for sliding the pull plate towards the second through hole is formed in the storage box, and the pull plate is in sliding fit with the sliding groove; a plurality of first clamping blocks are fixed on the connecting block, and a plurality of first grooves which are in clamping connection with the first clamping blocks are formed in one side wall of the storage box; the first clamping block is made of elastic materials.
Further, a bottom plate is horizontally arranged right below the pulling plate, a plurality of second clamping blocks are fixed at the bottom of the bottom plate, and a plurality of second grooves which are in clamping connection with the second clamping blocks are formed at the bottom of the storage box; the second clamping block is made of elastic materials; a plurality of supporting blocks are arranged right below the top of the bottom plate corresponding to the first through holes, and third grooves for placing the bottoms of the microbial agents are formed in the supporting blocks.
Further, a handle for conveniently pulling the pulling plate to slide is fixed on the connecting block.
Further, a rubber ring for clamping the microbial agent is arranged in the first through hole.
Further, a handle is arranged at the top of the storage box.
Compared with the prior art, the utility model has the following beneficial effects:
when the storage box needs to be cleaned, the first clamping block clamped in the first groove is taken out from the first groove, then the connecting block is pulled in the opposite direction of the storage box, the connecting block drives the pulling plate to be taken out from the storage box, and the storage box and the pulling plate are conveniently cleaned after being taken out; solves the problem that the test tube groove with a certain depth is arranged in the storage box in the prior art, so that the cleaning is not good.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic cross-sectional view of the structure at A-A in FIG. 1;
FIG. 3 is a schematic diagram of the front view of FIG. 1;
the names of the components in the figure are as follows: 1. the handle comprises a storage box 2, a handle 3, a connecting block 4, a first clamping block 5, a second clamping block 6, a bottom plate 7, a supporting block 8, a rubber ring 9, a pulling plate 10 and a handle.
Detailed Description
The present utility model is further illustrated by the following examples, which are not intended to be limiting, but any modifications, equivalents, improvements, etc. within the spirit and principles of the present utility model are intended to be included within the scope of the present utility model.
Example 1
The microbial agent storage box according to the embodiment, as shown in fig. 1 and 3, includes a storage box 1, wherein when the storage box 1 is in use, the top of the storage box 1 is a door, and the storage box can be opened upwards, and when the storage box is in an upward opening state, as in the orientation of fig. 1, the rear side of the top of the storage box 1 is hinged on the rear side wall of the storage box 1 through a hinge, so that the upward opening can be realized; meanwhile, as shown in the azimuth of fig. 3, a child buckle is arranged on the front side of the top of the storage box 1, a female buckle is arranged on the front side wall of the storage box 1, and when in use, the top of the storage box 1 is fixed by buckling the child buckle on the female buckle;
as shown in fig. 1 and 2, a pulling plate 9 is horizontally arranged in the storage box 1, and a plurality of first through holes for limiting microbial agents are formed in the pulling plate 9 and are vertically communicated; when the first through hole is specifically formed, the size of the first through hole is designed according to the size of the microbial reagent, so that the reagent can be just placed in the first through hole; when the pull plate 9 is placed, the distance between the bottom of the storage box 1 and the pull plate 9 is two thirds of the height of the test tube; therefore, when the reagent storage device is used, the reagent is placed in the first through hole, and then the first through hole can limit the reagent, so that the reagent is prevented from falling down;
further preferably, all the first through holes are distributed at equal intervals, so that when the reagent is placed in the first through holes, the reagent can be orderly arranged, and the management is convenient;
as shown in fig. 1, a second through hole for the pull plate 9 to penetrate out is formed in one side wall of the storage box 1, and a connecting block 3 is connected to one side of the pull plate 9 penetrating out of the second through hole; one side wall of the storage box 1 may be the left side wall of the storage box 1 in fig. 1, so that a second through hole with the inside and the outside communicated is formed in the left side wall of the storage box 1, and then the left side wall of the pull plate 9 may pass through the storage box 1 from the second through hole; meanwhile, one side of the storage box 1 can be the right side wall, the front side wall or the rear side wall of the storage box 1;
as shown in fig. 1, a sliding groove for sliding the pull plate 9 towards the second through hole is formed in the storage box 1, and the pull plate 9 is in sliding fit with the sliding groove; as shown in the azimuth of fig. 1, the direction of the second through hole is the left side wall direction of the storage box 1, so when the sliding groove is formed, the front inner side wall of the storage box 1 is provided with the sliding groove corresponding to the front side wall of the pull plate 9, and the front side wall of the pull plate 9 is in sliding fit with the sliding groove on the front side of the storage box 1 left and right; the rear inner side wall of the storage box 1 is provided with a sliding groove corresponding to the rear side wall of the pull plate 9, and the rear side wall of the pull plate 9 is in left-right sliding fit with the sliding groove at the rear side of the storage box 1; therefore, through the design of the sliding chute, the pull plate 9 can be stably placed in the storage box 1 to slide left and right, and the pull plate 9 can be smoothly pulled out along the sliding chute direction when the pull plate 9 is pulled out of the storage box 1; therefore, when stains or bacteria are generated on the pull plate 9 in the using process, the pull plate 9 can be pulled out from the second through hole and then cleaned;
further preferably, the thickness of the pulling plate 9 is 1cm, and the depth of the first through hole is 1cm by the design of 1cm; when the first through hole is cleaned, the interior of the first through hole is conveniently cleaned;
further preferably, as shown in the azimuth of fig. 1, a clamping groove for clamping the right side wall of the pull plate 9 is formed in the right side wall of the storage box 1, so that the pull plate 9 can slide into the clamping groove in the sliding process of the pull plate 9, and a gap is prevented from being left between the pull plate 9 and the storage box 1, so that the pull plate 9 is more stably placed in the storage box 1;
as shown in fig. 1, a plurality of first clamping blocks 4 are fixed on the connecting block 3, and a plurality of first grooves which are in clamping connection with the first clamping blocks 4 are formed in one side wall of the storage box 1; the first clamping block 4 is made of elastic materials; as shown in the orientation of fig. 1, the first groove formed on one side wall of the storage box 1 is formed according to the position of the first clamping block 4, for example, when the connecting block 3 is located at the left side of the storage box 1, the first clamping block 4 is fixed on the right side wall of the connecting block 3, and then the first groove is formed on the left side wall of the storage box 1; when the clamping connection is realized, the first clamping block 4 can be preferably in a circular structure, so that the first groove is also provided with a circular structure with a hollow inside according to the first clamping block 4; the width of the notch of the first groove is smaller than the outer diameter of the first clamping block 4, and the outer diameter of the first clamping block 4 is smaller than the inner diameter of the first groove; therefore, when the first clamping block 4 is clamped into the first groove, because the first clamping block 4 has certain elasticity, when the first clamping block 4 enters from the notch of the first groove, the first clamping block 4 is extruded by the notch of the first groove, and when the first clamping block enters into the first groove continuously, the first clamping block 4 in an extrusion state rebounds to the original state, and after the first clamping block 4 rebounds, the first clamping block 4 is clamped and connected in the first groove; therefore, after the first clamping block 4 is clamped in the first groove, the connecting block 3 can be detachably connected to the storage box 1, and when the connecting block 3 is connected to the storage box 1, the position of the pull plate 9 is driven to limit; therefore, when in use, when a user moves the storage box 1, the pull plate 9 cannot slide out of the storage box 1; ensuring the stability of the pulling plate 9 in the moving process;
in the specific use process: opening the storage box 1 to place the microbial agent in the first through hole on the pulling plate 9; when the storage box 1 is used for too long and stains or bacteria are generated, and the interior of the storage box 1 is required to be cleaned, at the moment, microbial agents are all taken out, then the first clamping block 4 clamped in the first groove is taken out, then the pulling plate 9 can be taken out from the second through hole, then the pulling plate 9 is cleaned independently, then the interior of the storage box 1 is cleaned, after the cleaning is finished, the pulling plate 9 is slid into the storage box 1 from the position of the second through hole, and after the pulling plate 9 is slid into a specific position, the first clamping block 4 is clamped in the first groove again through the elasticity of the first clamping block, and the position of the pulling plate 9 is limited after the clamping is finished; therefore, in the operation process, the inside of the storage box 1 can be easily cleaned, and the problem that the prior art is inconvenient to clean is avoided.
Example 2
In this embodiment, as shown in fig. 1, a bottom plate 6 is horizontally disposed under the pull plate 9, a plurality of second clamping blocks 5 are fixed at the bottom of the bottom plate 6, and a plurality of second grooves that are in clamping connection with the second clamping blocks 5 are formed at the bottom of the storage box 1; the second clamping block 5 is made of elastic materials; a plurality of supporting blocks 7 are arranged right below the top of the bottom plate 6 corresponding to the first through holes, and third grooves for placing the bottoms of the microbial agents are formed in the supporting blocks 7; four second clamping blocks 5 can be arranged at the bottom of the bottom plate 6, and of course, other numbers can be adopted; the four second clamping blocks 5 are distributed in a rectangular shape at the bottom of the bottom plate 6; when the clamping connection is realized, the second clamping block 5 can be preferably in a circular structure, so that the second groove is also provided with a circular structure with a hollow inside according to the second clamping block 5; the width of the notch of the second groove is smaller than the outer diameter of the second clamping block 5, and the outer diameter of the second clamping block 5 is smaller than the inner diameter of the second groove; therefore, when the second clamping block 5 is clamped into the second groove, because the second clamping block 5 has certain elasticity, when the second clamping block 5 enters from the notch of the second groove, the second clamping block 5 is extruded by the notch of the second groove, and when the second clamping block enters into the second groove continuously, the second clamping block 5 in an extrusion state rebounds to the original state, and after the second clamping block 5 rebounds, the second clamping block 5 is clamped and connected in the second groove; therefore, when the second clamping block 5 is clamped in the second groove, the bottom plate 6 can be detachably connected to the bottom of the storage box 1;
when the microbial reagent is used, after the microbial reagent is placed in the first through hole, the bottom of the microbial reagent can be placed in the third groove, so that the bottom of the microbial reagent can be limited through the design of the third groove, and the problem that a reagent bottle is damaged due to collision between the reagent is prevented; when the inside of the third groove needs to be cleaned, the bottom plate 6 is clamped at the bottom of the storage box 1 through the second clamping block 5, so that the bottom plate 6 can be taken out of the storage box 1, and then the inside of the third groove is convenient to clean;
further preferably, the connecting block 3 and the bottom plate 6 can be made of soft materials, when the first clamping block 4 is clamped in the first groove, and the second clamping block 5 is clamped in the second groove, the first clamping block 4 and the second clamping block 5 can be clamped more easily and conveniently, and the operation is more convenient.
Example 3
In this embodiment, the technology is further described, as shown in fig. 1 and fig. 2, the connecting block 3 is fixed with a handle 2 for conveniently pulling the pull plate 9 to slide, and by using the design of the handle 2, the pull plate 9 is conveniently pulled out from the second through hole, so that the operation is more convenient and easier.
Example 4
This embodiment will be further explained the technology, as shown in fig. 1 and 2, be provided with the rubber circle 8 that is used for pressing from both sides tight with microbial agent in the first through-hole, through the design of rubber circle 8, because rubber circle 8 has certain elasticity, can increase frictional force, consequently when microbial agent places in first through-hole, can press from both sides the outside of microbial agent tightly, make microbial agent can more stable place in first through-hole.
Example 5
The technology of this embodiment will be further described, as shown in fig. 1 and 3, the handle 10 is provided at the top of the storage case 1, and by using the design of the handle 10, when we need to carry the storage case 1, we can hold the handle 10 with hand, so that we can carry the storage case 1 more easily.

Claims (5)

1. The utility model provides a case is deposited to microbial reagent, includes to deposit case (1), its characterized in that: a pulling plate (9) is horizontally arranged in the storage box (1), a plurality of first through holes for limiting the microbial reagent are formed in the pulling plate (9), and the first through holes are vertically communicated; a second through hole for the pull plate (9) to penetrate out is formed in one side wall of the storage box (1), and one side of the pull plate (9) penetrates out of the second through hole to be connected with the connecting block (3); a sliding groove for sliding the pull plate (9) towards the second through hole is formed in the storage box (1), and the pull plate (9) is in sliding fit with the sliding groove; a plurality of first clamping blocks (4) are fixed on the connecting block (3), and a plurality of first grooves which are in clamping connection with the first clamping blocks (4) are formed in one side wall of the storage box (1); the first clamping block (4) is made of elastic materials.
2. The microbial agent storage case of claim 1, wherein: a bottom plate (6) is horizontally arranged right below the pull plate (9), a plurality of second clamping blocks (5) are fixed at the bottom of the bottom plate (6), and a plurality of second grooves which are in clamping connection with the second clamping blocks (5) are formed in the bottom of the storage box (1); the second clamping block (5) is made of elastic materials; a plurality of supporting blocks (7) are arranged right below the top of the bottom plate (6) corresponding to the first through holes, and third grooves for placing the bottom of the microbial agent are formed in the supporting blocks (7).
3. The microbial agent storage case of claim 1, wherein: the connecting block (3) is fixedly provided with a handle (2) which is used for conveniently pulling the pulling plate (9) to slide.
4. The microbial agent storage case of claim 1, wherein: a rubber ring (8) for clamping the microbial agent is arranged in the first through hole.
5. The microbial agent storage case of claim 1, wherein: the top of the storage box (1) is provided with a handle (10).
CN202321270332.2U 2023-05-24 2023-05-24 Case is deposited to microbial reagent Active CN219884441U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321270332.2U CN219884441U (en) 2023-05-24 2023-05-24 Case is deposited to microbial reagent

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321270332.2U CN219884441U (en) 2023-05-24 2023-05-24 Case is deposited to microbial reagent

Publications (1)

Publication Number Publication Date
CN219884441U true CN219884441U (en) 2023-10-24

Family

ID=88395642

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321270332.2U Active CN219884441U (en) 2023-05-24 2023-05-24 Case is deposited to microbial reagent

Country Status (1)

Country Link
CN (1) CN219884441U (en)

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