CN215972865U - Serum heavy metal detects with storage device who has layered structure - Google Patents

Serum heavy metal detects with storage device who has layered structure Download PDF

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Publication number
CN215972865U
CN215972865U CN202122484210.0U CN202122484210U CN215972865U CN 215972865 U CN215972865 U CN 215972865U CN 202122484210 U CN202122484210 U CN 202122484210U CN 215972865 U CN215972865 U CN 215972865U
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limiting
serum
storage box
box main
storage
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CN202122484210.0U
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吴劲宏
马邦庆
陈秀斌
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Zhejiang Haotian Testing Technology Service Co ltd
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Zhejiang Haotian Testing Technology Service Co ltd
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Abstract

The utility model discloses a storage device with a layered structure for serum heavy metal detection, which comprises a storage box main body and a limiting chassis, wherein a sealing cover is arranged above the storage box main body, a sealing assembly is arranged at the front end above the sealing cover, the front end of the storage box main body is connected with a limiting assembly, the limiting assembly comprises a placement frame, a limiting groove, a fixed block, a limiting block and a limiting ring, the left end and the right end of the placement frame are fixedly connected with the limiting block, the limiting groove is arranged on one side of the limiting block, which is far away from the central axis of the placement frame, and the limiting ring penetrates through the placement frame. This serum heavy metal detects with storage device who has layered structure passes through the design of two racks, and it can make things convenient for the serum storage tube to carry out the layering and place at the in-process that the storage box main part used, and the rack utilizes the stopper to carry out the mode of fixing simultaneously, and the rack that can be convenient for is dismantled and is installed to make things convenient for the serum storage tube to store.

Description

Serum heavy metal detects with storage device who has layered structure
Technical Field
The utility model relates to the technical field of storage devices, in particular to a storage device with a layered structure for serum heavy metal detection.
Background
Serum refers to the colloidal liquid after fibrinogen is removed from plasma, the serum of people and animals is commonly used for carrying out various serological tests and assisting in diagnosing diseases, the serum containing antibodies can be used for preventing or treating diseases, the serum inspection belongs to one of blood detection, whether heavy metal of a patient exceeds the standard or not is inspected, the serum of the patient needs to be detected, after blood is drawn by medical personnel, a storage tube for storing the blood needs to be placed in a storage device for storage, and therefore the later-stage detection is convenient for the medical personnel.
The existing storage device for serum detection is generally a single layer, the number of serum storage tubes for single storage is small, and meanwhile, in the storage process, the serum can not be stored in a classified manner.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a storage device with a layered structure for serum heavy metal detection, which aims to solve the problems that the existing storage device for serum detection in the background art is generally a single layer, the number of serum storage tubes for single storage is small, and the serum storage cannot be classified and stored in the storage process.
In order to achieve the purpose, the utility model provides the following technical scheme: a storage device with a layered structure for detecting heavy metals in serum comprises a storage box main body and a limiting base plate, wherein a sealing cover is arranged above the storage box main body, the front end of the upper part of the sealing cover is provided with a sealing component, the front end of the storage box main body is connected with a limiting component, the limiting component comprises a placing rack, a limiting groove, a fixing block, a limiting block and a limiting ring, the left end and the right end of the placing rack are both fixedly connected with the limiting block, a limiting groove is arranged on one side of the limiting block away from the central axis of the placing rack, a limiting ring penetrates through the interior of the placing rack, a fixing block is arranged on one side of the storage box main body close to the central axis of the storage box, a second limiting cap is arranged at the bottom end of the storage box, the limiting chassis is arranged at the inner bottom end of the storage box main body, and the bottom fixedly connected with gomphosis piece of storage box main part, the rear end of sealed lid is provided with the gomphosis groove.
Preferably, the front end of the sealing cover is provided with a first limiting cap, and the front end of the first limiting cap is fixedly connected with a sponge pad.
Preferably, sealing assembly includes connecting block, fixture block and draw-in groove, and the front end fixedly connected with fixture block of connecting block, the draw-in groove sets up in the bottom of storage box main part.
Preferably, the connecting block and the clamping block are distributed in a parallel shape, and the clamping block is rectangular.
Preferably, first spacing cap is circular form, and first spacing cap is the equidistance respectively about the perpendicular bisector of sealed lid and distributes, is closely laminating moreover between first spacing cap and the foam-rubber cushion.
Preferably, the limiting blocks are symmetrically arranged at four positions in the middle of the placing rack, and the limiting blocks are connected with the limiting grooves in a clamping mode.
Preferably, the mosaic block and the storage box main body are vertically distributed, and the mosaic block is rectangular.
The utility model provides a storage device with a layered structure for serum heavy metal detection, which has the following beneficial effects: this serum heavy metal detects with storage device who has layered structure adopts the design of two racks, and it can make things convenient for the serum storage tube to carry out the layering and place at the in-process that the storage box main part used, and the rack utilizes the stopper to carry out the mode of fixing simultaneously, and the rack that can be convenient for is dismantled and is installed to make things convenient for the serum storage tube to store.
1. The connecting block is arranged to fix the clamping block at the top end of the sealing cover, so that when the sealing cover covers the front end of the storage box main body, the connection between the sealing cover and the storage box main body can be enhanced through the clamping between the clamping block and the clamping groove, and the blood storage tube in the storage box main body can be stored better.
2. According to the serum storage tube storage rack, the first limiting cap can limit the serum storage tube placed in the storage rack, so that the serum storage tube can be stored in the storage box main body more stably, meanwhile, the limiting effect of the first limiting cap can be enhanced through the sponge mat, the phenomenon that the serum storage tube shakes left and right in the storage process is avoided, the storage rack can be placed in the storage box main body after the limiting block is clamped into the limiting groove, the serum storage tube can be conveniently stored, and meanwhile, the storage rack is provided with two purposes, so that the number of the serum storage tubes stored in the storage box main body can be increased, and the serum storage tubes can be conveniently placed in a layered mode.
3. When the storage box main body and other storage boxes are required to be placed into the refrigerator for storage, the embedded block below the storage box main body is clamped into the embedded grooves above the other storage boxes, so that the connectivity between the storage box main body and the other storage boxes can be enhanced, and the phenomenon of toppling over in the storage process is avoided.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a storage device with a layered structure for detecting heavy metals in serum according to the present invention;
FIG. 2 is an enlarged schematic structural diagram of a storage device having a layered structure for detecting heavy metals in serum according to the present invention at A in FIG. 1;
FIG. 3 is a schematic diagram of the internal structure of a storage rack and a second limiting cap of the storage device with a layered structure for detecting heavy metals in serum according to the present invention;
fig. 4 is a schematic top view of a sealing cover and a fitting groove of a storage device with a layered structure for detecting heavy metals in serum according to the present invention.
In the figure: 1. a storage case body; 2. a seal assembly; 201. connecting blocks; 202. a clamping block; 203. a card slot; 3. a limiting component; 301. placing a rack; 302. a limiting groove; 303. a fixed block; 304. a limiting block; 305. a limiting ring; 4. a sealing cover; 5. a first limit cap; 6. a sponge cushion; 7. a second limit cap; 8. a limiting chassis; 9. a fitting groove; 10. a fitting block.
Detailed Description
As shown in fig. 1, 3 and 4, a storage device with a layered structure for detecting heavy metals in serum comprises a storage box main body 1 and a limiting base plate 8, a sealing cover 4 is arranged above the storage box main body 1, and a sealing assembly 2 is arranged at the front end above the sealing cover 4, the sealing assembly 2 comprises a connecting block 201, a clamping block 202 and a clamping groove 203, the clamping block 202 is fixedly connected to the front end of the connecting block 201, the clamping groove 203 is arranged at the bottom end of the storage box main body 1, the connecting block 201 and the clamping block 202 are distributed in a parallel manner, and the clamping block 202 is rectangular, the connecting block 201 is arranged to fix the clamping block 202 at the top end of the sealing cover 4, when the sealing cover 4 covers the front end of the storage box main body 1, the connectivity between the sealing cover 4 and the storage box main body 1 can be enhanced through the clamping between the clamping block 202 and the clamping groove 203, so that a blood storage tube in the storage box main body 1 can be better stored, the bottom end of the placing frame 301 is provided with a second limiting cap 7, a limiting chassis 8 is arranged at the inner bottom end of the storage box main body 1, the bottom end of the storage box main body 1 is fixedly connected with an embedded block 10, the rear end of the sealing cover 4 is provided with an embedded groove 9, the embedded block 10 is vertically distributed with the storage box main body 1, the embedded block 10 is rectangular, when the storage box main body 1 and other storage boxes are required to be placed into a refrigerated cabinet for storage at the same time, the embedded block 10 below the storage box main body 1 is embedded into the embedded groove 9 above other storage boxes, the connectivity between the storage box main body 1 and other storage boxes can be enhanced, the storage box main body is prevented from falling down in the storage process, the front end of the sealing cover 4 is provided with a first limiting cap 5, the front end of the first limiting cap 5 is fixedly connected with a sponge pad 6, the first limiting cap 5 is circular, and the first limiting caps 5 are respectively distributed at equal intervals with the perpendicular bisector of the sealing cover 4, and for closely laminating between first spacing cap 5 and the foam-rubber cushion 6, first spacing cap 5 can carry on spacingly to the serum memotron of placing in the rack 301 for it can be stored more stable in storage box main part 1, and foam-rubber cushion 6 can strengthen the spacing effect of first spacing cap 5 simultaneously, avoids the serum memotron phenomenon that the roll appears in the storage process.
As shown in fig. 2, the front end of the storage box main body 1 is connected with a limiting component 3, the limiting component 3 includes a placement frame 301, a limiting groove 302, a fixing block 303, limiting blocks 304 and a limiting ring 305, the left and right ends of the placement frame 301 are both fixedly connected with the limiting blocks 304, one side of the limiting blocks 304 away from the central axis of the placement frame 301 is provided with the limiting groove 302, the limiting ring 305 penetrates through the interior of the placement frame 301, one side of the storage box main body 1 close to the central axis of the placement frame 301 is provided with the fixing block 303, four limiting blocks 304 are symmetrically arranged about the middle position of the placement frame 301, the limiting blocks 304 are connected with the limiting groove 302 in a clamping manner, after the limiting blocks 304 are clamped into the limiting groove 302, the placement frame 301 can be placed inside the storage box main body 1, so as to facilitate the storage of serum storage tubes, meanwhile, the placement frame 301 is provided with two purposes, which not only can increase the number of the storage tubes stored in the storage box main body 1, meanwhile, the serum storage tube can be conveniently placed in layers.
In summary, in the storage device with a layered structure for detecting heavy metal in serum, when in use, as shown in fig. 1 and 3, the storage box body 1 is provided with two storage racks 301, so that the serum storage tubes can be layered, and three rows of serum storage tubes can be placed inside the storage box body 1, so that the storage box body 1 is more convenient and faster to use, and when the storage box body 1 is in use, as shown in fig. 2, the uppermost storage rack 301 is held and pulled upwards, so that the limiting block 304 and the limiting groove 302 can be separated in the pulling process, after separation, the uppermost storage rack 301 can be detached, and then the lower storage rack 301 can be detached in the same manner, so that the serum storage tubes can be layered, and at the same time, the inner wall of the limiting ring 305 is connected with an anti-skid pad, so that the serum storage tubes can be more stable during storage, after the serum storage tube is placed into storage box main body 1, seal lid 4 is held to overturn downwards again, then in block 202 block enters draw-in groove 203, just can strengthen the connectivity between seal lid 4 and the storage box main body 1, make the blood storage tube in storage box main body 1 can be better stored, simultaneously storage box main body 1 need place into the freezer with other storage boxes simultaneously and deposit the time, as shown according to fig. 4, with in the gomphosis groove 9 of storage box main body 1 below gomphosis piece 10 block entering other storage boxes top, just can strengthen the connectivity between storage box main body 1 and other storage boxes, avoid it to appear empting the phenomenon in the storage process.

Claims (7)

1. The storage device with the layered structure for detecting the heavy metal in the serum comprises a storage box main body (1) and a limiting chassis (8), and is characterized in that a sealing cover (4) is arranged above the storage box main body (1), a sealing assembly (2) is arranged at the front end above the sealing cover (4), a limiting assembly (3) is connected at the front end of the storage box main body (1), the limiting assembly (3) comprises a placement frame (301), a limiting groove (302), a fixing block (303), a limiting block (304) and a limiting ring (305), the limiting block (304) is fixedly connected at the left end and the right end of the placement frame (301), the limiting groove (302) is arranged at one side of the limiting block (304) far away from the central axis of the placement frame (301), the limiting ring (305) penetrates through the interior of the placement frame (301), and the fixing block (303) is arranged at one side of the storage box main body (1) close to the central axis of the placement frame (301), the bottom of rack (301) is provided with spacing cap of second (7), spacing chassis (8) set up in the inside bottom of storage box main part (1), and the bottom fixedly connected with gomphosis piece (10) of storage box main part (1), the rear end of sealed lid (4) is provided with gomphosis groove (9).
2. The storage device with the layered structure for detecting heavy metal in serum according to claim 1, wherein a first limit cap (5) is arranged at the front end of the sealing cover (4), and a sponge pad (6) is fixedly connected to the front end of the first limit cap (5).
3. The storage device with the layered structure for detecting heavy metals in serum according to claim 1, wherein the sealing assembly (2) comprises a connecting block (201), a clamping block (202) and a clamping groove (203), the clamping block (202) is fixedly connected to the front end of the connecting block (201), and the clamping groove (203) is arranged at the bottom end of the storage box body (1).
4. The storage device with the layered structure for detecting heavy metals in serum according to claim 3, wherein the connecting block (201) and the fixture block (202) are distributed in parallel, and the fixture block (202) is rectangular.
5. The storage device with the layered structure for serum heavy metal detection according to claim 2, wherein the first limiting caps (5) are circular, the first limiting caps (5) are respectively distributed at equal intervals with respect to the perpendicular bisector of the sealing cover (4), and the first limiting caps (5) are tightly attached to the sponge pad (6).
6. The storage device with the layered structure for serum heavy metal detection according to claim 1, wherein four limiting blocks (304) are symmetrically arranged at the middle position of the placing rack (301), and the limiting blocks (304) are connected with the limiting grooves (302) in a clamping manner.
7. The storage device with the layered structure for detecting heavy metal in serum according to claim 1, wherein the embedded blocks (10) are vertically distributed with the storage box main body (1), and the embedded blocks (10) are rectangular.
CN202122484210.0U 2021-10-15 2021-10-15 Serum heavy metal detects with storage device who has layered structure Active CN215972865U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122484210.0U CN215972865U (en) 2021-10-15 2021-10-15 Serum heavy metal detects with storage device who has layered structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122484210.0U CN215972865U (en) 2021-10-15 2021-10-15 Serum heavy metal detects with storage device who has layered structure

Publications (1)

Publication Number Publication Date
CN215972865U true CN215972865U (en) 2022-03-08

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ID=80508234

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122484210.0U Active CN215972865U (en) 2021-10-15 2021-10-15 Serum heavy metal detects with storage device who has layered structure

Country Status (1)

Country Link
CN (1) CN215972865U (en)

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