CN218477844U - Sample storage device capable of realizing low-temperature energy saving - Google Patents

Sample storage device capable of realizing low-temperature energy saving Download PDF

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Publication number
CN218477844U
CN218477844U CN202222806714.4U CN202222806714U CN218477844U CN 218477844 U CN218477844 U CN 218477844U CN 202222806714 U CN202222806714 U CN 202222806714U CN 218477844 U CN218477844 U CN 218477844U
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fixedly connected
wall
seted
cavity
storage device
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仇亚楼
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Mingguang Taizuo Information Technology Co ltd
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Mingguang Taizuo Information Technology Co ltd
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Abstract

The utility model discloses a can realize sample storage device of low temperature energy-conservation, relate to sample storage device field, including the heat preservation bin, a plurality of hold up tanks have been seted up on the upside surface of heat preservation bin, the equal fixedly connected with sealing rubber pad of upside of a plurality of hold up tank inner walls, the inside of a plurality of hold up tanks all is provided with the sampling pipe, first draw-in groove has all been seted up all around to a plurality of sampling pipes, first cavity has all been seted up to four sides of a plurality of hold up tank inner walls, the inside of a plurality of first cavities all is provided with chucking mechanism, first recess has been seted up to the preceding side surface of heat preservation bin, the round mouth has all been seted up to the downside of a plurality of hold up tank inner walls, the inside of a plurality of round mouths all is provided with air inlet unit. The utility model discloses, put into the ice-cube in the case, through the air inlet of top, conveniently carry air conditioning in the hold up tank, when the hold up tank was not put into to the sampling pipe, air conditioning can not enter into the hold up tank to avoid the quick loss of air conditioning.

Description

Sample storage device capable of realizing low-temperature energy saving
Technical Field
The utility model relates to a sample storage device field, in particular to can realize energy-conserving sample storage device of low temperature.
Background
The nucleic acid detection screening sample for mild patients and suspected cases is mainly deep expectoration liquid or oropharyngeal swab or nasopharyngeal swab, and aims to further improve the positive rate of nucleic acid detection.
The applicant finds that a Chinese patent discloses a nucleic acid sample storage device, the publication (announcement) number of which is CN216187183U, the patent mainly covers and closes the upper end of a nucleic acid reagent box by turning a cover body, one hand holds a rectangular block to be aligned with a rectangular groove to push, the other hand indicates a limiting plate on the lower side of the rectangular block, after the rectangular block is completely inserted between the nucleic acid reagent box and the cover body, the limiting plate is pushed by a telescopic rod and a spring to move downwards, the limiting plate is inserted and fixed to the limiting groove, each group of supporting plates are respectively in lap joint with the lower sides of ports of the nucleic acid reagent tubes to limit a plurality of groups of nucleic acid reagent tubes, when the outside of the nucleic acid reagent box is collided, the nucleic acid reagent tubes cannot shake, the stability of the nucleic acid reagent tubes in fixing is improved, the nucleic acid samples in the nucleic acid reagent tubes are protected, but when the collected nucleic acid samples are stored at low temperature, errors are easily caused in the inconvenient sampling result, and in the condition that bacteria are easy to die and the detection result is influenced when the weather is hot in summer.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can realize sample storage device of low temperature energy-conservation to the nucleic acid sample to gathering that proposes in solving above-mentioned background art when storing, inconvenient low temperature storage that carries on, thereby lead to the easy error that appears of result of sampling, and under the hotter condition of summer weather, lead to bacterial apoptosis and death easily, influence the problem of the result that detects.
In order to achieve the above purpose, the utility model provides a following technical scheme: the utility model provides a can realize sample storage device of low temperature energy-conserving, includes the bin that keeps warm, a plurality of hold up tanks have been seted up on the upside surface of the bin that keeps warm, and is a plurality of the equal fixedly connected with sealing rubber pad of upside of hold up tank inner wall, it is a plurality of the inside of hold up tank all is provided with the sampling pipe, and is a plurality of first draw-in groove has all been seted up all around to the sampling pipe, and is a plurality of first cavity has all been seted up to four sides of hold up tank inner wall, and is a plurality of the inside of first cavity all is provided with chucking mechanism, first recess has been seted up to the front side surface of the bin that keeps warm, and is a plurality of the round mouth has all been seted up to the downside of hold up tank inner wall, and is a plurality of the inside of round mouth all is provided with air inlet unit, the inside of first recess is provided with the case.
Preferably, the clamping mechanism comprises a first clamping block, one side surface of the first clamping block penetrates through one side of the inner wall of the first cavity to the inside of the storage groove, and the other side surface of the first clamping block and the other side of the inner wall of the first cavity are fixedly connected with a plurality of first springs together.
Preferably, the air inlet unit includes the stopper, the sealed pad of inner wall fixedly connected with of stopper, the second recess, two have all been seted up to the left and right sides on stopper side surface the equal fixedly connected with sleeve of inner wall of second recess, two the equal fixedly connected with second spring of downside of sleeve inner wall, two the equal fixedly connected with litter in upper end of second spring, two the upside that the sleeve inner wall was all run through to its upper surface, two in the upper end of litter the common fixedly connected with fretwork board in upper end of litter, the fixedly connected with connecting rod of center department of fretwork board side surface, the lower extreme fixedly connected with hemisphere type dog of connecting rod.
Preferably, first spout has all been seted up to the left and right sides of sleeve inner wall, two the inner wall of first spout all through first slider respectively with the left and right sides surface sliding connection of litter.
Preferably, the rear side surface of the storage box is fixedly connected with a first magnetic strip, the rear side of the inner wall of the first groove is fixedly connected with a second magnetic strip, the front side surface of the storage box is fixedly connected with a baffle, and the rear side surface of the baffle is fixedly connected with a sealing strip.
Preferably, the left and right side surfaces of the storage box are provided with third grooves, two third groove inner walls are connected with the rotating rod, two rotating rods are fixedly connected with straight gears and two second clamping blocks are arranged inside the third grooves, racks are fixedly connected with the upper side surfaces of the second clamping blocks, the upper side surfaces of the racks are meshed with the lower side surfaces of the straight gears, and second clamping grooves matched with the second clamping blocks are formed in the left and right sides of the first groove inner walls.
Preferably, second chutes are formed in the front side and the rear side of the inner wall of the third groove, and the inner walls of the second chutes are respectively connected with the front side and the rear side of the second fixture block in a surface sliding mode through second sliding blocks.
Preferably, the left side and the right side of the baffle are both provided with a second cavity, the front ends of the two rotating rods penetrate through the front side of the inner wall of the third groove and the inside of the second cavity, the front sides of the two rotating rod walls are both fixedly connected with worm gears, the upper side surfaces of the two worm gears are both meshed and connected with worms, the center of the front side surface of the baffle is provided with a third cavity, the opposite ends of the two worms penetrate through the opposite side of the inner wall of the second cavity and the inside of the third cavity respectively, the opposite ends of the two worms are both fixedly connected with first bevel gears, the front side surfaces of the two first bevel gears are meshed and connected with a second bevel gear together, the front side surface of the baffle is rotatably connected with a rotating knob, the rear end of the rotating knob penetrates through the front side surface of the baffle and the inside of the third cavity, and the rear end of the rotating knob is fixedly connected with the front side surface of the second bevel gear.
The utility model discloses a technological effect and advantage:
1. through setting up heat preservation bin, hold up tank, sealing rubber pad, sampling pipe, first draw-in groove, case, the utility model discloses, put into the ice-cube in the case, through the air inlet of top, conveniently carry air conditioning in the hold up tank, when the sampling pipe does not put into the hold up tank, air conditioning can not enter into the hold up tank to avoid the quick loss of air conditioning.
2. Through setting up first draw-in groove, first fixture block, the hold up tank, first spring, under the effect of first spring, make first fixture block remove, drive first fixture block card and go into in the first draw-in groove on the sampling pipe, through setting up the stopper, the sleeve, the second spring, the litter, the fretwork board, the connecting rod, hemisphere type dog, under the effect of hemisphere type dog, when making not put into the sampling pipe in the hold up tank, air conditioning can not enter into the hold up tank, through setting up the sleeve, the litter, under the spacing of first spout, make a plurality of litter keep stable when removing, through setting up the case, first magnetic stripe, the second magnetic stripe, the baffle, the sealing strip, under the effect of first magnetic stripe and second magnetic stripe, make the case keep stable with the inner wall of first recess.
3. Through setting up the case, the bull stick, the straight-teeth gear, the second fixture block, the rack, the second draw-in groove, under the effect of second fixture block and second draw-in groove, make the case remain stable in first recess, through setting up the second fixture block, under the effect of second spout, make the second fixture block remain stable when moving, through setting up the baffle, the bull stick, the worm wheel, the worm, first bevel gear, the second bevel gear, the turn button, under the effect of turn button, conveniently adjust chucking between second fixture block and the second draw-in groove and loosen.
Drawings
Fig. 1 is a schematic view of the overall three-dimensional structure of the present invention.
Fig. 2 is a schematic view of the front side section structure of the thermal insulation storage box of the present invention.
Fig. 3 is a schematic view of the a-part enlarged structure of the present invention.
Fig. 4 is a schematic view of the upper side section structure of the thermal insulation storage box of the present invention.
Fig. 5 is a schematic view of the cross-sectional structure of the left side section of the storage box of the present invention.
In the figure: 1. a heat preservation storage box; 2. a storage tank; 3. sealing the rubber pad; 4. a sampling tube; 5. a first card slot; 6. a storage box; 7. a first clamping block; 8. a first spring; 9. a limiting block; 10. a gasket; 11. a sleeve; 12. a second spring; 13. a slide rod; 14. a hollowed-out plate; 15. a connecting rod; 16. a hemispherical stopper; 17. a first magnetic stripe; 18. a baffle plate; 19. a sealing strip; 20. a rotating rod; 21. a spur gear; 22. a second fixture block; 23. a rack; 24. a second card slot; 25. a worm gear; 26. a worm; 27. a first bevel gear; 28. a second bevel gear; 29. turning a button; 30. and a second magnetic strip.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model provides a as shown in fig. 1-5 a can realize sample storage device of low temperature energy-conserving, including heat preservation bin 1, a plurality of hold up tanks 2 have been seted up to heat preservation bin 1's upside surface, the equal fixedly connected with sealing rubber pad 3 of the upside of a plurality of hold up tank 2 inner walls, the inside of a plurality of hold up tanks 2 all is provided with sampling pipe 4, first draw-in groove 5 has all been seted up all around a plurality of sampling pipe 4, first cavity has all been seted up to four sides of a plurality of hold up tank 2 inner walls, the inside of a plurality of first cavities all is provided with chucking mechanism, first recess has been seted up to heat preservation bin 1's front side surface, the round mouth has all been seted up to the downside of a plurality of hold up tank 2 inner walls, the inside of a plurality of round mouths all is provided with air inlet unit, the inside of first recess is provided with storage box 6, the utility model discloses, put into the ice-cube, through the air inlet of top, conveniently carry air conditioning in hold up tank 2, when storage tank 2 is not put into to storage pipe 4, air conditioning can not enter into storage tank 2, thereby avoid the quick loss of storage.
As shown in fig. 2 and 3, the clamping mechanism includes a first clamping block 7, a side surface of the first clamping block 7 penetrates through one side of the inner wall of the first cavity to the inside of the storage tank 2, another side surface of the first clamping block 7 and the other side of the inner wall of the first cavity are fixedly connected with a plurality of first springs 8 together, under the action of the first springs 8, the first clamping block 7 can be moved to drive the first clamping block 7 to be clamped into the first clamping groove 5 on the sampling tube 4, the air inlet device includes a limiting block 9, the inner wall of the limiting block 9 is fixedly connected with a sealing gasket 10, the left side and the right side of the upper side surface of the limiting block 9 are both provided with second grooves, the inner walls of the two second grooves are both fixedly connected with sleeves 11, the lower sides of the inner walls of the two sleeves 11 are both fixedly connected with second springs 12, the upper ends of the two second springs 12 are both fixedly connected with sliding blocks 13, the upper ends of the two sliding bars 13 penetrate through the upper side of the inner wall of the sleeves 11 to the upper side surface thereof, the upper ends of the two sliding bars 13 are fixedly connected with hollowed-out plates 14, the connecting rod 14 is fixedly connected with a connecting rod 15, the lower end of the hemispherical stopper 16 does not enter into the storage tank 2 when the hemispherical rod, and the storage tank 2.
As shown in fig. 3 and 4, first chutes have been respectively opened on the left and right sides of the inner wall of the sleeve 11, the inner walls of the two first chutes are respectively connected with the left and right side surfaces of the sliding rods 13 in a sliding manner through first sliding blocks, the sliding rods 13 are kept stable when moving under the limitation of the first chutes, the rear side surface of the storage box 6 is fixedly connected with the first magnetic stripe 17, the rear side of the inner wall of the first groove is fixedly connected with the second magnetic stripe 30, the front side surface of the storage box 6 is fixedly connected with the baffle 18, the rear side surface of the baffle 18 is fixedly connected with the sealing strip 19, and under the action of the first magnetic stripe 17 and the second magnetic stripe 30, the storage box 6 and the inner wall of the first groove are kept stable.
As shown in fig. 4 and 5, third grooves have been all opened on the left and right side surfaces of the storage box 6, the rear sides of the inner walls of the two third grooves are all rotatably connected with the rotating rods 20 through bearings, straight gears 21 are fixedly connected with the rod walls of the two rotating rods 20, second clamping blocks 22 are arranged inside the two third grooves, racks 23 are fixedly connected with the upper side surfaces of the two second clamping blocks 22, the upper side surfaces of the two racks 23 are engaged with the lower side surfaces of the straight gears 21, second clamping grooves 24 matched with the second clamping blocks 22 are respectively opened on the left and right sides of the inner walls of the first grooves, under the action of the second clamping blocks 22 and the second clamping grooves 24, the storage box 6 is kept stable in the first grooves, second sliding grooves are respectively opened on the front and rear sides of the inner walls of the third grooves, the inner walls of the two second sliding grooves are respectively connected with the front and rear sides surfaces of the second clamping blocks 22 through second sliding blocks, and under the action of the second sliding grooves, the second clamping blocks 22 are kept stable when moving.
As shown in fig. 4, the left and right sides of the baffle 18 are both provided with a second cavity, the front ends of the two rotating rods 20 both penetrate through the front side of the inner wall of the third groove to the inside of the second cavity, the front sides of the rod walls of the two rotating rods 20 are both fixedly connected with worm gears 25, the upper side surfaces of the two worm gears 25 are both engaged and connected with worms 26, the center of the front side surface of the baffle 18 is provided with a third cavity, the opposite ends of the two worms 26 respectively penetrate through the opposite sides of the inner wall of the second cavity to the inside of the third cavity, the opposite ends of the two worms 26 are both fixedly connected with first bevel gears 27, the front side surfaces of the two first bevel gears 27 are engaged and connected with second bevel gears 28, the front side surface of the baffle 18 is rotatably connected with a rotating knob 29, the rear end of the rotating knob 29 penetrates through the front side surface of the baffle 18 to the inside of the third cavity, the rear end of the rotating knob 29 is fixedly connected with the front side surface of the second bevel gears 28, and under the action of the rotating knob 29, the second fixture block 22 and the second fixture groove 24 can be conveniently adjusted to be loosened and clamped.
The utility model discloses theory of operation: when the device is used, ice blocks are put into the storage box 6, the storage box 6 is put into the first groove, under the mutual adsorption effect of the first magnetic strip 17 on the storage box 6 and the rotating rod 20 in the first groove, the storage box 6 is fixed in the first groove, the rotating button 29 is rotated, the second bevel gear 28 drives the two first bevel gears 27 to rotate, the two worms 26 drive the worm wheel 25 on the rotating rod 20 to rotate, the two straight gears 21 rotate, the rack 23 on the second fixture block 22 is driven to move, the second fixture block 22 is moved into the second clamping groove 24, the stability of the storage box 6 is kept, and the sealing strip 19 keeps the sealing between the baffle 18 and the first groove;
put into storage tank 2 with sampling pipe 4 after the sample, press sampling pipe 4 downwards, until a plurality of first fixture blocks 7 under the effect of first spring 8, in the first draw-in groove 5 of card income sampling pipe 4, thereby keep the stability of sampling pipe 4, and under the effect of sealing rubber pad 3, seal the upside of sampling pipe 4, when sampling pipe 4 moves down, sampling pipe 4 drives fretwork board 14 and moves down, thereby make litter 13 remove in sleeve 11, and make second spring 12 compress, simultaneously, fretwork board 14 drives hemisphere type dog 16 under connecting rod 15 and pushes away from stopper 9, thereby make the air conditioning of ice-cube in the case 6 can enter into storage tank 2 through fretwork board 14.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications and variations can be made in the embodiments or in part of the technical features of the embodiments without departing from the spirit and the scope of the invention.

Claims (8)

1. The utility model provides a can realize sample storage device of low temperature energy-conservation, includes heat preservation bin (1), its characterized in that: a plurality of hold tanks (2) have been seted up to the upside surface of heat preservation bin (1), and is a plurality of equal fixedly connected with sealing rubber pad (3) of upside of hold tank (2) inner wall, it is a plurality of sampling pipe (4) all are provided with sampling pipe (4), and are a plurality of first draw-in groove (5) have all been seted up all around of sampling pipe (4), and are a plurality of first cavity has all been seted up to four sides of hold tank (2) inner wall, and is a plurality of the inside of first cavity all is provided with chucking mechanism, first recess has been seted up to the front side surface of heat preservation bin (1), and is a plurality of the round mouth has all been seted up to the downside of hold tank (2) inner wall, and is a plurality of the inside of round mouth all is provided with air inlet unit, the inside of first recess is provided with case (6).
2. The sample storage device capable of realizing low-temperature energy saving of claim 1, wherein: the clamping mechanism comprises a first clamping block (7), one side surface of the first clamping block (7) penetrates through one side of the inner wall of the first cavity to the inside of the storage groove (2), and the other side surface of the first clamping block (7) and the other side of the inner wall of the first cavity are fixedly connected with a plurality of first springs (8) together.
3. The sample storage device capable of realizing low-temperature energy saving of claim 1, wherein: air inlet unit includes stopper (9), the sealed pad (10) of inner wall fixedly connected with of stopper (9), the second recess has all been seted up, two to the left and right sides of stopper (9) side surface the equal fixedly connected with sleeve (11) of inner wall of second recess, two the equal fixedly connected with second spring (12) of downside of sleeve (11) inner wall, two the equal fixedly connected with litter (13) in upper end of second spring (12), two the upside that sleeve (11) inner wall was all run through to its upper surface in the upper end of litter (13), two the common fixedly connected with fretwork board (14) in upper end of litter (13), fixedly connected with connecting rod (15) are located to the center of fretwork board (14) side surface, the lower extreme fixedly connected with hemisphere type dog (16) of connecting rod (15).
4. The sample storage device capable of realizing low-temperature energy saving of claim 3, wherein: first spout has all been seted up to the left and right sides of sleeve (11) inner wall, two the inner wall of first spout all through first slider respectively with the left and right sides surface sliding connection of litter (13).
5. The sample storage device capable of realizing low-temperature energy saving of claim 1, wherein: the rear side of case (6) surface fixedly connected with first magnetic stripe (17), the rear side fixedly connected with second magnetic stripe (30) of first recess inner wall, the front side surface fixedly connected with baffle (18) of case (6), the rear side surface fixedly connected with sealing strip (19) of baffle (18).
6. The sample storage device capable of realizing low-temperature energy saving of claim 5, wherein: third recess, two have all been seted up on the left and right sides surface of case (6) the rear side of third recess inner wall all rotates through the bearing and is connected with bull stick (20), two the equal fixedly connected with straight-teeth gear (21) of pole wall of bull stick (20), two the inside of third recess all is provided with second fixture block (22), two the equal fixedly connected with rack (23) of upside surface of second fixture block (22), two the upside surface of rack (23) all is connected with the lower side surface meshing of straight-teeth gear (21), first recess inner wall's the left and right sides all seted up with second fixture block (22) assorted second draw-in groove (24).
7. The sample storage device capable of realizing low-temperature energy saving of claim 6, wherein: second chutes are formed in the front side and the rear side of the inner wall of the third groove, and the inner walls of the second chutes are connected with the front side and the rear side of the second clamping block (22) in a sliding mode through second sliding blocks.
8. The sample storage device capable of realizing low-temperature energy saving of claim 6, wherein: the left side and the right side of the baffle plate (18) are both provided with a second cavity, the front ends of the two rotating rods (20) penetrate through the front side of the inner wall of the third groove to the inside of the second cavity, the front sides of the rod walls of the two rotating rods (20) are both fixedly connected with worm wheels (25), the upper side surfaces of the two worm wheels (25) are both in meshed connection with worms (26), the center of the front side surface of the baffle plate (18) is provided with a third cavity, the opposite ends of the two worms (26) penetrate through the opposite side of the inner wall of the second cavity to the inside of the third cavity respectively, the opposite ends of the two worms (26) are both fixedly connected with first bevel gears (27), the front side surfaces of the two first bevel gears (27) are jointly in meshed connection with a second bevel gear (28), the front side surface of the baffle plate (18) is rotatably connected with a rotating knob (29), the rear end of the rotating knob (29) penetrates through the front side surface of the baffle plate (18) to the inside of the third cavity, and the rear end of the rotating knob (29) is fixedly connected with the front side surface of the second bevel gear (28).
CN202222806714.4U 2022-10-25 2022-10-25 Sample storage device capable of realizing low-temperature energy saving Active CN218477844U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222806714.4U CN218477844U (en) 2022-10-25 2022-10-25 Sample storage device capable of realizing low-temperature energy saving

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222806714.4U CN218477844U (en) 2022-10-25 2022-10-25 Sample storage device capable of realizing low-temperature energy saving

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CN218477844U true CN218477844U (en) 2023-02-14

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