CN206355998U - A kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator - Google Patents
A kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator Download PDFInfo
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- CN206355998U CN206355998U CN201621255941.0U CN201621255941U CN206355998U CN 206355998 U CN206355998 U CN 206355998U CN 201621255941 U CN201621255941 U CN 201621255941U CN 206355998 U CN206355998 U CN 206355998U
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- layering
- constant temperature
- flat board
- carbon dioxide
- pallet
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Abstract
The utility model discloses pallet structure is layered built in a kind of microorganism constant temperature carbon dioxide incubator, including more than two cuboid frameworks and be arranged in cuboid framework can push-and-pull layering pallet, described cuboid framework includes bottom plate and is symmetricly set on the side plate of bottom plate both sides, wherein docking boss is provided with the side plate of side, the butt hole with docking boss cooperation is provided with opposite side side plate, adjacent cuboid framework is linked together by the docking boss and butt hole on side plate.The utility model is layered using clamping plate to be formed the mode of slit and makes the flat board sample of microbial inoculant in CO2It is heated evenly in incubator and CO2Gas is fully contacted, and according to drawer push-and-pull principle design can free push-and-pull layering pallet to search flat board sample simple and efficient, transport, preservation process safety are steady, and the single taking-up of sample or batch discarding are simply rapid when toppling over, and make inspection specimen accurate positioning orderly using numbering.
Description
Technical field
The utility model is related to a kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator, belongs to medical real
Test equipment technical field.
Background technology
Either hospital laboratory, blood station, Disease Control and Prevention Center or be the inspection bodies such as independence test class company and enterprise inspection
Test, after having Microbiological Lab such as establishment or carry out the too busy to get away use constant temperature carbon dioxide incubator of microorganism correlative study to inoculation
The flat board of inspection specimen (such as blood, sputum, stool) cultivated.Traditional method is filled using three-dimensional square basket
Carry and store vaccinated all kinds of flat boards or directly the flat board of inoculation is placed directly in constant temperature carbon dioxide incubator, but it is deposited
It is unreasonable or insufficient in the space utilization of microorganism constant temperature carbon dioxide incubator;All kinds of flat boards are sequentially overlapped accumulation, cause every
Individual flat board heated (35 DEG C of constant temperature) is uneven and insufficient contact with carbon dioxide;The flat board sample lookup difficulty of inoculation,
Sample transport preserve inconvenience, inspection specimen can not precise and high efficiency positioning etc. many weak points.
At present, although the pallet of the improved vaccinated flat board of splendid attire storage of visible part is put on market, if any setting
Cylinder type is counted into deposit the layering pallet of flat board, it is steady in order to transport, or for the layering pallet being heated evenly.But
So far, there is not yet can overcome the disadvantages that above-mentioned not enough Novel layered pallet completely, therefore current related shelf is to expire
The need for all kinds of Micro biological Tests mechanisms of foot.
Utility model content
The purpose of this utility model is that there is provided pallet knot is layered built in a kind of microorganism constant temperature carbon dioxide incubator
Structure, the built-in layering pallet is layered using clamping plate to be formed the mode of slit and makes the flat board sample of microbial inoculant in CO2Incubator
Inside it is heated evenly and fully contacts CO2, and according to drawer push-and-pull principle design can free push-and-pull layering pallet make flat board
Sample is searched simple and efficient, transports, to preserve process safety steady, the single taking-up of sample or batch abandon it is simply rapid when toppling over,
And make inspection specimen accurate positioning orderly using coding techniques.
The technical solution of the utility model:A kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator, bag
Include more than two cuboid frameworks and be arranged in cuboid framework can push-and-pull layering pallet, described cuboid frame
Frame includes bottom plate and is symmetricly set on the side plate of bottom plate both sides, docking boss is provided with the side plate of side wherein, another
It is provided with the butt hole with docking boss cooperation on the side plate of side, adjacent cuboid framework passes through the docking boss on side plate and right
Hole is connect to link together;It is described can push-and-pull layering pallet be divided into three layers, every layer is provided with four inoculation flat board placement units,
Each inoculation flat board placement unit is made up of " X " type small rack of top and the big support of bottom " X " type and surrounding,
The side of inoculation flat board placement unit is provided with placement mouth, and inoculation flat board is put into inoculation flat board placement unit from placement mouth.
The built-in layering pallet structure of mentioned microorganism constant temperature carbon dioxide incubator, in addition to shortened type framework and shortening
Type is layered pallet, bottom plate one end of shortened type cuboid framework is provided with T-shape butt joint, in the bottom plate of cuboid framework
Tail end is provided with the T-shape docking groove coordinated with T-shape butt joint, while being layered the front end of pallet in shortened type and can push away
The tail end of pulling layer pallet is provided with magnet plate.
In the built-in layering pallet structure of mentioned microorganism constant temperature carbon dioxide incubator, the side of the cuboid framework both sides
Connecting rod is provided with the top of plate, the bonding strength to improve cuboid framework.
In the built-in layering pallet structure of mentioned microorganism constant temperature carbon dioxide incubator, it is described can push-and-pull layering pallet
Front end is provided with handle, by shake hands it is convenient can push-and-pull be layered pallet and pulled out out of cuboid framework.
In the built-in layering pallet structure of mentioned microorganism constant temperature carbon dioxide incubator, the big support of " X " type is close to be put
The side for putting mouth is provided with semi-circular recesses, is easy to take out inoculation flat board out of inoculation flat board placement unit.
In the built-in layering pallet structure of mentioned microorganism constant temperature carbon dioxide incubator, between the big support of " X " type of top layer
It is connected by connecting plate, improves the connectivity robustness of adjacent inoculation flat board placement unit.
Due to using above-mentioned technical proposal, the utility model has the advantage of:
1. the utility model can farthest utilize microorganism constant temperature CO2The space of incubator, makes put number of plates
Maximum is reached, one times of the quantity contained at present with basket is can reach.
2. the utility model can effectively solve current flat board superposition and can not be heated evenly and CO2Gas can not uniformly spread
The problem of, stacked by the layering of flat board sample, using the slit between levels, adjacent flat board is separated without superposition, from
And keep each position of each flat board to be heated evenly and (keep 35 DEG C of constant temperature) and CO2Concentration diffusion is uniform (to keep 5%~10%
Concentration).
3. the utility model due to using drawer can free push-pull principle and the lateral opening feature that shows unique characteristics make
The transport of flat board must be inoculated with and preserve more convenient.
4. the utility model is also using serial number (such as A1, A2, A3, A4, A5, A6) principle so that each is put down
The position of plate sample is uniquely determined, and solving inspection specimen position can not position, the problem of searching difficult;And effectively solve
Determine currently in order to making sample consistent with patient information, and papery checklist is together put into constant temperature CO with pairing sample2Incubator
In, and the security hidden trouble that checklist may be caused to burn.
5. because the clinical samples amount of each Microbiological Lab has certain difference, and constant temperature CO used is caused2Incubator
Specification be also that with different, the utility model is added flexibility, made it can be to horizontal stroke using horizontal longitudinal combination principle
To, longitudinally increase or reduce can push-and-pull layering pallet length and width and rectangular frame length and width, with more
The mode of efficient and rationalization meets all kinds of specification constant temperature CO in laboratory2The demand of incubator.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation of cuboid framework in the utility model;
Fig. 3 is Fig. 2 sectional view;
Fig. 4 be in the utility model can push-and-pull be layered the structural representation of pallet;
Fig. 5 is the structural representation of inoculation flat board placement unit in the utility model;
Fig. 6 is the structural representation of shortened type framework and shortened type layering pallet in the utility model.
Description of reference numerals:1- cuboid frameworks, 1.1- bottom plates, 1.2- side plates, 1.3- docking boss, 1.4- butt holes,
1.5- connecting rods, 1.6- T-shape docking grooves, 2- can push-and-pull layering pallet, 2.1- placement mouths, the big support of 2.2- " X " type, 2.3-
" X " type small rack, 2.4- connecting plates, 2.5- handles, 2.6- semi-circular recesses, 3- inoculation flat board placement units, 4- shortened type frames
Frame, 4.1- T-shape butt joints, 5- shortened types layering pallet, 5.1- magnet plates.
Embodiment
In order that the purpose of this utility model, technical scheme and advantage are clearer, it is right with reference to the accompanying drawings and examples
The utility model is described in further detail.
Embodiment of the present utility model:The structural representation of the built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator
Figure as shown in figure 1, including more than two cuboid frameworks 1 and be arranged in cuboid framework 1 can push-and-pull layering flat board
Frame 2, referring to Fig. 2 and Fig. 3, described cuboid framework 1 includes bottom plate 1.1 and is symmetricly set on the side plate of the both sides of bottom plate 1.1
1.2, the top of side plate 1.2 of the both sides of cuboid framework 1 is provided with connecting rod 1.5, and the connection to improve cuboid framework 1 is strong
Degree;Docking boss 1.3 is provided with side side plate 1.2 wherein, is provided with opposite side side plate 1.2 with docking boss 1.3
The butt hole 1.4 of cooperation, adjacent cuboid framework 1 is connected to by the docking boss 1.3 and butt hole 1.4 on side plate 1.2
Together, the transverse direction of cuboid framework 1 just can so be increased;Referring to Fig. 4 and Fig. 5, it is described can 2 points of push-and-pull layering pallet be three
Layer, every layer is provided with four inoculation flat board placement units 3, and each inoculation flat board placement unit 3 is by top and bottom " X "
The big support 2.2 of type and " X " the type small rack 2.3 of surrounding are constituted, and connecting plate 2.4 is passed through between the big support 2.2 of " X " type of top layer
It is connected, improves the connectivity robustness of adjacent inoculation flat board placement unit 3.Set in the side of inoculation flat board placement unit 3
There is placement mouth 2.1, inoculation flat board 6 is put into inoculation flat board placement unit 3 from placement mouthful 2.1.Meanwhile, can push-and-pull layering it is flat
The front end of grillage 2 is provided with handle 2.5, conveniently can the drawing out of cuboid framework 1 of push-and-pull layering pallet 2 by handle 2.5
Go out.The big support 2.2 of " X " type close to place mouth 2.1 side be provided with semi-circular recesses 2.6, be easy to will inoculation flat board 6 from
It is inoculated with flat board placement unit 3 and takes out.
In order to increase cuboid framework 1 and can push-and-pull be layered pallet 2 longitudinal length, referring to Fig. 6, the utility model
Shortened type framework 4 and shortened type layering pallet 5 are also provided with, is provided with bottom plate one end of shortened type cuboid framework 4
T-shape butt joint 4.1, the T-shape pair coordinated with T-shape butt joint 4.1 is provided with the tail end of bottom plate 1.1 of cuboid framework 1
Access slot 1.6, at the same shortened type be layered pallet 5 front end and can push-and-pull layering pallet 2 tail end be provided with magnet
Plate 5.1.Accordingly, it would be desirable to by cuboid framework 1 and can push-and-pull be layered pallet 2 longitudinal length when, can be by cuboid framework 1
On T-shape docking groove 1.6 be connected with the T-shape butt joint 4.1 in shortened type cuboid framework 4, while can push-and-pull layering
The magnet plate 5.1 that the magnet plate 5.1 of the tail end of pallet 2 is layered the front end of pallet 5 with shortened type is bonded together.
Claims (6)
1. a kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator, including more than two cuboid frameworks
(1) and be arranged in cuboid framework (1) can push-and-pull layering pallet (2), it is characterised in that:Described cuboid framework
(1) include bottom plate (1.1) and be symmetricly set on the side plate (1.2) of bottom plate (1.1) both sides, wherein on side side plate (1.2)
Docking boss (1.3) is provided with, the butt hole with docking boss (1.3) cooperation is provided with opposite side side plate (1.2)
(1.4), adjacent cuboid framework (1) is connected to one by the docking boss (1.3) and butt hole (1.4) on side plate (1.2)
Rise;It is described can push-and-pull layering pallet (2) be divided into three layers, every layer is provided with four inoculation flat board placement units (3), Mei Gejie
It is " X " the type small rack (2.3) by top and the big support of bottom " X " type (2.2) and surrounding to plant flat board placement unit (3)
Composition, placement mouth (2.1) is provided with the side of inoculation flat board placement unit (3), is inoculated with flat board (6) from placement mouthful (2.1)
It is put into inoculation flat board placement unit (3).
2. the built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator according to claim 1, it is characterised in that:
Also include shortened type framework (4) and shortened type layering pallet (5), set in bottom plate one end of shortened type cuboid framework (4)
T-shape butt joint (4.1) is equipped with, bottom plate (1.1) tail end in cuboid framework (1) is provided with matches somebody with somebody with T-shape butt joint (4.1)
The T-shape docking groove (1.6) of conjunction, at the same shortened type be layered pallet (5) front end and can push-and-pull layering pallet (2)
Tail end is provided with magnet plate (5.1).
3. the built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator according to claim 2, it is characterised in that:
Connecting rod (1.5) is provided with the top of the side plate (1.2) of cuboid framework (1) both sides.
4. the built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator according to claim 2, it is characterised in that:
It is described can push-and-pull layering pallet (2) front end be provided with handle (2.5).
5. the built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator according to claim 1, it is characterised in that:
The big support of " X " type (2.2) is provided with semi-circular recesses (2.6) close to the side for placing mouth (2.1).
6. the built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator according to claim 1, it is characterised in that:
It is connected between the big support of " X " type (2.2) of top layer by connecting plate (2.4).
Priority Applications (1)
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CN201621255941.0U CN206355998U (en) | 2016-11-23 | 2016-11-23 | A kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator |
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CN201621255941.0U CN206355998U (en) | 2016-11-23 | 2016-11-23 | A kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator |
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CN201621255941.0U Expired - Fee Related CN206355998U (en) | 2016-11-23 | 2016-11-23 | A kind of built-in layering pallet structure of microorganism constant temperature carbon dioxide incubator |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106423310A (en) * | 2016-11-23 | 2017-02-22 | 遵义医学院附属医院 | Built-in layered pallet of microbial constant-temperature CO2 incubator |
-
2016
- 2016-11-23 CN CN201621255941.0U patent/CN206355998U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106423310A (en) * | 2016-11-23 | 2017-02-22 | 遵义医学院附属医院 | Built-in layered pallet of microbial constant-temperature CO2 incubator |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170728 Termination date: 20171123 |