CN214325954U - Hematology specialty plasma bag strorage device - Google Patents

Hematology specialty plasma bag strorage device Download PDF

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Publication number
CN214325954U
CN214325954U CN202120336147.3U CN202120336147U CN214325954U CN 214325954 U CN214325954 U CN 214325954U CN 202120336147 U CN202120336147 U CN 202120336147U CN 214325954 U CN214325954 U CN 214325954U
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China
Prior art keywords
shaped
storage
barrel
plasma bag
compression spring
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Expired - Fee Related
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CN202120336147.3U
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Chinese (zh)
Inventor
张慧洁
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First Affiliated Hospital of Zhengzhou University
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First Affiliated Hospital of Zhengzhou University
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Priority to CN202120336147.3U priority Critical patent/CN214325954U/en
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Abstract

The utility model discloses a plasma bag storage device for hematology department, which comprises a heat preservation box and a first locking component; the insulation can is spliced with a plurality of storage barrels, the storage barrels are sleeved with mounting sleeves, the mounting sleeves are fixedly connected with the inner bottom of the insulation can, a plurality of first air inlet holes are formed in the mounting sleeves in an annular equidistant mode, and a plurality of second air inlet holes are formed in the storage barrels in an annular equidistant mode; dry ice is arranged inside the heat preservation box; the first locking assembly comprises an L-shaped clamping block and a first compression spring, the L-shaped clamping block is arranged in the movable groove in a sliding mode, the first compression spring is sleeved on the L-shaped clamping block, and a U-shaped sliding groove matched with the L-shaped clamping block is formed in the storage barrel. The utility model discloses a rotate and deposit the bucket for first inlet port takes place the dislocation with the second inlet port, makes air conditioning by the wall, makes at the in-process of depositing to the plasma bag, and the air conditioning in the insulation can not scatter and disappear because of depositing of plasma bag.

Description

Hematology specialty plasma bag strorage device
Technical Field
The utility model relates to the technical field of medical appliances, especially, relate to a hematology department plasma bag strorage device.
Background
The main functions of blood plasma are to carry blood cells, transport substances required for sustaining human life activities and waste products generated in vivo, etc. Plasma corresponds to the intercellular matrix of connective tissue. The blood plasma is an important component of blood, is a light yellow liquid (containing bilirubin), contains 90-92% of water and other 10% of solute plasma protein, and contains electrolytes, nutrients, enzymes, hormones, cholesterol and other important components.
When transporting the plasma bag, medical personnel can select to place the plasma bag in the insulation can usually, keep fresh to plasma, but at the access in-process to the plasma bag, need carry out reciprocal switch to the insulation can, lead to the cold in the insulation can to scatter and disappear easily for the fresh-keeping effect variation of insulation can to the plasma bag leads to the blood in the plasma bag to take place to deteriorate.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a hematology department plasma bag strorage device, through rotating the cooperation of the dead subassembly of first lock and depositing the bucket, to depositing the bucket and rotating certain angle for deposit the second air inlet on the bucket and take place the dislocation with the first air inlet on the installation sleeve, and then make the air conditioning in the insulation can not scatter and disappear.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a storing device for a blood plasma bag in a hematology department comprises a heat preservation box and a first locking component;
the insulation can is spliced with a plurality of storage barrels, barrel openings of the storage barrels are rotatably connected with a barrel cover, the storage barrels are sleeved with mounting sleeves, the mounting sleeves are fixedly connected with the inner bottom of the insulation can, a plurality of first air inlet holes are formed in the mounting sleeves at equal intervals in a ring shape, a plurality of second air inlet holes are formed in the storage barrels at equal intervals in a ring shape, and the first air inlet holes and the second air inlet holes are arranged correspondingly;
dry ice is arranged inside the heat preservation box;
the first locking assembly comprises an L-shaped fixture block and a first compression spring, a movable groove is formed in the inner wall, used for penetrating through the opening of the storage barrel, of the heat preservation box, the L-shaped fixture block is arranged in the movable groove in a sliding mode, the first compression spring is sleeved on the L-shaped fixture block, the top end of the L-shaped fixture block penetrates through the inner wall of the movable groove and extends to the outer side of the heat preservation box, and a U-shaped sliding groove matched with the L-shaped fixture block is formed in the storage barrel.
As a further description of the above technical solution:
the locking device also comprises a second locking component; the second locking assembly comprises an L-shaped buckle and a second compression spring; the barrel cover is provided with a sliding groove, the L-shaped buckle is arranged on the sliding groove in a sliding mode, two ends of the second compression spring are connected with the inner wall of the sliding groove and the L-shaped buckle respectively, and the storage barrel is provided with a clamping groove matched with the L-shaped buckle.
As a further description of the above technical solution:
the transverse length of the U-shaped sliding groove is smaller than the distance between the adjacent second air inlet holes.
As a further description of the above technical solution:
the end part of the L-shaped buckle is in an inclined plane shape.
As a further description of the above technical solution:
the inner wall of the storage barrel is provided with a limiting block matched with the barrel cover, and the barrel cover is provided with a handle.
As a further description of the above technical solution:
the inner bottom of the heat preservation box is provided with a plurality of annular sliding grooves, the bottom end of the storage barrel is provided with an annular sliding block matched with the annular sliding grooves, and the storage barrel is rotatably connected with the heat preservation box through the annular sliding block.
The utility model provides a hematology department plasma bag strorage device possesses following beneficial effect:
an object of the utility model is to provide a hematology department plasma bag strorage device, when depositing the plasma bag, die the subassembly and deposit the case and mutually support through first lock, the case is deposited in the rotation, make and deposit the case and rotate certain angle, it takes place the dislocation with the first air inlet on the installation sleeve to deposit the second air inlet on the case, make air conditioning cut off, deposit the plasma bag again, make and depositing the in-process to the plasma bag, air conditioning in the insulation can not be scattering and disappearing because of depositing of the plasma bag, guaranteed can not lead to the storage effect variation of heat-insulating bucket to the plasma bag because of the reciprocal access of plasma bag, solved at the access in-process to the plasma bag, need carry out reciprocal switch to the insulation can, lead to the blood in the plasma bag to take place rotten problem easily.
Drawings
Fig. 1 is a schematic structural view of a blood plasma bag storage device for hematology department of the present invention;
FIG. 2 is an assembly view of the storage bucket of the present invention;
FIG. 3 is an enlarged view taken at A in FIG. 2;
FIG. 4 is an assembly view of the U-shaped chute of the present invention;
FIG. 5 is an enlarged view of FIG. 2 at B;
fig. 6 is an enlarged view of fig. 4 at C.
Illustration of the drawings:
1. a heat preservation box; 2. installing a sleeve; 201. a first air intake hole; 3. a storage bucket; 301. a barrel cover; 302. a handle; 303. a second air intake hole; 304. a card slot; 4. dry ice; 5. a first locking assembly; 501. an L-shaped fixture block; 502. a first compression spring; 503. a movable groove; 504. A U-shaped chute; 6. a second deadlocking assembly; 601. a chute; 602. an L-shaped buckle; 603. a second compression spring; 7. and a limiting block.
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.
Referring to fig. 1-6, a plasma bag storage device for hematology department comprises an incubator 1 and a first locking component 5;
a plurality of storage barrels 3 are inserted into the insulation can 1, barrel covers 301 are rotatably connected to barrel openings of the storage barrels 3, mounting sleeves 2 are sleeved on the storage barrels 3, the mounting sleeves 2 are fixedly connected with the inner bottom of the insulation can 1, a plurality of first air inlet holes 201 are formed in the mounting sleeves 2 at equal intervals in a ring shape, a plurality of second air inlet holes 303 are formed in the storage barrels 3 at equal intervals in a ring shape, and the first air inlet holes 201 and the second air inlet holes 303 are correspondingly arranged;
deposit bucket 3 and be used for depositing the plasma bag, bung 301 is used for preventing to deposit the inside air conditioning of bucket 3, places and deposits the inside air conditioning of bucket 3 and takes place to scatter and disappear, and installation sleeve 2 is used for the fixed bucket 3 of depositing.
Dry ice 4 is arranged inside the heat preservation box 1;
the dry ice 4 is used for refrigerating and preserving the plasma bag.
When first inlet port 201 on the installation sleeve 2 and deposit the second inlet port 303 intercommunication on the bucket 3, the air conditioning that dry ice 4 gived off can enter into the inside of depositing bucket 3 through first inlet port 201 and second inlet port 303, keep fresh to the plasma bag, when depositing bucket 3 and rotate certain angle, the second inlet port 303 of depositing on the bucket 3 also rotates certain angle thereupon, second inlet port 303 takes place the dislocation with first inlet port 201, make the air conditioning that the dry ice 4 of insulation can 1 inside gived off can not enter into and deposit in the bucket 3.
First locking subassembly 5 includes L type fixture block 501 and first compression spring 502, has seted up movable groove 503 on being used for passing the open-ended inner wall of depositing bucket 3 on the insulation can 1, and it is provided with L type fixture block 501 to slide in the movable groove 503, has cup jointed first compression spring 502 on the L type fixture block 501, and the top of L type fixture block 501 runs through the inner wall of movable groove 503 and extends to the outside of insulation can 1, deposits and sets up the U type spout 504 with L type fixture block 501 looks adaptation on the bucket 3.
When needs rotate certain angle to depositing bucket 3, press L type fixture block 501 down earlier, L type fixture block 501 drives first compression spring 502 and removes, make first compression spring 502 take place to stretch, make the tip of L type fixture block 501 break away from with the one end of U type spout 504, it deposits bucket 3 to certain angle to rotate again, loosen L type fixture block 501 again, under first compression spring 502's elastic force effect, L type fixture block 501 takes place to reset and with the other end block of U type spout 504, at this moment, after L type fixture block 501 and the block of U type spout 504, it can not take place to rotate to deposit bucket 3.
A second deadlocking assembly 6; the second deadlocking assembly 6 comprises an L-shaped catch 602 and a second compression spring 603; the barrel cover 301 is provided with a sliding groove 601, the L-shaped buckle 602 is slidably disposed on the sliding groove 601, two ends of the second compression spring 603 are respectively connected with the inner wall of the sliding groove 601 and the L-shaped buckle 602, and the storage barrel 3 is provided with a clamping groove 304 adapted to the L-shaped buckle 602.
The circumferential surface of the barrel cover 301 is provided with the elastic rubber pad, so that the barrel cover 301 cannot be blocked with the storage barrel 3 when being closed, and when the storage barrel 3 needs to be opened, the L-shaped buckle 602 is pulled first, so that the L-shaped buckle 602 is separated from the clamping groove 304.
The transverse length of the U-shaped chute 504 is smaller than the distance between the adjacent second air intake holes 303.
When the L-shaped fixture block 501 moves from one end of the U-shaped chute 504 to the other end of the U-shaped chute 504, the second air inlet 303 on the storage barrel 3 is dislocated with the first air inlet 201 on the mounting sleeve 2, so that the second air inlet 303 is not communicated with the first air inlet 201.
The end of the L-shaped clip 602 is beveled.
When closing the bung 301, directly push down the bung 301 for L type buckle 602 takes place the extrusion with the top of depositing bucket 3, and L type buckle 602 drives second compression spring 603 and removes, and second compression spring 603 takes place the compression, and when L type buckle 602 corresponds with draw-in groove 304, under the elastic force effect of second compression spring 603, second compression spring 603 drives L type buckle 602 and draw-in groove 304 block.
The inner wall of the storage barrel 3 is provided with a limiting block 7 matched with the barrel cover 301, and the barrel cover 301 is provided with a handle 302.
The limiting block 7 is used for limiting the barrel cover 301, so that the barrel cover 301 cannot rotate downwards, the smoothness of the barrel cover 301 is guaranteed, the barrel opening of the barrel cover 301 which can completely store the barrel 3 is sealed, cold air in the barrel 3 cannot be distributed, the handle 302 is used for pulling the barrel cover 301 to move, the handle 302 can be pulled to drive the barrel cover 301 to be opened, and the barrel cover 3 can also be driven to rotate by rotating the handle 302.
A plurality of annular chutes are formed in the inner bottom of the heat preservation box 1, annular sliding blocks matched with the annular chutes are arranged at the bottom end of the storage barrel 3, and the storage barrel 3 is rotatably connected with the heat preservation box 1 through the annular sliding blocks.
So that the storage barrel 3 can not shake due to the gap II between the U-shaped sliding groove 504 and the L-shaped clamping block 501, and the stability of the storage barrel 3 in the thermal insulation box 1 is ensured.
The working principle is as follows:
when the plasma bag is stored, the L-shaped fixture block 501 is pressed down, the L-shaped fixture block 501 drives the first compression spring 502 to move, the first compression spring 502 is stretched, the end part of the L-shaped fixture block 501 is separated from one end of the U-shaped chute 504, the handle 302 is rotated for a certain angle, the handle 302 drives the barrel cover 301 to rotate, the barrel cover 301 drives the storage barrel 3 to rotate for a certain angle, the second air inlet hole 303 on the storage barrel 3 also rotates for a certain angle, the second air inlet hole 303 is staggered with the first air inlet hole 201, cold air emitted by dry ice 4 in the heat preservation box 1 cannot enter the storage barrel 3, the L-shaped fixture block 501 is released, and under the elastic force action of the first compression spring 502, the L-shaped fixture block 501 resets and is clamped with the other end of the U-shaped chute 504;
at the moment, the L-shaped buckle 602 is pulled, the L-shaped buckle 602 is separated from the clamping groove 304, the handle 302 is pulled, the handle 302 pulls the barrel cover 301, the barrel cover 301 is opened by 90 degrees, a plasma bag is placed in the storage barrel 3, and at the moment, the handle 302 is pulled, the handle 302 drives the barrel cover 301 to move, so that the L-shaped buckle 602 on the barrel cover 301 is clamped with the clamping groove 304;
then the L-shaped fixture block 501 is pressed downwards, the L-shaped fixture block 501 drives the first compression spring 502 to move, the first compression spring 502 is stretched, the end portion of the L-shaped fixture block 501 is separated from one end of the U-shaped chute 504, the handle 302 rotates in a reverse direction by a certain angle, the handle 302 drives the barrel cover 301 to rotate, the barrel cover 301 drives the storage barrel 3 to rotate by a certain angle, the second air inlet 303 on the storage barrel 3 also rotates by a certain angle, the second air inlet 303 is correspondingly communicated with the first air inlet 201, cold air emitted by dry ice 4 in the insulation box 1 enters the storage barrel 3, the L-shaped fixture block 501 is released, the L-shaped fixture block 501 resets and is clamped with the other end of the U-shaped chute 504 under the elastic force action of the first compression spring 502, and then the storage of the plasma bag is completed.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A hematology department plasma bag strorage device, its characterized in that includes: the insulation can (1) and the first locking component (5);
the insulation can (1) is spliced with a plurality of storage barrels (3), barrel covers (301) are rotatably connected to barrel openings of the storage barrels (3), installation sleeves (2) are sleeved on the storage barrels (3), the installation sleeves (2) are fixedly connected with the inner bottom of the insulation can (1), a plurality of first air inlets (201) are formed in the installation sleeves (2) in an annular and equidistant mode, a plurality of second air inlets (303) are formed in the storage barrels (3) in an annular and equidistant mode, and the first air inlets (201) and the second air inlets (303) are correspondingly arranged;
dry ice (4) is arranged inside the heat preservation box (1);
the first locking assembly (5) comprises an L-shaped fixture block (501) and a first compression spring (502), a movable groove (503) is formed in the inner wall of an opening, used for penetrating through the storage barrel (3), of the heat preservation box (1), the L-shaped fixture block (501) is arranged in the movable groove (503) in a sliding mode, the first compression spring (502) is sleeved on the L-shaped fixture block (501), the top end of the L-shaped fixture block (501) penetrates through the inner wall of the movable groove (503) and extends to the outer side of the heat preservation box (1), and a U-shaped sliding groove (504) matched with the L-shaped fixture block (501) is formed in the storage barrel (3).
2. A haematological plasma bag storing device according to claim 1, further comprising a second locking assembly (6); the second dead lock assembly (6) comprises an L-shaped buckle (602) and a second compression spring (603); the barrel cover (301) is provided with a sliding groove (601), the L-shaped buckle (602) is arranged on the sliding groove (601) in a sliding mode, two ends of the second compression spring (603) are connected with the inner wall of the sliding groove (601) and the L-shaped buckle (602) respectively, and the storage barrel (3) is provided with a clamping groove (304) matched with the L-shaped buckle (602).
3. A plasma bag storage device for hematology department according to claim 1, characterized in that the transverse length of the U-shaped chute (504) is smaller than the distance between the adjacent second air inlet holes (303).
4. A haematological plasma bag storing device according to claim 2, wherein the end of the L-shaped clip (602) is beveled.
5. The plasma bag storage device for the hematology department according to claim 1, wherein a limiting block (7) matched with a barrel cover (301) is arranged on the inner wall of the storage barrel (3), and a handle (302) is arranged on the barrel cover (301).
6. The hematology department plasma bag storage device according to claim 1, wherein a plurality of annular sliding grooves are formed in the inner bottom of the heat preservation box (1), an annular sliding block matched with the annular sliding grooves is arranged at the bottom end of the storage barrel (3), and the storage barrel (3) is rotatably connected with the heat preservation box (1) through the annular sliding block.
CN202120336147.3U 2021-02-05 2021-02-05 Hematology specialty plasma bag strorage device Expired - Fee Related CN214325954U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120336147.3U CN214325954U (en) 2021-02-05 2021-02-05 Hematology specialty plasma bag strorage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120336147.3U CN214325954U (en) 2021-02-05 2021-02-05 Hematology specialty plasma bag strorage device

Publications (1)

Publication Number Publication Date
CN214325954U true CN214325954U (en) 2021-10-01

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Application Number Title Priority Date Filing Date
CN202120336147.3U Expired - Fee Related CN214325954U (en) 2021-02-05 2021-02-05 Hematology specialty plasma bag strorage device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116081061A (en) * 2023-04-11 2023-05-09 山东科锐医疗用品有限公司 A medicine fridge for marine animal
CN117104714A (en) * 2023-10-25 2023-11-24 江苏硕世生物科技股份有限公司 Constant temperature type diagnosis reagent low-temperature refrigeration containing box

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116081061A (en) * 2023-04-11 2023-05-09 山东科锐医疗用品有限公司 A medicine fridge for marine animal
CN116081061B (en) * 2023-04-11 2023-07-25 山东科锐医疗用品有限公司 A medicine fridge for marine animal
CN117104714A (en) * 2023-10-25 2023-11-24 江苏硕世生物科技股份有限公司 Constant temperature type diagnosis reagent low-temperature refrigeration containing box
CN117104714B (en) * 2023-10-25 2024-02-27 江苏硕世生物科技股份有限公司 Constant temperature type diagnosis reagent low-temperature refrigeration containing box

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Granted publication date: 20211001

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