CN213695473U - Side-by-side storage type freezing storage pipe - Google Patents

Side-by-side storage type freezing storage pipe Download PDF

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Publication number
CN213695473U
CN213695473U CN202022470036.XU CN202022470036U CN213695473U CN 213695473 U CN213695473 U CN 213695473U CN 202022470036 U CN202022470036 U CN 202022470036U CN 213695473 U CN213695473 U CN 213695473U
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solution box
pipe
clamping
freezing
cryopreserved
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CN202022470036.XU
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高国波
王乐兰
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S & P Changzhou Biotechnology Co ltd
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S & P Changzhou Biotechnology Co ltd
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Abstract

The utility model belongs to the technical field of biomedical apparatus technique and specifically relates to a deposit formula side by side and freeze and deposit pipe, including the solution box, solution box upper end articulates there is the case lid, and the case lid other end passes through the hasp to be connected on the solution box, and solution box inner chamber is provided with freezes deposits a tub backup pad, freezes deposits a tub backup pad and supports on the fixed inlay card supporting shoe of solution box lateral wall, has seted up the jack in freezing deposits a tub backup pad, and the interlude is provided with spacing support cover in the jack, has placed in the spacing support cover and has frozen and deposit a tub body. The utility model discloses a deposit formula cryopreserved pipe side by side places the cryopreserved pipe that has its sample of depositing in the inside cryopreserved pipe backup pad of solution box, and then has strengthened the transit time of cryopreserved pipe, has alleviated the speed that cryopreserved pipe temperature rose, when needs carry out batch resuscitation to its cryopreserved pipe, at the inside unfreezing liquid that adds of its solution box, then connect its spacing support cover in the jack, again with its cryopreserved pipe body put into spacing support cover in the batch resuscitation.

Description

Side-by-side storage type freezing storage pipe
Technical Field
The utility model belongs to the technical field of biomedical apparatus technique and specifically relates to a deposit formula side by side and freeze and deposit pipe.
Background
The cryopreservation tube is a sample cryopreservation device commonly used at present, is applied to in biology and medical science experiments usually, and the cryopreservation tube is temporarily deposited on the cryopreservation frame, and current cryopreservation frame is open device, does not have the sealed function of heat preservation, has the risk of pollution, and is unfavorable for the temperature maintenance of the intraductal biological sample of cryopreservation. Similarly, in the sample recovery process, the cryopreservation tube needs to be rocked, so that cells in the cryopreservation tube can be uniformly heated, and in addition, the cryopreservation tube is easy to fall off due to the fact that the tube diameter and the length of the cryopreservation tube are small, and great inconvenience is brought to a laboratory technician due to the fact that the cryopreservation tube is easy to fall off in the process of shaking and unfreezing.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is: in order to overcome current cryopreserved frame heat preservation effect poor and the sample recovery inefficiency trouble not enough hard, the utility model provides a deposit formula cryopreserved pipe side by side, place the cryopreserved pipe that has its sample in the inside cryopreserved pipe backup pad of solution box, and then strengthened the transit time of cryopreserved pipe, the speed that cryopreserved pipe temperature risees has been alleviated, when needs are in batches come back to life to its cryopreserved pipe, at the inside thawing liquid that adds of its solution box, then connect in the jack its spacing support cover, again with its cryopreserved pipe body put into in spacing support cover and come back to life in batches.
The utility model provides a technical scheme that its technical problem adopted is: the utility model provides a deposit formula side by side and freeze and deposit pipe, includes the solution box, solution box upper end articulates there is the case lid, and the case lid other end passes through the hasp and connects on the solution box, solution box inner chamber transversely is provided with freezes deposits a pipe backup pad, and freezes deposits a pipe backup pad and supports on the fixed inlay card supporting shoe of solution box lateral wall, freeze and have seted up a plurality of jack in depositing the pipe backup pad, and alternate in every jack that corresponds and be provided with a spacing support cover, and placed in every spacing support cover and freeze and deposit a pipe body, the case lid is detained port on the solution box, case lid inner cover face is equipped with the rubber gasket, and rubber gasket lid detains in freezing and deposits a pipe body upper end opening part. The freezing pipe that deposits the sample with it places in the inside freezing pipe backup pad of solution box, and then has strengthened the transportation time of freezing the pipe, has alleviated the speed that the freezing pipe temperature rose, when needs are in batches come back to life or consciousness to its freezing pipe, adds the thawing solution in its solution box is inside, then connects its spacing support cover in the jack, puts into spacing support cover with its freezing pipe body again and carries out in batches come back to life or consciousness.
Furthermore, a plurality of clamping and embedding supporting blocks are uniformly fixed on the side wall of the inner wall of the solution box body, clamping grooves are formed in the clamping and embedding supporting blocks, a plurality of clamping blocks are correspondingly arranged on the freezing storage pipe supporting plate, and the clamping blocks are correspondingly clamped and embedded in the clamping and embedding supporting blocks in a limiting mode. The freezing pipe supporting plate is connected in the clamping groove on the clamping and embedding supporting block in a clamping and embedding manner through the clamping block, and then the supporting stability of the freezing pipe supporting plate is guaranteed.
Furthermore, the end part of the limiting support sleeve is provided with a latch, and a limiting clamping groove which is correspondingly clamped and embedded with the latch is formed in the position of the plug hole of the support plate of the cryopreservation tube. The limiting support sleeve is inserted into the jack, and the clamping teeth at the end part of the limiting support sleeve are clamped and embedded in the limiting clamping grooves in the support plate of the cryopreservation pipe, so that the stable connection of the limiting support sleeve at the jack is ensured.
Further, the solution tank is made of polyurethane foam or phenolic foam. The solution box body plays a role in preserving heat of the freezing tube body inside the solution box body, relieves the temperature rising speed of the sample in the freezing tube body, and prolongs the transportation time of the freezing tube body.
Further, the freezing and storing pipe body is placed in a placing groove in the limiting supporting sleeve, and the opening end of the freezing and storing pipe body is attached to a rubber gasket of the box cover. Rubber gasket supports and deposits tub body port department freezing, has guaranteed to freeze the stability of placing of depositing tub body.
The utility model has the advantages that: the utility model discloses a deposit formula cryopreserved pipe side by side, place the cryopreserved pipe that has its sample of depositing in the inside cryopreserved pipe backup pad of solution box, and then strengthened the transit time of cryopreserved pipe, the speed that cryopreserved pipe temperature rose has been alleviated, when needs are in batches recovered to its cryopreserved pipe, liquid unfreezes at the inside joining of its solution box, then connect its spacing support cover in the jack, put into spacing support cover with its cryopreserved pipe body again and carry out in batches recovered, the device has solved the problem of recovering inefficiency among the prior art, the contact of cryopreserved pipe body with the unfreezing liquid has been completely cut off through spacing support cover simultaneously, the apparent cleanness of cryopreserved pipe body has been guaranteed.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a partially enlarged view of a portion a in fig. 1.
In the figure, 1, a solution box body, 2, a box cover, 3, a lock catch, 4, a freezing tube supporting plate, 5, a clamping and embedding supporting block, 6, a jack, 7, a limiting supporting sleeve, 8, a freezing tube body, 9, a rubber gasket, 10, a clamping groove, 11, a clamping block, 12, a clamping groove, 13, a limiting clamping groove and 14, a placing groove are arranged.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic drawings and illustrate the basic structure of the present invention only in a schematic manner, and thus show only the components related to the present invention.
Fig. 1 is the utility model discloses a structural schematic diagram, a deposit formula side by side and freeze and deposit pipe, including solution box 1, 1 upper end of solution box articulates there is case lid 2, and the case lid 2 other end passes through hasp 3 to be connected on solution box 1, 1 inner chamber of solution box transversely is provided with freezes deposits tub backup pad 4, and freezes deposits tub backup pad 4 and support on the fixed inlay card supporting shoe 5 of 1 lateral wall of solution box, freeze and have seted up a plurality of jack 6 on depositing tub backup pad 4, and alternate in every jack 6 that corresponds and be provided with a spacing support cover 7, and placed in every spacing support cover 7 and freeze and deposit tub body 8, 2 lids of case lid are detained in 1 upper port of solution box, 2 interior capping of case lid is equipped with rubber gasket 9, and rubber gasket 9 lid detains in freezing and deposits 8 upper end openings parts of tub body. Place its cryopreserved pipe body 8 that has deposited the sample on cryopreserved pipe backup pad 4 inside solution box 1, and then strengthened the transportation time of cryopreserved pipe, solution box 1 plays and keeps warm to its inside cryopreserved pipe body 8, the speed that its cryopreserved pipe body 8 internal sample temperature rose has been alleviated, its transportation time of cryopreserved pipe body 8 has been prolonged, the speed that cryopreserved pipe body 8 temperature rose has been alleviated, when needs are resumeed in batches to its cryopreserved pipe, at the inside thawing solution that adds of its solution box 1, then connect its spacing support cover 7 in jack 6, put into spacing support cover 7 with its cryopreserved pipe body 8 again and come back in batches.
As shown in fig. 1, a plurality of clamping and embedding support blocks 5 are uniformly fixed on the side wall of the inner wall of the solution box body 1, clamping grooves 10 are formed in the clamping and embedding support blocks 5, a plurality of clamping blocks 11 are correspondingly arranged on the freezing tube support plate 4, and the clamping blocks 11 are correspondingly clamped and embedded in the clamping and embedding support blocks 5 and the clamping grooves 10 for limiting. The freezing pipe supporting plate 5 is connected into the clamping groove 10 on the clamping supporting block 5 in an embedded mode through the clamping block 11, and therefore supporting stability of the freezing pipe supporting plate 5 is guaranteed.
Referring to fig. 1 and 2, the end of the limiting support sleeve 7 is provided with a latch 12, and the insertion hole 6 of the support plate 4 of the cryopreservation tube is provided with a limiting slot 13 correspondingly inserted with the latch 12. The limiting support sleeve 7 is inserted into the insertion hole 6, and the clamping teeth 12 at the end part of the limiting support sleeve are clamped and embedded in the limiting clamping grooves 13 on the support plate 4 of the cryopreservation pipe, so that the stable connection of the limiting support sleeve 7 at the insertion hole 6 is ensured. The solution tank 1 is made of urethane foam or phenol foam. Solution box 1 plays and keeps warm the effect to its inside freezing pipe body 8 that deposits, has alleviated its and has frozen the speed that deposits the interior sample temperature of pipe body 8 and rise, has prolonged its transportation time who freezes and deposits pipe body 8.
The freezing tube body 8 shown in fig. 1 and 2 is placed in the placing groove 14 in the limiting support sleeve 7, and the open end of the freezing tube body 8 is attached to the rubber gasket 9 of the box cover 2. Rubber gasket 9 supports and freezes and deposits 8 ports departments of pipe body, has guaranteed to freeze and has deposited the stability of placing of pipe body 8.
During the use, deposit the freezing pipe body 8 that has the sample with it and place on freezing pipe backup pad 4 of solution box 1 inside, and then strengthened the transportation time of freezing pipe body 8, the speed of 8 temperature rising of freezing pipe body has been alleviated, when needs are resumeed in batches to its freezing pipe body 8, add the thawing solution in its solution box 1 inside, then connect its limit support cover 7 on jack 6, put into limit support cover 7 with its freezing pipe body 8 again and come back to life in batches, the device has solved the problem that recovery efficiency is low among the prior art, simultaneously isolated the contact of freezing pipe body 8 with the thawing solution through limit support cover 7, the apparent cleanness of freezing pipe body has been guaranteed, make its freezing pipe body 8 after resumeetting conveniently take and use.
In light of the foregoing, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (5)

1. A side-by-side storage type freezing storage pipe comprises a solution box body (1) and is characterized in that the upper end of the solution box body (1) is hinged with a box cover (2), the other end of the box cover (2) is connected to the solution box body (1) through a lock catch (3), a freezing tube supporting plate (4) is transversely arranged in the inner cavity of the solution box body (1), and the freezing tube supporting plate (4) is supported on a clamping and embedding supporting block (5) fixed on the side wall of the solution box body (1), a plurality of jacks (6) are arranged on the freezing tube supporting plate (4), and a limit support sleeve (7) is inserted in each corresponding jack (6), a freezing tube body (8) is arranged in each limit support sleeve (7), the box cover (2) is covered and buckled on the upper port of the solution box body (1), the inner cover surface of the box cover (2) is provided with a rubber gasket (9), and the rubber gasket (9) is covered and buckled at the opening at the upper end of the freezing tube body (8).
2. The side-by-side storage type cryopreservation tube of claim 1, wherein a plurality of clamping support blocks (5) are uniformly fixed on the side wall of the inner wall of the solution box body (1), clamping grooves (10) are formed in the clamping support blocks (5), a plurality of clamping blocks (11) are correspondingly arranged on the cryopreservation tube support plate (4), and the clamping blocks (11) are correspondingly clamped and limited with the clamping grooves (10) in the clamping support blocks (5).
3. The side-by-side storage type cryopreservation tube as claimed in claim 1, wherein the end of the limiting support sleeve (7) is provided with a latch (12), and the insertion hole (6) of the cryopreservation tube support plate (4) is provided with a limiting slot (13) which is correspondingly inserted with the latch (12).
4. The side-by-side storage freezer pipe of claim 1, wherein the solution tank (1) is made of polyurethane foam or phenolic foam.
5. The side-by-side storage type cryopreservation tube of claim 1, wherein the cryopreservation tube body (8) is placed in a placing groove (14) in the limiting support sleeve (7), and the open end of the cryopreservation tube body (8) is attached to the rubber gasket (9) of the box cover (2).
CN202022470036.XU 2020-10-30 2020-10-30 Side-by-side storage type freezing storage pipe Active CN213695473U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022470036.XU CN213695473U (en) 2020-10-30 2020-10-30 Side-by-side storage type freezing storage pipe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022470036.XU CN213695473U (en) 2020-10-30 2020-10-30 Side-by-side storage type freezing storage pipe

Publications (1)

Publication Number Publication Date
CN213695473U true CN213695473U (en) 2021-07-16

Family

ID=76802773

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022470036.XU Active CN213695473U (en) 2020-10-30 2020-10-30 Side-by-side storage type freezing storage pipe

Country Status (1)

Country Link
CN (1) CN213695473U (en)

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