CN215099030U - Can splice and freeze and deposit box - Google Patents
Can splice and freeze and deposit box Download PDFInfo
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- CN215099030U CN215099030U CN202120997334.6U CN202120997334U CN215099030U CN 215099030 U CN215099030 U CN 215099030U CN 202120997334 U CN202120997334 U CN 202120997334U CN 215099030 U CN215099030 U CN 215099030U
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- rectangular substrate
- box
- box body
- plate
- guide support
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Abstract
The utility model discloses a box is cryopreserved in can splicing, include: a rectangular substrate; the long strip-shaped side supporting plate and the rectangular substrate form an L-shaped plate structure, and the long strip-shaped side supporting plate and the rectangular substrate are perpendicular to each other; the guide support rods are arranged in parallel at equal intervals, and one end of each guide support rod is connected to the plate surface of the strip-shaped side support plate on the same side as the rectangular substrate; and a plurality of freezing box bodies, every freezing box body divide into two-layer from top to bottom, and every upper strata that freezes the box body is arranged along its length direction and is seted up a plurality of openings up and freeze the pipe and hold the groove and the lower floor sets up a perforating hole that matches with the guide support pole along its length direction. The utility model belongs to the technical field of biological sample deposits for biological sample is deposited to low temperature, can make up a plurality of memory cell and the convenience of taking.
Description
Technical Field
The utility model relates to a biological sample deposits technical field, concretely relates to box is deposited to can splice freezing.
Background
The low-temperature storage of stem cells is an important part of the clinical research, application and other processes of stem cells. In the prior art, various containers in which stem cells are preserved are usually stored at low temperature in liquid nitrogen at-196 ℃, and then taken out and thawed for resuscitation when necessary. Wherein, the cryopreservation box is a common stem cell cryopreservation container. However, the currently used cryopreservation boxes are complex in structure; although some can be used in combination, the stability is difficult to maintain in the transportation process, and the safety is not high; and is inconvenient to use.
In summary, in view of the problems in the prior art, there is a need in the art for a splicing cryopreservation box which has a simple structure, low cost, high safety and convenient taking and can be used in combination.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides an aim at provides a box is deposited to concatenation freezing, can solve current box structure is deposited to freezing complicacy, the security is poor, inconvenient getting is put the scheduling problem.
Based on the above-mentioned purpose, an aspect of the utility model provides a can splice and freeze and deposit box, include:
a rectangular substrate;
the long strip-shaped side supporting plate and the rectangular substrate form an L-shaped plate structure, and the long strip-shaped side supporting plate and the rectangular substrate are perpendicular to each other;
the plurality of guide supporting rods are arranged in parallel at equal intervals, and one end of each guide supporting rod is connected to the plate surface of the strip-shaped side supporting plate on the same side as the rectangular substrate; and
a plurality of freezes and deposits the box body, every freezes to deposit the box body and divide into two-layer from top to bottom, and every freezes the upper strata of depositing the box body and arranges along its length direction and offer a plurality of openings up freezes to deposit the pipe and hold the groove and the lower floor seted up along its length direction one with the perforating hole that the guide support pole matches.
Above can splice and freeze and deposit the box, preferably, the rectangle base plate with rectangular shape collateral branch backup pad is integrated into one piece structure.
The above spliceable cryopreservation box, preferably, the guide support rod is located above and spaced apart from the rectangular substrate.
Can splice the cryopreserved box above, preferably, the length of every cryopreserved box body is less than or equal to the length of every guide support rod.
Advantageous effects
The utility model provides a can splice and freeze and deposit box is used for low temperature storage biological sample (stem cell), should splice and freeze and deposit box simple structure, low cost, can splice a plurality of and freeze and deposit the box body and use, can splice during the transport and freeze and deposit the box whole and hold up, can avoid freezing and deposit the box body and produce and rock, make its remain stable, the security of transportation has been improved, and also can take as required and splice some of freezing and deposit the box body of box, it is convenient nimble more to take.
Drawings
Fig. 1 is a schematic perspective view of a spliceable cryopreservation box according to one embodiment of the invention; and
fig. 2 is a schematic top view of a spliceable cryopreservation box according to an embodiment of the invention.
Detailed Description
The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention. Unless otherwise specified, the technical means used in the examples are conventional means well known to those skilled in the art.
Based on the above-mentioned purpose, the embodiment of the utility model provides a can splice embodiment of cryopreserving box. Fig. 1 is a schematic perspective view of the spliceable cryopreservation box of this embodiment, and fig. 2 is a schematic plan view of the spliceable cryopreservation box of this embodiment. As shown in fig. 1 and 2, the spliceable cryopreservation box mainly comprises a rectangular base plate 1, an elongated side support plate 2, a plurality of guide support rods 3 and a plurality of cryopreservation box bodies 4. Rectangular substrate 1 constitutes L shaped plate structure with rectangular shape collateral branch fagging 2, and rectangular substrate 1 with rectangular shape collateral branch fagging 2 mutually perpendicular.
A plurality of guide support rods 3 are equidistantly arranged in parallel, one end of each guide support rod 3 is connected to the strip-shaped side support plate 2 and the plate surface on the same side of the rectangular substrate 1, and the other end (the end far away from the strip-shaped side support plate 2) is an open free end. The plurality of guide support rods 3 are located above the rectangular substrate 1 and spaced apart from the rectangular substrate 1, and the vertical distance from each guide support rod 3 to the upper plate surface of the rectangular substrate 1 is equal, that is, the plurality of guide support rods 3 are arranged in a row above the rectangular substrate 1. Preferably, the guide support bar 3 does not extend beyond the boundary of the rectangular base plate 1. The guide support bar 3 may be a square bar, a round bar, or another shaped bar.
Every freezes deposits box body 4 and divide into about two-layer, every freezes the upper strata of depositing box body 4 and arranges along its length direction and set up a plurality of openings up and freeze and deposit the pipe and hold the groove and the lower floor seted up along its length direction one with the perforating hole that guide support rod 3 matches, guide support rod 3 can insert the perforating hole that freezes deposits box body 4 for it can slide along guide support rod 3 to freeze deposits box body 4. The length of each cryopreservation box body 4 is less than or equal to the length of each guide support rod 3, so that at least one cryopreservation box body 4 can be arranged on each guide support rod 3 in a sliding mode.
In a preferred embodiment, the rectangular base plate 1 and the elongated side support plate 2 may be of an integrally formed structure.
For those skilled in the art, the above definition of the shape, number and the like of the components and parts in the above embodiments should not limit the protection scope of the present invention, which is only the preferred embodiment of the present invention. Those skilled in the art can make modifications or selections as necessary as long as they can solve the technical problems described above.
To sum up, the utility model provides a can splice and freeze and deposit box for low temperature storage biological sample (stem cell), this can splice and freeze and deposit box simple structure, low cost can use a plurality of box bodies that freeze to deposit amalgamation, can will splice during the transport and freeze and deposit the box whole and hold up, can avoid freezing and deposit the box body and produce and rock, make it remain stable, improved the security of transportation, and also can take as required and splice some of freezing and deposit the box body of box, it is convenient nimble more to take.
Although the invention has been described in detail with respect to the general description and the specific embodiments, it will be apparent to those skilled in the art that modifications and improvements can be made based on the invention. Therefore, such modifications and improvements are intended to be within the scope of the invention as claimed.
Claims (4)
1. The utility model provides a can splice and freeze and deposit box which characterized in that includes:
a rectangular substrate;
the long strip-shaped side supporting plate and the rectangular substrate form an L-shaped plate structure, and the long strip-shaped side supporting plate and the rectangular substrate are perpendicular to each other;
the plurality of guide supporting rods are arranged in parallel at equal intervals, and one end of each guide supporting rod is connected to the plate surface of the strip-shaped side supporting plate on the same side as the rectangular substrate; and
a plurality of freezes and deposits the box body, every freezes to deposit the box body and divide into two-layer from top to bottom, and every freezes the upper strata of depositing the box body and arranges along its length direction and offer a plurality of openings up freezes to deposit the pipe and hold the groove and the lower floor seted up along its length direction one with the perforating hole that the guide support pole matches.
2. The spliceable cryopreservation box of claim 1, wherein the rectangular base plate and the elongated side support plate are of an integrally formed structure.
3. The spliceable cryopreservation box of claim 1, wherein the guide support bar is located above and spaced apart from the rectangular base plate.
4. The tileable cryopreservation boxes of claim 1 wherein the length of each cryopreservation box body is less than or equal to the length of each guide support rod.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120997334.6U CN215099030U (en) | 2021-05-11 | 2021-05-11 | Can splice and freeze and deposit box |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120997334.6U CN215099030U (en) | 2021-05-11 | 2021-05-11 | Can splice and freeze and deposit box |
Publications (1)
Publication Number | Publication Date |
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CN215099030U true CN215099030U (en) | 2021-12-10 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120997334.6U Active CN215099030U (en) | 2021-05-11 | 2021-05-11 | Can splice and freeze and deposit box |
Country Status (1)
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CN (1) | CN215099030U (en) |
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2021
- 2021-05-11 CN CN202120997334.6U patent/CN215099030U/en active Active
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