CN219972329U - Cryopreservation test tube supporting structure of cell resuscitation water bath - Google Patents

Cryopreservation test tube supporting structure of cell resuscitation water bath Download PDF

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Publication number
CN219972329U
CN219972329U CN202321316867.9U CN202321316867U CN219972329U CN 219972329 U CN219972329 U CN 219972329U CN 202321316867 U CN202321316867 U CN 202321316867U CN 219972329 U CN219972329 U CN 219972329U
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water bath
strip
test tube
groove
mounting
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CN202321316867.9U
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Inventor
王大鹏
李爱爱
沈星辰
王秀娥
张立坤
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Huayu Biotechnology Tianjin Co ltd
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Huayu Biotechnology Tianjin Co ltd
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Abstract

The utility model discloses a cryopreservation test tube supporting structure of a cell resuscitation water bath, which belongs to the field of cryopreservation test tube supporting, and comprises a test tube supporting structure, wherein a placing mechanism comprises a placing block and a jack penetrating through the middle end of the placing block, and a rubber ring used for limiting test tubes is arranged in the jack.

Description

Cryopreservation test tube supporting structure of cell resuscitation water bath
Technical Field
The utility model relates to a cryopreservation test tube support, in particular to a cryopreservation test tube support structure of a cell resuscitation water bath.
Background
The freezing tube is a commonly used freezing preservation device for cell samples, and is generally applied to biological and medical experiments. In the process of resuscitating the cell sample, the freezing tube is placed in a water bath kettle, and the freezing tube is rocked, so that the cells in the freezing tube can be heated uniformly. In the publication No. CN213085953U, a freezing tube support device for mass cell resuscitation is provided, which comprises a mounting base plate, two sliding grooves are formed in one side of the top end of the mounting base plate, supporting legs are connected in a sliding manner in each sliding groove, a balance plate is fixedly connected between the top ends of the two supporting legs, a turntable is connected in the center of one side of the balance plate in a penetrating manner through a first connecting rod, a fixing base is fixedly arranged in the middle of one side of the turntable, the freezing tube and the device can be placed in a warm water tank together through a supporting rod, the turntable, an arc-shaped limiting plate, a limiting collar, a fixing block and a gear, and the freezing tube can be driven by the limiting collar to rotate through rotating the rotating wheel, so that mass cells in the freezing tube can be uniformly heated for resuscitation, and the problems that the existing freezing tube support only can fixedly place the freezing tube in warm water, the thawing rate is slow, and the cell death rate is high are solved. Foretell frozen tube support when using, utilize the arc connecting plate to clamp frozen tube, will take frozen tube to put into the water tank that is equipped with warm water, carry out water bath resuscitator, but in actual operation, the device of setting can only place a set of frozen tube and carry out water bath resuscitate, consequently under multiunit experiment, need repeatedly install and lift frozen tube off and carry out the experiment, the operation is comparatively loaded down with trivial details.
Disclosure of Invention
The utility model aims to overcome the defects that in the prior art, the device can only place one group of freezing pipes for water bath resuscitation, so that under a plurality of groups of experiments, the freezing pipes are required to be repeatedly installed and removed for experiments, the operation is complicated, and the freezing test tube supporting structure of the cell resuscitation water bath is provided, so that the defects are overcome, and the cell resuscitation water bath is convenient to use.
In order to achieve the above purpose, the technical scheme provided by the utility model is as follows:
the utility model relates to a cryopreservation test tube supporting structure of a cell resuscitation water bath, which comprises a test tube supporting structure, wherein the test tube supporting structure comprises a mounting frame mechanism and a mounting mechanism arranged in the mounting frame mechanism, one side of the mounting mechanism is provided with a placing mechanism for bearing a test tube, the outer surface of the placing mechanism is provided with a connecting mechanism for connection, and the top end of the mounting frame mechanism is provided with an operating mechanism for driving the mounting mechanism to move;
the placing mechanism comprises a placing block and a jack penetrating through the middle end of the placing block, and a rubber ring used for limiting the test tube is arranged in the jack.
Preferably, the connecting mechanism comprises an installation strip installed on the outer surface of the placement block and a magnet block installed at one end of the installation strip, a magnet groove is formed in the outer surface of the placement block, the magnet groove and the magnet block are different magnets, and the opposite attraction between the magnets is utilized to install the placement mechanism.
Preferably, the mounting frame mechanism comprises a U-shaped clamping strip inserted at the edge of the water bath and rubber pads arranged at two sides of the inner wall of the U-shaped clamping strip, and the rubber pads are used for increasing friction force between the water bath and the U-shaped clamping strip.
Preferably, the bottom of the U-shaped clamping strip is provided with a transverse strip and an L-shaped chute arranged on the outer surface of the transverse strip, and the transverse strip is arranged inside the water bath.
Preferably, the operating mechanism comprises a rotating rod and a rubber sleeve arranged at the upper end of the outer surface of the rotating rod, the arranged rubber sleeve is used for protecting hands, and a thread groove is formed in the lower end of the outer surface of the rotating rod.
Preferably, the installation mechanism comprises an inner inserting strip installed in the L-shaped sliding groove and a threaded hole formed in the bottom end of the inner inserting strip, one end of the rotating rod with a threaded groove is inserted into the L-shaped sliding groove, and the threaded groove is in threaded connection with the threaded hole.
Preferably, the bottom end surface of the inner cutting is provided with a rotary groove at the lower end of the threaded hole, and a roller for moving is movably arranged in the rotary groove.
Compared with the prior art, the technical scheme provided by the utility model has the following beneficial effects:
compared with the prior art, the utility model has the following beneficial effects:
(1) According to the frozen test tube supporting structure of the cell resuscitation water bath, one end of the interpolation strip with the threaded hole is transversely inserted into the L-shaped chute, one end of the rotating rod with the threaded groove is vertically inserted into the L-shaped chute, one end of the rotating rod with the threaded groove is in threaded connection with the threaded hole, the operation mechanism and the installation mechanism are fixed, at the moment, the frozen test tube is inserted into the inner wall of the insertion hole, the rubber ring clamps and constrains the surface of the frozen test tube, the U-shaped clamping strip is used for installing the test tube supporting structure with the frozen test tube on the side of the water bath, the rubber pad is extruded by the water bath to deform, the rubber sleeve is held by the hand to push the interpolation strip to move, the frozen test tube is resuscitated in the water bath, at the moment, the inner insertion strip transversely moves in warm water, and stirs cold water and warm water after heat absorption is completely, and cell resuscitates is prevented from slowing down;
(2) According to the frozen storage test tube supporting structure of the cell resuscitating water bath, when the interpolation strip moves, the roller rotates in the rotating groove, the connecting mechanism arranged at one end of the placing mechanism is inserted into the magnet groove, namely the magnet blocks are inserted into the magnet groove, and the placing mechanism is installed by utilizing the characteristic that special-shaped magnets are attracted, so that a plurality of groups of cells are resuscitated conveniently, and the experimental operation time is shortened greatly.
Drawings
FIG. 1 is an overall block diagram of the present utility model;
FIG. 2 is a block diagram of a mounting bracket mechanism of the present utility model;
FIG. 3 is a block diagram of the operating mechanism and mounting mechanism of the present utility model;
FIG. 4 is a block diagram of an interpolation bar of the present utility model;
fig. 5 is a structural view of the connecting mechanism and the placing mechanism of the present utility model.
In the figure: 1. a test tube support structure; 11. a mounting frame mechanism; 111. a cross bar; 112. an L-shaped chute; 113. u-shaped clamping strips; 114. a rubber pad; 12. an operating mechanism; 121. a rotating rod; 122. a rubber sleeve; 123. a thread groove; 13. a mounting mechanism; 131. inserting strips; 132. a threaded hole; 133. a rotary groove; 134. a roller; 14. a connecting mechanism; 141. a mounting bar; 142. a magnet block; 15. a placement mechanism; 151. placing a block; 152. a jack; 153. a rubber ring; 154. a magnet slot.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
For a further understanding of the present utility model, the present utility model will be described in detail with reference to the drawings.
Referring to fig. 1, a frozen storage test tube supporting structure of cell resuscitation water bath, including test tube supporting structure 1, test tube supporting structure 1 includes mounting bracket mechanism 11 and installs at the inside installation mechanism 13 of mounting bracket mechanism 11, and one side of installation mechanism 13 is equipped with and is used for bearing test tube place mechanism 15, and place mechanism 15's surface is equipped with the coupling mechanism 14 that is used for connecting, and mounting bracket mechanism 11's top is equipped with and is used for driving installation mechanism 13 to remove operating device 12.
The utility model is further described below with reference to examples.
In combination with fig. 2-5, the placing mechanism 15 includes placing block 151 and jack 152 penetrating through the middle end of placing block 151, the inside of jack 152 is equipped with the rubber circle 153 that is used for restricting the test tube, coupling mechanism 14 is including installing the installation strip 141 at placing block 151 surface and installing the magnet piece 142 in the 141 one end, and the magnet groove 154 has been seted up to the surface of placing block 151, and magnet groove 154 and magnet piece 142 each other are opposite magnet, install the placing mechanism 15 with the opposite attraction between the magnet, mounting bracket mechanism 11 includes the U-shaped draw-in bar 113 of inserting at the water bath edge and the rubber pad 114 of setting in U-shaped draw-in bar 113 inner wall both sides, and rubber pad 114 is used for increasing the frictional force between water bath and the U-shaped draw-in bar 113, and the L-shaped spout 112 of setting at the external surface of horizontal strip 111 is installed to the bottom of U-shaped draw-in bar 113, and horizontal strip 111 sets up in the inside at horizontal strip 111, and horizontal strip 111, operating mechanism 12 includes bull stick 121 and sets up at the rubber sleeve 122 of bull stick 121 surface upper end, the rubber sleeve 122 that sets up is used for protecting the hand, screw thread groove 123 has been seted up to the external surface lower extreme of bull stick 121, mounting mechanism 13 includes that installs inside groove 131 and insert groove 132 at the inside groove 132 and the screw thread groove is equipped with the inside groove of screw thread groove 133, the inside groove is equipped with the screw thread groove is equipped with the inside groove 133, the inside groove is equipped with the inside groove of the screw thread groove is equipped with the inside groove 132, and the screw hole is equipped with the inside the screw groove is equipped with the inside of the screw-in the inside of the mounting mechanism is equipped with the inside, and has.
In this embodiment: the inside of L shape spout 112 is transversely intubated to interpolation strip 131 one end with screw hole 132, the inside of L shape spout 112 is vertically intubated to bull stick 121 one end with screw groove 123, the bull stick 121 one end threaded connection of screw groove 123 is in the inside of screw hole 132, fix between operating device 12 and the installation mechanism 13, at this moment, insert the inner wall of jack 152 with the cryopreserved test tube, the rubber circle 153 carries out the centre gripping constraint to the surface of cryopreserved test tube, utilize U-shaped card strip 113 to install the test tube supporting structure 1 that has the cryopreserved test tube in the water bath limit, rubber pad 114 receives the extrusion in water bath and warp, handheld rubber sleeve 122 and promote interior cutting 13 and remove, the cryopreserved test tube is resuscitated in the water bath, at this moment, the inside of horizontal strip 111 carries out lateral shifting in the cryopreserved test tube, stir cold water and warm water after having been absorbed, avoid the cell resuscitated slowing down, when interpolation strip 131 removes, cylinder 134 rotates in the inside of rotor groove 133, the coupling mechanism 14 that sets up at 15 one end of placing mechanism inserts the inside of magnet groove 154, namely magnet 142 inserts the inside of magnet groove 154, the inside of magnet groove 142 is used, the magnet 15 is installed, the time is greatly shortened, the experiment is carried out, the cell is convenient is placed, and is greatly shortened.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a cryopreservation test tube bearing structure of cell resuscitation water bath, includes test tube bearing structure (1), its characterized in that: the test tube supporting structure (1) comprises a mounting frame mechanism (11) and a mounting mechanism (13) arranged in the mounting frame mechanism (11), wherein a placing mechanism (15) for bearing a test tube is arranged on one side of the mounting mechanism (13), a connecting mechanism (14) for connection is arranged on the outer surface of the placing mechanism (15), and an operating mechanism (12) for driving the mounting mechanism (13) to move is arranged at the top end of the mounting frame mechanism (11);
the placing mechanism (15) comprises a placing block (151) and a jack (152) penetrating through the middle end of the placing block (151), and a rubber ring (153) used for limiting the test tube is arranged inside the jack (152).
2. The cryopreservation tube support structure of a cell resuscitation water bath according to claim 1, wherein: the connecting mechanism (14) comprises a mounting strip (141) mounted on the outer surface of the placement block (151) and a magnet block (142) mounted at one end of the mounting strip (141), a magnet groove (154) is formed in the outer surface of the placement block (151), the magnet groove (154) and the magnet block (142) are opposite magnets, and the opposite magnets are utilized to attract the placement mechanism (15).
3. The cryopreservation tube support structure of a cell resuscitation water bath according to claim 1, wherein: the mounting frame mechanism (11) comprises a U-shaped clamping strip (113) inserted at the edge of the water bath and rubber pads (114) arranged on two sides of the inner wall of the U-shaped clamping strip (113), and the rubber pads (114) are used for increasing friction force between the water bath and the U-shaped clamping strip (113).
4. A cryopreservation tube support structure for a cell resuscitation water bath according to claim 3, wherein: the bottom of the U-shaped clamping strip (113) is provided with a transverse strip (111) and an L-shaped chute (112) arranged on the outer surface of the transverse strip (111), and the transverse strip (111) is arranged inside the water bath.
5. The cryopreservation tube support structure of a cell resuscitation water bath according to claim 1, wherein: the operating mechanism (12) comprises a rotating rod (121) and a rubber sleeve (122) arranged at the upper end of the outer surface of the rotating rod (121), the arranged rubber sleeve (122) is used for protecting hands, and a thread groove (123) is formed in the lower end of the outer surface of the rotating rod (121).
6. The cryopreservation tube support structure of a cell resuscitation water bath according to claim 1, wherein: the mounting mechanism (13) comprises an inner inserting strip (131) mounted inside the L-shaped sliding groove (112) and a threaded hole (132) formed in the bottom end of the inner inserting strip (131), one end of a rotating rod (121) with a threaded groove (123) is inserted into the L-shaped sliding groove (112), and the threaded groove (123) is in threaded connection with the inside of the threaded hole (132).
7. The cryopreservation tube support structure of a cell resuscitation water bath of claim 6, wherein: the bottom end surface of the inner inserting strip (131) is provided with a rotary groove (133) at the lower end of the threaded hole (132), and a roller (134) for moving is movably arranged in the rotary groove (133).
CN202321316867.9U 2023-05-29 2023-05-29 Cryopreservation test tube supporting structure of cell resuscitation water bath Active CN219972329U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321316867.9U CN219972329U (en) 2023-05-29 2023-05-29 Cryopreservation test tube supporting structure of cell resuscitation water bath

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321316867.9U CN219972329U (en) 2023-05-29 2023-05-29 Cryopreservation test tube supporting structure of cell resuscitation water bath

Publications (1)

Publication Number Publication Date
CN219972329U true CN219972329U (en) 2023-11-07

Family

ID=88577743

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321316867.9U Active CN219972329U (en) 2023-05-29 2023-05-29 Cryopreservation test tube supporting structure of cell resuscitation water bath

Country Status (1)

Country Link
CN (1) CN219972329U (en)

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