CN209968470U - Genetic gene sample storage device - Google Patents

Genetic gene sample storage device Download PDF

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Publication number
CN209968470U
CN209968470U CN201920611881.9U CN201920611881U CN209968470U CN 209968470 U CN209968470 U CN 209968470U CN 201920611881 U CN201920611881 U CN 201920611881U CN 209968470 U CN209968470 U CN 209968470U
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test
tube rack
main part
part case
storage device
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CN201920611881.9U
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Chinese (zh)
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陈钢
郑强
吴晓立
李鹰翔
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Shenzhen Morning Know Technology Co Ltd
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Shenzhen Morning Know Technology Co Ltd
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Abstract

The utility model discloses a genetic gene sample storage device, including main part case and upper cover, the upper cover is located the upper end of main part case, install the pivot between main part case and the upper cover, and main part case and upper cover are through pivot swing joint, the spacing groove has been seted up to the inside bottom of main part case, the inside of spacing groove is run through and is provided with the backup pad, and backup pad and spacing groove swing joint. A genetic gene sample storage device, can support the test-tube rack, realize that the test-tube rack reciprocates at the spacing groove and carry out the shock attenuation, better protect the gene sample, can prescribe a limit to the shock attenuation direction of spring for the spring only reciprocates, can enough install and dismantle the test-tube rack, can prescribe a limit to the shock attenuation direction of test-tube rack again, simple structure is convenient for save the protection to the genetic gene sample, has certain practicality, brings better use prospect.

Description

Genetic gene sample storage device
Technical Field
The utility model relates to a sample storage device field, in particular to genetic gene sample storage device.
Background
The sample storage device is a device for storing and protecting the genetic gene, plays a key role in realizing subsequent detection tests for gene survival, and avoids the problem that the gene sample loses activity due to oscillation in the transferring process, so that the conventional sample storage device cannot meet the use requirements of people;
present sample storage device has certain drawback when using, at first, can not carry out spacing removal shock attenuation from top to bottom to the test-tube rack, can't be better protect the gene sample, secondly, can not prescribe a limit to the shock attenuation direction of spring, move out sleeve position influence and use next time because of the spring easily, and finally, can not install and dismantle the test-tube rack, also can not prescribe a limit to test-tube rack shock attenuation direction, be not convenient for store the protection to the genetic gene sample, certain influence has been brought to the use of giving people, for this reason, we provide a genetic gene sample storage device.
SUMMERY OF THE UTILITY MODEL
The main object of the utility model is to provide a genetic gene sample storage device can effectively solve the problem in the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a genetic gene sample storage device, includes main part case and upper cover, the upper cover is located the upper end of main part case, install the pivot between main part case and the upper cover, and main part case and upper cover are through pivot swing joint, the spacing groove has been seted up to the inside bottom of main part case, the inside of spacing groove is run through and is provided with the backup pad, the shape size of spacing groove and backup pad is the same completely, and backup pad and spacing groove swing joint, the lower extreme fixed mounting of backup pad has a plurality of groups sleeve, a plurality of groups the inside equal fixed mounting of telescopic lower extreme has the spring.
Preferably, a horizontal sliding groove is formed in the bottom end of the inner wall of the main box, a second horizontal sliding groove is formed in the upper end of the inner wall of the main box, a first vertical sliding groove and a second vertical sliding groove are further formed in the inner wall of the main box, and the first vertical sliding groove and the second vertical sliding groove are perpendicular to the first horizontal sliding groove and the second horizontal sliding groove.
Preferably, the inside of main part case is provided with the test-tube rack, the test-tube rack includes test-tube rack bottom plate, support and test-tube rack roof, six sets of recesses have been seted up on the test-tube rack bottom plate, the equal fixed mounting in both sides surface of test-tube rack bottom plate has two sets of sliders No. one, test-tube rack bottom plate and test-tube rack roof are through four sets of support fixed connection, six sets of through-holes have been seted up on the test-tube rack roof, the equal fixed mounting in both sides surface of test-tube rack roof has two sets of sliders No. two.
Preferably, two sets of slider all with a horizontal spout swing joint, two sets of No. two slider all with No. two horizontal spout swing joint, and two sets of slider are located the inside of a vertical spout and No. two vertical spouts respectively, and are two sets of No. two slider is located the inside of a vertical spout and No. two vertical spouts respectively.
Preferably, the lower end of the upper cover is fixedly provided with a buckling rod, the bottom end of the front side of the main box is fixedly provided with a clamping block, the clamping block and the buckling rod are located at the same horizontal height, and the clamping block is movably connected with the buckling rod.
Preferably, the inside fixed mounting in bottom of main part case has a plurality of groups bracing piece, and the equal fixed mounting in upper end of a plurality of groups bracing piece has a mounting panel, a plurality of groups the upper end of mounting panel all with the bottom fixed connection of a plurality of groups spring, and the upper end of spring, mounting panel and bracing piece all is located telescopic inside.
Preferably, the shape and size of the support plate, the test tube rack bottom plate and the test tube rack top plate are completely the same.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the test tube rack can be supported through the arranged supporting plate, the spring arranged at the lower end of the supporting plate can buffer and protect the test tube on the test tube rack, the supporting plate, the bottom plate of the test tube rack and the top plate of the test tube rack are completely the same in shape and size, the test tube rack can be damped by up and down movement of the limiting groove, and gene samples can be better protected;
2. the damping direction of the spring can be limited through the arranged sleeve, so that the spring only moves up and down, and meanwhile, the mounting plate can be blocked and limited by the lug arranged at the bottom end of the sleeve, so that the spring is prevented from moving out of the sleeve position, and better buffering protection is realized;
3. through the horizontal spout and the vertical spout that set up, can enough install and dismantle the test-tube rack, can inject the test-tube rack shock attenuation direction again, the test-tube rack slides in a horizontal spout and No. two horizontal spouts roll-off through a slider and No. two sliders, and a slider also can rise in a vertical spout and No. two vertical spouts with descend and cushion protection to the test-tube rack with No. two sliders simultaneously, and simple structure is convenient for save the protection to the genetic gene sample.
The parts of the device not involved are the same as or can be implemented using prior art.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a genetic sample storage device according to the present invention;
FIG. 2 is an enlarged view of a main body case of a genetic sample storage device according to the present invention;
FIG. 3 is an enlarged view of a portion of a genetic sample storage device according to the present invention;
FIG. 4 is a sectional view of a main body case of a genetic sample storage device according to the present invention;
fig. 5 is an enlarged view of a in fig. 4 of a genetic sample storage device according to the present invention.
In the figure: 1. a main body case; 2. an upper cover; 3. a clamping block; 4. a first horizontal chute; 5. a second horizontal chute; 6. a first vertical chute; 7. a second vertical chute; 8. a limiting groove; 9. a support plate; 10. a test tube rack bottom plate; 11. a first sliding block; 12. a groove; 13. a support; 14. a test tube rack top plate; 15. a second sliding block; 16. a through hole; 17. a support bar; 18. a sleeve; 19. a spring; 20. and (7) mounting the plate.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
Example 1
As shown in fig. 1-5, a genetic gene sample storage device, including main body case 1 and upper cover 2, upper cover 2 is located the upper end of main body case 1, install the pivot between main body case 1 and the upper cover 2, and main body case 1 and upper cover 2 are through pivot swing joint, spacing groove 8 has been seted up to the inside bottom of main body case 1, the inside of spacing groove 8 is run through and is provided with backup pad 9, spacing groove 8 is the same with the shape size of backup pad 9 completely, and backup pad 9 and spacing groove 8 swing joint, the lower extreme fixed mounting of backup pad 9 has a plurality of sets of sleeves 18, the inside equal fixed mounting of lower extreme of a plurality of sets of sleeves 18 has spring 19.
The inside of main part case 1 is provided with the test-tube rack, and the test-tube rack includes test-tube rack bottom plate 10, support 13 and test-tube rack roof 14, has seted up six recesses 12 on the test-tube rack bottom plate 10, and the equal fixed mounting in both sides surface of test-tube rack bottom plate 10 has two sets of sliders 11 No. one, and test-tube rack bottom plate 10 and test-tube rack roof 14 have seted up six through-holes 16 through four group's support 13 fixed connection of group, the equal fixed mounting in both sides surface of test-tube rack roof 14 has two sets of sliders 15 No. two sets of.
The shape and size of the supporting plate 9, the test tube rack bottom plate 10 and the test tube rack top plate 14 are completely the same.
By adopting the technical scheme: the backup pad 9 that sets up can support the test-tube rack, and the spring 19 of the installation of backup pad 9 lower extreme can be to the test-tube rack on the test-tube rack test tube buffer protection, and backup pad 9, test-tube rack bottom plate 10 are the same with the shape size of test-tube rack roof 14 completely, can realize that the test-tube rack reciprocates at spacing groove 8 and carry out the shock attenuation, the better protects gene sample.
Example 2
As shown in fig. 1-5, a genetic gene sample storage device, including main body case 1 and upper cover 2, upper cover 2 is located the upper end of main body case 1, install the pivot between main body case 1 and the upper cover 2, and main body case 1 and upper cover 2 are through pivot swing joint, spacing groove 8 has been seted up to the inside bottom of main body case 1, the inside of spacing groove 8 is run through and is provided with backup pad 9, spacing groove 8 is the same with the shape size of backup pad 9 completely, and backup pad 9 and spacing groove 8 swing joint, the lower extreme fixed mounting of backup pad 9 has a plurality of sets of sleeves 18, the inside equal fixed mounting of lower extreme of a plurality of sets of sleeves 18 has spring 19.
The inside fixed mounting in bottom of main part case 1 has a plurality of groups bracing piece 17, and the equal fixed mounting in upper end of a plurality of groups bracing piece 17 has mounting panel 20, the upper end of a plurality of groups mounting panel 20 all with the bottom fixed connection of a plurality of groups spring 19, and spring 19, mounting panel 20 all are located the inside of sleeve 18 with the upper end of bracing piece 17.
By adopting the technical scheme: the sleeve 18 that sets up can be injectd spring 19's shock attenuation direction for spring 19 only reciprocates, and the lug of 18 bottom installations of sleeve simultaneously can block restriction to mounting panel 20, avoids spring 19 to move out sleeve 18 position, better buffering protection.
Example 3
As shown in fig. 1-5, a genetic gene sample storage device, including main body case 1 and upper cover 2, upper cover 2 is located the upper end of main body case 1, install the pivot between main body case 1 and the upper cover 2, and main body case 1 and upper cover 2 are through pivot swing joint, spacing groove 8 has been seted up to the inside bottom of main body case 1, the inside of spacing groove 8 is run through and is provided with backup pad 9, spacing groove 8 is the same with the shape size of backup pad 9 completely, and backup pad 9 and spacing groove 8 swing joint, the lower extreme fixed mounting of backup pad 9 has a plurality of sets of sleeves 18, the inside equal fixed mounting of lower extreme of a plurality of sets of sleeves 18 has spring 19.
Horizontal spout 4 has been seted up to the bottom of main part case 1 inner wall, and No. two horizontal spouts 5 have been seted up to the upper end of main part case 1 inner wall, has still seted up vertical spout 6 and No. two vertical spouts 7 on the main part case 1 inner wall, and a vertical spout 6 and No. two vertical spouts 7 all set up with horizontal spout 4 and No. two horizontal spouts 5 perpendicularly.
Two sets of slider 11 all with 4 swing joint of horizontal chute, two sets of No. two sliders 15 all with 5 swing joint of horizontal chute No. two, and two sets of slider 11 are located the inside of vertical chute 6 and No. two vertical chutes 7 respectively, and two sets of No. two sliders 15 are located the inside of vertical chute 6 and No. two vertical chutes 7 respectively.
The lower extreme fixed mounting of upper cover 2 has the profile bar, and the front side bottom fixed mounting of main part case 1 has fixture block 3, and fixture block 3 and profile bar are located same level, fixture block 3 and profile bar swing joint.
By adopting the technical scheme: the horizontal spout and the vertical spout of setting, can enough install and dismantle the test-tube rack, can prescribe a limit to the test-tube rack shock attenuation direction again, the test-tube rack slides in the roll-off through a slider 11 and No. two sliders 15 in horizontal spout 4 and No. two horizontal spouts 5, a slider 11 and No. two sliders 15 also can rise in vertical spout 6 and No. two vertical spouts 7 simultaneously and descend and cushion protection to the test-tube rack, moreover, the steam generator is simple in structure, and the protection is stored to the genetic gene sample.
It should be noted that the utility model is a genetic gene sample storage device, when in use, firstly, the main body box 1 is placed on the horizontal desktop, the test tube rack slides out from the first horizontal chute 4 and the second horizontal chute 5, the genetic test tube sample to be stored is placed in the through hole 16 on the test tube rack, the bottom end of the test tube is accommodated in the groove 12, then the first slide block 11 and the second slide block 15 of the test tube rack slide into the main body box 1 in the first horizontal chute 4 and the second horizontal chute 5, and just placed on the support plate 9 on the limit groove 8, the support plate 9 can support the test tube rack, the spring 19 arranged at the lower end of the support plate 9 can buffer and protect the test tube on the test tube rack, the shape and size of the support plate 9, the test tube rack bottom plate 10 and the test tube rack top plate 14 are completely the same, the test tube rack can realize the up-down and-down movement of the limit groove 8 for shock absorption, better protecting the gene sample, under spring 19's cushioning effect, the test-tube rack reciprocates, slider 11 and No. two sliders 15 also can rise and descend and cushion the protection to the test-tube rack in vertical spout 6 and No. two vertical spouts 7, moreover, the steam generator is simple in structure, be convenient for carry out storage protection to the genetic gene sample, horizontal spout and vertical spout of setting, can enough install and dismantle the test-tube rack, can prescribe a limit to test-tube rack shock attenuation direction again, sleeve 18 of backup pad 9 lower extreme installation, can prescribe a limit to spring 19's shock attenuation direction, make spring 19 only reciprocate, the lug of installation of sleeve 18 bottom can block the restriction to mounting panel 20 simultaneously, avoid spring 19 to remove sleeve 18 position, better cushion protection, and is comparatively practical.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (7)

1. The utility model provides a genetic gene sample storage device, includes main part case (1) and upper cover (2), upper cover (2) are located the upper end of main part case (1), install the pivot between main part case (1) and upper cover (2), and main part case (1) and upper cover (2) through pivot swing joint, its characterized in that: spacing groove (8) have been seted up to the inside bottom of main part case (1), the inside of spacing groove (8) is run through and is provided with backup pad (9), the shape size of spacing groove (8) and backup pad (9) is the same completely, and backup pad (9) and spacing groove (8) swing joint, the lower extreme fixed mounting of backup pad (9) has a plurality of groups sleeve (18), a plurality of groups the inside equal fixed mounting of lower extreme of sleeve (18) has spring (19).
2. The genetic gene sample storage device according to claim 1, wherein: horizontal spout (4) have been seted up No. one to the bottom of main part case (1) inner wall, horizontal spout (5) No. two have been seted up to the upper end of main part case (1) inner wall, still seted up vertical spout (6) and No. two vertical spout (7) on main part case (1) inner wall, and vertical spout (6) and No. two vertical spout (7) all set up with horizontal spout (4) and No. two horizontal spout (5) perpendicularly.
3. The genetic gene sample storage device according to claim 1, wherein: the inside of main part case (1) is provided with the test-tube rack, the test-tube rack includes test-tube rack bottom plate (10), support (13) and test-tube rack roof (14), has seted up six recesses (12) of organizing on test-tube rack bottom plate (10), the equal fixed mounting in both sides surface of test-tube rack bottom plate (10) has two sets of slider (11) No. two sets of, test-tube rack bottom plate (10) and test-tube rack roof (14) are through four support (13) fixed connection of group, six through-holes (16) of organizing have been seted up on test-tube rack roof (14), the equal fixed mounting in both sides surface of test-tube rack roof (14) has slider (15) No. two sets.
4. The genetic gene sample storage device according to claim 2 or 3, wherein: two sets of slider (11) all with a horizontal chute (4) swing joint, two sets of No. two slider (15) all with No. two horizontal chutes (5) swing joint, and two sets of slider (11) are located the inside of a vertical spout (6) and No. two vertical chutes (7) respectively, and are two sets of slider (15) are located the inside of a vertical spout (6) and No. two vertical chutes (7) respectively.
5. The genetic gene sample storage device according to claim 1, wherein: the lower extreme fixed mounting of upper cover (2) has the profile bar, the front side bottom fixed mounting of main part case (1) has fixture block (3), and fixture block (3) and profile bar are located same level, fixture block (3) and profile bar swing joint.
6. The genetic gene sample storage device according to claim 1, wherein: the inside fixed mounting in bottom of main part case (1) has a plurality of groups bracing piece (17), and the equal fixed mounting in upper end of a plurality of groups bracing piece (17) has mounting panel (20), a plurality of groups the upper end of mounting panel (20) all with the bottom fixed connection of a plurality of groups spring (19), and the upper end of spring (19), mounting panel (20) and bracing piece (17) all is located the inside of sleeve (18).
7. The genetic gene sample storage device according to claim 3, wherein: the shape and size of the supporting plate (9), the test tube rack bottom plate (10) and the test tube rack top plate (14) are completely the same.
CN201920611881.9U 2019-04-29 2019-04-29 Genetic gene sample storage device Active CN209968470U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920611881.9U CN209968470U (en) 2019-04-29 2019-04-29 Genetic gene sample storage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920611881.9U CN209968470U (en) 2019-04-29 2019-04-29 Genetic gene sample storage device

Publications (1)

Publication Number Publication Date
CN209968470U true CN209968470U (en) 2020-01-21

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Application Number Title Priority Date Filing Date
CN201920611881.9U Active CN209968470U (en) 2019-04-29 2019-04-29 Genetic gene sample storage device

Country Status (1)

Country Link
CN (1) CN209968470U (en)

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