CN216605326U - Biological assay utensil arrangement box - Google Patents

Biological assay utensil arrangement box Download PDF

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Publication number
CN216605326U
CN216605326U CN202123107476.XU CN202123107476U CN216605326U CN 216605326 U CN216605326 U CN 216605326U CN 202123107476 U CN202123107476 U CN 202123107476U CN 216605326 U CN216605326 U CN 216605326U
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China
Prior art keywords
storage unit
main frame
mounting
storage
mounting position
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CN202123107476.XU
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Chinese (zh)
Inventor
杨承刚
孙晓峰
孙耀兰
张冬梅
王李娜
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Gu'an Bojian Biotechnology Co ltd
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Gu'an Bojian Biotechnology Co ltd
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Abstract

The utility model discloses a biological experiment instrument placing box, which comprises a placing structure; the mounting structure comprises a main frame, a first storage unit and a second storage unit; the first storage unit and the second storage unit are arranged in the main frame and are respectively connected with the main frame; providing a support assembly supporting the mounting structure; the supporting component is arranged on the side wall of the mounting structure and connected with the mounting structure. The utility model has the beneficial effects that: common experimental equipment is stored in a centralized manner, and required equipment does not need to be searched before the experiment, so that the preparation time is saved; set up a plurality of memory cell and ann position, deposit the apparatus subregion commonly used in the experiment, easily take.

Description

Box is settled to biological assay utensil
Technical Field
The utility model belongs to the technical field of medical instruments, and particularly relates to a biological experiment instrument placing box.
Background
Experimental apparatus such as pipette tips, scissors, tweezers and consumptive materials such as pipette tips, cryopreservation tubes and BD tubes are often used in the process of pathological sample collection. However, the pathological sample needs to be preserved in a low temperature condition, so that the sample needs to be treated in a short time and put into a low temperature container for preservation after being put into a corresponding preservation device. To this end, a stage or rack for processing the sample is typically placed near the cryogenic container in order to quickly process the sample and maximize sample viability.
The work bench or the appliance placing frame used at present is heavy, and the work bench or the appliance placing frame occupies space when being placed near the low-temperature container. These appliances and consumptive materials are of various kinds and storage positions are inconsistent, and items are easy to miss during the preparation in the prior period, so that the appliances and consumptive materials are searched in a hurry again in the experimental process, the time is wasted, and even the experiment can fail, and the time and the labor are wasted.
The utility model aims at the problems and provides a biological experiment instrument mounting box.
SUMMERY OF THE UTILITY MODEL
In order to overcome the problems presented in the background art, the present invention provides a biological experimental instrument housing box.
A biological experimental apparatus mounting box comprises a mounting structure; the mounting structure comprises a main frame, a first storage unit and a second storage unit; the first storage unit and the second storage unit are arranged in the main frame and are respectively connected with the main frame; providing a support assembly supporting the mounting structure; the supporting component is arranged on the side wall of the mounting structure and connected with the mounting structure.
Further, setting the first direction as the direction in which the first storage unit enters the main frame; setting the second direction as the opposite direction of the first direction; setting the third direction as a direction which is vertical to the first direction and parallel to the ground; setting the fourth direction as the opposite direction of the third direction; setting the fifth direction as the direction of the integral structure far away from the ground; the sixth direction is set to be opposite to the fifth direction.
Further, the projection pattern of the first storage unit in the first direction is equal to the projection pattern of the second storage unit in the first direction; the projection graph of the first storage unit in the third direction is equal to the projection graph of the second storage unit in the first direction.
Further, a first storage position for arranging a first storage unit and a second storage unit is arranged on the main frame; the area of a projected graph of the first storage bit in the first direction is larger than that of the first storage unit in the first direction; the projection pattern of the first storage bit in the first direction is the same as the projection pattern of the first storage unit in the first direction; the area of the projected graph of the first storage position in the third direction is larger than that of the projected graph of the first storage unit in the third direction; the projection graph of the first storage bit in the third direction is the same as the projection graph of the first storage unit in the third direction; the area of a projected graph of the first storage bit in the first direction is larger than that of a projected graph of the second storage unit in the first direction; the projection pattern of the first storage bit in the second direction is the same as the projection pattern of the first storage unit in the first direction; the area of a projection graph of the first storage position in the third direction is larger than that of a projection graph of the second storage unit in the third direction; the projection pattern of the first storage bit in the third direction is the same as the projection pattern of the second storage unit in the third direction.
Further, the mounting structure further comprises a first mounting location for mounting a label printer; the first arrangement position is arranged in the third direction of the main frame and fixedly connected with the main frame.
Or the first placing position is arranged in the fourth direction of the main frame and fixedly connected with the main frame.
Further, the mounting structure further comprises a second mounting position, a first support and a third mounting position; the third mounting position is arranged in the fifth direction of the main frame and fixedly connected with the main frame; the second mounting position is arranged in the third direction of the main frame and fixedly connected with the main frame; the first support is arranged in the second mounting position, and the first support and the second mounting position are detachably connected.
Or the third placement position is arranged in the fifth direction of the main frame and is fixedly connected with the main frame; the second mounting position is arranged in the fourth direction of the main frame and fixedly connected with the main frame; the first support is arranged in the second mounting position, and the first support and the second mounting position are detachably connected.
Furthermore, in the experimental process, the first support is taken out from the interior of the second placement position, and the first support is connected with the third placement position to form a device for hanging the pipette.
Furthermore, the mounting structure also comprises a fourth mounting position for mounting the pipette and a fifth mounting position for mounting the head of the pipette; the fourth is installed the position, the fifth is installed the position and is all set up in the fifth direction of body frame, and the fourth is installed the position, the fifth is installed the position and all can dismantle with the body frame and be connected.
Further, the first storage unit comprises a first push-pull structure and a first connecting component; the first connecting assembly is arranged in the third direction and the fourth direction of the first storage unit respectively, and the first connecting assembly is detachably connected with the first storage unit; the first storage unit is connected with the first storage position in a sliding mode through a first connecting assembly; the first push-pull structure is arranged in the second direction of the first storage unit and detachably connected with the first storage unit.
Further, the second storage unit comprises a second push-pull structure, a second connecting assembly and a second bracket for placing scissors and tweezers; the second connecting assembly is arranged in the third direction and the fourth direction of the second storage unit respectively, and the second connecting assembly is detachably connected with the second storage unit; the second storage unit is connected with the first storage position in a sliding mode through a second connecting assembly; the second push-pull structure is arranged in a second direction of the second storage unit and is detachably connected with the second storage unit; the second support is arranged in the second storage unit and detachably connected with the second storage unit.
Further, the support assembly includes an attachment structure; the sticking structure is arranged in the first direction of the main frame, and the supporting component is connected with the main frame; the whole structure is fixed on a smooth wall by applying the adhesive structure.
Or, the support assembly comprises a chassis and a third bracket; the end face of the underframe in the sixth direction is in contact with the ground; the end face of the underframe in the fifth direction is fixedly connected with the end face of the third bracket in the sixth direction; and the third support is positioned on one side in the fifth direction and is fixedly connected with the main frame.
The utility model has the beneficial effects that: common experimental equipment is stored in a centralized manner, and required equipment does not need to be searched before the experiment, so that the preparation time is saved; set up a plurality of memory cell and ann position, deposit the apparatus subregion commonly used in the experiment, easily take.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of a main frame of the present invention;
FIG. 3 is a schematic diagram of a first storage unit according to the present invention;
FIG. 4 is a schematic diagram of a second storage unit according to the present invention;
FIG. 5 is a schematic view of a support assembly of the present invention;
FIG. 6 is a schematic view of the overall structure of embodiment 3 of the present invention;
FIG. 7 is a schematic view of a supporting structure according to embodiment 3 of the present invention;
in the figure, 1, a mounting structure; 11. a main frame; 12. a first installation position; 13. a second setting bit; 14. a first bracket; 15. a third installation position; 16. a fourth setting bit; 17. a fifth setting bit; 18. a first storage unit; 181. a first push-pull structure; 182. a first connection assembly; 19. a second storage unit; 191. a second push-pull structure; 192. a second connection assembly; 193. a second bracket; 2. a support assembly; 21. a pasting structure; 22. a chassis; 23. and a third bracket.
Detailed Description
The technical solutions in the embodiments of the present invention are clearly and completely described below by specific embodiments, and it is obvious that the embodiments described are only a part of the embodiments of the present invention, rather than all embodiments, and other advantages and efficacies of the present invention can be easily understood by those skilled in the art from the disclosure of the present specification. The present invention can be implemented or applied by other different specific embodiments, and the features in the following embodiments and embodiments can be combined with each other without conflict, and all other embodiments obtained by a person of ordinary skill in the art without creative efforts based on the embodiments of the present invention belong to the protection scope of the present invention.
The first direction mentioned in the technical scheme is a direction in which the first storage unit enters the main frame; the second direction is opposite to the first direction; the third direction is a direction which is perpendicular to the first direction and is parallel to the ground; the fourth direction is the reverse direction of the third direction; the fifth direction is the direction of the whole structure far away from the ground; the sixth direction is opposite to the fifth direction.
Example 1
As shown in fig. 1, a bioassay equipment setting cassette of the present embodiment includes a setting structure 1; the placement structure 1 comprises a main frame 11, a first storage unit 18 and a second storage unit 19; the first storage unit 18 and the second storage unit 19 are arranged in the main frame 11, and the first storage unit 18 and the second storage unit 19 are respectively connected with the main frame 11; providing a support assembly 2 supporting the mounting structure 1; the supporting component 2 is arranged on the side wall of the mounting structure 1, and the supporting component 2 is connected with the mounting structure 1.
The main frame 11 is provided with a first storage position for arranging a first storage unit 18 and a second storage unit 19; the first storage position is arranged inside the main frame 11 and is integrally connected with the main frame 11.
The mounting structure 1 further comprises a first mounting location 12 for mounting a label printer; first location position 12 sets up in the third direction of body frame 11, first location position 12 and body frame 11 fixed connection.
Or the first mounting position 12 is arranged in the fourth direction of the main frame 11, and the first mounting position 12 is fixedly connected with the main frame 11.
The mounting structure 1 further comprises a second mounting location 13, a first support 14 and a third mounting location 15; the third mounting position 15 is arranged in the fifth direction of the main frame 11, and the third mounting position 15 is fixedly connected with the main frame 11; the second mounting position 13 is arranged in the third direction of the main frame 11, and the second mounting position 13 is fixedly connected with the main frame 11; the first bracket 14 is arranged inside the second mounting position 13, and the first bracket 14 is detachably connected with the second mounting position 13.
Or the third mounting position 15 is arranged in the fifth direction of the main frame 11, and the third mounting position 15 is fixedly connected with the main frame 11; the second mounting position 13 is arranged in the fourth direction of the main frame 11, and the second mounting position 13 is fixedly connected with the main frame 11; the first bracket 14 is arranged inside the second mounting position 13, and the first bracket 14 is detachably connected with the second mounting position 13.
During the experiment, the first support 14 is taken out of the second mounting position 13, and the first support 14 is connected with the third mounting position 15 to form a device for hanging a pipette.
The mounting structure 1 further comprises a fourth mounting position 16 for mounting a pipette and a fifth mounting position 17 for mounting the head of the pipette; the fourth installation position 16 and the fifth installation position 17 are arranged in the fifth direction of the main frame 11, and the fourth installation position 16 and the fifth installation position 17 are detachably connected with the main frame 11.
The support assembly 2 comprises an attachment structure 21; the pasting structure 21 is arranged in the first direction of the main frame 11, and the supporting component 2 is connected with the main frame 11; the overall structure is fixed to a smooth wall using an adhesive structure 21.
Example 2
As shown in fig. 2 to 5, the present embodiment specifically sets the following technical features on the basis of embodiment 1:
the projection pattern of the first storage unit 18 in the first direction is equal to the projection pattern of the second storage unit 19 in the first direction; the projection pattern of the first storage unit 18 in the third direction is equal to the projection pattern of the second storage unit 19 in the first direction.
The projected pattern area of the first storage bit in the first direction is larger than that of the first storage unit 18 in the first direction; the projection pattern of the first storage bit in the first direction is the same as the projection pattern of the first storage unit 18 in the first direction; the projected pattern area of the first storage bit in the third direction is larger than that of the first storage unit 18 in the third direction; the projection pattern of the first storage bit in the third direction is the same as the projection pattern of the first storage unit 18 in the third direction; the projected pattern area of the first storage bit in the first direction is larger than that of the second storage unit 19 in the first direction; the projection pattern of the first storage bit in the second direction is the same as the projection pattern of the first storage unit 18 in the first direction; the projected pattern area of the first storage position in the third direction is larger than that of the second storage unit 19 in the third direction; the projection pattern of the first storage bit in the third direction is the same as the projection pattern of the second storage unit 19 in the third direction.
The first storage unit 18 comprises a first push-pull structure 181 and a first connecting component 182; the first connecting component 182 is respectively arranged in the third direction and the fourth direction of the first storage unit 18, and the first connecting component 182 is detachably connected with the first storage unit 18; the first storage unit 18 is slidably connected to the first storage location via the first connecting element 182; the first push-pull structure 181 is disposed in the second direction of the first storage unit 18, and the first push-pull structure 181 is detachably connected to the first storage unit 18.
The second storage unit 19 comprises a second push-pull structure 191, a second connecting assembly 192 and a second bracket 193 for placing scissors and tweezers; the second connecting assembly 192 is disposed in the third and fourth directions of the second storage unit 19, respectively, and the second connecting assembly 192 is detachably connected to the second storage unit 19; the second storage unit 19 is slidably connected to the first storage location through the second connection component 192; the second push-pull structure 191 is arranged in the second direction of the second storage unit 19, and the second push-pull structure 191 is detachably connected with the second storage unit 19; the second bracket 193 is disposed inside the second storage unit 19, and the second bracket 193 is detachably connected to the second storage unit 19.
Example 3
As shown in fig. 6 to 7, the present embodiment is different from embodiment 2 in that:
the support assembly 2 comprises a base frame 22 and a third bracket 23; the end surface of the chassis 22 in the sixth direction is in contact with the ground; the end surface of the chassis 22 in the fifth direction is fixedly connected with the end surface of the third bracket 23 in the sixth direction; the third bracket 23 is fixedly connected to the main frame 11 on the side in the fifth direction.
The above description of the embodiments is only intended for the understanding of the present invention. It should be noted that modifications could be made to the utility model without departing from the principle of the utility model, which would also fall within the scope of the claims of the utility model.

Claims (9)

1. A biological experimental apparatus mounting box comprises a mounting structure; the device is characterized in that the mounting structure comprises a main frame, a first storage unit and a second storage unit; the first storage unit and the second storage unit are arranged in the main frame and are respectively connected with the main frame; providing a support assembly supporting the mounting structure; the supporting component is arranged in a first direction of the arranging structure, and the supporting component is connected with the arranging structure and is arranged in the first direction in which the first storage unit enters the main frame; setting the second direction as the opposite direction of the first direction; setting the third direction as a direction which is vertical to the first direction and parallel to the ground; setting the fourth direction as the opposite direction of the third direction; setting the fifth direction as the direction of the integral structure far away from the ground; setting the sixth direction as the opposite direction of the fifth direction; the mounting structure further comprises a fourth mounting position for mounting the pipette and a fifth mounting position for mounting the head of the pipette; the fourth is installed the position, the fifth is installed the position and is all set up in the fifth direction of body frame, and the fourth is installed the position, the fifth is installed the position and all can dismantle with the body frame and be connected.
2. The bioassay device setting cassette according to claim 1, wherein a pattern projected by the first storage unit in the first direction is equal to a pattern projected by the second storage unit in the first direction; the projection graph of the first storage unit in the third direction is equal to the projection graph of the second storage unit in the first direction.
3. The bioassay device placing case as set forth in claim 2, wherein the main frame is provided with a first storing place for placing the first storing unit and the second storing unit; the area of a projected graph of the first storage bit in the first direction is larger than that of the first storage unit in the first direction; the projection pattern of the first storage position in the first direction is the same as the projection pattern of the first storage unit in the first direction; the area of the projected graph of the first storage position in the third direction is larger than that of the projected graph of the first storage unit in the third direction; the projection graph of the first storage bit in the third direction is the same as the projection graph of the first storage unit in the third direction; the area of a projected graph of the first storage bit in the first direction is larger than that of a projected graph of the second storage unit in the first direction; the projection pattern of the first storage bit in the second direction is the same as the projection pattern of the first storage unit in the first direction; the area of a projected graph of the first storage position in the third direction is larger than that of a projected graph of the second storage unit in the third direction; the projection pattern of the first storage bit in the third direction is the same as the projection pattern of the second storage unit in the third direction.
4. The bioassay device setting cassette as set forth in claim 3, wherein the setting structure further comprises a first setting position for setting a label printer; the first mounting position is arranged in the third direction of the main frame and fixedly connected with the main frame;
or the first mounting position is arranged in the fourth direction of the main frame and fixedly connected with the main frame.
5. The bioassay device containing box as set forth in claim 4, wherein said containing structure further comprises a second containing position, a first holder and a third containing position; the third mounting position is arranged in the fifth direction of the main frame and fixedly connected with the main frame; the second mounting position is arranged in the third direction of the main frame and fixedly connected with the main frame; the first support is arranged inside the second mounting position and is detachably connected with the second mounting position;
or the third mounting position is arranged in the fifth direction of the main frame and fixedly connected with the main frame; the second mounting position is arranged in the fourth direction of the main frame and fixedly connected with the main frame; the first support is arranged in the second mounting position, and the first support and the second mounting position are detachably connected.
6. The bioassay device holding cassette according to claim 3, wherein said first storing unit includes a first push-pull mechanism and a first connecting member; the first connecting assembly is arranged in the third direction and the fourth direction of the first storage unit respectively, and the first connecting assembly is detachably connected with the first storage unit; the first storage unit is connected with the first storage position in a sliding mode through a first connecting assembly; the first push-pull structure is arranged in the second direction of the first storage unit and detachably connected with the first storage unit.
7. The bioassay device holding cassette according to claim 3, wherein said second storing unit comprises a second push-pull structure, a second connecting member, and a second holder for holding scissors and tweezers; the second connecting assembly is arranged in the third direction and the fourth direction of the second storage unit respectively, and the second connecting assembly is detachably connected with the second storage unit; the second storage unit is connected with the first storage position in a sliding mode through a second connecting assembly; the second push-pull structure is arranged in a second direction of the second storage unit and is detachably connected with the second storage unit; the second support is arranged in the second storage unit and detachably connected with the second storage unit.
8. The bioassay device holding case as set forth in any one of claims 4 to 7, wherein said supporting member comprises an adhesive structure; the sticking structure is arranged in the first direction of the main frame, and the supporting component is connected with the main frame; the whole structure is fixed on a smooth wall by applying the adhesive structure.
9. The bioassay device holding cassette as set forth in any one of claims 4 to 7, wherein said supporting member comprises a base frame and a third frame; the end face of the underframe in the sixth direction is in contact with the ground; the end face of the underframe in the fifth direction is fixedly connected with the end face of the third bracket in the sixth direction; and the third support is positioned on one side in the fifth direction and is fixedly connected with the main frame.
CN202123107476.XU 2021-12-13 2021-12-13 Biological assay utensil arrangement box Active CN216605326U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123107476.XU CN216605326U (en) 2021-12-13 2021-12-13 Biological assay utensil arrangement box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123107476.XU CN216605326U (en) 2021-12-13 2021-12-13 Biological assay utensil arrangement box

Publications (1)

Publication Number Publication Date
CN216605326U true CN216605326U (en) 2022-05-27

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ID=81702585

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123107476.XU Active CN216605326U (en) 2021-12-13 2021-12-13 Biological assay utensil arrangement box

Country Status (1)

Country Link
CN (1) CN216605326U (en)

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