Sample storage device

By introducing limit structure, detection structure and information storage structure into the sample storage device, the problem of untidy placement of sample tanks, inability to detect placement in real time and low label distinction efficiency is solved, and the stable placement, automatic detection and information management of sample tanks are realized, and work efficiency and equipment aesthetics are improved.

CN223031911UActive Publication Date: 2025-06-27ANHUI ZHIZHI ENG TECH CO LTD
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Patent Information

Application Number
CN202421494608.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-27
Publication Date
2025-06-27
Estimated Expiration
2034-06-27

AI Technical Summary

Technical Problem

The existing sample storage devices lack limit structure and information storage functions, resulting in untidy placement of sample cans and inability to detect the position in real time. The labels are inefficient in labeling, and the labels affect the aesthetics after multiple use of the sample cans.

Method used

A sample storage device is designed, including a storage rack, a sample tank, a limit structure, a detection structure and an information storage structure. The limit structure realizes the stable placement of the sample tank through the limit plate and limit block. The detection structure uses laser sensor to detect the in-place condition of the sample tank. The information storage structure realizes information input and output at the bottom of the sample tank through the memory chip.

Benefits of technology

It realizes the effective limit and beautiful placement of the sample tank, can automatically detect the in-place status and number of empty spaces of the sample tank, reduces the intensity of manual labor, improves work efficiency, and realizes the rapid input and output of sample information through the information storage structure, supporting the multiple use of the sample tank.

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Abstract

The utility model relates to the technical field of storage, in particular to a sample storage device which comprises a storage frame (1). Sample tanks (2) are arranged on the storage rack (1); a limiting structure is arranged on one side of the sample tank (2); a detection structure is arranged on the limiting structure; an information storage structure is arranged on the sample tank (2); the limiting structure can limit the sample tank to ensure that the sample tank is stably mounted on the storage rack; the detection structure is matched with the limiting structure, whether the sample tank is in place or not and the vacancy number can be detected, manual counting of workers is not needed, the labor intensity of the workers is effectively reduced, and the working efficiency is improved; a worker can input and output the sample information of each sample tank to the information storage structure, the information can be input and output quickly and automatically, and the sample tanks can be used repeatedly.
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Description

Technical Field

[0001] The utility model relates to the technical field of storage, and in particular to a sample storage device. Background Art

[0002] In industries such as cement and building materials that produce powder particles, when quality inspection of materials in different production links is required, canned samples need to be sealed; this is conducive to later comparison, re-inspection, data tracing, etc. of test data; sample cans are large in size, heavy in weight, and large in quantity, and are now often placed by industrial robots; sample cans are stored on shelves;

[0003] The existing shelves lack limiters for the placement of sample barrels, which can easily lead to the sample barrels being placed in an untidy manner and affect the appearance; and the existing shelves cannot detect in real time whether the sample cans are in place and the number of empty cans;

[0004] Existing sample cans often use a labeling method to distinguish different sample cans, which is inefficient, and after the sample cans are recycled for many times, the labels on the surface of the cans affect the appearance.

[0005] After searching, the applicant found that the Chinese patent document with publication number 216124068U disclosed on March 25, 2022 a western medicine storage rack for hospital pharmacies, including a base, a fixed plate and a support plate, a movable tray is provided at the upper end of the support plate, and a limiting mechanism is provided between the movable tray and the fixed plate; the western medicine storage rack for hospital pharmacies is provided with shading glass 1 on the left and right sides, and shading glass 2 on the front and back sides through damping hinges to prevent direct light from entering the interior, providing a cool storage environment for the interior of the storage rack, a storage box is provided inside the support frame, and a desiccant is filled inside. The air holes keep the interior of the storage rack dry to prevent the western medicine from getting damp, and the western medicine is placed on the upper end of the movable tray, which can be moved in and out through the slide rail and fixed by a limiting mechanism; the device also cannot solve the above-mentioned technical problems.

[0006] Therefore, in order to improve or solve at least one of the above problems, it is necessary to optimize the existing sample storage device. Utility Model Content

[0007] The utility model aims to provide a sample storage device which has a sample tank capable of realizing information storage and a storage rack capable of providing position limiting and empty position detection for the sample tank.

[0008] In order to solve the above technical problems, the technical solution adopted by the utility model is: a sample storage device, including a storage rack; a sample can is provided on the storage rack; a limiting structure is provided on one side of the sample can; a detection structure is provided on the limiting structure; and an information storage structure is provided on the sample can.

[0009] The storage rack includes a shelf board; both the sample tank and the limiting structure are arranged on the shelf board.

[0010] The limiting structure includes a limiting plate; limiting blocks are arranged on both sides of the shelf board; the limiting plate is arranged between adjacent limiting blocks; the sample tank is arranged between the limiting plate and the limiting blocks.

[0011] The detection structure includes a laser sensor; the laser sensors are arranged on both sides of the limiting plate.

[0012] The information storage structure includes a storage chip; the storage chip is arranged at the bottom of the sample tank.

[0013] The sample tank includes a neck; a clamping groove is arranged along the edge of the neck; clamping claws are arranged in the clamping groove.

[0014] The storage rack includes an installation frame; the shelf boards are evenly distributed on the installation frame.

[0015] A limiting strip is arranged on one side of the limiting block away from the limiting plate; the limiting strip is connected to the shelf board, and a slotted hole bolt is arranged between the limiting strip and the limiting block.

[0016] The limiting plate is arranged in the middle of the shelf board; the limiting block includes a first limiting block and a second limiting block; the first limiting blocks are arranged at both ends of the shelf board; the second limiting blocks are arranged between adjacent first limiting blocks;

[0017] The cross-section of the first limiting block is trapezoidal; the cross-section of the second limiting block is trapezoidal; the cross-section of the limiting block is rectangular.

[0018] Anchor bolts are arranged between the storage rack and the ground; a sandblasting layer is arranged in the clamping groove.

[0019] The beneficial effects of this application are as follows:

[0020] 1. The limiting blocks are arranged on both sides of the shelf board; the limiting plate is arranged in the middle of the shelf board; the sample tank is placed between the limiting blocks and the limiting plate to achieve full limiting; triangular grooves are arranged between adjacent first limiting blocks and second limiting blocks, and between adjacent second limiting blocks; the triangular grooves can effectively limit sample tanks of different sizes; at the same time, the rigidity of each shelf board can be effectively improved, thereby improving the load-bearing capacity and the aesthetic property of the equipment.

[0021] 2. The limit block is a strip-shaped block; the laser sensors are respectively arranged on both sides of the limit block and can detect whether there is a sample vial between the limit blocks; it can realize the detection of whether the sample vial is in place and the number of vacant positions, eliminating the need for manual counting by staff, effectively reducing the labor intensity of the staff and increasing the work efficiency.

[0022] 3. A storage chip is installed at the bottom of the sample tube, and the staff can input and output the sample information of each sample vial to the storage chip, achieving fast and automated information input and output, and the sample vials can be reused.

[0023] 4. The storage rack includes an installation frame; a plurality of the shelf boards are arranged on the installation frame; the shelf boards and the installation frame are detachably connected, enabling quick installation and disassembly; by setting long slot holes and connecting the limit plates and limit blocks with bolts, it can be customarily adjusted, effectively avoiding inaccurate positioning caused by manufacturing and installation errors; the sample vial is designed with a neck, and the neck is sandblasted, which is smaller in diameter than the tank body and has a large friction coefficient, facilitating grasping by the robot gripper; the storage rack is connected to the ground through the floor bolts set at the floor feet, improving the stability of the entire device; the installation frame of the storage rack is an aluminum profile shelf frame, reducing the mass of the entire device and improving its rigidity. Description of the Drawings

[0024] The following further elaborates on the specific implementation manners of the present utility model in conjunction with the drawings, where:

[0025] Figure 1 is a schematic structural view of the present sample storage device.

[0026] Figure 2 is a schematic structural view of the sample vial of the present sample storage device.

[0027] Figure 3 is a schematic structural view of the shelf board of the present sample storage device.

[0028] The markings in the above figures are all:

[0029] The markings in the figure are:

[0030] 1. Storage rack, 101. Installation frame, 102. Floor bolt

[0031] 2. Sample vial, 201. Storage chip, 202. Gripping groove

[0032] 3. Shelf board

[0033] 4. Limit plate, 401. Limit block, 402. Laser sensor, 403. First limit block, 404. Second limit block, 405. Limit strip Specific Embodiments

[0034] The following is a further detailed description of the specific implementation manners of the present utility model with reference to the accompanying drawings through the description of embodiments, aiming to help those skilled in the art have a more complete, accurate and in-depth understanding of the inventive concept and technical solutions of the present utility model and facilitate its implementation.

[0035] Figure 1 The shown sample storage device includes a storage rack 1; a sample jar 2 is provided on the storage rack 1; a limiting structure is provided on one side of the sample jar 2; a detection structure is provided on the limiting structure; and an information storage structure is provided on the sample jar 2.

[0036] The limiting structure can limit the sample jar 2 to ensure the stable installation of the sample jar 2 on the storage rack 1; the detection structure cooperates with the limiting structure to be able to detect whether the sample jar 2 is in place and the number of vacant positions, without the need for staff to manually count, effectively reducing the labor intensity of the staff and increasing work efficiency; the staff can input and output the sample information of each sample jar 2 to the information storage structure, and can achieve fast and automated information input and output, and the sample jar 2 can be reused.

[0037] The storage rack 1 includes a shelf board 3; both the sample jar 2 and the limiting structure are provided on the shelf board 3.

[0038] The shelf board 3 is a square board; the shelf board 3 is detachably connected to the storage rack 1; the shelf board 3 provides stable support for the sample jar 2 and the limiting structure.

[0039] The limiting structure includes a limiting plate 4; limiting blocks 401 are provided on both sides of the shelf board 3; the limiting plate 4 is provided between adjacent limiting blocks 401; the sample jar 2 is provided between the limiting plate 4 and the limiting blocks 401.

[0040] The limiting plate 4 is a long strip board and is provided in the middle of the top of the shelf board 3; the limiting blocks 401 are provided on both sides of the top of the shelf board 3; the sample jar 2 is provided between the limiting plate 4 and the limiting blocks 401, which can effectively limit it, make the sample jar 2 placed correctly and neatly and beautifully; and can effectively prevent the wrong placement of one sample jar 2 from driving other sample jars 2 to fall down.

[0041] The detection structure includes a laser sensor 402; the laser sensor 402 is provided on both sides of the limiting plate 4.

[0042] The laser sensor 402 is connected to a single-chip microcomputer; it can detect whether there is a sample jar 2 between the limiting blocks 401; it can detect whether the sample jar 2 is in place and the number of vacant positions, without the need for staff to manually count, effectively reducing the labor intensity of the staff and increasing work efficiency.

[0043] The information storage structure includes a storage chip 201; the storage chip 201 is provided at the bottom of the sample jar 2.

[0044] The bottom of the sample tank 2 is provided with a mounting groove, and the storage chip 201 is embedded in the mounting groove; the staff can input and output the sample information of each sample tank 2 to the storage chip 201, enabling fast and automated information input and output. The sample tank 2 can be reused.

[0045] The sample tank 2 includes a neck; a clamping groove 202 is provided along the edge of the neck; and clamping jaws are provided in the clamping groove 202.

[0046] The neck has a smaller diameter than the tank body; the clamping groove 202 is arranged along the neck; the clamping groove 202 is sandblasted, with a large coefficient of friction, which is convenient for the robot clamping jaws to grasp; there is no need for manual placement by the staff, effectively improving the work efficiency.

[0047] The storage rack 1 includes a mounting frame 101; the shelves 3 are evenly distributed on the mounting frame 101.

[0048] The mounting frame 101 is an aluminum profile shelf frame, reducing the mass of the entire equipment and improving its rigidity; there are multiple shelves 3 on the mounting frame 101; the shelves 3 are detachably connected to the mounting frame 101; each shelf 3 can be quickly installed and disassembled on the mounting frame 101, facilitating loading, taking, cleaning, effectively increasing the work efficiency and reducing the manual labor.

[0049] A limiting strip 405 is provided on the side of the limiting block 401 away from the limiting plate 4; the limiting strip 405 is connected to the shelf 3, and there is a slotted hole bolt between the limiting strip 405 and the limiting block 401.

[0050] The limiting strip 405 is fixedly connected to the shelf 3; the slotted hole bolt stably connects the limiting block 401 to the limiting strip 405;

[0051] The limiting block 401 is also provided with a slotted hole bolt, which stably connects the limiting block 401 to the shelf 3; thus, the positions of the limiting block 401 and the limiting block 401 can be customarily adjusted, effectively avoiding inaccurate limiting caused by manufacturing and installation errors.

[0052] The limiting plate 4 is provided in the middle of the shelf 3; the limiting block 401 includes a first limiting block 403 and a second limiting block 404; the first limiting block 403 is provided at both ends of the shelf 3; the second limiting block 404 is provided between adjacent first limiting blocks 403;

[0053] The cross-section of the first limiting block 403 is trapezoidal; the cross-section of the second limiting block 404 is trapezoidal; the cross-section of the limiting block 401 is rectangular.

[0054] There are triangular grooves between the adjacent first limiting block 403 and the second limiting block 404, and between the adjacent second limiting block 404 and the second limiting block 404; the triangular grooves can effectively limit sample cans 2 of different sizes; at the same time, they can also effectively improve the rigidity of each layer board 3, thereby improving the load-bearing capacity and the aesthetic property of the equipment.

[0055] There are anchor bolts 102 between the storage rack 1 and the ground; there is a sandblasting layer in the clamping groove 202.

[0056] The storage rack 1 is provided with anchor bolts 102 and is connected to the ground through the anchor bolts 102 to improve the stability of the whole equipment; effectively avoid the storage rack 1 being displaced over time due to environmental vibration, which is not conducive to the correct placement of the sample can 2.

[0057] The specific working process of the present utility model is as follows:

[0058] Place the layer board 3 on the layer board 3; place the sample can 2 between the limiting plate 4 and the limiting block 401 through the robot gripper; the laser sensor 402 can detect whether the sample can 2 is installed in place and feedback to the staff through the single-chip microcomputer; if it is necessary to change or read the information of the sample can 2, just write to or read from the storage chip 201.

[0059] The present utility model has been described exemplarily in combination with the accompanying drawings. Obviously, the specific implementation of the present utility model is not limited by the above-mentioned manner. As long as various non-substantial improvements are made by adopting the method concept and technical solution of the present utility model; or without improvement, the above-mentioned concept and technical solution of the present utility model are directly applied to other occasions, they are all within the protection scope of the present utility model.

Claims

1. A sample storage device, characterized in that: It comprises a storage rack (1); a sample tank (2) is provided on the storage rack (1); a limiting structure is provided on one side of the sample tank (2); a detection structure is provided on the limiting structure; and an information storage structure is provided on the sample tank (2).

2. A sample storage device according to claim 1, characterized in that: The storage rack (1) comprises a layer plate (3); the sample tank (2) and the limiting structure are both arranged on the layer plate (3).

3. A sample storage device according to claim 2, characterized in that: The limiting structure comprises a limiting plate (4); limiting blocks (401) are provided on both sides of the layer plate (3); the limiting plate (4) is arranged between adjacent limiting blocks (401); and the sample tank (2) is arranged between the limiting plate (4) and the limiting blocks (401).

4. A sample storage device according to claim 3, characterized in that: The detection structure comprises a laser sensor (402); the laser sensor (402) is arranged on both sides of the limit plate (4).

5. A sample storage device according to any one of claims 3 to 4, characterized in that: The information storage structure comprises a storage chip (201); the storage chip (201) is arranged at the bottom of the sample tank (2).

6. A sample storage device according to claim 5, characterized in that: The sample jar (2) comprises a neck; a clamping groove (202) is provided along the edge of the neck; and a clamping claw is provided in the clamping groove (202).

7. A sample storage device according to claim 6, characterized in that: The storage rack (1) comprises a mounting frame (101); the layer boards (3) are evenly distributed on the mounting frame (101).

8. A sample storage device according to any one of claims 6 to 7, characterized in that: A limiting strip (405) is provided on one side of the limiting block (401) away from the limiting plate (4); the limiting strip (405) is connected to the layer plate (3), and a long slot hole bolt is provided between the limiting strip (405) and the limiting block (401).

9. A sample storage device according to claim 8, characterized in that: The limit plate (4) is arranged in the middle of the layer plate (3); the limit block (401) comprises a first limit block (403) and a second limit block (404); the first limit block (403) is arranged at both ends of the layer plate (3); the second limit block (404) is arranged between adjacent first limit blocks (403); The cross section of the first limiting block (403) is a trapezoid; the cross section of the second limiting block (404) is a trapezoid; and the cross section of the limiting block (401) is a rectangle.

10. A sample storage device according to claim 9, characterized in that: Anchor bolts (102) are provided between the storage rack (1) and the ground; and a sandblasting layer is provided in the clamping groove (202).

Citation Information

Patent Citations

  • Western medicine storage rack for hospital pharmacy

    CN216124068U