Test tube storage box with adjustable partitioning partition

CN224645464UActive Publication Date: 2026-08-18JIANGSU UNINOVO BIOLOGICAL TECH
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Patent Information

Application Number
CN202522245116.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2026-08-18
Estimated Expiration
2035-10-23

AI Technical Summary

Technical Problem

[0003]但当前这类试管存放盒的分区隔板多为固定安装结构,其位置无法根据实际存放试管的数量进行调整,且隔板数量通常固定,不能按需增减,导致盒内空间利用率较低,更难以满足实验室对试管分类存放的精细化需求,例如某一实验中对照组试管仅需2-3支,而实验组可能需要10余支,固定间距的隔板无法根据各类别试管数量灵活调整区域大小,要么导致数量多的类别因空间不足而挤压堆叠,要么使数量少的类别占据过大空间造成闲置(如果此时隔板数量过多,会进一步加剧上述问题),严重影响分类存放的条理性与实用性

Benefits of technology

1、本实用新型中滑动块能沿限制轨道内部做直线移动,进而带动分区隔板灵活调整在盒体内的位置,可根据不同类别试管的数量需求适配调整区域大小,同时,可依据实际分类存放需求,通过增加或减少插入限制轨道的滑动块及对应分区隔板的数量来灵活增减分区数量,避免多余隔板割裂空间或隔板不足导致试管混放,最终实现盒内空间利用率的提升与试管分类存放条理性、实用性的优化,以解决背景技术中的问题;

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Abstract

The utility model discloses a test tube storage box with adjustable partitioning partition, relates to test tube storage box field, and its technical scheme main points are: the both sides of the top of box body are all installed with the end opening limit track, the both sides of partitioning partition are all fixedly connected with the sliding block, and the sliding block is inserted in the end opening of limit track, after inserting, because the shape is limited, the sliding block does linear movement along the inside of limit track, and the effect is that the size of adjustment area can be adapted according to the quantity demand of different categories test tube, and simultaneously, according to actual classified storage demand, the quantity of partitioning is flexibly increased or decreased by increasing or reducing the sliding block inserted in the limit track and the quantity of corresponding partitioning partition, avoid the test tube mixed storage caused by the space split by the redundant partition or the insufficient partition, finally realize the promotion of the space utilization rate in the box and the optimization of test tube classified storage orderliness and practicality.
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Description

Technical Field

[0001] This utility model relates to the field of test tube storage boxes, and more specifically, it relates to a test tube storage box with adjustable partitions. Background Technology

[0002] In daily laboratory operations, test tubes are commonly used instruments and need to be stored in special storage boxes. Existing test tube storage boxes generally include a box body for holding test tubes and a test tube rack installed at the bottom of the box body with multiple rows of evenly distributed round holes for vertically fixing the test tubes. Some storage boxes are equipped with partitions to divide the space inside the box, thereby separating and storing the test tubes.

[0003] However, most of the partitions in current test tube storage boxes are fixed structures, and their positions cannot be adjusted according to the actual number of test tubes stored. In addition, the number of partitions is usually fixed and cannot be increased or decreased as needed, resulting in low space utilization within the box. It is even more difficult to meet the precise needs of laboratories for classifying and storing test tubes. For example, in a certain experiment, the control group may only need 2-3 test tubes, while the experimental group may need more than 10. The fixed spacing of the partitions cannot flexibly adjust the size of the area according to the number of test tubes in each category. This will either cause the large number of categories to be squeezed and stacked due to insufficient space, or cause the small number of categories to occupy too much space and become idle (if there are too many partitions at this time, the above problems will be further aggravated), which seriously affects the orderliness and practicality of classification and storage.

[0004] Therefore, in order to solve the above-mentioned technical problems, this application proposes a test tube storage box with adjustable partitions. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a test tube storage box with adjustable partitions.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a test tube storage box with adjustable partitions, comprising a box body for storing test tubes, and a test tube rack installed at the bottom of the box body. The test tube rack has multiple rows of evenly distributed round holes for inserting the bottom of the test tubes to place them vertically. The box body is equipped with partitions that divide its internal space. The top two sides of the box body are equipped with limiting tracks with end openings. Sliding blocks are fixedly connected to both sides of the partitions, and the sliding blocks are inserted into the limiting tracks through the end openings. After insertion, due to the shape limitation, the sliding blocks move linearly along the inside of the limiting tracks.

[0007] Preferably, the limiting track is an elongated groove seat with an inward convex shape, and the sliding block is a convex block.

[0008] Preferably, each of the sliding blocks has an acrylic label shell installed at its top, with an opening at the top for inserting test tube labels.

[0009] Preferably, the limiting track is equipped with a fixing component for fixing the position of the sliding block inside it.

[0010] Preferably, the fixing assembly includes a horizontal plate fixed to the back of the limiting track, and the top of the horizontal plate is connected to the lifting plate through a lifting connecting component. Due to the connection of the lifting connecting component, the lifting plate can move up and down relative to the top of the limiting track. The top of the limiting track is provided with multiple through slots arranged in a horizontal array. The top of the sliding block is provided with a groove. The bottom of the lifting plate is fixedly connected with a fixing block corresponding to each through slot. The fixing block passes through the through slot and the groove in sequence, thereby fixing the sliding block to the limiting track.

[0011] Preferably, screws are installed on both sides of the top end of the limiting track, and through holes are provided on the lifting plate for the screws to pass through. Nuts are threaded onto the outer side wall of the screws.

[0012] Preferably, the lifting connection component is a telescopic rod disposed between the horizontal plate and the lifting plate.

[0013] Compared with the prior art, the present invention has the following beneficial effects: 1. In this utility model, the sliding block can move linearly along the inside of the limiting track, thereby driving the partition to flexibly adjust its position in the box. The size of the area can be adjusted according to the quantity requirements of different types of test tubes. At the same time, the number of partitions can be flexibly increased or decreased according to the actual classification and storage requirements by increasing or decreasing the number of sliding blocks inserted into the limiting track and the corresponding partitions. This avoids the problem of test tubes being mixed up due to excess partitions cutting off the space or insufficient partitions. Ultimately, it improves the utilization rate of the space inside the box and optimizes the organization and practicality of test tube classification and storage, thereby solving the problems in the background technology. 2. This utility model places the corresponding label into an acrylic label shell. The acrylic material has high transparency, which can clearly display the text information of the internal test tube label, making it convenient for laboratory personnel to quickly identify the type of test tube in the corresponding partition area. 3. This utility model can lock the sliding block adjusted to the target position through the fixing component, so as to prevent it from shifting due to external force during the handling of the storage box and the retrieval of test tubes. This ensures that the size of the area divided by the partition is always stable and accurately matches the storage quantity requirements of the corresponding type of test tubes, preventing test tube squeezing or space waste due to partition offset. Attached Figure Description

[0014] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This utility model Figure 1 Enlarged view of the local structure of A; Figure 3 This is a schematic diagram of the specific structure of the top of this utility model; Figure 4 This is a schematic diagram of the specific structure of the side of this utility model; Figure 5 This is a schematic diagram of the partition plate connection structure in this utility model.

[0015] In the diagram: 1. Box body; 2. Test tube rack; 201. Round hole; 3. Restricted track; 301. Through slot; 4. Sliding block; 401. Groove; 5. Acrylic label shell; 6. Fixing components; 601. Horizontal plate; 602. Lifting connecting parts; 603. Lifting plate; 6031. Through hole; 604. Fixing block; 605. Screw; 7. Partition plate. Detailed Implementation

[0016] like Figure 1-5 As shown, this utility model provides a test tube storage box with adjustable partitions, including a box body 1 for storing test tubes, and a test tube rack 2 installed at the bottom of the box body 1. The test tube rack 2 has multiple rows of evenly distributed round holes 201 for inserting the bottom of the test tubes to place them vertically. The box body 1 is equipped with partitions 7 to divide its internal space. The top two sides of the box body 1 are equipped with limiting rails 3 with end openings. Sliding blocks 4 are fixedly connected to both sides of the partitions 7, and the sliding blocks 4 are inserted into the limiting rails 3 through the end openings. After insertion, due to the shape limitation, the sliding blocks 4 move linearly along the inside of the limiting rails 3. The limiting rails 3 are long grooves with an inward convex shape, and the sliding blocks 4 are convex blocks, which match each other.

[0017] The box body 1 serves as the basic carrier for storing test tubes. Its internal test tube rack 2, located at the bottom, has multiple rows of evenly distributed round holes 201 for inserting test tubes, ensuring stable vertical placement. Addressing the issue of fixed positions and unadjustable quantities of existing partitions, the box body 1 is equipped with convex, long, slotted, end-opening limiting tracks 3 on both sides of its top. Convex sliding blocks 4, fixed to both sides of the partitions 7, can be inserted through the end openings of the limiting tracks 3. Because the convex structure of the limiting tracks 3 and the convex structure of the sliding blocks 4 match to form a shape constraint, the sliding blocks 4 can move linearly along the inside of the limiting tracks 3, thereby flexibly adjusting the position of the partitions 7 within the box body 1. The size of the area can be adjusted to suit the quantity requirements of different types of test tubes. Furthermore, the number of partitions can be flexibly increased or decreased by adding or removing the number of sliding blocks 4 inserted into the limiting tracks 3 and the corresponding partitions 7, based on actual classification and storage needs. This avoids excessive partitions dividing the space or insufficient partitions causing mixed storage of test tubes, ultimately improving the utilization rate of the internal space and optimizing the organization and practicality of test tube classification and storage.

[0018] It should be noted that the length of the limiting track 3 is less than the length of the box 1. The partition plate 7 is first moved into the box 1, and then the sliding block 4 is aligned with the end opening of the limiting track 3 and inserted to avoid being blocked by the side of the box 1.

[0019] Furthermore, each sliding block 4 is fitted with an acrylic label shell 5 at its top, with an opening for inserting test tube labels. In use, the corresponding label is placed inside the acrylic label shell 5. The acrylic material has high transparency, clearly displaying the text information of the internal test tube labels, allowing researchers to quickly identify the type of test tube (e.g., control group, experimental group, reagent type, etc.) within the corresponding partition 7. Additionally, a fixing component 6 is installed on the limiting track 3 to secure the position of the sliding block 4 inside. This locks the sliding block 4 in its target position, preventing displacement due to external forces during storage box handling and test tube retrieval. This ensures the area divided by the partition 7 remains stable, accurately matching the storage quantity requirements of the corresponding type of test tube (e.g., control group, experimental group), preventing test tube compression or space waste due to partition offset. The specific structure of the fixing component 6 is as follows: The fixing component 6 includes a horizontal plate 601 fixed to the back of the limiting track 3, and the top of the horizontal plate 601 is connected to the lifting plate 603 through the lifting connecting component 602. Due to the connection of the lifting connecting component 602, the lifting plate 603 can move up and down relative to the top of the limiting track 3. The top of the limiting track 3 is provided with multiple through slots 301 arranged in a horizontal array. The top of the sliding block 4 is provided with a groove 401. The bottom of the lifting plate 603 is fixedly connected with a fixing block 604 corresponding to the through slot 301. The fixing block 604 passes through the through slot 301 and the groove 401 in sequence to fix the sliding block 4 to the limiting track 3. The top of the limiting track 3 is provided with screws 605 on both sides. The lifting plate 603 is provided with through holes 6031 for the screws 605 to pass through. The outer side wall of the screw 605 is threaded with a nut. The lifting connecting component 602 is a telescopic rod provided between the horizontal plate 601 and the lifting plate 603.

[0020] When fixing, first pull the lifting plate 603 to the top, then move the sliding block 4 along the limiting track 3 to the target position, ensuring that the groove 401 at the top of the sliding block 4 is vertically aligned with the corresponding through groove 301 at the top of the limiting track 3. Then press the lifting plate 603 down, and with the help of the telescopic characteristics of the telescopic rod (lifting connecting part 602) between the horizontal plate 601 and the lifting plate 603, the lifting plate 603 moves downward relative to the top of the limiting track 3, causing the fixing block 604 at its bottom to pass through the through groove 301 of the limiting track 3 and the groove 401 of the sliding block 4 in sequence. At the same time, the through groove 301 on the lifting plate 603... Hole 6031 also passes through screw 605 on limiting track 3. Finally, a nut is installed on screw 605 and tightened. The position of lifting plate 603 is locked by the threaded engagement between the nut and screw 605, thereby fixing sliding block 4 to limiting track 3. To release the fixation, first remove the nut on screw 605 to release the lock on lifting plate 603. Then, lift lifting plate 603 upward. The telescopic rod extends accordingly, causing fixing block 604 to be pulled out from groove 401 of sliding block 4 and through groove 301 of limiting track 3. At this time, sliding block 4 is freed from the fixed constraint and can move along limiting track 3 to adjust its position.

[0021] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any way. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description. However, any modifications, alterations, or equivalent variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are considered equivalent embodiments of this utility model. Furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.

Claims

1. A test tube storage box with adjustable partitions, comprising a box body (1) for storing test tubes, wherein a test tube rack (2) is installed at the bottom of the box body (1), the test tube rack (2) having multiple rows of evenly distributed round holes (201) for inserting the bottom of the test tubes to place them vertically, and the box body (1) having partitions (7) for dividing its internal space, characterized in that: The top two sides of the box (1) are equipped with end-opening limiting rails (3), and the two sides of the partition plate (7) are fixedly connected with sliding blocks (4). The sliding blocks (4) are inserted into the end openings of the limiting rails (3). After insertion, due to the shape limitation, the sliding blocks (4) move in a straight line along the inside of the limiting rails (3).

2. The test tube storage box with adjustable partitions according to claim 1, characterized in that: The limiting track (3) is an inner convex long groove seat, and the sliding block (4) is a convex block.

3. A test tube storage box with adjustable partitions according to claim 1, characterized in that: Each of the sliding blocks (4) is fitted with an acrylic label shell (5) at its top, with an opening at the top for inserting the test tube label.

4. A test tube storage box with adjustable partitions according to claim 1, characterized in that: The limiting track (3) is equipped with a fixing component (6) to fix the position of the sliding block (4) inside it.

5. A test tube storage box with adjustable partitions according to claim 4, characterized in that: The fixing component (6) includes a horizontal plate (601) fixed to the back of the limiting track (3), and the top of the horizontal plate (601) is connected to the lifting plate (603) through the lifting connecting component (602). Due to the connection of the lifting connecting component (602), the lifting plate (603) can move up and down relative to the top of the limiting track (3). The top of the limiting track (3) is provided with multiple through slots (301) arranged in a horizontal array. The top of the sliding block (4) is provided with a groove (401). The bottom of the lifting plate (603) is fixedly connected with a fixing block (604) corresponding to the through slot (301). The fixing block (604) passes through the through slot (301) and the groove (401) in sequence, thereby fixing the sliding block (4) to the limiting track (3).

6. A test tube storage box with adjustable partitions according to claim 5, characterized in that: The top of the limiting track (3) is equipped with screws (605) on both sides. The lifting plate (603) has a through hole (6031) for the screws (605) to pass through. The outer side wall of the screws (605) is threaded with nuts.

7. A test tube storage box with adjustable partitions according to claim 5, characterized in that: The lifting connection component (602) is a telescopic rod disposed between the horizontal plate (601) and the lifting plate (603).