Experiment cabinet with adjustable storage space

By designing an adjustable partition mechanism, the problem of wasted space in the experimental cabinet was solved, and flexible storage space adjustment and partition stability were achieved, thereby improving the overall efficiency of the experimental cabinet.

CN224100732UActive Publication Date: 2026-04-10XIAN XIAODI STEEL CABINET MANUFACTURING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing laboratory cabinets cannot flexibly adjust storage space according to the size and shape of items in the laboratory, resulting in wasted space.

Method used

An adjustable partition mechanism was designed, comprising a sliding block, a locking groove, a limiting groove, an upper partition, and a lower partition. The stability and smoothness of the partition are ensured by the sliding groove and the stabilizing mechanism, and the partition is locked by the positioning hole and the insertion rod, allowing for flexible adjustment of the vertical and horizontal partitions.

Benefits of technology

It enables flexible adjustment of the storage space inside the experimental cabinet, improves space utilization, avoids space waste caused by improper placement of items, and enhances the stability and ease of adjustment of the partitions.

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Abstract

The utility model relates to the technical field of experiment cabinets, and discloses a storage space adjustable experiment cabinet which comprises a cabinet body, a supporting block is fixedly installed at the bottom end of the cabinet body, a door plate is movably connected to the front end of the cabinet body, a glass plate is embedded in the outer wall of the door plate, a bearing block is fixedly installed at the fixed middle position in the cabinet body, and the bearing block is movably connected with the door plate. A partition plate mechanism is arranged on one side of the bearing block; the partition plate mechanism comprises a sliding block, the sliding block is connected to the outer portion of the bearing block in a sliding mode, and a clamping groove is formed in the position, corresponding to the bearing block, in the sliding block. According to the experiment cabinet based on the adjustable storage space, through the design of the sliding blocks, the clamping grooves, the limiting grooves, the upper partition plate and the lower partition plate, adjustability of the whole vertical partition plate in the experiment cabinet is achieved, adjustment can be conducted according to the sizes and specifications of placed objects, and space waste caused by the fact that the partition plates are relatively fixed is avoided; the overall space utilization rate of the experiment cabinet is improved, and more articles can be stored.
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Description

TECHNICAL FIELD

[0001] The utility model relates to experimental cabinet technical field, concretely is a kind of adjustable experimental cabinet of storage space. BACKGROUND

[0002] Experimental cabinet is the furniture equipment for storing experimental equipment, reagent, sample and other items in laboratory, stores various experimental instruments, equipment, reagent, sample, glassware and other items, makes laboratory more neat and orderly, avoids the mess caused by random placement of goods, facilitates experimental personnel to find the required goods quickly, improves experimental efficiency, and reasonably designed experimental cabinet can be scientifically laid out and planned according to the space size of laboratory and the storage demand of goods, fully utilizes limited space, and the use of experimental cabinet can make the management of laboratory goods more standardized and convenient.

[0003] In the field of experimental cabinet, the existing experimental cabinet is separated by fixed partition to store instruments, equipment and reagents, but in the specific use process, the types of goods in laboratory are various, and the size and shape are different, which cannot be placed according to the size and dimension of goods, and may cause waste of the space of entire experimental cabinet. UTILITY MODEL CONTENT

[0004] The purpose of this section is to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract of the specification and the utility model name to avoid obscuring the purpose of this section, the abstract of the specification and the utility model name, and such simplifications or omissions cannot be used to limit the scope of the utility model.

[0005] In view of the above or existing problems in the prior art, the types of goods in laboratory are various, and the size and shape are different, which cannot be placed according to the size and dimension of goods, and may cause waste of the space of entire experimental cabinet.

[0006] To achieve the above purpose, the utility model provides the following technical scheme:

[0007] A kind of adjustable experimental cabinet of storage space, characterized by comprising:

[0008] Cabinet body, the bottom end of the cabinet body is fixedly installed with support block, and the front end of cabinet body is movably connected with door plate, the outer wall of door plate is embedded with glass plate, the position in the middle of cabinet body interior is fixedly installed with bearing block, the side of bearing block is provided with partition mechanism;

[0009] The partition mechanism comprises a sliding block which is slidingly connected outside a bearing block, and a clamping groove is formed in the inside of the sliding block corresponding to the position of the bearing block, a limiting groove is formed in one side of the bearing block inside the cabinet, an upper partition plate is fixedly installed at the top end of the sliding block, and a lower partition plate is fixedly installed at the bottom end of the sliding block;

[0010] The inside top end and the inside bottom end of the cabinet are both provided with a sliding groove, and a stabilizing mechanism is arranged in the inside of the sliding groove, the stabilizing mechanism comprises a sliding block which is slidingly connected in the inside of the sliding groove, and a resisting roller is fixedly installed at the end of the sliding block penetrating into the sliding groove,

[0011] As a further scheme of the utility model, first clamping grooves are formed in the two sides of the inside of the cabinet, and second clamping grooves are formed in the two sides of the outer wall of the upper partition plate.

[0012] As a further scheme of the utility model, a sliding structure is formed between the sliding block and the bearing block, and the structure of the sliding block is a U-shaped structure.

[0013] As a further scheme of the utility model, a connecting head is fixedly installed at the end of the inserting rod penetrating into the positioning hole, and a connecting hole is formed in the inside of the clamping groove corresponding to the position of the connecting head.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] 1、The sliding block, the clamping groove, the limiting groove, the upper partition plate and the lower partition plate are designed, the adjustability of the whole vertical partition plate inside the experiment cabinet is realized, the size and the specification of the placed articles can be adjusted, the waste of space caused by the fixed partition plate is avoided, the space utilization rate of the whole experiment cabinet is improved, and more articles can be accommodated.

[0016] 2、The first clamping groove and the second clamping groove are designed, the telescopic partition plate made of wood or alloy of the finished product can be penetrated and supported, the horizontal partition plate is formed, the adjustment can be carried out according to the placing requirement of the articles, and the overall space utilization rate of the experiment cabinet is improved.

[0017] 3、The sliding groove, the sliding block and the resisting roller are designed, the stability of the sliding block, the upper partition plate and the lower partition plate during displacement is ensured, the deviation is avoided, the smoothness of the adjustment process is improved, and the pushing is convenient due to the small friction.

[0018] 4、The positioning hole, the inserting rod, the connecting hole and the connecting head are designed, the sliding block is locked, the stability of the upper partition plate and the lower partition plate is ensured, and the loosening or shaking after the position adjustment is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a whole structure schematic diagram of a storage space adjustable experiment cabinet;

[0020] Figure 2 It is a bearing block structure schematic diagram of a storage space adjustable experiment cabinet;

[0021] Figure 3 It is a limiting groove structure schematic diagram of a storage space adjustable experiment cabinet;

[0022] Figure 4 It is a resisting roller structure schematic diagram of a storage space adjustable experiment cabinet;

[0023] Figure 5 It is a connecting head structure schematic diagram of a storage space adjustable experiment cabinet.

[0024] In the figure: 1, cabinet body; 2, support block; 3, door plate; 4, glass plate; 5, bearing block; 6, partition mechanism; 601, sliding block; 602, clamping groove; 603, limiting groove; 604, upper partition; 605, lower partition; 606, first clamping groove; 607, second clamping groove; 7, sliding groove; 8, stabilizing mechanism; 801, sliding block; 802, resisting roller; 803, positioning hole; 804, insertion rod; 805, connecting hole; 806, connecting head. DETAILED DESCRIPTION

[0025] In order to make the above purposes, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0026] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the spirit of the present application, therefore the present application is not limited to the specific embodiments disclosed below.

[0027] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. In this specification, "in one embodiment" does not mean the same embodiment, nor is it an independent or alternative embodiment that excludes other embodiments.

[0028] Embodiment 1

[0029] Please refer to Figures 1 to 4For the first embodiment of the utility model, this embodiment provides a storage space adjustable experiment cabinet, which comprises: cabinet body 1, the bottom end of cabinet body 1 is fixedly installed with support block 2, the front end of cabinet body 1 is movably connected with door plate 3, the outer wall of door plate 3 is embedded with glass plate 4, the inside position of cabinet body 1 is fixedly installed with bearing block 5, one side of bearing block 5 is provided with partition mechanism 6;

[0030] Partition mechanism 6 includes sliding block 601, sliding block 601 is slidably connected to the outside of bearing block 5, a clamping groove 602 is formed in the inside of sliding block 601 corresponding to the position of bearing block 5, a limiting groove 603 is formed in the side of bearing block 5 inside cabinet body 1, the top end of sliding block 601 is fixedly installed with upper partition plate 604, the bottom end of sliding block 601 is fixedly installed with lower partition plate 605;

[0031] The inside top end and bottom end of cabinet body 1 are both provided with sliding groove 7, and stable mechanism 8 is arranged in the inside of sliding groove 7, stable mechanism 8 includes sliding block 801, sliding block 801 is slidably connected to the inside of sliding groove 7, and abutting roller 802 is fixedly installed at the end of sliding block 801 penetrating into sliding groove 7, positioning hole 803 is formed in the front end of bearing block 5, and insertion rod 804 penetrates into the inside of positioning hole 803.

[0032] Further, the position of sliding block 601 is adjusted, so that the upper partition plate 604 and the lower partition plate 605 can be adjusted to follow the position adjustment, so that the space of the two vertical partitions of the experiment cabinet can be adjusted according to the requirement of placing the articles, and the stability of the partition mechanism 6 during adjustment and after adjustment can be improved by the stable mechanism 8.

[0033] Specifically, first clamping groove 606 is formed in the inside of both sides of cabinet body 1, and second clamping groove 607 is formed in the outer wall of both sides of upper partition plate 604.

[0034] Further, the first clamping groove 606 and the second clamping groove 607 can penetrate into the telescopic wooden or alloy finished partition plate (this is the existing and conventional technology, and will not be described in detail here), so that the telescopic wooden or alloy finished partition plate can be penetrated according to the position adjustment of the vertical partition plate, and the articles can be supported, and the overall use convenience is improved.

[0035] Specifically, a sliding structure is formed between sliding block 601 and bearing block 5, and the structure of sliding block 601 is U-shaped structure.

[0036] Further, the bearing block 5 and the sliding block 601 are clamped and slid, so that the vertical partition plate composed of the upper partition plate 604 and the lower partition plate 605 can be stably displaced, and the loosening or shaking condition can be avoided.

[0037] In use, first of all, through the cabinet body 1, the support block 2, the door plate 3 and the glass plate 4, a conventional experiment cabinet is formed, through the sliding block 601, the upper partition plate 604 and the lower partition plate 605, a vertical partition plate is formed, through the bearing block 5, and cooperating with the clamping groove 602 and the limiting groove 603, the sliding block 601 is displaced, so that the position of the vertical partition plate can be adjusted according to the space for placing articles, and through the first clamping groove 606 and the second clamping groove 607, the telescopic horizontal partition plate can be slid into, for supporting articles.

[0038] In summary, by moving the sliding block 601, the upper partition plate 604 and the lower partition plate 605 can be stably displaced through the clamping groove 602 and the limiting groove 603, the position of the vertical partition plate is adjusted according to the size of the placed articles, the flexibility of the space adjustment of the experiment cabinet is realized, and the telescopic partition plate is penetrated and supported through the first clamping groove 606 and the second clamping groove 607, the suitable telescopic partition plate is penetrated according to the size of the article, so that the space can be reasonably utilized, and the waste of storage space is avoided.

[0039] Embodiment 2

[0040] Please refer to Figures 2 to 5 As a second embodiment of the utility model, the embodiment provides an improved design of the storage space adjustable experiment cabinet.

[0041] Specifically, the end of the insertion rod 804 penetrating into the positioning hole 803 is fixedly installed with a connecting head 806, and the clamping groove 602 is provided with a connecting hole 805 corresponding to the position of the connecting head 806.

[0042] Further, the connecting head 806 of the insertion rod 804 penetrates into the connecting hole 805 of the sliding block 601 and is fixedly connected by screwing, so as to lock the sliding block 601, thereby improving the stability of the upper partition plate 604 and the lower partition plate 605 after positioning and avoiding the shaking condition.

[0043] In use, when the sliding block 601 drives the upper partition plate 604 and the lower partition plate 605 to displace, the sliding block 801 stably slides along the sliding groove 7, and cooperates with the abutting roller 802 to improve the smoothness of the sliding process, when the sliding block 601 is displaced, the insertion rod 804 penetrates into the positioning hole 803 at the corresponding position and is rotated, so that the connecting head 806 is fixedly connected with the connecting hole 805 by screwing, thereby locking the sliding block 601 to prevent loosening.

[0044] In summary, by sliding the sliding block 801 along the sliding groove 7 and cooperating with the abutting roller 802, the stability and smoothness of the displacement process of the upper partition plate 604 and the lower partition plate 605 can be improved, and it is not inconvenient to adjust the position when the friction is too large. After the position is determined, the insertion rod 804 is inserted into the positioning hole 803, and the connecting hole 805 and the connecting head 806 are threadedly connected, so that the sliding block 601 is locked to avoid loosening, so that the upper partition plate 604 and the lower partition plate 605 are stable, and the shaking condition is avoided.

[0045] Importantly, it should be noted that the constructions and arrangements of the present application shown in the various exemplary embodiments are illustrative only. Although several embodiments have been described in detail herein, many modifications are possible to one skilled in the art, in light of the above teachings. For example, the elements as described can be combined in a single structure or separated into multiple structures to achieve yet a different result. Other modifications to the disclosed embodiments, such as variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters, mounting arrangements, use of materials and colors, orientations, locations, and the like, can be made in accordance with the principles set forth herein without departing from the scope of the inventive subject matter set forth in the appended claims. For example, the elements as shown can be shown in different positionings or orientations, and the nature or number of separate elements can be altered or changed. Accordingly, all such modifications are intended to be included within the scope of the present inventive subject matter. The order or sequence of any process or method steps can be changed or re-sequenced without departing from the scope of the present inventive subject matter. Any "means plus function" clauses are intended to cover the structures described herein as performing the recited functions and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes, and omissions can be made in the design, operating conditions, and arrangement of the exemplary embodiments without departing from the scope of the present inventive subject matter as expressed in the appended claims.

[0046] Also, to provide a concise description of the exemplary embodiments, not all features of an actual implementation can be described (that is, not all implementations can include all of the features described or some subset of these features).

[0047] It will be appreciated that in the development of any actual implementation, as in any engineering or design project, numerous implementation-specific decisions can be made. Such development efforts can inevitably lead to a number of substitutions, modifications, changes, and omissions of features not specifically described herein. For example, specific shapes, configurations, materials, and other parameters can be varied, and the scope of the inventive subject matter is not limited to the specific examples described herein.

[0048] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. An adjustable storage space experimental cabinet, characterized in that: include: Cabinet (1), a support block (2) is fixedly installed at the bottom of the cabinet (1), and a door panel (3) is movably connected to the front end of the cabinet (1). A glass plate (4) is embedded in the outer wall of the door panel (3). A load-bearing block (5) is fixedly installed in the middle of the interior of the cabinet (1), and a partition mechanism (6) is provided on one side of the load-bearing block (5). The partition mechanism (6) includes a sliding block (601), which is slidably connected to the outside of the support block (5). The sliding block (601) has a locking groove (602) at the position corresponding to the support block (5). A limiting groove (603) is provided on one side of the support block (5) inside the cabinet (1). An upper partition (604) is fixedly installed on the top of the sliding block (601), and a lower partition (605) is fixedly installed on the bottom of the sliding block (601). The cabinet (1) has a sliding groove (7) at both the top and bottom. A stabilizing mechanism (8) is provided inside the sliding groove (7). The stabilizing mechanism (8) includes a slider (801). The slider (801) is slidably connected inside the sliding groove (7). A contact roller (802) is fixedly installed at one end of the slider (801) that passes through the sliding groove (7). A positioning hole (803) is provided at the front end of the bearing block (5). An insertion rod (804) is inserted into the positioning hole (803).

2. The adjustable storage space experimental cabinet according to claim 1, characterized in that: The cabinet (1) has a first slot (606) on both sides inside, and the upper partition (604) has a second slot (607) on both sides of its outer wall.

3. The adjustable storage space experimental cabinet according to claim 1, characterized in that: The sliding block (601) and the bearing block (5) form a sliding structure, and the structure of the sliding block (601) is a U-shaped structure.

4. The adjustable storage space experimental cabinet according to claim 1, characterized in that: The insertion rod (804) is fixedly installed with a connector (806) at one end of the insertion rod (804) that passes through the positioning hole (803), and a connection hole (805) is provided inside the engagement groove (602) at the position corresponding to the connector (806).