Test box with classified storage structure
By introducing a sorting storage storage structure into the test chamber, using universal wheels and sliding storage boxes, the problem of chaotic storage of items in the test chamber is solved, and the effect of efficient classification and convenient movement is achieved.
Patent Information
- Application Number
- CN202421941082.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-10
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-10
AI Technical Summary
The existing test chamber lacks an effective classified storage structure, which leads to confusion in storage of items and is difficult to quickly find the required items, increasing the work burden and probability of errors for users.
A test chamber with a classified storage structure is designed, including a box, a storage box and a box cover. A universal wheel is installed on the lower side of the box. The storage box is slid by a slider. There is a partition inside the storage box to form a storage cavity, allowing items to be flexibly classified by size, shape and purpose.
It realizes efficient storage and classification of items in a limited space, improves item search efficiency, reduces the probability of chaos and errors, and facilitates the movement of items and power supply.
Smart Images

Figure CN223059655U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of test chamber equipment, and particularly relates to a test chamber with a classified storage structure. Background Technique
[0002] A test chamber is a box device used for experiments. The current test chambers have some significant drawbacks. Firstly, due to the lack of an effective classified storage structure, items are stored in a chaotic manner, resulting in a large amount of time wasted in searching for specific items during the experiment, which reduces work efficiency. The reason for this chaotic storage situation is that the diversity and classification requirements of items were not fully considered during the design, and the space utilization planning was insufficient. The conventional solution is for users to simply classify and label the items by themselves, but this method has obvious disadvantages. On the one hand, the classification and labeling rely on the subjective judgment and habits of users, lacking a unified standard, and there may be differences among different users, making it difficult for subsequent users to accurately find the required items. On the other hand, simple classification and labeling are difficult to be continuously effective when the number of items is large or the experiments are frequent, and problems such as label shedding and classification chaos are likely to occur, still unable to fundamentally solve the problem of disordered item storage, and increasing the extra workload and error probability of users. Therefore, a new structure is needed to solve the above technical problems. Content of the Utility Model
[0003] Aiming at the deficiencies existing in the prior art, the purpose of the utility model is to provide a test chamber with a classified storage structure to solve the problems put forward in the above background technique.
[0004] The utility model is realized through the following technical solutions: A test chamber with a classified storage structure, comprising: a box body, a storage box, and a box cover. The upper surface of the box body is designed to be open. Universal wheels are installed on the lower surface of the box body. The upper edge of the rear surface of the box body is hinged with a box cover through two hinge members I. A handle is installed on the upper surface of the box cover. The box cover is fixedly connected to the box body through a locking member. A pulling rod is hinged to the right surface of the box body through a hinge member II. A power interface is installed on the front surface of the box body. A power supply assembly is installed at the bottom inside the box body. A sliding strip is symmetrically arranged on the left inner wall and the right inner wall inside the box body respectively. A storage box is slidably installed inside the box body through the sliding strip. A partition is installed inside the storage box.
[0005] As a preferred embodiment, a universal wheel with a self-locking structure is installed at each of the four corners of the lower side surface of the box body. A power interface is installed at the lower right corner of the front side surface of the box body. Two lock fasteners are symmetrically installed on the upper edge of the front side surface of the box body. Two hinge members 1 are symmetrically installed on the upper edge of the rear side surface of the box body. The universal wheels installed on the lower side surface of the box body, combined with the pulling rod, enable the test box to be easily moved between different positions, which is extremely convenient whether it is to adjust the position inside the laboratory or to carry it between different workplaces.
[0006] As a preferred embodiment, the length and width of the box cover match the length and width of the box body. A handle is installed at the center position of the front edge of the upper side surface of the box cover. A pulling rod is hinged to the center position of the right side surface of the box body through a hinge member 2. The pulling rod has a U-shaped structure.
[0007] As a preferred embodiment, an anti-slip rubber is glued to the outer surface of the pulling rod. Three storage boxes are slidably installed inside the box body through slide bars. The length of the storage box is one-third of the length of the slide bar. The upper side surface of the storage box is designed to be open.
[0008] As a preferred embodiment, the three storage boxes are slidably arranged in layers inside the box body through slide bars. A plurality of partition plates are evenly installed inside the storage box. A plurality of accommodation cavities are formed inside the storage box through the partition plates. The three storage boxes are slidably arranged in layers inside the box body through slide bars, making full use of the longitudinal space of the box body, enabling more items to be accommodated within the limited volume of the box body. At the same time, the plurality of partition plates evenly installed inside the storage box form a plurality of accommodation cavities, which can be flexibly classified according to the size, shape, use, etc. of the items.
[0009] After adopting the above technical solution, the beneficial effects of the present utility model are as follows: By providing a box body, the upper side surface of the box body is designed to be open. Universal wheels are installed on the lower side surface of the box body. The upper edge of the rear side surface of the box body is hinged with a box cover through two hinge members 1. A handle is installed on the upper side surface of the box cover. The box cover is fixedly connected to the box body through lock fasteners. A pulling rod is hinged to the right side surface of the box body through a hinge member 2. A power interface is installed on the front side surface of the box body. A power supply component is installed at the bottom inside the box body. When in use, the universal wheels installed on the lower side surface of the box body, combined with the pulling rod, enable the test box to be easily moved between different positions, which is extremely convenient whether it is to adjust the position inside the laboratory or to carry it between different workplaces. For example, when multiple sets of comparative tests are required, the test box can be quickly moved beside different experimental tables. At the same time, the power interface on the front side surface of the box body facilitates connecting to an external power supply to provide power support for the equipment or functions inside the test box.
[0010] By setting up storage boxes, three storage boxes are slidably installed inside the box body through sliding bars. The length of the storage box is one-third of the length of the sliding bar. The upper surface of the storage box is designed to be open. The three storage boxes are slidably arranged in layers inside the box body through the sliding bars. A plurality of partitions are evenly installed inside the storage box. A plurality of accommodation cavities are formed inside the storage box through the partitions. When in use, the three storage boxes are slidably arranged in layers inside the box body through the sliding bars, making full use of the longitudinal space of the box body, so that more items can be accommodated within the limited volume of the box body. At the same time, a plurality of partitions evenly installed inside the storage box form a plurality of accommodation cavities, which can be flexibly classified according to the size, shape, use, etc. of the items. For example, reagent bottles of different specifications can be placed in different accommodation cavities, and different tools and instruments can be stored separately, facilitating the use of users. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0012] Figure 1 FIG. is a schematic diagram of the overall structure of a test box with a classification and storage structure according to the present invention.
[0013] Figure 2 FIG. is a schematic diagram of the storage box of a test box with a classification and storage structure according to the present invention.
[0014] Figure 3 FIG. is a schematic diagram of the pull rod of a test box with a classification and storage structure according to the present invention.
[0015] In the figure, 100 - box body, 110 - universal wheels, 120 - power supply interface, 130 - sliding bar, 140 - storage box, 141 - partition, 150 - locking member, 160 - hinge member I;
[0016] 200 - box cover, 210 - handle;
[0017] 300 - hinge member II, 310 - pull rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts belong to the scope of protection of the present invention.
[0019] Please refer to Figures 1 to 3 , the present invention provides a technical solution: a test box with a classified storage structure, including: a box body 100, a storage box 140, and a box cover 200. The upper side surface of the box body 100 is designed to be open. Universal wheels 110 are installed on the lower side surface of the box body 100. The upper side edge of the rear side surface of the box body 100 is hinged with a box cover 200 through two hinge members one 160. A handle 210 is installed on the upper side surface of the box cover 200. The box cover 200 is fixedly connected to the box body 100 through a locking member 150. A pull rod 310 is hinged to the right side surface of the box body 100 through a hinge member two 300. A power interface 120 is installed on the front side surface of the box body 100. A power supply assembly is installed at the bottom inside the box body 100. A slide bar 130 is symmetrically arranged on the left inner wall and the right inner wall inside the box body 100 respectively. A storage box 140 is slidably installed inside the box body 100 through the slide bar 130. A partition 141 is installed inside the storage box 140.
[0020] Please refer to Figures 1 to 3 , as the first embodiment of the present invention, a universal wheel 110 with a self-locking structure is installed at each of the four corners of the lower side surface of the box body 100. A power interface 120 is installed at the lower right corner of the front side surface of the box body 100. Two locking members 150 are symmetrically installed on the upper side edge of the front side surface of the box body 100 respectively. Two hinge members one 160 are symmetrically installed on the upper side edge of the rear side surface of the box body 100 respectively;
[0021] The length and width of the box cover 200 match the length and width of the box body 100. A handle 210 is installed at the center position of the front side edge of the upper side surface of the box cover 200. A pull rod 310 is hinged to the center position of the right side surface of the box body 100 through a hinge member two 300. The pull rod 310 is in a U-shaped structure;
[0022] When in use, the user can pull the pull rod 310 to move the box body 100. After the movement of the box body 100 is completed, the user can lock the universal wheels 110 through the self-locking structure of the universal wheels 110. Then, the user only needs to open the lock fastener 150 and then open the box cover 200 by means of the handle 210 on the upper surface of the box cover 200, and then it can be used. Due to the universal wheels 110 installed on the lower surface of the box body 100 and the cooperation with the pull rod 310, the test box can be easily moved between different positions. Whether it is adjusting the position inside the laboratory or carrying it between different workplaces, it is extremely convenient. For example, when multiple groups of comparative tests are required, the test box can be quickly moved to different experimental tables. At the same time, the power interface 120 on the front surface of the box body 100 is convenient for connecting an external power supply to provide power support for the equipment or functions inside the test box.
[0023] Please refer to Figures 1 to 3 , as the second embodiment of the present utility model, an anti-slip rubber is adhesively bonded to the outer surface of the pull rod 310. Three storage boxes 140 are slidably installed inside the box body 100 through slide bars 130. The length of the storage box 140 is one-third of the length of the slide bar 130. The upper surface of the storage box 140 is designed to be open;
[0024] The three storage boxes 140 are arranged in layers and slidably disposed inside the box body 100 through the slide bars 130. A plurality of partition plates 141 are evenly installed inside the storage box 140. A plurality of accommodating cavities are formed inside the storage box 140 through the partition plates 141;
[0025] When in use, after the box cover 200 is opened, the user can store some different objects through the three storage boxes 140 at different positions, and place the objects inside the accommodating cavities of the storage box 140, so as to achieve the purpose of classified storage. Since the three storage boxes 140 are arranged in layers and slidably disposed inside the box body 100 through the slide bars 130, the longitudinal space of the box body 100 is fully utilized, so that more items can be accommodated within the limited volume of the box body 100. At the same time, the plurality of partition plates 141 evenly installed inside the storage box 140 form a plurality of accommodating cavities, which can be flexibly classified according to the size, shape, use, etc. of the items. For example, reagent bottles of different specifications can be placed in different accommodating cavities, and different tools and instruments can be stored separately, which is convenient for the user to use.
[0026] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A test chamber with a classified storage structure, comprising: A box body (100), a storage box (140), and a box cover (200), characterized in that the upper surface of the box body (100) is designed to be open, the lower surface of the box body (100) is equipped with universal wheels (110), and the upper edge of the rear surface of the box body (100) is hinged with a box cover (200) through two first hinge members (160); A handle (210) is installed on the upper surface of the box cover (200), the box cover (200) is fixedly connected to the box body (100) through a locking member (150), a pulling rod (310) is hinged to the right surface of the box body (100) through a second hinge member (300), and a power interface (120) is installed on the front surface of the box body (100); A power supply assembly is installed at the bottom inside the box body (100), a slide bar (130) is symmetrically arranged on each of the left and right inner walls inside the box body (100), a storage box (140) is slidably installed inside the box body (100) through the slide bar (130), and a partition (141) is installed inside the storage box (140).
2. The test chamber with a classified storage structure according to claim 1, characterized in that: A universal wheel (110) with a self-locking structure is installed at each of the four corners of the lower surface of the box body (100), a power interface (120) is installed at the lower right corner of the front surface of the box body (100), two locking members (150) are symmetrically installed on the upper edge of the front surface of the box body (100), and two first hinge members (160) are symmetrically installed on the upper edge of the rear surface of the box body (100).
3. The test chamber with a classified storage structure according to claim 2, wherein: The length and width of the box cover (200) match the length and width of the box body (100), a handle (210) is installed at the center of the front edge of the upper surface of the box cover (200), a pulling rod (310) is hinged to the center of the right surface of the box body (100) through a second hinge member (300), and the pulling rod (310) is in a U-shaped structure.
4. The test chamber with a classified storage structure according to claim 3, wherein: An anti-slip rubber is bonded to the outer surface of the pulling rod (310), three storage boxes (140) are slidably installed inside the box body (100) through the slide bar (130), the length of the storage box (140) is one-third of the length of the slide bar (130), and the upper surface of the storage box (140) is designed to be open.
5. The test chamber with a classified storage structure according to claim 4, wherein: The three storage boxes (140) are arranged in layers and slidably disposed inside the box body (100) through the slide bar (130), a plurality of partitions (141) are evenly installed inside the storage box (140), and a plurality of accommodation cavities are formed inside the storage box (140) through the partitions (141).