Reagent storage cabinet

By designing a reagent storage cabinet with sealing and venting functions, the problems of difficult reagent handling and contamination were solved, enabling convenient and safe reagent storage and transportation, and reducing labor resource and energy consumption.

CN223778905UActive Publication Date: 2026-01-09WEIHAI TUOZHAN FIBER
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Patent Information

Application Number
CN202520470670.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-09
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

Existing reagent storage methods suffer from problems such as difficulty in handling, air pollution in storage rooms, and poor sealing, leading to waste of labor resources and environmental pollution.

Method used

A reagent storage cabinet with sealing, venting, and mobility functions was designed. It is equipped with casters for easy transportation, and has internal anti-tipping components and reinforced sealing components to reduce manpower requirements, prevent gas evaporation, and efficiently remove gas by combining with an exhaust system.

Benefits of technology

It has made reagent handling convenient and safe, reduced the number of workers, reduced the risk of environmental pollution, and improved work efficiency and energy saving.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a reagent storage cabinet which comprises a storage cabinet body, an inner cavity is formed in the storage cabinet body, a second anti-toppling assembly is arranged in the inner cavity, a pair of cabinet doors is installed on the end face of the outer side of the storage cabinet body, and a plurality of trundles are installed on the end face of the bottom of the storage cabinet body. A reinforcing sealing assembly is connected to the outer side end face, connected with the storage cabinet, of the cabinet door, a first anti-toppling assembly is fixedly connected to the position, located on the top end face of the second anti-toppling assembly, of the storage cabinet, a hasp is connected between the pair of cabinet door and the storage cabinet, and the reinforcing sealing assembly comprises a storage frame and a telescopic sealing plate. A plurality of sealing strips are bonded between the storage cabinet and the pair of cabinet doors, and magnets and iron blocks are bonded to the attached end faces of the pair of telescopic sealing plates correspondingly. According to the reagent box, workers can conveniently carry reagents, the number of post people in the process is reduced, the time for the workers to take the reagents is shortened, and the working efficiency is improved; and gas with pungent smell is prevented from volatilizing to pollute the environment.
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Description

Technical Field

[0001] This utility model belongs to the technical field of storage cabinets, specifically relating to a reagent storage cabinet. Background Technology

[0002] A reagent C is needed in the product manufacturing process. Reagent C is prepared by mixing solutions A and B at room temperature. Because reagent C emits a gas with an irritating odor, the prepared reagent C needs to be stored in a sealed container at a low temperature. The current solution is to pack the mixed reagent C into a large drum, transport it by trailer to a low-temperature storage room, and weigh out the required amount when needed.

[0003] The following problems exist in the current reagent processing;

[0004] 1. The large drum filled with reagent C is bulky and heavy, requiring two workers to lift it onto a trailer for transport to the low-temperature storage room, where it is then unloaded by other workers. Although this process is not complicated, it requires two workers and wastes time.

[0005] 2. Each time reagent C is taken, it must be weighed manually, which is a tedious process that takes up workers' time. In addition, reagent C will evaporate during the taking process, polluting the air in the low-temperature storage room.

[0006] 3. The large container containing reagent C cannot be completely sealed. When placed in the low-temperature storage room, it will slowly release a gas with an irritating odor, gradually filling the entire storage room and affecting other reagents, thus polluting the air. Although the storage room has an exhaust system, the large space results in low exhaust efficiency and significant time and electricity consumption. Furthermore, frequent operation of the exhaust system is not energy-efficient.

[0007] Therefore, in order to address the above-mentioned technical problems, it is necessary to provide a reagent storage cabinet.

[0008] The information disclosed in this background section is intended only to enhance the understanding of the overall background of this utility model and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Utility Model Content

[0009] The purpose of this invention is to provide a reagent storage cabinet that can solve the above-mentioned problems.

[0010] To achieve the above objectives, the technical solution provided by a specific embodiment of this utility model is as follows:

[0011] A reagent storage cabinet includes a storage cabinet with an inner cavity. A second anti-tipping component is installed in the inner cavity. A pair of cabinet doors are installed on the outer end face of the storage cabinet. Multiple casters are installed on the bottom end face of the storage cabinet. A reinforced sealing component is connected to the outer end face of the cabinet doors connected to the storage cabinet. A first anti-tipping component is fixedly connected to the top end face of the storage cabinet at the second anti-tipping component.

[0012] In one or more embodiments of this utility model, a fastener is provided between each pair of cabinet doors and the storage cabinet.

[0013] In one or more embodiments of this utility model, the reinforced sealing assembly includes a storage frame and a telescopic sealing plate. The storage frame is located on the outer end face of the storage cabinet and the cabinet door. The storage frame is integrally formed with the storage cabinet. A telescopic groove is provided inside the storage frame.

[0014] In one or more embodiments of this utility model, a telescopic sealing plate is fixedly connected inside the telescopic groove of the storage frame, and multiple sealing strips are bonded between the storage cabinet and a pair of cabinet doors.

[0015] In one or more embodiments of this utility model, a magnet and an iron block are respectively glued to the end faces of a pair of telescopic sealing plates, and the iron block is magnetically connected to the magnet.

[0016] In one or more embodiments of this utility model, the second anti-tipping component includes a base, and a plurality of bottom partitions are installed inside the storage cabinet. The base is attached to the plurality of bottom partitions, and a plurality of anti-slip grooves are provided on the base.

[0017] In one or more embodiments of the present invention, the first anti-tipping component includes a lower pressure plate that matches the bottom partition.

[0018] In one or more embodiments of this utility model, a plurality of pressure plates are fixedly connected to the bottom end face of the lower pressure plate, and a spring is fixedly connected between the plurality of pressure plates and the lower pressure plate.

[0019] In one or more embodiments of this utility model, a sliding plate is fixedly connected to the bottom end face of the lower pressure plate.

[0020] In one or more embodiments of this utility model, the storage cabinet is provided with a plurality of grooves, the sliding plate is provided with a limiting groove that matches the grooves, and a locking block is inserted into the groove and the limiting groove.

[0021] Compared with existing technologies, this invention facilitates the handling of reagents by employees, reduces the number of personnel required in the process, improves work efficiency, and avoids the emission of irritating odor gases that pollute the environment. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the structure of a reagent storage cabinet in one embodiment of the present invention;

[0024] Figure 2 This is a schematic diagram of the first usage state of a reagent storage cabinet according to an embodiment of the present invention;

[0025] Figure 3 This is a schematic diagram of the second usage state of a reagent storage cabinet according to an embodiment of the present invention;

[0026] Figure 4 for Figure 3 A schematic diagram of the structure at point A;

[0027] Figure 5 This is a cross-sectional view of a reagent storage cabinet according to one embodiment of the present invention;

[0028] Figure 6 This is a schematic diagram of the third usage state of a reagent storage cabinet in one embodiment of the present invention.

[0029] Explanation of key figure labels:

[0030] 1-Storage cabinet, 101-Groove, 2-Handrail, 3-Inner cavity, 4-Caser, 5-Reinforced sealing assembly, 501-Storage frame, 502-Telescopic sealing plate, 503-Sealing strip, 6-First anti-tipping assembly, 601-Lower pressure plate, 602-Pressure plate, 6021-Spring, 603-Slide plate, 6031-Limiting groove, 6032-Limiting hole, 604-Slide groove, 605-Locking block, 606-Retrieval block, 7-Second anti-tipping assembly, 701-Base, 702-Anti-slip groove, 8-Hook and latch, 9-Cabinet door, 10-Bottom partition. Detailed Implementation

[0031] To enable those skilled in the art to better understand the technical solutions of this utility model, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of this utility model.

[0032] like Figure 1 As shown, a reagent storage cabinet according to one embodiment of this utility model includes a storage cabinet 1 with an inner cavity 3. Multiple bottom partitions 10 are installed inside the storage cabinet 1. In use, solvent bottles containing reagent C are placed on the bottom partitions 10 for storage. The storage cabinet has sealing, venting, and mobility functions. It facilitates the transportation of reagent C by workers and further prevents the spread of irritating odor gases into the environment during transportation and storage. When it is necessary to remove odors from the storage cabinet, the exhaust port of the storage cabinet is connected to an exhaust fan to expel the gas inside the cabinet. The space inside the storage cabinet is much smaller than the entire storage room, significantly reducing the power required for the exhaust system and greatly shortening the exhaust time.

[0033] Using small-capacity reagent bottles to hold reagent C reduces the weight of individual containers, decreases the number of workers required for handling, and eliminates the need for weighing each time it is used. Simply take the required amount according to the capacity marked on the bottle, which is simple, convenient, saves time, and reduces the number of people required.

[0034] The bottom end face of the storage cabinet 1 is equipped with multiple casters 4, which are used to move the storage cabinet. The inner cavity 3 is equipped with a second anti-tipping component 7. The outer end face of the storage cabinet 1 is equipped with a pair of cabinet doors 9. Preferably, the pair of cabinet doors 9 are installed on the outer end face of the storage cabinet 1 by hinges. The installation of the storage cabinet 1 and the cabinet doors 9 is common knowledge in the art and will not be described in detail here.

[0035] Each pair of cabinet doors 9 and the storage cabinet 1 is connected by a latch 8, which reinforces and secures the pair of cabinet doors 9. The reinforcing sealing assembly 5 mainly includes hooks, latches, springs, and lock holes. The hooks and latches are fixed to the storage cabinet 1 and the cabinet doors 9 respectively, and the fixation is achieved by the spring connection. This is common knowledge in the field and will not be elaborated further here.

[0036] A vent is provided on one end face of the storage cabinet 1 for venting. Multiple sealing strips 503 are bonded between the storage cabinet 1 and a pair of cabinet doors 9 to seal the space between the storage cabinet 1 and the cabinet doors 9.

[0037] Specifically, the inner cavity of the reagent storage cabinet 1 is used to store reagent bottles containing reagent C. The gas emitted by reagent C is discharged through the exhaust port at the top. Preferably, a valve can be installed at the exhaust port to control its opening and closing.

[0038] Gas in the upper and lower inner cavities 3 flows through the gap between the cabinet door 9 and the inner cavity 3. To ensure airtightness, the inner cavity 3 of the storage cabinet 1 needs to be fully welded. Multiple sealing strips 503 are installed on the four sides of the cabinet door facing the cabinet door 9. When the cabinet door 9 is closed and the latch 8 is fastened, the sealing strips 503 are compressed, preventing gas from escaping from the inner cavity 3. The storage cabinet 1 provides support, and the casters 4 facilitate movement.

[0039] When using the reagent, place the reagent bottle containing reagent C into the storage cabinet, close the cabinet door and fasten the latch 8, and close the valve at the exhaust port. The employee then moves the reagent storage cabinet to the storage room. When reagent C needs to be retrieved, connect the exhaust port to the exhaust fan duct, turn on the fan to extract the irritating gas, and then open the cabinet door to retrieve reagent C as needed.

[0040] like Figures 3-5 As shown, a reinforced sealing assembly 5 is connected to the outer end face of the cabinet door 9 where it connects to the storage cabinet 1. The reinforced sealing assembly 5 includes a storage frame 501 and a telescopic sealing plate 502. The storage frame 501 is located on the outer end face of the storage cabinet 1 and the cabinet door 9, and is integrally formed with the storage cabinet 1. A telescopic groove is provided inside the storage frame 501. A telescopic sealing plate 502 is fixedly connected inside the telescopic groove of the storage frame 501. The telescopic sealing plate 502 includes multiple telescopic plates, which are sequentially stored in the telescopic plates of the previous level. The telescopic sealing plate 502 surrounds and seals the outer end face of the connection between the storage cabinet 1 and the cabinet door 9. The extension of a pair of telescopic sealing plates 502 can completely surround and seal the outer end face of the storage cabinet 1 and the cabinet door 9.

[0041] A magnet and an iron block are respectively glued to the end faces of a pair of telescopic sealing plates 502. The iron block is magnetically connected to the magnet, so that the pair of telescopic sealing plates 502 can be stretched out to surround the outer end face and then fixed.

[0042] The second anti-tipping component 7 includes a base 701, with multiple bottom partitions attached to the base 701. The base 701 has multiple anti-slip grooves 702, which can be of different sizes and are made according to the size of the reagent bottles of reagent C to be stored. The reagent bottles are snapped into the anti-slip grooves 702 to fix them in place, preventing multiple reagent bottles from colliding and tipping over during transportation, which could lead to gas leakage in severe cases.

[0043] Furthermore, the storage cabinet 1 is fixedly connected to the top end face of the second anti-tipping component 7 with the first anti-tipping component 6, which enhances the stability of the reagent bottles stored in the storage cabinet 1.

[0044] The first anti-tipping component 6 includes a lower pressure plate 601, which matches the bottom partition 10. Multiple pressure plates 602 are fixedly connected to the bottom end face of the lower pressure plate 601. Springs 6021 are fixedly connected between the multiple pressure plates 602 and the lower pressure plate 601. The reagent bottle is fixed up and down by the pressure plates 602, making it less prone to shaking and more stable.

[0045] The spring 6021 can adjust the distance between the pressure plate 602 and the reagent bottle according to the height of the reagent bottle, so that they fit together better.

[0046] A pair of opposite end faces of the lower pressure plate 601 are fixedly connected to sliders. The end face of the storage cabinet 1 that contacts the sliders is provided with a slide groove 604. The lower pressure plate 601 slides on the slide groove 604 through the sliders.

[0047] Furthermore, a sliding plate 603 is fixedly connected to a pair of opposite end faces at the bottom of the lower pressure plate 601. The storage cabinet 1 has multiple grooves 101, and the sliding plate 603 has a limiting groove 6031 that matches the groove 101. A locking block 605 is inserted into one of the grooves 101 and the limiting groove 6031. By moving the sliding plate 603, the lower pressure plate 601 is moved, so that the pressure plate 602 is adjusted to fit the reagent bottle according to the height of the reagent bottle, and the upper and lower positions of the reagent bottle are strengthened and fixed, making it less prone to shaking.

[0048] A pick-up block 606 is attached to the skateboard 603, and the movement of the skateboard 603 is controlled by the pick-up block 606.

[0049] Preferably, the end face of the locking block 605 that fits into the slide plate 603 is integrally formed with a snap-fit ​​buckle, and the slide plate 603 has a snap-fit ​​hole. The snap-fit ​​buckle snaps into the snap-fit ​​hole to fix the locking block 605 onto the slide plate 603.

[0050] When using, such as Figure 2 As shown, when transporting reagent C, multiple reagent bottles carrying reagent C are first placed in multiple anti-slip grooves 702 of the base 701 for storage. After closing a pair of cabinet doors 9, a pair of telescopic sealing plates 502 are pulled to fit together, thereby strengthening the seal of the reagent C stored in the inner cavity 3 of the storage cabinet 1.

[0051] like Figure 3 and Figure 6 As shown, when multiple reagent bottles are placed in the multiple anti-slip grooves 702 inside the base 701, in order to enhance its stability, the locking block 605 is first removed from the slide plate 603. After controlling the multiple slide plates 603 to move down to the pressure plate 602 to abut the top end face of the reagent bottle, the locking block 605 is inserted into the corresponding limiting groove 6031 and groove 101 to fix it.

[0052] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0053] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A reagent storage cabinet, characterized in that, The storage cabinet includes an inner cavity with a second anti-tipping component inside. A pair of cabinet doors are installed on the outer end face of the storage cabinet, and multiple casters are installed on the bottom end face of the storage cabinet. A reinforced sealing component is connected to the outer end face of the cabinet door where it connects to the storage cabinet. A first anti-tipping component is fixedly connected to the top end face of the storage cabinet at the location of the second anti-tipping component.

2. The reagent storage cabinet according to claim 1, characterized in that, Both the cabinet doors and the storage cabinet are connected by fasteners.

3. A reagent storage cabinet according to claim 2, characterized in that, The reinforced sealing assembly includes a storage frame and a telescopic sealing plate. The storage frame is located on the outer end face of the storage cabinet and the cabinet door. The storage frame is integrally formed with the storage cabinet, and a telescopic groove is provided inside the storage frame.

4. A reagent storage cabinet according to claim 3, characterized in that, A telescopic sealing plate is fixedly connected inside the telescopic groove of the storage frame, and multiple sealing strips are bonded between the storage cabinet and a pair of cabinet doors.

5. A reagent storage cabinet according to claim 4, characterized in that, A magnet and an iron block are respectively glued to the end faces of the pair of telescopic sealing plates, and the iron block is magnetically connected to the magnet.

6. A reagent storage cabinet according to claim 1, characterized in that, The second anti-tipping component includes a base, and multiple bottom partitions are installed inside the storage cabinet. The base is attached to each of the multiple bottom partitions, and multiple anti-slip grooves are provided on the base.

7. A reagent storage cabinet according to claim 6, characterized in that, The first anti-tipping component includes a lower pressure plate, which is matched with the bottom partition.

8. A reagent storage cabinet according to claim 7, characterized in that, Multiple pressure plates are fixedly connected to the bottom end face of the lower pressure plate, and springs are fixedly connected between the multiple pressure plates and the lower pressure plate.

9. A reagent storage cabinet according to claim 8, characterized in that, A sliding plate is fixedly connected to the bottom end face of the pressure plate.

10. A reagent storage cabinet according to claim 9, characterized in that, The storage cabinet has multiple grooves, and the slide plate has a limiting groove that matches the grooves. Locking blocks are inserted into the grooves and the limiting groove.