Laboratory ultrasonic cleaner housing structure

By setting an L-shaped placement part on one side of the ultrasonic cleaner, the problems of frequent disassembly and contamination of the sealing cap are solved, the sealing cap is placed stably, and the hygiene and safety of the laboratory are improved.

CN224294133UActive Publication Date: 2026-05-29WESTERN DIGITAL (CHONGQING) MEDICAL TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WESTERN DIGITAL (CHONGQING) MEDICAL TECHNOLOGY CO LTD
Filing Date
2025-06-05
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

When cleaning multiple items, the sealing cover of the existing ultrasonic cleaning machine needs to be frequently disassembled and installed, and the inside of the sealing cover is in direct contact with the laboratory table, which can easily cause contamination and affect hygiene and cleanliness.

Method used

Design a storage structure for a laboratory ultrasonic cleaner, including an L-shaped placement part on one side of the cleaner for stably placing a sealing cap and preventing its inner side from contacting the laboratory table, with baffles and support plates for limiting its position.

Benefits of technology

It effectively avoids contamination of the laboratory bench by the sealed cover, improves operational hygiene and the cleanliness of the experimental environment, reduces equipment space occupation, and enhances safety and stability.

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Abstract

The utility model relates to a kind of laboratory ultrasonic cleaning machine storage structure, including the placement part of being arranged in the lower part of ultrasonic cleaning machine one side, the placement part is L, including vertically arranged baffle and horizontally arranged support plate, the space for placing sealing cover is formed between the baffle and ultrasonic cleaning machine;The placement part is arranged in the length direction one side of ultrasonic cleaning machine;The placement part is spaced apart and provided with two, two placement parts are respectively located the both ends of ultrasonic cleaning machine.The laboratory ultrasonic cleaning machine storage structure can place sealing cover on the placement part, avoid its inside directly contact with the tabletop of experiment table and cause pollution to it, to avoid the influence on the sanitation of subsequent operation and the cleanliness of experimental environment.
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Description

Technical Field

[0001] This utility model relates to the field of experimental equipment technology, specifically to a storage structure for a laboratory ultrasonic cleaner. Background Technology

[0002] Ultrasonic cleaning utilizes the cavitation effect of ultrasound waves in a liquid to remove oil, particles, and other contaminants from the surface of the object being cleaned through high-frequency vibration. This disperses, emulsifies, and detaches the contaminants from the surface, achieving efficient cleaning. The typical operating procedure for existing ultrasonic cleaners is as follows: first, remove the sealing cap from the cleaner; then, place the items to be cleaned into the cleaning tank; finally, replace the sealing cap on top of the ultrasonic cleaner, seal the cleaning tank, and start the equipment for cleaning operations.

[0003] However, some shortcomings still exist in practical applications: when there are a large number of items to be cleaned, it is often necessary to operate in batches. After each batch of cleaning is completed, the cleaned items must be removed and the next batch of items to be cleaned must be placed in to continue the operation. In this process, the sealing cap needs to be repeatedly disassembled and reassembled each time.

[0004] Currently, after removing the sealing cap, it is usually placed directly on the lab bench. However, because the sealing cap has a handle on the outside, it is difficult to place it stably horizontally. Therefore, operators often temporarily place the sealing cap with the inside facing down, in contact with the lab bench surface. However, during cleaning operations, the inside of the sealing cap often becomes contaminated with cleaning fluid or other pollutants. If it comes into direct contact with the lab bench, it can easily contaminate the surface, affecting the hygiene of subsequent operations and the cleanliness of the experimental environment. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a storage structure for a laboratory ultrasonic cleaner, which can place the sealing cover on the placement part to prevent its inner side from directly contacting the surface of the laboratory table and causing contamination, thereby avoiding the impact on the hygiene of subsequent operations and the cleanliness of the experimental environment.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a storage structure for a laboratory ultrasonic cleaner, including a placement part disposed on the lower part of one side of the ultrasonic cleaner. The placement part is L-shaped and includes a vertically arranged baffle and a horizontally arranged support plate. A space for placing a sealing cover is formed between the baffle and the ultrasonic cleaner.

[0007] The working principle of this solution is as follows: When it is necessary to place items to be cleaned into the cleaning tank, remove the sealing cover from above the ultrasonic cleaner and place it in the receiving space between the ultrasonic cleaner and the baffle. At this time, the inside of the sealing cover is close to the ultrasonic cleaner, and one of the four sides of the sealing cover is in contact with the support plate. The baffle limits the sealing cover. After use, clean the cleaning tank and the sealing cover separately, and then cover the cleaning tank with the sealing cover.

[0008] Compared with existing technologies, the advantages of this solution are as follows: Compared with the current method of directly placing the sealing cap on the table surface and making the inside of the sealing cap contact the table surface, the ultrasonic cleaner in this solution has a placement part on one side. When removing the sealing cap and placing the items to be cleaned into the cleaning tank, the sealing cap can be placed on the placement part. The placement part supports the sealing cap, which can avoid contaminating the table surface by directly placing the sealing cap on the table surface, thereby avoiding affecting the hygiene of subsequent operations and the cleanliness of the experimental environment.

[0009] In a preferred embodiment of this utility model, the placement part is disposed on one side of the ultrasonic cleaner along its length.

[0010] The beneficial effects of this solution are as follows: Compared to placing the placement part on one side of the ultrasonic cleaner in the width direction, this solution places the placement part on one side of the ultrasonic cleaner in the length direction. This allows the sealing cover to be placed laterally along the length of the machine body and match the length of the machine body. This effectively avoids the problem of the sealing cover protruding from both sides of the machine body, reduces the overall space occupied by the equipment, and also avoids the risk of collision caused by the sealing cover protruding in the width direction of the machine body, thus improving safety.

[0011] In a preferred embodiment of this utility model, two placement parts are provided at intervals, with the two placement parts located at opposite ends of the ultrasonic cleaner.

[0012] The beneficial effects of this solution are as follows: Compared to setting only one placement part, this solution has two placement parts, which are located at both ends of one side of the ultrasonic cleaner along its length. When placing the sealing cover, its two ends can be placed on the two placement parts respectively, achieving stable support and preventing the sealing cover from slipping or tipping over due to single-point support or unstable center of gravity.

[0013] In a preferred embodiment of the present invention, the ultrasonic cleaner has a groove on one side for sliding cooperation with the support plate, the support plate can be housed in the groove, and the support plate is provided with a limiting structure for limiting its position.

[0014] The beneficial effects of this solution are as follows: When the ultrasonic cleaner is not in use, the support plate can be stored in the chute, preventing its surface from being exposed to the outside for a long time and getting contaminated with dust or pollutants. This makes the support plate surface cleaner when the sealing cap needs to be placed. Moreover, the sliding storage design allows the support plate to be hidden inside the machine body when not in use, reducing external protruding structures and saving operating space. It is especially suitable for environments with limited space, such as laboratories and hospitals.

[0015] In a preferred embodiment of the present invention, two first slots and two second slots are symmetrically arranged on the two side walls of the slide groove. The limiting structure includes limiting blocks arranged on both sides of the front end of the support plate. The limiting blocks are elastic and wedge-shaped. When the placement part is in the retracted state, the limiting blocks engage with the first slots. When the placement part is in the extended state, the limiting blocks engage with the second slots.

[0016] The beneficial effects of this solution are as follows: When the ultrasonic cleaner is not needed, the support plate is moved into the chute and the limiting block engages with the first slot, keeping the placement part in a retracted state and preventing it from sliding out of the chute when the ultrasonic cleaner is moved; when the ultrasonic cleaner is needed, the baffle is pulled outward to disengage the limiting block from the first slot, and the baffle is pulled further to engage the limiting block with the second slot, keeping the placement part extended and preventing the sealing cover support plate from moving along the chute and affecting operation. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of an embodiment of the storage structure for the laboratory ultrasonic cleaner of this utility model.

[0018] Figure 2 for Figure 1 A schematic diagram of the structure in which the sealing cap is located on the placement part.

[0019] Figure 3 This is a schematic diagram of an ultrasonic cleaner.

[0020] Figure 4 for Figure 3 A magnified view of a portion of point A in the middle.

[0021] Figure 5 for Figure 1 A schematic diagram of the structure of the central placement section. Detailed Implementation

[0022] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described below are only for explaining the present invention and do not limit the scope of protection of the present invention.

[0023] The terms "first," "second," etc., used in the specification, claims, and embodiments of this application are used to distinguish similar objects, rather than to describe a specific order or sequence.

[0024] The present invention will be further described in detail below through preferred embodiments:

[0025] The reference numerals in the accompanying drawings include: ultrasonic cleaner 1, cleaning tank 101, slide 102, second slot 103, sealing cover 2, handle 3, placement part 4, baffle 5, support plate 6, and limiting block 7.

[0026] As attached Figure 1 and attached Figure 2 As shown: The storage structure of the laboratory ultrasonic cleaner in this embodiment includes a placement part 4 located at the lower part of one side of the ultrasonic cleaner 1. The model of the ultrasonic cleaner 1 in this embodiment is preferably KS-250DB, which is the prior art, so it will not be described in detail here. The placement part 4 is located on one side of the ultrasonic cleaner 1 along its length. Specifically, there are two placement parts 4 spaced apart, and the two placement parts 4 are located at both ends of the ultrasonic cleaner 1.

[0027] As attached Figure 3 and attached Figure 4 As shown: The ultrasonic cleaner 1 has a sliding groove 102 on the lower part of one side, and two first slots and two second slots 103 are symmetrically arranged on the two side walls of the sliding groove 102.

[0028] As attached Figure 5 As shown: The placement part 4 is L-shaped, including a vertically arranged baffle 5 and a horizontally arranged support plate 6 that slides and cooperates with the slide groove 102. A space for placing the sealing cover 2 is formed between the baffle 5 and the ultrasonic cleaner 1. The support plate 6 can be stored in the slide groove 102. The support plate 6 is provided with a limiting structure for limiting its position.

[0029] The limiting structure includes limiting blocks 7 disposed on both sides of the front end of the support plate 6. The limiting blocks 7 are elastic and wedge-shaped. When the placement part 4 is in the retracted state, the limiting blocks 7 are engaged with the first slot. When the placement part 4 is in the extended state, the limiting blocks 7 are engaged with the second slot 103.

[0030] Specific working principle:

[0031] When the ultrasonic cleaner 1 is not in use, place the sealing cover 2 on top of the ultrasonic cleaner 1 and cover the cleaning tank 101. At this time, the placement part 4 is in the storage state, that is, the support plate 6 is located in the slide groove 102, and the limiting block 7 is engaged with the first slot, as shown in the attached figure. Figure 1 As shown;

[0032] When the ultrasonic cleaner 1 is needed, pull the baffle 5 outward to disengage the limiting block 7 from the first slot. Then, continue pulling the baffle 5 until the limiting block 7 engages with the second slot 103. At this point, the placement part 4 is in the extended state. Then, remove the sealing cover 2 and place it horizontally in the receiving space between the placement part 4 and the ultrasonic cleaner 1, with its bottom ends contacting the two support plates 6 respectively, as shown in the attached diagram. Figure 2 As shown, the sealing cover 2 is limited horizontally by the baffle 5 and vertically by the support plate 6, thus placing the sealing cover 2 relatively stably. After use, the cleaning tank 101 and the sealing cover 2 are cleaned, and then the sealing cover 2 is placed on the upper side of the ultrasonic cleaner 1, and the placement part 4 is returned to the storage state.

[0033] The preferred embodiments of this application have been described in detail above with reference to the accompanying drawings. Typical known structures and common knowledge techniques in the preferred embodiments have not been described in detail here. Those skilled in the art can improve and implement the technical solution of this utility model based on the inspiration given in these embodiments and their own capabilities. Some typical known structures, known methods or common knowledge techniques should not be obstacles for those skilled in the art to implement this application.

[0034] The scope of protection claimed in this application shall be determined by the contents of its claims. The contents of the utility model description, specific embodiments, and drawings are used to interpret the claims.

[0035] Within the scope of the technical concept of this application, several modifications can be made to the specific implementation of this application, and these modified implementations should also be considered within the protection scope of this application.

Claims

1. A storage structure for a laboratory ultrasonic cleaner, characterized in that: It includes a placement part located on the lower side of an ultrasonic cleaner. The placement part is L-shaped and includes a vertically arranged baffle and a horizontally arranged support plate. A space for placing a sealing cover is formed between the baffle and the ultrasonic cleaner.

2. The storage structure for a laboratory ultrasonic cleaner according to claim 1, characterized in that: The placement part is located on one side of the ultrasonic cleaner along its length.

3. The storage structure for a laboratory ultrasonic cleaner according to claim 2, characterized in that: The placement section is provided in two intervals, with the two placement sections located at opposite ends of the ultrasonic cleaner.

4. The storage structure for a laboratory ultrasonic cleaner according to claim 3, characterized in that: The ultrasonic cleaner has a groove on one side for sliding cooperation with a support plate. The support plate can be stored in the groove, and a limiting structure is provided on the support plate for limiting its movement.

5. The storage structure for a laboratory ultrasonic cleaner according to claim 4, characterized in that: Two first slots and two second slots are symmetrically arranged on the two side walls of the slide. The limiting structure includes limiting blocks arranged on both sides of the front end of the support plate. The limiting blocks are elastic and wedge-shaped. When the placement part is in the retracted state, the limiting blocks engage with the first slots. When the placement part is in the extended state, the limiting blocks engage with the second slots.