Experimental glassware cleaning device

By integrating cleaning, drying, and storage structures, the glassware cleaning device solves the problems of incomplete cleaning and large space occupation in existing technologies, and realizes an efficient and continuous cleaning process and hygiene management, ensuring the rapid drying and cleanliness of glassware.

CN224195539UActive Publication Date: 2026-05-05RUIDE TESTING TECH (TIANJIN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
RUIDE TESTING TECH (TIANJIN) CO LTD
Filing Date
2025-04-18
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing glassware cleaning devices suffer from problems such as incomplete cleaning, large space requirements, and the need for separate drying and storage after cleaning, leading to space congestion and secondary pollution.

Method used

A glassware cleaning device integrating cleaning, drying, and storage structures was designed, comprising a cleaning tank, a drying tank, and a storage chamber. It utilizes ultrasonic vibration plates for cleaning, soft sponge cushioning, an angle-adjustable rack for drying, and ultraviolet disinfection lamps for maintenance, achieving efficient cleaning and hygiene management throughout the entire process.

Benefits of technology

It improves cleaning efficiency and process continuity, reduces space occupation, prevents secondary pollution, ensures rapid drying and cleanliness of glassware, and reduces resource waste and the risk of germ transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

An experimental glassware cleaning device is characterized by comprising a cleaning structure, a drying structure and a storage structure, the drying structure is arranged on one side of the cleaning structure, the cleaning structure is connected with the drying structure in a welded mode, and the storage structure is arranged below the drying structure. The drying structure is improved, the drying structure is composed of the drying pool, the soft sponge, the back plate, the angle adjusting frame and the drying device, in the process that glassware is placed in the drying pool, the soft sponge can play a buffering role, and the drying device can be used for drying the glassware. The glassware dryer has the advantages that damage caused by direct collision between the glassware and the hard surface of the drying pool is avoided, residual water drops on the glassware are adsorbed, the angle of the dryer is adjusted through the angle adjusting frame, hot air can be blown to all parts of the glassware more comprehensively and evenly, drying dead corners are avoided, and it is guaranteed that the glassware can be dried quickly and thoroughly.
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Description

Technical Field

[0001] This utility model relates to the technical field of glassware cleaning devices, and in particular to a glassware cleaning device for laboratory use. Background Technology

[0002] A glassware cleaning apparatus is a device specifically designed for cleaning laboratory glassware, such as colorimetric tubes, cuvettes, volumetric flasks, beakers, and graduated cylinders. The main function of these apparatuses is to remove stains from the glassware through a specific cleaning process, ensuring the cleanliness of the glassware and thus directly affecting the accuracy of experimental results.

[0003] Existing patent CN112404077A provides a glassware cleaning device for laboratory use, comprising: a base, a fixed frame mounted on the base, and a cleaning brush device mounted on the fixed frame; the cleaning brush device includes: a fixed seat mounted on the fixed frame; a driving component disposed within the fixed seat for providing power; a fixed shaft, one end of which extends into the fixed seat and the other end of which is connected to a suction cone; a movable sleeve sleeved on the fixed shaft, one end of which is rotatably connected to the fixed seat, and the other end of which is fitted with a cleaning brush assembly; the driving component can drive the movable sleeve sleeve to rotate; a drain pipe and an inlet pipe are connected to the fixed seat; the fixed shaft has a drain channel that communicates with both the drain pipe and the suction cone; the movable sleeve sleeve and the fixed shaft combine to form an inlet channel; the inlet channel communicates with the inlet pipe. This device can achieve automatic cleaning of glassware, improving cleaning efficiency while reducing the amount of cleaning solution used.

[0004] Problems identified in existing technologies: Existing technologies use cleaning brush assemblies to clean glassware. Since glassware varies in size, shape, and degree of dirt, cleaning may not be thorough. In addition, laboratory space is limited, and cleaned glassware needs to be placed in separate equipment for drying and storage, which requires space and makes the space more crowded. Utility Model Content

[0005] In view of the above technical problems, the present invention provides a glassware cleaning device for experiments, characterized in that it includes a cleaning structure, a drying structure, and a storage structure. The drying structure is provided on one side of the cleaning structure, and the cleaning structure and the drying structure are connected by welding. The storage structure is provided below the drying structure, and the drying structure and the storage structure are connected by welding.

[0006] The cleaning structure consists of a cleaning tank, a waste liquid collection bucket, a telescopic rod, an ultrasonic vibration plate, a drain box, a connecting plate, a lighting fixture, a cold water inlet, a hot water inlet, a discharge end, hooks, and foldable louvers. The waste liquid collection bucket is located on the outside of the cleaning tank, and the cleaning tank and the waste liquid collection bucket are connected by threads and nuts. A telescopic rod is located at the bottom of the cleaning tank, and the cleaning tank and the telescopic rod are connected by welding. An ultrasonic vibration plate is located on the inside of the cleaning tank, and the cleaning tank and the ultrasonic vibration plate are connected by welding. A drain box is located on one side of the telescopic rod, and the extendable end of the telescopic rod is connected to the drain box by welding. A connecting plate is located above the cleaning tank, and the cleaning tank and the connecting plate are connected by welding. A lighting fixture, a cold water inlet, a hot water inlet, and hooks are located on one side of the connecting plate, and the connecting plate is connected to the lighting fixture, the cold water inlet, the hot water inlet, and the hooks by welding. A foldable louver is located above the cleaning tank, and a discharge end is located below the cleaning tank. The telescopic pole is an electric telescopic pole.

[0007] The drying structure consists of a drying tank, soft sponge, back plate, angle adjustment frame, and dryer. The drying tank contains the soft sponge. A back plate is located on one side of the drying tank, and the drying tank and back plate are connected by welding. An angle adjustment frame is located on one side of the back plate, and the back plate and angle adjustment frame are connected by welding. The dryer is located on one side of the angle adjustment frame and is connected to the dryer. The angle adjustment frame consists of a fixed frame, a motor, and a connecting frame. A motor is located on one side of the fixed frame, and the fixed frame and motor are connected by welding. The output end of the motor is connected to the connecting frame, and the connecting frame is connected to the dryer.

[0008] The storage structure consists of a storage room, a switchable door, an ultraviolet disinfection lamp, and a shelf. The storage room has a switchable door on one side, and the storage room and the switchable door are connected by hinges. The storage room is equipped with an ultraviolet disinfection lamp and a shelf, and the storage room is connected to the ultraviolet disinfection lamp and the shelf by threads and nuts.

[0009] The beneficial effects of this utility model are as follows:

[0010] This invention improves the cleaning structure, comprising a cleaning tank, a waste liquid collection bucket, a telescopic rod, an ultrasonic vibration plate, a drain box, a connecting plate, a lighting fixture, a cold water inlet, a hot water inlet, a discharge end, a hook, and a foldable louver. This structure allows residue from glassware to be poured into the waste liquid collection bucket, facilitating centralized treatment and recycling of the waste liquid and reducing resource waste. First, the glassware is placed in the drain box and cleaned locally using cleaning tools. Then, the telescopic rod retracts, causing the drain box to sink into the cleaning tank. The ultrasonic vibration plate generates high-frequency vibrations within the cleaning tank, effectively cleaning the glassware. After thorough cleaning, the glassware is lifted off the water surface via a telescopic rod and drained in a draining tank. This avoids secondary contamination that may occur when transferring items to other locations for drying, improving the continuity and efficiency of the cleaning process. Hooks can be used to hang cleaning tools, making the cleaning area neater and more organized, and facilitating the access of tools and items for operators, thus improving work efficiency. Foldable louvers prevent water from splashing everywhere during the cleaning process. When the cleaning structure is not in use, the louvers can be drawn to prevent dust, debris, and other contaminants from entering the cleaning tank and other components, providing protection.

[0011] This invention improves the drying structure, which consists of a drying tank, a soft sponge, a back plate, an angle adjustment frame, and a dryer. During the process of placing the glassware into the drying tank, the soft sponge acts as a buffer, preventing the glassware from directly colliding with the hard surface of the drying tank and causing damage. At the same time, it absorbs residual water droplets on the glassware. By adjusting the angle of the dryer through the angle adjustment frame, the hot air can be blown more comprehensively and evenly to all parts of the glassware, avoiding drying dead corners and ensuring that the glassware can be dried quickly and thoroughly.

[0012] This invention improves the storage structure, which consists of a storage room, a door, an ultraviolet disinfection lamp, and a shelf. By periodically turning on the ultraviolet disinfection lamp, the storage room environment and glassware can be continuously maintained in a hygienic manner, preventing the growth and spread of germs and keeping the glassware clean. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of a glassware cleaning device for experiments according to the present invention.

[0014] Figure 2 This is a front view of a glassware cleaning device for experiments according to the present invention;

[0015] Figure 3 This is a side view of a glassware cleaning device for experiments according to the present invention;

[0016] Figure 4This is a top view of a glassware cleaning device for experiments according to the present invention;

[0017] Figure 5 This is a schematic diagram of the storage structure of a glassware cleaning device for experiments according to the present invention;

[0018] As shown in the figure: 1 is the washing tank, 2 is the waste liquid collection bucket, 3 is the telescopic rod, 4 is the ultrasonic vibration plate, 5 is the drain box, 6 is the connecting plate, 7 is the lighting lamp, 8 is the cold water inlet, 9 is the hot water inlet, 10 is the discharge end, 11 is the hook, 12 is the foldable louvered blind, 13 is the drying tank, 14 is the soft sponge, 15 is the back panel, 16 is the angle adjustment frame, 17 is the dryer, 18 is the storage room, 19 is the door, 20 is the ultraviolet disinfection lamp, and 21 is the shelf. Detailed Implementation Example 1

[0019] This utility model provides a cleaning structure comprising a cleaning tank 1, a waste liquid collection bucket 2, a telescopic rod 3, an ultrasonic vibration plate 4, a drain box 5, a connecting plate 6, a lighting lamp 7, a cold water inlet 8, a hot water inlet 9, a discharge end 10, a hook 11, and a foldable louvered curtain 12; a drying structure comprising a drying tank 13, a soft sponge 14, a back plate 15, an angle adjustment frame 16, and a dryer 17; and a storage structure comprising a storage room 18, a door 19, an ultraviolet disinfection lamp 20, and a shelf 21.

[0020] A waste liquid collection tank 2 is installed on the outside of the cleaning pool 1. The cleaning pool 1 and the waste liquid collection tank 2 are connected by threads and nuts. A telescopic rod 3 is installed at the bottom of the cleaning pool 1. The cleaning pool 1 and the telescopic rod 3 are connected by welding. An ultrasonic vibration plate 4 is installed on the inside of the cleaning pool 1. The cleaning pool 1 and the ultrasonic vibration plate 4 are connected by welding. A drain box 5 is installed on one side of the telescopic rod 3. The extendable end of the telescopic rod 3 is connected to the drain box 5 by welding. A connecting plate 6 is installed above the cleaning pool 1. The cleaning pool 1 and the connecting plate 6 are connected by welding. A lighting lamp 7, a cold water inlet 8, a hot water inlet 9, and a hook 11 are installed on one side of the connecting plate 6. The connecting plate 6 is connected to the lighting lamp 7, the cold water inlet 8, the hot water inlet 9, and the hook 11 by welding. A foldable louvered curtain 12 is installed above the cleaning pool 1. A discharge end 10 is installed below the cleaning pool 1. A soft sponge 14 is placed inside the drying tank 13. A back panel 15 is provided on one side of the drying tank 13, and the drying tank 13 and the back panel 15 are connected by welding. An angle adjustment frame is provided on one side of the back panel 15, and the back panel 15 and the angle adjustment frame are connected by welding. A dryer 17 is provided on one side of the angle adjustment frame, and the angle adjustment frame is connected to the dryer 17. A door 19 is provided on one side of the storage chamber 18, and the storage chamber 18 and the door 19 are connected by hinges. An ultraviolet disinfection lamp 20 and a shelf 21 are provided inside the storage chamber 18, and the storage chamber 18 is connected to the ultraviolet disinfection lamp 20 and the shelf 21 by threads and nuts. Example 2

[0021] When using this invention, first pour the residue from the glassware into the waste liquid collection bucket 2. Open the valve at the cold water inlet 8 or the hot water inlet 9 to inject clean water into the cleaning tank 1, ensuring that the clean water covers the drain box 5 without overflowing. Place the glassware in the drain box 5 and use cleaning tools for local cleaning. Then, retract the telescopic rod 3 to sink the drain box 5 into the cleaning tank 1. Close the foldable louvered curtain 12 to prevent water from splashing everywhere. The ultrasonic vibration plate 4 generates high-frequency vibration in the cleaning tank 1 to thoroughly clean the glassware. After cleaning, open the foldable louvered curtain 12 to clean the glassware. After washing, the glassware is lifted off the water surface by the telescopic rod 3 and drained in the drain tank 5. The drain end 10 is opened to drain the wastewater in the washing tank 1. The operator manually transfers the glassware in the drain tank 5 to the drying tank 13. The soft sponge 14 in the drying tank 13 acts as a buffer to prevent the glassware from colliding directly with the hard surface of the drying tank 13 and causing damage. At the same time, it absorbs the water droplets remaining on the glassware. The angle of the dryer 17 is adjusted by the angle adjustment rack 16 so that the glassware can be dried quickly and thoroughly. The switch door 19 is opened to transfer the dried glassware to the storage room 18 for use.

[0022] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. The various components mentioned in this invention are common technologies in the existing field. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A glassware cleaning apparatus for laboratory use, characterized in that... The system includes a cleaning structure, a drying structure, and a storage structure. The drying structure is located on one side of the cleaning structure, and the storage structure is located below the drying structure. The cleaning structure consists of a cleaning tank, a waste liquid collection tank, a telescopic rod, an ultrasonic vibration plate, a drain box, a connecting plate, lighting, a cold water inlet, a hot water inlet, a discharge end, hooks, and foldable louvers. The waste liquid collection tank is located on the outside of the cleaning tank and is connected to it by threads and nuts. The telescopic rod is located at the bottom of the cleaning tank and is connected to it by welding. The inner side of the cleaning tank is... An ultrasonic vibration plate is provided, and the cleaning tank is connected to the ultrasonic vibration plate by welding. A drain box is provided on one side of the telescopic rod, and the telescopic end of the telescopic rod is connected to the drain box by welding. A connecting plate is provided above the cleaning tank, and the cleaning tank is connected to the connecting plate by welding. A lighting lamp, a cold water inlet, a hot water inlet, and a hook are provided on one side of the connecting plate, and the connecting plate is connected to the lighting lamp, the cold water inlet, the hot water inlet, and the hook by welding. A foldable louver is provided above the cleaning tank, and a discharge end is provided below the cleaning tank.

2. The experimental glassware cleaning device according to claim 1, characterized in that, The drying structure consists of a drying tank, a soft sponge, a back plate, an angle adjustment frame, and a dryer. The drying tank contains a soft sponge. A back plate is provided on one side of the drying tank. The drying tank and the back plate are connected by welding. An angle adjustment frame is provided on one side of the back plate. The back plate and the angle adjustment frame are connected by welding. A dryer is provided on one side of the angle adjustment frame. The angle adjustment frame is connected to the dryer.

3. The experimental glassware cleaning device according to claim 1, characterized in that, The storage structure consists of a storage room, a switchable door, an ultraviolet disinfection lamp, and a shelf. The storage room has a switchable door on one side, and the storage room and the switchable door are connected by hinges. The storage room is equipped with an ultraviolet disinfection lamp and a shelf, and the storage room is connected to the ultraviolet disinfection lamp and the shelf by threads and nuts.

4. The experimental glassware cleaning device according to claim 1, characterized in that, The cleaning structure and the drying structure are connected by welding, and the drying structure and the storage structure are connected by welding.

Citation Information

Patent Citations

  • Glassware cleaning device for experiments

    CN112404077A