Ultrasonic oscillation integrated device for laboratory

By integrating the ultrasound module and vibration module into a single device, and equipping it with a unified control panel and sealed structure, the problem of separate equipment use in the laboratory is solved, achieving space saving and ease of operation, while ensuring the accuracy and safety of experimental results.

CN224221189UActive Publication Date: 2026-05-12ANHUI GOLDEN SEED WINERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI GOLDEN SEED WINERY CO LTD
Filing Date
2025-06-03
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Using separate vibration and ultrasonic equipment in the laboratory takes up a lot of space and is cumbersome to operate. Sample transfer can easily lead to contamination and loss, reducing experimental efficiency.

Method used

Design a laboratory-grade integrated ultrasonic vibration device. The ultrasonic module and vibration module are installed on one side of the device frame. It is equipped with a unified control panel. The sample container is fixed by a fixing plate and sealed with a lid during operation, realizing integrated ultrasonic vibration operation.

Benefits of technology

It reduces the space occupied by the equipment, simplifies the operation process, improves experimental efficiency, and ensures the safety and accuracy of the samples during the shaking process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ultrasonic oscillation integrated device for a laboratory. The ultrasonic oscillation integrated device for the laboratory comprises an equipment frame and four base supports, the four base supports are fixedly connected to the bottom of the equipment frame, an ultrasonic module is installed at the position, close to the front face, of one side of the equipment frame, and a vibration module is installed at the position, close to the back face, of one side of the equipment frame; and a socket is installed on one side of the equipment frame through a fixed base, and a drainage pipe is installed on one side of the equipment frame. According to the ultrasonic oscillation integrated device for the laboratory, through the design, the structure is simple, operation is convenient, ultrasonic oscillation integration and frequency and amplitude adjustment can be achieved, the ultrasonic oscillation integrated device is suitable for the ultrasonic and oscillation requirements under different experiment conditions, and a sample is firm and reliable on the fixing plate through the fixing device; the sample container is prevented from falling off or shifting in the oscillation process, and the accuracy of an experimental result is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of laboratory ultrasonic vibration technology, and in particular to an integrated ultrasonic vibration device for laboratory use. Background Technology

[0002] Ultrasonic oscillation refers to the use of high-frequency sound waves to generate oscillations for extraction, stirring, cleaning of vessels, etc. Ultrasonic waves are sound waves with a frequency of about 20 kHz to 50 MHz. They are mechanical waves that require an energy carrier medium to propagate.

[0003] In various laboratory testing and research work, it is often necessary to shake and sonicate samples. Shaking can make the samples fully mixed and promote chemical reactions; while sonication can utilize the cavitation effect of ultrasound to achieve functions such as sample dispersion, emulsification, and extraction.

[0004] Currently, in laboratories, vibration equipment and ultrasonic equipment are usually used separately. This not only occupies a lot of laboratory table space and increases the cost of equipment purchase, but also requires transferring samples between different devices during sample processing, which is cumbersome, easily leads to sample contamination and loss, and reduces experimental efficiency.

[0005] Therefore, it is necessary to provide an integrated ultrasonic vibration device for laboratory use to solve the above-mentioned technical problems. Utility Model Content

[0006] This invention provides an integrated ultrasonic vibration device for laboratory use, which solves the problems of using vibration equipment and ultrasonic equipment separately, which not only occupies test bench space but also makes sample transfer operations cumbersome and reduces test efficiency.

[0007] To solve the above-mentioned technical problems, the laboratory ultrasonic vibration integrated device provided by this utility model includes: a device frame.

[0008] Four base brackets are fixedly connected to the bottom of the device frame. An ultrasound module is installed on one side of the device frame near the front, and a vibration module is installed on one side of the device frame near the back. A socket is installed on one side of the device frame via a fixed base, and a drain pipe is installed on one side of the device frame. An ultrasound module control panel and a vibration module control panel are installed on the front of the device frame.

[0009] The cover is located on the top of the equipment frame. Handles are installed on both sides of the equipment frame. Mounting strips are installed on both sides of the inner wall of the equipment frame. A fixing plate is installed on the top of the mounting strips. A mating assembly is installed on the front and back of the cover and the equipment frame.

[0010] The base support is at a 60° angle to the horizontal to ensure stability during vibration. Two control panels are equipped with LCD screens that display the real-time ultrasonic frequency, amplitude, temperature, and operating time. The fixing plate is connected by multiple intersecting springs. The ultrasonic module and vibration module base are connected to the ultrasonic and vibration modules via elastic connectors. The control panels for the ultrasonic and vibration modules are used to adjust the ultrasonic and vibration frequencies and amplitudes. The lid is used to seal the sample during ultrasonic vibration. The sample container is fixed above the fixing plate using a snap-fit ​​limiting structure. The specific fixing method can be varied depending on the requirements; the only requirement is to secure the sample container.

[0011] Preferably, the docking assembly includes a support structure and a docking structure, the docking structure being inserted into the interior of the support structure to secure the cover, and the other end of the drain pipe being fitted with a connecting pipe via a valve;

[0012] The front and back of the support structure and equipment frame are connected, the front and back of the docking structure and the cover are connected, and the valve is manually openable and closed to control whether to drain water.

[0013] Preferably, a monitoring component is mounted on the top of the cover. The monitoring component includes a mounting base and a monitoring element. The mounting base is used to mount the monitoring element for monitoring temperature and vibration frequency.

[0014] Preferably, a control box with a door is installed on one side of the equipment frame, and the base bracket includes a support frame and a shock-absorbing pad;

[0015] The shock-absorbing pads come into contact with the laboratory table surface to absorb vibrations.

[0016] Preferably, mounting shells are installed on both sides of the device frame near the top, and sliding rods are installed inside the mounting shells. Movable frames and stabilizing frames are slidably connected to the outer surfaces of the sliding rods. Support plates are fixedly connected to both sides of the cover, and stabilizing rods are installed on the bottom of the support plates near the front and back.

[0017] The movable frame and the stabilizer are close together.

[0018] Preferably, a support frame is installed on the top of the movable frame, a docking plate is installed on the top of the support frame, and telescopic components are installed on the bottom of the docking plate;

[0019] The telescopic end of the telescopic component passes through the bottom connection between the docking plate and the support plate.

[0020] Compared with related technologies, the laboratory ultrasonic vibration integrated device provided by this utility model has the following beneficial effects:

[0021] This invention provides an integrated ultrasonic vibration device for laboratory use. To reduce the space occupied by the ultrasonic vibration device and facilitate operation, the ultrasonic module and vibration module are installed on one side of the device frame near the front and back. The control panels for the ultrasonic and vibration modules are installed on the front of the device frame. These control panels allow for precise control of the vibration mode, frequency, and amplitude. Inside the device frame, a fixing plate is installed via mounting strips. The experimental sample requiring ultrasonic vibration is placed on the fixing plate and secured. The ultrasonic and vibration modules are then controlled sequentially by the control panels to vibrate the experimental sample. During operation, a lid covers the top of the device frame, providing a sealed environment for the internal experimental materials and increasing safety. This design is simple in structure, easy to operate, and integrates ultrasonic vibration. The adjustable frequency and amplitude make it suitable for various ultrasonic and vibration requirements under different experimental conditions. The sample is securely fixed to the fixing plate, preventing the sample container from falling off or shifting during vibration, thus ensuring the accuracy of the experimental results. Attached Figure Description

[0022] Figure 1 A schematic diagram of the structure of the first embodiment of the integrated ultrasonic vibration device for laboratory use provided by this utility model;

[0023] Figure 2 A schematic diagram of the ultrasonic module is provided for this utility model;

[0024] Figure 3 A structural schematic diagram of the fixing plate is provided for this utility model;

[0025] Figure 4 Provided for this utility model Figure 3 An enlarged view of point A shown;

[0026] Figure 5 A schematic diagram of the structure of the second embodiment of the integrated ultrasonic vibration device for laboratory use provided by this utility model;

[0027] Figure 6 Provided for this utility model Figure 5 A magnified view of point B shown.

[0028] Numbered in the diagram: 1. Equipment frame, 2. Base bracket, 201. Support frame, 202. Anti-vibration pad, 3. Control box, 4. Box door, 5. Handle, 6. Cover, 7. Docking assembly, 701. Support structure, 702. Docking structure, 8. Monitoring assembly, 801. Mounting base, 802. Monitoring component, 9. Ultrasonic module control panel, 10. Vibration module control panel, 11. Ultrasonic module, 12. Socket, 13. Fixed base, 14. Drain pipe, 15. Vibration module, 16. Fixed plate, 17. Mounting strip, 18. Valve, 19. Docking pipe, 20. Docking plate, 21. Mounting shell, 22. Stabilizing bar, 23. Telescopic component, 24. Support plate, 25. Stabilizing frame, 26. Slide bar, 27. Movable frame, 28. Support frame. Detailed Implementation

[0029] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0030] First Embodiment

[0031] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 ,in, Figure 1 A schematic diagram of the structure of the first embodiment of the integrated ultrasonic vibration device for laboratory use provided by this utility model; Figure 2 A schematic diagram of the ultrasonic module is provided for this utility model; Figure 3 A structural schematic diagram of the fixing plate is provided for this utility model; Figure 4 Provided for this utility model Figure 3 The enlarged view at point A is shown. The laboratory ultrasonic vibration integrated device includes: device frame 1.

[0032] Four base brackets 2 are fixedly connected to the bottom of the device frame 1. An ultrasound module 11 is installed on one side of the device frame 1 near the front. A vibration module 15 is installed on one side of the device frame 1 near the back. A socket 12 is installed on one side of the device frame 1 via a fixed base 13. A drain pipe 14 is installed on one side of the device frame 1. An ultrasound module control panel 9 and a vibration module control panel 10 are installed on the front of the device frame 1.

[0033] The cover 6 is located on the top of the equipment frame 1. Handles 5 are installed on both sides of the equipment frame 1. Mounting strips 17 are installed on both sides of the inner wall of the equipment frame 1. A fixing plate 16 is installed on the top of the mounting strips 17. A docking assembly 7 is installed on the front and back of the cover 6 and the equipment frame 1.

[0034] The base support 2 is at a 60° angle to the horizontal line to ensure the stability of the equipment during vibration. The two control panels are equipped with LCD screens that display the vibration ultrasonic frequency, amplitude, temperature and working time in real time. The fixing plate 16 is connected by multiple springs. The base of the ultrasonic module 11 and the vibration module 15 are connected to the ultrasonic module 11 and the vibration module 15 through elastic connectors. The control panels of the ultrasonic module 11 and the vibration module 15 are used to adjust the ultrasonic and vibration frequency and amplitude. The cover 6 is used to seal the sample during ultrasonic vibration. The sample container is fixed above the fixing plate 16 by a snap-fit ​​limiting structure. The specific fixing method can be different according to the requirements, as long as it can fix the sample container.

[0035] The above structure is simple and easy to operate, and can meet the oscillation requirements under different experimental conditions. Oscillation mode and ultrasonic mode can be performed simultaneously, making it widely applicable. The bottom support is sturdy and reliable, preventing the equipment from falling off or shifting during oscillation. Temperature control can be performed to meet experimental requirements under different conditions.

[0036] The docking assembly 7 includes a support structure 701 and a docking structure 702. The docking structure 702 is inserted into the interior of the support structure 701 to hold the cover 6 in place. The other end of the drain pipe 14 is connected to a connecting pipe 19 via a valve 18.

[0037] The support structure 701 is connected to the front and back of the equipment frame 1, the docking structure 702 is connected to the front and back of the cover 6, and the valve 18 is manually openable and closed to control whether to drain water.

[0038] A monitoring component 8 is installed on the top of the cover 6. The monitoring component 8 includes a mounting base 801 and a monitoring component 802. The mounting base 801 is used to install the monitoring component 802 for monitoring temperature and vibration frequency.

[0039] Monitoring component 802 is a sensor for monitoring temperature and vibration.

[0040] A control box 3 with a door 4 is installed on one side of the equipment frame 1, and the base bracket 2 includes a support frame 201 and shock-absorbing pads 202 and 202.

[0041] The shock-absorbing pad 202 comes into contact with the experimental table surface and plays a role in damping vibration.

[0042] The working principle of the integrated ultrasonic vibration device for laboratory use provided by this utility model is as follows:

[0043] The ultrasonic module 11 and the vibration module 15 are installed on one side of the equipment frame 1, near the front and back. The ultrasonic module control panel 9 and the vibration module control panel 10, which control the operation of the ultrasonic module 11 and the vibration module 15, are installed on the front of the equipment frame 1. The ultrasonic module control panel 9 and the vibration module control panel 10 can precisely control the vibration mode, frequency, and amplitude of the ultrasonic module 11 and the vibration module 15. Inside the equipment frame 1, a fixing plate 16 is installed via a mounting strip 17. The experimental sample requiring ultrasonic vibration is placed on the fixing plate 16 and secured. Then, the ultrasonic module control panel 9 and the vibration module control panel 10 control the ultrasonic module 11 and the vibration module 15 to work sequentially, performing ultrasonic vibration on the experimental sample. During the operation of the ultrasonic module 11 and the vibration module 15, the top of the equipment frame 1 is covered by a cover 6, providing a sealed environment for the internal experimental materials and increasing safety.

[0044] Compared with related technologies, the laboratory ultrasonic vibration integrated device provided by this utility model has the following beneficial effects:

[0045] To reduce the space occupied by the ultrasonic oscillation in the laboratory and facilitate operation, the ultrasonic module 11 and the vibration module 15 are installed on one side of the equipment frame 1, near the front and back. Simultaneously, the ultrasonic module control panel 9 and the vibration module control panel 10, which control the operation of the ultrasonic module 11 and the vibration module 15, are installed on the front of the equipment frame 1. Using the ultrasonic module control panel 9 and the vibration module control panel 10, the oscillation mode, frequency, and amplitude of the ultrasonic module 11 and the vibration module 15 can be precisely controlled. Inside the equipment frame 1, a fixing plate 16 is installed via mounting strip 17. The experimental sample requiring ultrasonic oscillation is placed on the fixing plate 16 and secured. Then, the ultrasonic module 11 and the vibration module 15 are controlled sequentially by the ultrasonic module control panel 9 and the vibration module control panel 10 to perform ultrasonic vibration on the experimental sample. During the operation of the ultrasonic module 11 and the vibration module 15, the top of the equipment frame 1 is covered by the cover 6 to provide a sealed environment for the internal experimental materials, thereby increasing safety. This design is simple in structure and easy to operate, and can realize the integration of ultrasonic vibration. The frequency and amplitude are adjustable, which is suitable for ultrasonic and vibration requirements under different experimental conditions. The sample is firmly and reliably fixed on the fixing plate 16 by the fixing device to prevent the sample container from falling off or shifting during vibration, thus ensuring the accuracy of the experimental results.

[0046] Second Embodiment

[0047] Please refer to the following: Figures 5-6 , Figure 5 A schematic diagram of the structure of the second embodiment of the integrated ultrasonic vibration device for laboratory use provided by this utility model; Figure 6 Provided for this utility model Figure 5The enlarged view at point B shows a laboratory ultrasonic vibration integrated device based on the first embodiment of this application. The second embodiment of this application proposes another laboratory ultrasonic vibration integrated device. The second embodiment is merely a preferred embodiment of the first embodiment, and its implementation will not affect the independent implementation of the first embodiment.

[0048] Specifically, the laboratory ultrasonic vibration integrated device provided in the second embodiment of this application is different in that: mounting shells 21 are installed on both sides of the device frame 1 near the top; sliding rods 26 are installed inside the mounting shells 21; movable frames 27 and stabilizing frames 25 are slidably connected to the outer surface of the sliding rods 26; support plates 24 are fixedly connected to both sides of the cover 6; and stabilizing rods 22 are installed on the bottom of the support plates 24 near the front and back.

[0049] The close proximity of the movable frame 27 and the stabilizing frame 25 increases the support force and stability of the support frame 28, and the stabilizing rod 22 penetrates the docking plate 20.

[0050] The top of the movable frame 27 is equipped with a support frame 28, the top of the support frame 28 is equipped with a docking plate 20, and the bottom of the docking plate 20 is equipped with a telescopic component 23.

[0051] The telescopic component 23 is a telescopic rod, and the telescopic end of the telescopic component 23 passes through the bottom of the docking plate 20 and the support plate 24.

[0052] Compared with related technologies, the laboratory ultrasonic vibration integrated device provided by this utility model has the following beneficial effects:

[0053] To facilitate the opening of the cover 6, a mounting shell 21 with a sliding rod 26 is installed on each side of the equipment frame 1. A movable frame 27 with a support bracket 28 and a stabilizing frame 25 adjacent to the bottom of the support bracket 28 and close to the movable frame 27 are installed on the outer surface of the sliding rod 26. The movable frame 27 and the stabilizing frame 25 slide on the outer surface of the sliding rod 26, allowing the cover 6 to move back and forth. Both sides of the cover 6 are connected to the docking plate 20 and the telescopic end of the telescopic component 23 at the bottom of the docking plate 20. The extension and retraction of the telescopic component 23 allows the cover 6 to move up and down. During this process, the stabilizing rod 22 penetrates the docking plate 20 to increase stability. When it is necessary to open the cover 6 during use, first activate the two telescopic components 23 to move the cover 6 upwards by a small distance, allowing the docking component 7 to separate. Then push the cover 6 to allow the movable frame 27 and the stabilizing frame 25 to slide on the outer surface of the slide rod 26, so that the cover 6 can be pushed to the rear position, making it convenient to take out the sample from inside the equipment frame 1 and also convenient for the staff to clean the inside of the equipment frame 1. This design uses a translational method to install the cover 6 instead of a rotating method, reducing the space occupied by the cover 6 above the equipment frame 1. This not only makes it convenient for the staff to clean the equipment frame 1, but also reduces the probability of the cover 6 falling and injuring the staff due to the failure of the cover 6 support structure.

[0054] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A laboratory ultrasonic vibration integrated device, characterized in that, include: Equipment frame Four base brackets are fixedly connected to the bottom of the device frame. An ultrasound module is installed on one side of the device frame near the front, and a vibration module is installed on one side of the device frame near the back. A socket is installed on one side of the device frame via a fixed base, and a drain pipe is installed on one side of the device frame. An ultrasound module control panel and a vibration module control panel are installed on the front of the device frame. The cover is located on the top of the equipment frame. Handles are installed on both sides of the equipment frame. Mounting strips are installed on both sides of the inner wall of the equipment frame. A fixing plate is installed on the top of the mounting strips. A mating assembly is installed on the front and back of the cover and the equipment frame.

2. The laboratory ultrasonic vibration integrated device according to claim 1, characterized in that, The docking assembly includes a support structure and a docking structure. The docking structure is inserted into the interior of the support structure to secure the cover. The other end of the drain pipe is fitted with a connecting pipe via a valve.

3. The laboratory ultrasonic vibration integrated device according to claim 1, characterized in that, A monitoring component is mounted on the top of the cover. The monitoring component includes a mounting base and a monitoring element. The mounting base is used to mount the monitoring element for monitoring temperature and vibration frequency.

4. The laboratory ultrasonic vibration integrated device according to claim 1, characterized in that, A control box with a door is installed on one side of the equipment frame, and the base bracket includes a support frame and a shock-absorbing pad.

5. The laboratory ultrasonic vibration integrated device according to claim 1, characterized in that, Mounting shells are installed on both sides of the equipment frame near the top. Sliding rods are installed inside the mounting shells. Movable frames and stabilizing frames are slidably connected to the outer surfaces of the sliding rods. Support plates are fixedly connected to both sides of the cover. Stabilizing rods are installed on the bottom of the support plates near the front and back.

6. The laboratory ultrasonic vibration integrated device according to claim 5, characterized in that, The movable frame is equipped with a support frame at the top, a docking plate is installed at the top of the support frame, and telescopic components are installed at the bottom of the docking plate.