Homogenizing ultrasonic treatment device for laboratory

Through a laboratory homogeneous ultrasonic processing device integrating the Y-axis base and the Z-axis base, the problem of cumbersome manual operation is solved, and the reagent processing is automated and efficient.

CN223127896UActive Publication Date: 2025-07-22BAIQUAN JUXING (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202422236375.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-07-22
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

Traditional homogenization and ultrasonic processing operations mostly rely on manual operations in laboratories, resulting in cumbersome reagent processing processes, and it is necessary to design an automated laboratory homogenization ultrasonic processing device.

Method used

A device including a Y-axis base and a Z-axis base is designed, integrating an external ultrasonic structure, an internal ultrasonic structure and a homogenizer structure. The Y-axis drive assembly realizes automatic switching and combination of various functions, so as to realize multiple treatments of reagents without changing stations.

Benefits of technology

It realizes automation of reagent processing, reduces manual handling steps, and improves the operation efficiency and convenience of the laboratory.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a homogeneous ultrasonic treatment device for a laboratory. The homogeneous ultrasonic treatment device comprises a Y-axis base which is transversely arranged and a Z-axis base which is vertically arranged on the Y-axis base, the external ultrasonic structure is mounted on one side of the top of the Y-axis base through a Y-axis driving assembly; and the inner ultrasonic structure is mounted on one side of the Z-axis base. The device has the beneficial effects that through the outer ultrasonic structure, the inner ultrasonic structure and the homogenizer structure on the Y-axis base and the Z-axis base, the homogenization and ultrasonic treatment functions are realized on one device, and each function can be independently used and can also be combined for use according to requirements; the Y-axis driving assembly on the Y-axis base can drive the outer ultrasonic structure to move and can drive the outer ultrasonic structure to move to the bottoms of the inner ultrasonic structure and the homogenizer structure for processing, and the outer ultrasonic structure has a processing mode, so that the device can automatically carry out next-step processing according to setting when a reagent needs to be subjected to various processing, and the processing efficiency is improved. Stations do not need to be replaced.
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Description

Technical Field

[0001] The utility model relates to the technical field of homogenizing ultrasonic technology, and particularly relates to a laboratory homogenizing ultrasonic treatment device. Background Art

[0002] With the increasing improvement of automation and intelligent technologies, laboratories are gradually adopting automation technologies to significantly improve their operation efficiency. As a very common reagent treatment step in the daily operation of laboratories, this operation is widely used in various experiments.

[0003] Currently, traditional homogenizing and ultrasonic treatment operations are mostly manual. When reagents need to be processed in multiple ways, manual handling is required, resulting in unnecessary troubles during the processing. Therefore, it is necessary to design a laboratory homogenizing ultrasonic treatment device to solve the above problems. Content of the Utility Model

[0004] The purpose of the utility model is to overcome the deficiencies of the above background art and provide a laboratory homogenizing ultrasonic treatment device.

[0005] It includes a horizontally arranged Y-axis base and a vertically arranged Z-axis base perpendicular to the Y-axis base;

[0006] An external ultrasonic structure, which is installed on one side of the top of the Y-axis base through a Y-axis driving component;

[0007] An internal ultrasonic structure, which is installed on one side of the Z-axis base;

[0008] A homogenizer structure, which is installed on the other side of the Z-axis base;

[0009] The homogenizer structure and the internal ultrasonic structure are arranged corresponding to each other.

[0010] Further, the external ultrasonic structure includes a carrying base and an ultrasonic vibrator installed on the base, and an ultrasonic water bath is sleeved on the top of the ultrasonic vibrator.

[0011] Further, the external ultrasonic structure further includes:

[0012] A liquid level sensor, which is installed on the ultrasonic water bath and is located at a position close to the top of the ultrasonic water bath; and

[0013] A temperature sensor, which is installed at the top position of the ultrasonic water bath.

[0014] Further, a cleaning tank is installed on the top of the base, and the cleaning tank is located on one side of the ultrasonic water bath.

[0015] Further, a semiconductor refrigerator is installed on one side of the top of the Y-axis base, and the semiconductor refrigerator and the external ultrasonic structure are symmetrically arranged with the center point of the Y-axis base.

[0016] Further, the Y-axis base is in a box-shaped structure, the Y-axis drive assembly is installed on the top of the Y-axis base, the Y-axis drive assembly includes a motor and a rotating rod installed at the output end of the motor, and the rotating rod is connected to the base of the external ultrasonic structure.

[0017] Further, a positive pressure liquid adding solenoid valve communicating with the ultrasonic water bath tank is arranged at one end of the Y-axis base, a liquid discharging peristaltic pump and a positive pressure liquid discharging solenoid valve which are communicated with each other are installed inside the Y-axis base, and the positive pressure liquid discharging solenoid valve is communicated with the ultrasonic water bath tank.

[0018] Further, a cooling circulation peristaltic pump is also installed inside the Y-axis base, and the cooling circulation peristaltic pump is communicated with the ultrasonic water bath tank and the semiconductor refrigerator through water pipes.

[0019] Further, the internal ultrasonic structure includes an ultrasonic generator trigger board connected to the Z-axis base and an ultrasonic knife head installed at the bottom of the ultrasonic generator trigger board;

[0020] At the top of the ultrasonic generator trigger board, there is an ultrasonic generator fixing board and an ultrasonic generator main body installed at the top of the ultrasonic generator fixing board, and the ultrasonic generator main body is connected to the ultrasonic knife head;

[0021] An ultrasonic generator driving cylinder connected to the ultrasonic knife head is also installed at the top of the ultrasonic generator trigger board.

[0022] Further, the homogenizer structure includes a homogenizer fixing board connected to the Z-axis base and a homogenizer main body installed inside the homogenizer fixing board, a homogenizing knife head connected to the homogenizer main body is installed at the bottom of the homogenizer fixing board, and a homogenizer driving assembly connected to the homogenizing knife head is installed at the top of the Z-axis base.

[0023] Compared with the prior art, the advantages of the present utility model are as follows: Through the external ultrasonic structure, internal ultrasonic structure and homogenizer structure on the Y-axis base and Z-axis base, the functions of homogenization and ultrasonic treatment are realized on one device. Each function can be used alone or combined according to requirements. The Y-axis drive assembly on the Y-axis base can drive the external ultrasonic structure to move, and can drive the external ultrasonic structure to move to the bottom of the internal ultrasonic structure and the homogenizer structure for processing. Moreover, the external ultrasonic structure has its own processing method. When various treatments need to be carried out on the reagent, the device can automatically perform the next step of treatment according to the setting without changing the working station. Description of the Drawings

[0024] Figure 1 It is a schematic diagram of the first overall three-dimensional structure in the present utility model.

[0025] Figure 2 It is a schematic diagram of the overall side view structure in the present utility model.

[0026] Figure 3 It is a schematic diagram of the overall left view structure in the present utility model.

[0027] Figure 4 It is a schematic diagram of the overall right view structure in the present utility model.

[0028] Figure 5 It is a schematic diagram of the top view sectional structure of the Y-axis base in the present utility model.

[0029] Figure 6 It is a schematic diagram of the three-dimensional structure of the Y-axis base in the present utility model.

[0030] Figure 7 It is a schematic diagram of the second overall three-dimensional structure in the present utility model.

[0031] Figure 8 It is a schematic diagram of the side view sectional structure of the external ultrasonic structure in the present utility model.

[0032] In the figure:

[0033] 1. Y-axis base; 101. Y-axis drive assembly; 102. Positive pressure liquid adding solenoid valve; 103. Positive pressure liquid discharging solenoid valve; 104. Liquid discharging peristaltic pump; 105. Cooling circulation peristaltic pump;

[0034] 2. Z-axis base;

[0035] 3. External ultrasonic structure; 301. Liquid level sensor; 302. Temperature sensor; 303. Ultrasonic water bath; 304. Ultrasonic vibrator; 305. Cleaning tank;

[0036] 4. Internal ultrasonic structure; 401. Ultrasonic generator trigger board; 402. Ultrasonic generator fixing plate; 403. Ultrasonic generator main body; 404. Ultrasonic cutter head; 405. Ultrasonic generator drive cylinder;

[0037] 5. Homogenizer structure; 501. Homogenizer drive assembly; 502. Homogenizer fixing plate; 503. Homogenizer main body; 504. Homogenizing cutter head;

[0038] 6. Semiconductor cooler. Detailed implementation manners

[0039] Reference will now be made in detail to specific embodiments of the present invention, examples of which are illustrated in the accompanying drawings. Although the present invention will be described in connection with specific embodiments, it will be understood that it is not intended to limit the present invention to the described embodiments. On the contrary, it is intended to cover modifications, variations, and equivalents included within the spirit and scope of the present invention as defined by the appended claims. It should be noted that the method steps described herein can be implemented by any functional block or functional arrangement, and any functional block or functional arrangement can be implemented as a physical entity or a logical entity, or a combination of both.

[0040] To enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0041] Note: The examples to be introduced next are only specific examples and do not limit the embodiments of the present invention to the specific steps, numerical values, conditions, data, sequences, etc. as follows. Those skilled in the art can use the concept of the present invention to construct more embodiments not mentioned in this specification by reading this specification.

[0042] With the increasing sophistication of automation and intelligent technologies, laboratories are gradually adopting automation technologies, aiming to significantly improve their operation efficiency. As a very common reagent handling step in the daily operation of laboratories, this operation is widely used in various experiments. At present, traditional homogenization and ultrasonic treatment operations are mostly manual. When reagents need to be processed in various ways, manual handling is required, resulting in unnecessary trouble during the processing. Therefore, it is necessary to design a laboratory homogenization ultrasonic treatment device to solve the above problems.

[0043] To solve the problems existing in the above-mentioned homogenization ultrasonic treatment, the present invention proposes a laboratory homogenization ultrasonic treatment device.

[0044] Please refer to Figure 1 、 Figure 2 and Figure 8, including a horizontally arranged Y-axis base 1 and a vertically arranged Z-axis base 2 on the Y-axis base 1; an external ultrasonic structure 3, which is installed on one side of the top of the Y-axis base 1 through a Y-axis drive assembly 101; a semiconductor cooler 6 is installed on one side of the top of the Y-axis base 1, and the semiconductor cooler 6 and the external ultrasonic structure 3 are symmetrically arranged with respect to the center point of the Y-axis base 1. The external ultrasonic structure 3 includes a bearing base and an ultrasonic vibrator 304 installed on the base. An ultrasonic water bath 303 is sleeved on the top of the ultrasonic vibrator 304. The external ultrasonic structure 3 further includes: a liquid level sensor 301, which is installed on the ultrasonic water bath 303 and is located at a position near the top of the ultrasonic water bath 303; and a temperature sensor 302, which is installed at the top position of the ultrasonic water bath 303. A cleaning tank 305 is installed on the top of the base, and the cleaning tank 305 is located on one side of the ultrasonic water bath 303.

[0045] As Figure 1 , Figure 2 and Figure 8 shown, the Y-axis base 1 is horizontally arranged, the Z-axis base 2 is vertically arranged, the Z-axis base 2 is in a gantry structure and is vertically arranged in the middle of the Y-axis base 1. The two sides of the Z-axis base 2 are located on the two sides of the Y-axis base 1.

[0046] Both the semiconductor cooler 6 and the external ultrasonic structure 3 are installed on the Y-axis base 1 and are arranged one in front of the other. The two are symmetric with respect to the center point of the Y-axis base 1, and the semiconductor cooler 6 and the external ultrasonic structure 3 are interconnected.

[0047] Specifically, both the cleaning tank 305 and the external ultrasonic structure 3 are installed on the base. The base is in a box-shaped structure with a cavity structure, and two openings are provided at the top, so that the cleaning tank 305 and the external ultrasonic structure 3 are respectively inserted into the two openings. The external ultrasonic structure 3 and the cleaning tank 305 are arranged one in front of the other.

[0048] The ultrasonic vibrator 304 in the external ultrasonic structure 3 is arranged at the bottom inside the base and is attached to the base. The top of the ultrasonic vibrator 304 is clamped with an ultrasonic water bath 303, and the top of the ultrasonic vibrator 304 is located inside the ultrasonic water bath 303. When the ultrasonic vibrator 304 works, it processes the solvent inside the ultrasonic water bath 303.

[0049] A liquid level sensor 301 is installed at a position near the top inside the ultrasonic water bath 303. The function of the liquid level sensor 301 can ensure that after the liquid reaches the appropriate height, the liquid level sensor 301 can transmit a signal to the positive pressure liquid adding solenoid valve 102, so that the positive pressure liquid adding solenoid valve 102 stops injecting liquid into the ultrasonic water bath 303.

[0050] At the top of the ultrasonic water bath 303, a temperature sensor 302 is installed to monitor the temperature of the solvent and ensure that the solvent is processed at an appropriate temperature.

[0051] Please refer to Figure 6 , the Y-axis base 1 has a box-shaped structure. The Y-axis drive assembly 101 is installed at the top of the Y-axis base 1. The Y-axis drive assembly 101 includes a motor and a rotating rod installed at the output end of the motor. The rotating rod is connected to the base of the external ultrasonic structure 3.

[0052] As Figure 6 shown, two tracks are arranged along the length direction of the Y-axis base 1 at the top of the Y-axis base 1, and a channel is formed by setting the distance between the two tracks. The external ultrasonic structure 3 slides outside the tracks, while the rotating rod is arranged in the middle of the channel. The outer surface of the rotating rod is threadedly connected to the external ultrasonic structure 3 and is connected to the Y-axis drive assembly 101 at one end, ensuring that during the process of the Y-axis drive assembly 101 driving the rotating rod to rotate, the external ultrasonic structure 3 is driven to move along the tracks, so that the external ultrasonic structure 3 moves to a suitable position.

[0053] Please refer to Figure 5 , one end of the Y-axis base 1 is provided with a positive pressure liquid adding solenoid valve 102 communicated with the ultrasonic water bath 303. Inside the Y-axis base 1, a liquid discharging peristaltic pump 104 and a positive pressure liquid discharging solenoid valve 103 which are communicated with each other are installed. The positive pressure liquid discharging solenoid valve 103 is communicated with the ultrasonic water bath 303. A cooling circulation peristaltic pump 105 is also installed inside the Y-axis base 1. The cooling circulation peristaltic pump 105 is communicated with the ultrasonic water bath 303 and the semiconductor cooler 6 through water pipes.

[0054] As Figure 5 shown, one end of the positive pressure liquid adding solenoid valve 102 is located outside the Y-axis base 1 and the other end penetrates into the inside of the Y-axis base 1. And the end of the positive pressure liquid adding solenoid valve 102 penetrating into the inside of the Y-axis base 1 is connected to the ultrasonic water bath 303. Inside the Y-axis base 1, a liquid discharging peristaltic pump 104 and a positive pressure liquid discharging solenoid valve 103 are also arranged. The two ends of the positive pressure liquid discharging solenoid valve 103 are respectively connected to the ultrasonic water bath 303 and the liquid discharging peristaltic pump 104;

[0055] Specifically, the positive pressure liquid adding solenoid valve 102, the liquid discharging peristaltic pump 104 and the positive pressure liquid discharging solenoid valve 103 are all communicated through water pipes. And the positive pressure liquid adding solenoid valve 102 is communicated with not only the ultrasonic water bath 303 but also the cleaning tank 305 through water pipes. Similarly, the positive pressure liquid discharging solenoid valve 103 is also communicated with the ultrasonic water bath 303 and the cleaning tank 305 using water pipes. And after the liquid discharging peristaltic pump 104 is communicated with the positive pressure liquid discharging solenoid valve 103 through a water pipe, when discharging the sewage inside the ultrasonic water bath 303 and the cleaning tank 305, the liquid discharging peristaltic pump 104 provides power to pump out the sewage;

[0056] And a cooling circulation peristaltic pump 105 is also installed inside the Y-axis base 1. Both ends of the cooling circulation peristaltic pump 105 are respectively connected to the ultrasonic water bath 303 and the semiconductor cooler 6 through water pipes, connecting the ultrasonic water bath 303 and the semiconductor cooler 6. When the temperature inside the ultrasonic water bath 303 is too high, after being sensed by the temperature sensor 302, a signal is transmitted to the controller (the controller, prior art, not shown in the figure), causing the controller to start the cooling circulation peristaltic pump 105, so that the cooling circulation peristaltic pump 105 pumps the liquid inside the ultrasonic water bath 303 into the semiconductor cooler 6 for cooling, and then re-injects it into the ultrasonic water bath 303.

[0057] Please refer to Figure 3 , the internal ultrasonic structure 4 is installed on one side of the Z-axis base 2; the internal ultrasonic structure 4 includes an ultrasonic generator trigger board 401 connected to the Z-axis base 2 and an ultrasonic knife head 404 installed at the bottom of the ultrasonic generator trigger board 401; an ultrasonic generator fixing board 402 is provided at the top of the ultrasonic generator trigger board 401, and an ultrasonic generator main body 403 is installed on top of the ultrasonic generator fixing board 402. The ultrasonic generator main body 403 is connected to the ultrasonic knife head 404; an ultrasonic generator driving cylinder 405 connected to the ultrasonic knife head 404 is also installed at the top of the ultrasonic generator trigger board 401.

[0058] As Figure 3 shown, the internal ultrasonic structure 4 is mainly composed of an ultrasonic generator trigger board 401, an ultrasonic generator fixing board 402, an ultrasonic generator main body 403, an ultrasonic knife head 404, and an ultrasonic generator driving cylinder 405;

[0059] Specifically, the ultrasonic generator trigger board 401 connected to the Z-axis base 2 is installed between the inside of the gantry of the Z-axis base 2 and protrudes by a part. The ultrasonic knife head 404 is installed at the bottom of the protruding part, and the ultrasonic generator fixing board 402 is installed at the top of the protruding part. The top of the ultrasonic generator fixing board 402 is connected to the ultrasonic generator main body 403, and the ultrasonic generator main body 403 is connected to the ultrasonic knife head 404, ensuring that the ultrasonic generator main body 403 drives the ultrasonic knife head 404 to work, enabling the ultrasonic knife head 404 to process the solvent. And the ultrasonic generator driving cylinder 405 provided on one side of the top of the ultrasonic generator trigger board 401 can drive the ultrasonic knife head 404 to move up and down, ensuring that the ultrasonic knife head 404 can enter the ultrasonic water bath 303 for processing.

[0060] Please refer to Figure 4, the homogenizer structure 5 is installed on the other side of the Z-axis base 2; the homogenizer structure 5 and the internal ultrasonic structure 4 are arranged correspondingly. The homogenizer structure 5 includes a homogenizer fixing plate 502 connected to the Z-axis base 2 and a homogenizer main body 503 installed inside the homogenizer fixing plate 502. At the bottom of the homogenizer fixing plate 502, a homogenizer cutter head 504 connected to the homogenizer main body 503 is installed. At the top of the Z-axis base 2, a homogenizer driving assembly 501 connected to the homogenizer cutter head 504 is installed.

[0061] As Figure 4 shown, the homogenizer structure 5 is arranged on the Z-axis base 2 corresponding to the other side of the internal ultrasonic structure 4. The homogenizer fixing plate 502 in the homogenizer structure 5 is arranged in the middle of the Z-axis base 2 and has a U-shaped structure inside. The homogenizer main body 503 is installed inside the homogenizer fixing plate 502. And at the bottom of the homogenizer fixing plate 502, a homogenizer cutter head is installed, so that the homogenizer main body 503 is connected to the homogenizer cutter head, ensuring that the homogenizer main body 503 drives the homogenizer cutter head to work. And the homogenizer driving assembly 501 installed at the top of the Z-axis base 2 drives the whole homogenizer structure 5 to move up and down, so as to ensure that the homogenizer cutter head 504 can move up and down, enabling the homogenizer cutter head 504 to enter the internal work of the ultrasonic water bath 303.

[0062] When using the present utility model, the semiconductor cooler 6, the temperature sensor 302 and the cooling water circulation peristaltic pump form a cooling system to cool the water bath. The Y-axis driving assembly 101 drives the ultrasonic water bath 303 (feeding station) to move to the homogenizer structure 5 station for homogenization treatment, or move to the internal ultrasonic structure 4 station for internal ultrasonic treatment. After the homogenization or internal ultrasonic treatment, the Y-axis driving assembly 101 drives the base in the external ultrasonic structure 3 to move the cleaning tank 305 to the cleaning station to clean the homogenizer cutter head or the ultrasonic cutter head 404. The ultrasonic water bath 303 changes water, and the drain peristaltic pump 104 empties the liquid in the water tank. The positive pressure liquid adding solenoid valve 102 fills water into the water bath, and automatically stops filling when the liquid level reaches the sensing height of the liquid level sensor 301.

[0063] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by terms such as "upper" and "lower" is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. Unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0064] It should be noted that in the present utility model, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without more limitations, an element defined by the statement "comprising one..." does not exclude the existence of additional identical elements in the process, method, article or device including the said element.

[0065] The above are only specific embodiments of the present utility model, enabling those skilled in the art to understand or implement the present utility model. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to these embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features disclosed herein.

Claims

1. A laboratory homogenizing ultrasonic treatment device, characterized in that, It includes a horizontally arranged Y-axis base (1) and a Z-axis base (2) vertically arranged on the Y-axis base (1); An external ultrasonic structure (3), which is installed on one side of the top of the Y-axis base (1) through a Y-axis driving component (101); An internal ultrasonic structure (4), which is installed on one side of the Z-axis base (2); A homogenizer structure (5), which is installed on the other side of the Z-axis base (2); The homogenizer structure (5) and the internal ultrasonic structure (4) are arranged corresponding to each other.

2. The ultrasonic homogenization treatment device for a laboratory according to claim 1, wherein The external ultrasonic structure (3) includes a bearing base and an ultrasonic vibrator (304) installed on the base. An ultrasonic water bath tank (303) is sleeved on the top of the ultrasonic vibrator (304).

3. The ultrasonic homogenization treatment device for a laboratory according to claim 2, wherein, The external ultrasonic structure (3) further includes: A liquid level sensor (301), which is installed on the ultrasonic water bath tank (303) and is located at a position near the top of the ultrasonic water bath tank (303); and A temperature sensor (302), which is installed at the top position of the ultrasonic water bath tank (303).

4. A laboratory homogenizing ultrasonic treatment device according to claim 2, characterized in that, A cleaning tank (305) is installed on the top of the base, and the cleaning tank (305) is located on one side of the ultrasonic water bath tank (303).

5. The ultrasonic treatment device for laboratory homogenization according to claim 2, characterized in that, A semiconductor refrigerator (6) is installed on one side of the top of the Y-axis base (1), and the semiconductor refrigerator (6) and the external ultrasonic structure (3) are symmetrically arranged with respect to the center point of the Y-axis base (1).

6. The ultrasonic homogenization treatment device for a laboratory according to claim 2, wherein, The Y-axis base (1) has a box-shaped structure. The Y-axis driving component (101) is installed on the top of the Y-axis base (1). The Y-axis driving component (101) includes a motor and a rotating rod installed at the output end of the motor. The rotating rod is connected to the base of the external ultrasonic structure (3).

7. The ultrasonic homogenization treatment device for a laboratory according to claim 2, characterized in that, One end of the Y-axis base (1) is provided with a positive pressure liquid adding solenoid valve (102) communicated with the ultrasonic water bath tank (303). A liquid discharging peristaltic pump (104) and a positive pressure liquid discharging solenoid valve (103) which are communicated with each other are installed inside the Y-axis base (1). The positive pressure liquid discharging solenoid valve (103) is communicated with the ultrasonic water bath tank (303).

8. The ultrasonic homogenization treatment device for laboratories according to claim 5, characterized in that, A cooling circulation peristaltic pump (105) is also installed inside the Y-axis base (1). The cooling circulation peristaltic pump (105) is communicated with the ultrasonic water bath tank (303) and the semiconductor refrigerator (6) through water pipes.

9. The ultrasonic homogenization treatment device for a laboratory according to claim 1, wherein, The internal ultrasonic structure (4) includes an ultrasonic generator trigger board (401) connected to the Z-axis base (2) and an ultrasonic cutter head (404) installed at the bottom of the ultrasonic generator trigger board (401); At the top of the ultrasonic generator trigger board (401), there is an ultrasonic generator fixing board (402) and an ultrasonic generator main body (403) installed at the top of the ultrasonic generator fixing board (402). The ultrasonic generator main body (403) is connected to the ultrasonic cutter head (404); An ultrasonic generator driving cylinder (405) connected to the ultrasonic cutter head (404) is also installed at the top of the ultrasonic generator trigger board (401).

10. A laboratory homogenizing ultrasonic treatment device according to claim 1, characterized in that, The homogenizer structure (5) includes a homogenizer fixing plate (502) connected to the Z-axis base (2) and a homogenizer main body (503) installed inside the homogenizer fixing plate (502). A homogenizing cutter head (504) connected to the homogenizer main body (503) is installed at the bottom of the homogenizer fixing plate (502), and a homogenizer drive assembly (501) connected to the homogenizing cutter head (504) is installed at the top of the Z-axis base (2).