Magnetic fluid automatic cleaning device

By designing an automatic magnetic fluid cleaning device, the problem of contamination from manual cleaning solutions was solved, achieving automated cleaning and improving cleaning effectiveness and efficiency.

CN224525531UActive Publication Date: 2026-07-21SHANGHAI LINGJUN BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI LINGJUN BIOTECHNOLOGY CO LTD
Filing Date
2025-07-08
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In magnetofluid preparation experiments, the existing technology relies on the manual addition of cleaning solution during the cleaning process, which can easily lead to contamination of the cleaning solution and reduce the cleaning effect.

Method used

An automatic magnetohydrodynamic cleaning device was designed, including a fixing component, an adjusting component, and a mounting plate. The position of the first tube can be adjusted by the adjusting component to automatically inject the cleaning fluid into the test tube, thus avoiding operator contact with the cleaning fluid.

Benefits of technology

It realizes an automated cleaning process without human contact with the cleaning fluid, which improves the cleaning effect, prevents cleaning fluid contamination, and enhances the reliability and efficiency of cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of magnetic fluid automatic cleaning devices, including first tuber (1a), fixed assembly (2), adjusting assembly (3) and mounting plate (4);The adjusting assembly (3) is fixed on the mounting plate (4);The first tuber (1a) is set on the fixed assembly (2);The fixed assembly (2) and the adjusting assembly (3) are slidably connected.The magnetic fluid automatic cleaning device disclosed in the utility model, first tuber (1a) and the pipeline of external installation cleaning fluid are connected with each other;The position of first tuber (1a) can be adjusted by adjusting assembly (3), so as to insert first tuber (1a) into the test tube needed to be cleaned, then cleaning fluid is added into test tube by first tuber (1a), in this process, operator will not contact cleaning fluid, so as not to cause the pollution of cleaning fluid, to improve cleaning effect.
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Description

Technical Field

[0001] This utility model relates to the field of magnetic fluid cleaning technology, and in particular to an automatic magnetic fluid cleaning device. Background Technology

[0002] Magnetofluid, also known as magnetic liquid, ferrofluid, or magnetic fluid, is a new type of functional material that combines the fluidity of a liquid with the magnetic properties of a solid magnetic material.

[0003] Currently, in the process of preparing magnetofluids, after the reaction of each raw material is completed, the commonly used cleaning solution for cleaning is deionized water or pure water.

[0004] However, the cleaning solution is often added manually during the cleaning process, which may contaminate the cleaning solution and reduce the cleaning effect of the magnetorheological fluid. Utility Model Content

[0005] This utility model specifically provides an automatic magnetic fluid cleaning device.

[0006] The magnetic fluid automatic cleaning device provided by this utility model includes a first tube body (1a), a fixing component (2), an adjusting component (3), and a mounting plate (4); the adjusting component (3) is fixed on the mounting plate (4); the first tube body (1a) is disposed on the fixing component (2); the fixing component (2) and the adjusting component (3) are slidably connected.

[0007] Preferably, the fixing component (2) includes a first fixing block (205) and a second fixing block (202); one end of the first fixing block (205) is provided with a first through hole (2051); the second fixing block (202) is provided with a second through hole (2024); the first tube (1a) is inserted into the second through hole (2024) and fixed to the second fixing block (202); the second fixing block (202) is inserted into the first through hole (2051) and connected to the first fixing block (205).

[0008] Preferably, the fixing component (2) includes a retaining ring (201); the second fixing block (202) includes a first column (2021) and a second column (2022); the first column (2021) is fixed to one end of the second column (2022), and the outer wall of the second column (2022) away from the first column (2021) is provided with a first groove (2023), the diameter of the first column (2021) is larger than the diameter of the first through hole (2051); the second column (2022) passes through the first through hole (2051); the retaining ring (201) is engaged in the first groove (2023).

[0009] Preferably, the fixing component (2) further includes a positioning block (203); the first fixing block (205) is provided with a second groove (2052); the second groove (2052) is connected to the first through hole (2051); the second column (2022) has a first notch (2026) at one end of the first groove (2023); the positioning block (203) abuts in the second groove (2052), and when the second column (2022) is inserted into the first through hole (2051), one end of the positioning block (203) abuts against the first notch (2026).

[0010] Preferably, the adjustment component (3) includes a connecting rod (204) and a first movable block (206); the first movable block (206) includes a first base plate (2063) and two sets of cantilever arms (2061); the two cantilever arms (2061) are arranged in parallel and are fixed to one side of the first base plate (2063); a third through hole (2062) is provided between the two cantilever arms (2061); a fourth through hole (2053) is also provided on the first fixed block (205); one end of the connecting rod (204) is inserted into the third through hole (2062) and fixed to the first movable block (206), and the other end is inserted into the fourth through hole (2053) and fixed to the first fixed block (205).

[0011] Preferably, the adjustment component (3) further includes a transition block (301), a slider (306), and a slide rail (304); the slide rail (304) is vertically fixed on the mounting plate (4); the slider (306) is slidably disposed on the slide rail (304); the transition block (301) includes a first block (3011) and a second block (3012); the first block (3011) is disposed on one side of the second block (3012), and the two are a T-shaped integral structure; the first base plate (2063) and the first block (3011) are fixed together; the slider (306) and the second block (3012) are fixed together.

[0012] Preferably, the adjustment assembly (3) further includes a telescopic cylinder and a cylinder seat (302); the cylinder body (303) of the telescopic cylinder is fixed on the mounting plate (4) by the cylinder seat (302); the actuating end (305) of the telescopic cylinder is fixed to the second block (3012).

[0013] Preferably, the magnetic fluid automatic cleaning device provided by this utility model further includes a second tube (1b), and the second fixing block (202) is also provided with a fifth through hole (2025); the second tube (1b) is inserted into the fifth through hole (2025) and fixed to the second fixing block (202).

[0014] The magnetic fluid automatic cleaning device provided by this utility model has a first tube (1a) connected to an external pipeline containing cleaning fluid. The position of the first tube (1a) can be adjusted by adjusting component (3), so that the first tube (1a) can be inserted into the test tube to be cleaned. Then, the cleaning fluid is added to the test tube through the first tube (1a). During this process, the operator will not come into contact with the cleaning fluid, so the cleaning fluid will not be contaminated, thereby improving the cleaning effect. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of the magnetohydrodynamic automatic cleaning device provided by this utility model.

[0016] Figure 2 and Figure 3 for Figure 1 A partially enlarged structural diagram;

[0017] Figure 4 A schematic diagram of the assembly of the slide rail, telescopic cylinder and mounting plate provided in an embodiment of this utility model;

[0018] Figure 5 This is a first-view structural diagram of the first fixing block provided in an embodiment of the present utility model;

[0019] Figure 6 This is a second-view structural diagram of the first fixing block provided in an embodiment of the present utility model;

[0020] Figure 7 This is a schematic diagram of the structure of the second fixing block provided in an embodiment of the present utility model;

[0021] Figure 8 This is a schematic diagram of the retaining ring provided in an embodiment of the present utility model;

[0022] Figure 9 This is a schematic diagram of the structure of the first movable block provided in an embodiment of the present utility model;

[0023] Figure 10 This is a schematic diagram of the structure of the adapter block provided in an embodiment of the present utility model;

[0024] Figure 11 This is a schematic diagram of the positioning block provided in an embodiment of the present utility model. Detailed Implementation

[0025] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0026] like Figures 1-11 As shown, the automatic magnetohydrodynamic cleaning device provided in this embodiment includes a first tube 1a, a fixing component 2, an adjusting component 3, and a mounting plate 4; the adjusting component 3 is fixed on the mounting plate 4; the first tube 1a is disposed on the fixing component 2; the fixing component 2 and the adjusting component 3 are slidably connected. Those skilled in the art will understand that the first tube 1a is connected to an external pipeline containing cleaning fluid; the position of the first tube 1a can be adjusted by the adjusting component 3, thereby inserting the first tube 1a into the test tube to be cleaned, and then adding the cleaning fluid into the test tube through the first tube 1a. During this process, the operator will not come into contact with the cleaning fluid, thus preventing contamination of the cleaning fluid and improving the cleaning effect.

[0027] Furthermore, the fixing component 2 includes a first fixing block 205 and a second fixing block 202; one end of the first fixing block 205 is provided with a first through hole 2051; the second fixing block 202 is provided with a second through hole 2024; the first tube 1a is inserted into the second through hole 2024 and then fixed to the second fixing block 202; the second fixing block 202 is inserted into the first through hole 2051 and then connected to the first fixing block 205. Those skilled in the art will understand that one end of the first tube 1a near the second fixing block 202 is connected to an external pipeline containing cleaning fluid.

[0028] Furthermore, the fixing component 2 includes a retaining ring 201; the second fixing block 202 includes a first column 2021 and a second column 2022; the first column 2021 is fixed to one end of the second column 2022, and the outer wall of the end of the second column 2022 away from the first column 2021 is provided with a first groove 2023, the diameter of the first column 2021 is larger than the diameter of the first through hole 2051; the second column 2022 passes through the first through hole 2051; the retaining ring 201 is engaged in the first groove 2023. Those skilled in the art will understand that one end of the second fixing block 202 abuts against the bottom of the first fixing block 205 through the first column 2021, and the other end is engaged in the first groove 2023 through the retaining ring 201, preventing the second fixing block 202 from falling out of the first through hole 2051.

[0029] Furthermore, the fixing component 2 also includes a positioning block 203; the first fixing block 205 is provided with a second groove 2052; the second groove 2052 is connected to the first through hole 2051; one end of the second column 2022 with the first groove 2023 is provided with a first notch 2026; the positioning block 203 abuts against the second groove 2052, and when the second column 2022 is inserted into the first through hole 2051, one end of the positioning block 203 abuts against the first notch 2026. Those skilled in the art will understand that the positioning block 203 can prevent the second column 2022 from rotating within the first through hole 2051, and also serves a positioning function.

[0030] Furthermore, the adjustment component 3 includes a connecting rod 204 and a first movable block 206; the first movable block 206 includes a first base plate 2063 and two sets of cantilever arms 2061; the two cantilever arms 2061 are arranged in parallel and are both fixed to one side of the first base plate 2063; a third through hole 2062 is provided between the two cantilever arms 2061; a fourth through hole 2053 is also provided on the first fixed block 205; one end of the connecting rod 204 is inserted into the third through hole 2062 and fixed to the first movable block 206, and the other end is inserted into the fourth through hole 2053 and fixed to the first fixed block 205.

[0031] Furthermore, the adjustment component 3 also includes a transition block 301, a slider 306, and a slide rail 304; the slide rail 304 is vertically fixed on the mounting plate 4; the slider 306 is slidably disposed on the slide rail 304; the transition block 301 includes a first block 3011 and a second block 3012; the first block 3011 is disposed on one side of the second block 3012, and the two are a T-shaped integral structure; the first base plate 2063 is fixed to the first block 3011; the slider 306 is fixed to the second block 3012. Those skilled in the art will understand that by sliding the slider 306, the first movable block 206 moves up and down, thereby enabling the first tube 1a to move up and down, thus adapting to test tubes of different depths.

[0032] Furthermore, the adjustment assembly 3 also includes a telescopic cylinder and a cylinder seat 302; the cylinder body 303 of the telescopic cylinder is fixed to the mounting plate 4 via the cylinder seat 302; the actuating end 305 of the telescopic cylinder is fixed to the second block 3012. Those skilled in the art will understand that the operator only needs to control the telescopic cylinder to automatically inject cleaning fluid into the test tube.

[0033] Furthermore, the automatic magnetohydrodynamic cleaning device provided in this embodiment also includes a second tube 1b, and the second fixing block 202 is further provided with a fifth through hole 2025; the second tube 1b is inserted into the fifth through hole 2025 and fixed to the second fixing block 202. Those skilled in the art will understand that two cleaning solutions can be added to the test tube simultaneously through the two sets of tubes, thereby improving the practicality of this device.

[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A magnetic fluid automatic cleaning device, characterized by comprising: It includes a first tube body (1a), a fixing component (2), an adjusting component (3), and a mounting plate (4); the adjusting component (3) is fixed on the mounting plate (4); the first tube body (1a) is disposed on the fixing component (2); the fixing component (2) and the adjusting component (3) are slidably connected.

2. The magnetic fluid automatic cleaning device of claim 1, wherein The fixing component (2) includes a first fixing block (205) and a second fixing block (202); one end of the first fixing block (205) is provided with a first through hole (2051); the second fixing block (202) is provided with a second through hole (2024); the first tube (1a) is inserted into the second through hole (2024) and fixed to the second fixing block (202); the second fixing block (202) is inserted into the first through hole (2051) and connected to the first fixing block (205).

3. The magnetic fluid automatic cleaning device of claim 2, wherein The fixing component (2) includes a first, which includes a retaining ring (201); the second fixing block (202) includes a first column (2021) and a second column (2022); the first column (2021) is fixed to one end of the second column (2022), and the outer wall of the second column (2022) away from the first column (2021) is provided with a first groove (2023), the diameter of the first column (2021) is larger than the diameter of the first through hole (2051); the second column (2022) passes through the first through hole (2051); the retaining ring (201) is engaged in the first groove (2023).

4. The magnetic fluid automatic cleaning device of claim 3, wherein The fixing component (2) further includes a positioning block (203); the first fixing block (205) is provided with a second groove (2052); the second groove (2052) is connected to the first through hole (2051); the second column (2022) has a first notch (2026) at one end of the first groove (2023); the positioning block (203) abuts in the second groove (2052), and when the second column (2022) is inserted into the first through hole (2051), one end of the positioning block (203) abuts against the first notch (2026).

5. The magnetic fluid automatic cleaning device of claim 4, wherein The adjustment component (3) includes a connecting rod (204) and a first movable block (206); the first movable block (206) includes a first base plate (2063) and two sets of cantilever arms (2061); the two cantilever arms (2061) are arranged in parallel and are fixed to one side of the first base plate (2063); a third through hole (2062) is provided between the two cantilever arms (2061); a fourth through hole (2053) is also provided on the first fixed block (205); one end of the connecting rod (204) is inserted into the third through hole (2062) and fixed to the first movable block (206), and the other end is inserted into the fourth through hole (2053) and fixed to the first fixed block (205).

6. The magnetic fluid automatic cleaning device of claim 5, wherein The adjustment component (3) further includes a transition block (301), a slider (306), and a slide rail (304); the slide rail (304) is vertically fixed on the mounting plate (4); the slider (306) is slidably disposed on the slide rail (304); the transition block (301) includes a first block (3011) and a second block (3012); the first block (3011) is disposed on one side of the second block (3012), and the two are a T-shaped integral structure; the first base plate (2063) and the first block (3011) are fixed together; the slider (306) and the second block (3012) are fixed together.

7. The magnetic fluid automatic cleaning device of claim 6, wherein The adjustment assembly (3) also includes a telescopic cylinder and a cylinder seat (302); the cylinder body (303) of the telescopic cylinder is fixed on the mounting plate (4) by the cylinder seat (302); the actuator end (305) of the telescopic cylinder is fixed to the second block (3012).

8. The magnetic fluid automatic cleaning device of claim 7, wherein It also includes a second tube (1b), and the second fixing block (202) is provided with a fifth through hole (2025); the second tube (1b) is inserted into the fifth through hole (2025) and fixed to the second fixing block (202).