Sodium sulfonate filtering device

By improving the filtration structure and protective design, the problem of complex filter replacement in existing sodium sulfonate filtration devices has been solved, enabling quick replacement and simplified operation, reducing maintenance costs, and avoiding clogging and impurity contamination.

CN224156478UActive Publication Date: 2026-04-24DEZHOU RUIQIAO CHEM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DEZHOU RUIQIAO CHEM CO LTD
Filing Date
2025-05-23
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

The replacement process of the filter screen in the existing sodium sulfonate filtration device is complicated, requiring the disassembly of multiple parts and even special tools, resulting in long maintenance time and a large workload. The filter screen is difficult to access or replace, which affects the normal operation of the device.

Method used

The design incorporates a bracket, body, slide, slide bar, slide plate, magnet, iron block, connecting frame, and fixing frame, allowing for easy replacement of the filter screen through sliding and magnetic separation. The stainless steel material and limit rod enhance stability, while the protective structure simplifies operation.

Benefits of technology

It enables quick filter replacement, reduces maintenance costs, avoids clogging and wear, simplifies the operation process, reduces replacement time, and prevents contamination by impurities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sodium sulfonate filtering device, and mainly relates to sodium sulfonate filtering. Comprising a support, a device body is fixedly connected to the upper end of the support, a tank body is installed in the device body, a plurality of filtering structures are arranged in the device body, each filtering structure comprises two sliding grooves, the two sliding grooves are formed in the device body, an auxiliary groove is formed in one side of the device body, and sliding strips are slidably connected to the inner walls of the sliding grooves. The sides, close to each other, of the two sliding strips are fixedly connected with sliding plates, the ends, close to the sliding grooves, of the two sliding strips are fixedly connected with magnetic blocks, the bottom walls of the sliding grooves are fixedly connected with iron blocks, the iron blocks are fixedly connected with the magnetic blocks, and the ends, close to the tank body, of the sliding plates are fixedly connected with connecting frames. The device disclosed by the utility model has the beneficial effects that the filter screen can be conveniently replaced, the maintenance cost of the device can be conveniently reduced, material waste caused by blockage of the filter screen can be avoided, and the effect of greatly shortening the replacement time of the filter screen is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of sodium sulfonate filtration technology, and more particularly to sodium sulfonate filtration devices. Background Technology

[0002] Sodium sulfonate filtration devices are used to treat liquids containing sodium sulfonate or similar substances, primarily in the chemical, pharmaceutical, petroleum, and environmental protection industries. These devices are typically used to remove solid particles, impurities, or other contaminants from liquids, ensuring the purity of the liquid and meeting the requirements of subsequent processing or use.

[0003] Existing technologies, such as the utility model patent with publication number CN217988590U, disclose a sodium sulfonate production device with a filtration structure. This patent employs a box, partition, stirring rod, filter plate, suction pump, and purification box. The partition is located inside the box, with the stirring rod positioned at the upper end of the partition. A top plate is located on the top of the box, and a motor housing is mounted on the top plate. The rotating shaft of the motor housing extends into the box and is welded to the stirring rod. A transmission pipe is located at the lower end of the partition, and a first solenoid valve is mounted on the transmission pipe. The filter plate is located at the lower end of the transmission pipe. The suction pump is located at the rear of the box, and the purification box is located to the right of the suction pump. An air suction pipe is mounted on the suction pump and extends into the purification box. This utility model, by incorporating the plate, stirring rod, filter plate, suction pump, and purification box, can filter sodium sulfonate and remove and purify irritating gases generated during the production process.

[0004] The inventors discovered in daily use that some existing sodium sulfonate filtration devices are designed to make filter replacement complex, requiring the disassembly of multiple components and even the use of specialized tools. This increases maintenance time and workload. Some devices may be designed so compactly that the filter is difficult to access or replace, necessitating the removal of other components, leading to inconvenience. Impurities in the sodium sulfonate liquid can cause filter clogging or excessive wear. If the filter is difficult to replace, it will affect the normal operation of the device, requiring frequent maintenance.

[0005] This application provides another technical solution to this technical problem, aiming to provide those skilled in the art with multiple options for solving the problem. Utility Model Content

[0006] The purpose of this invention is to address the shortcomings of existing technologies, such as the difficulty in replacing filter screens, by proposing a sodium sulfonate filtration device.

[0007] To achieve the above objectives, the present invention adopts the following technical solution: a sodium sulfonate filtration device, comprising a support, a body fixedly connected to the upper end of the support, a tank installed inside the body, and several filtration structures inside the body. Each filtration structure includes two slid grooves, both of which are formed on the body. An auxiliary groove is formed on one side of the body. Sliding strips are slidably connected to the inner walls of the slid grooves. Sliding plates are fixedly connected to the sides of the two sliding strips that are close to each other. A magnetic block is fixedly connected to the end of the slid groove near the slid groove. An iron block is fixedly connected to the bottom wall of the slid groove and is fixedly connected to the magnetic block. A connecting frame is fixedly connected to the end of the sliding plate near the tank. A fixing frame is fixedly connected to the side of the connecting frame near the tank. The fixing frame is slidably connected to the tank. A filter screen is fixedly connected to the inner wall of the fixing frame.

[0008] The effect achieved by the above components is as follows: when the filter needs to be replaced, the slide plate is pulled to move, the slide plate moves the slide bar, the slide bar moves the magnetic block, and then the magnetic block is separated from the iron block. The slide plate moves the connecting frame, the connecting frame moves the fixed frame, the fixed frame moves the filter, and then the slide bar slides on the inner wall of the slide groove. Then the slide plate is separated from the auxiliary groove, and then the filter is taken out for replacement. The new filter is installed in the tank.

[0009] Preferably, a limiting rod is fixedly connected inside the slide groove, and the limiting rod is slidably connected to the slide bar.

[0010] The effect achieved by the above components is that the limiting rod can limit the slider, prevent the slider from deviating during use, and improve the stability of the slider's sliding.

[0011] Preferably, the upper and lower surfaces of the slide plate away from the tank are provided with a plurality of slots, and the plurality of slots are evenly distributed on the slide plate.

[0012] The effect achieved by the above components is that the groove can increase the friction between the hand and the skateboard, preventing slippage when pulling the skateboard.

[0013] Preferably, the cross-section of the connecting frame is arc-shaped, and the connecting frame is a stainless steel frame.

[0014] The effect achieved by the above components is that the stainless steel material can increase the service life of the connecting frame and prevent the connecting frame from rusting during use.

[0015] Preferably, the upper surface of the vessel body is provided with a protective structure, the protective structure including a limiting block, the limiting block being fixedly connected to the vessel body, a rotating shaft being rotatably connected to the inner wall of the limiting block, a connecting block being fixedly connected to the arc surface of the rotating shaft, and coil springs being sleeved on the arc surfaces at both ends of the rotating shaft, the two ends of the coil springs being fixedly connected to the limiting block and the connecting block respectively, and a protective plate being fixedly connected to the end of the connecting block away from the rotating shaft, the protective plate covering the vessel body.

[0016] The effect achieved by the above components is as follows: when the container needs to be used, the protective plate is pulled to move, the protective plate moves the connecting block, the connecting block moves the rotating shaft, the connecting block moves the coil spring to retract, and then the protective plate separates from the tank. Then the material is put into the tank for filtration. After the material is put in, the protective plate coil spring is released to retract, and the protective plate closes with the tank for protection.

[0017] Preferably, a handle is fixedly connected to the upper surface of the protective plate, and the handle has a "U" shaped cross-section.

[0018] The effect achieved by the above components is that when it is necessary to pull the protective plate, the handle can be pulled directly, and the handle will move the protective plate, making it more convenient to pull the protective plate.

[0019] Preferably, a protective pad, which is a rubber pad, is fixedly connected to the lower surface of the protective plate.

[0020] The effect achieved by the above components is that the protective pad can protect the protective plate and the tank, preventing the protective plate from being worn when protecting the tank.

[0021] In summary, the beneficial effects of this utility model are as follows:

[0022] In this invention, the operation of the filtration structure addresses the issue that some existing sodium sulfonate filtration devices involve complex filter replacement processes, requiring the disassembly of multiple components and even the use of specialized tools. This increases maintenance time and workload. Some devices may be designed so compactly that the filter is difficult to access or replace, necessitating the removal of other components and causing operational inconvenience. Impurities in the sodium sulfonate liquid can also clog or cause excessive wear on the filter. If the filter is difficult to replace, it affects the normal operation of the device, requiring frequent maintenance. This device facilitates easy filter replacement, not only reducing maintenance costs but also preventing material waste due to filter clogging and significantly shortening filter replacement time.

[0023] In this invention, by operating the protective structure, the tank can be easily protected, preventing debris from falling into the tank and contaminating the material when the tank is protecting it. Attached Figure Description

[0024] Appendix Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0025] Appendix Figure 2 This is a schematic diagram of the filter structure of this utility model;

[0026] Appendix Figure 3 This is a utility model Figure 2 Partial structural diagram;

[0027] Appendix Figure 4 This is a utility model Figure 3 Enlarged view of point A;

[0028] Appendix Figure 5 This is a schematic diagram of the protective structure of this utility model;

[0029] Appendix Figure 6 This is a utility model Figure 5 Enlarged view of point B.

[0030] The following are the labels in the attached diagram: 1. Support; 2. Body; 3. Tank; 4. Filter structure; 401. Magnetic block; 402. Iron block; 403. Sliding bar; 404. Sliding plate; 405. Groove; 406. Connecting frame; 407. Fixing frame; 408. Filter screen; 409. Auxiliary groove; 410. Limiting rod; 411. Slide groove; 5. Protective structure; 51. Handle; 52. Protective plate; 53. Limiting block; 54. Connecting block; 55. Protective pad; 56. Coil spring; 57. Rotating shaft. Detailed Implementation

[0031] The present invention will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims.

[0032] Reference Figure 1 As shown, this utility model provides a technical solution: a sodium sulfonate filtration device, including a support 1, a body 2 fixedly connected to the upper end of the support 1, a tank 3 installed inside the body 2, a plurality of filtration structures 4 inside the body 2, and a protective structure 5 on the upper surface of the body 2.

[0033] The following section will explain the specific setup and function of its filter structure 4 and protective structure 5.

[0034] Reference Figures 2 to 4As shown in this embodiment: the filter structure 4 includes two swivels 411, both of which are opened on the body 2. An auxiliary groove 409 is opened on one side of the body 2. A slide bar 403 is slidably connected to the inner wall of the swivel 411. A slide plate 404 is fixedly connected to the side of the two slide bars 403 that are close to each other. A magnetic block 401 is fixedly connected to the end of the swivel 411. An iron block 402 is fixedly connected to the bottom wall of the swivel 411. The iron block 402 is fixedly connected to the magnetic block 401. A connecting frame 406 is fixedly connected to the end of the slide plate 404 that is close to the tank 3. A fixing frame 407 is fixedly connected to the side of the connecting frame 406 that is close to the tank 3. The fixing frame 407 is slidably connected to the tank 3. A filter screen 408 is fixedly connected to the inner wall of the fixing frame 407. When the filter screen 408 needs to be replaced, the sliding plate 404 is pulled to move, the sliding plate 404 drives the sliding bar 403 to move, the sliding bar 403 drives the magnetic block 401 to move, and then the magnetic block 401 is separated from the iron block 402. The sliding plate 404 drives the connecting frame 406 to move, the connecting frame 406 drives the fixed frame 407 to move, the fixed frame 407 drives the filter screen 408 to move, and then the sliding bar 403 slides on the inner wall of the slide groove 411. Then the sliding plate 404 is separated from the auxiliary groove 409, and then the filter screen 408 is taken out for replacement. The new filter screen 408 is installed in the tank body 3. The inside of the slide groove 411 is fixedly connected to the limit rod 410, and the limit rod 410 is slidably connected to the sliding bar 403. The limiting rod 410 can limit the slider 403 to prevent it from shifting during use, thus improving the stability of the slider 403's sliding. The upper and lower surfaces of the slide plate 404, the end furthest from the tank 3, are both provided with several slots 405, evenly distributed on the slide plate 404. The slots 405 increase the friction between the hand and the slide plate 404, preventing slippage when pulling the slide plate 404. The connecting frame 406 has an arc-shaped cross-section and is made of stainless steel. The stainless steel material increases the service life of the connecting frame 406 and prevents it from rusting during use.

[0035] Reference Figure 5 , Figure 6As shown in this embodiment: the protective structure 5 includes a limiting block 53, which is fixedly connected to the vessel body 2. The inner wall of the limiting block 53 is rotatably connected to a rotating shaft 57. The arc surface of the rotating shaft 57 is fixedly connected to a connecting block 54. Both ends of the rotating shaft 57 are fitted with coil springs 56. The two ends of the coil springs 56 are fixedly connected to the limiting block 53 and the connecting block 54 respectively. The end of the connecting block 54 away from the rotating shaft 57 is fixedly connected to a protective plate 52, which covers the vessel body 3. When the container 2 needs to be used, the protective plate 52 is pulled to move it. The protective plate 52 moves the connecting block 54, which in turn moves the rotating shaft 57. The connecting block 54 also causes the coil spring 56 to retract, separating the protective plate 52 from the container 3. Material is then placed into the container 3 for filtration. After the material is placed in, the coil spring 56 is released, causing the protective plate 52 to retract and close, protecting the container 3. A handle 51 with a U-shaped cross-section is fixedly connected to the upper surface of the protective plate 52. The handle 51 can be pulled directly to move the protective plate 52, making it easier to operate. A protective pad 55, made of rubber, is fixedly connected to the lower surface of the protective plate 52. The protective pad 55 protects both the protective plate 52 and the container 3, preventing wear and tear on the container 3.

[0036] Detailed Instructions for Use: When it is necessary to replace the filter 408, pull the sliding plate 404 to move it. The sliding plate 404 moves the sliding bar 403, which in turn moves the magnetic block 401. Then, the magnetic block 401 separates from the iron block 402. The sliding plate 404 then moves the connecting frame 406, which in turn moves the fixing frame 407. The fixing frame 407 then moves the filter 408. The sliding bar 403 then slides along the inner wall of the slide groove 411. Finally, the sliding plate 404 and the auxiliary... The auxiliary groove 409 is separated, and then the filter screen 408 is taken out and replaced. The new filter screen 408 is installed in the tank 3. The limiting rod 410 can limit the slide bar 403 to prevent the slide bar 403 from deviating during use, thus improving the sliding stability of the slide bar 403. The groove 405 can increase the friction between the hand and the slide plate 404 to prevent slippage when pulling the slide plate 404. The stainless steel material can increase the service life of the connecting frame 406 and prevent the connecting frame 406 from rusting during use.

[0037] When the container 2 needs to be used, the protective plate 52 is pulled to move it. The protective plate 52 drives the connecting block 54 to move, the connecting block 54 drives the rotating shaft 57 to move, and the connecting block 54 drives the coil spring 56 to retract. Then the protective plate 52 separates from the container 3, and the material is put into the container 3 for filtration. After the material is put in, the protective plate 52 is released and the coil spring 56 retracts, and the protective plate 52 and the container 3 are closed for protection. When the protective plate 52 needs to be pulled, the handle 51 can be pulled directly. The handle 51 drives the protective plate 52 to move. The handle 51 makes it easier to pull the protective plate 52. The protective pad 55 can protect the protective plate 52 and the container 3 to prevent the protective plate 52 from being worn when protecting the container 3.

Claims

1. A sodium sulfonate filtration device, comprising a support (1), characterized in that: The upper end of the support (1) is fixedly connected to the container body (2). A tank body (3) is installed inside the container body (2). Several filter structures (4) are provided inside the container body (2). Each filter structure (4) includes two slide grooves (411). Both slide grooves (411) are opened on the container body (2). An auxiliary groove (409) is opened on one side of the container body (2). Slide strips (403) are slidably connected to the inner wall of the slide grooves (411). A sliding plate (404) is fixedly connected to the side of the two slide strips (403) that are close to each other. A magnetic block (401) is fixedly connected to one end of the chute (411), an iron block (402) is fixedly connected to the bottom wall of the chute (411), the iron block (402) is fixedly connected to the magnetic block (401), a connecting frame (406) is fixedly connected to one end of the slide plate (404) near the tank (3), a fixing frame (407) is fixedly connected to one side of the connecting frame (406) near the tank (3), the fixing frame (407) is slidably connected to the tank (3), and a filter screen (408) is fixedly connected to the inner wall of the fixing frame (407).

2. The sodium sulfonate filtration device according to claim 1, characterized in that: The sliding groove (411) is fixedly connected to a limiting rod (410), and the limiting rod (410) is slidably connected to the slide bar (403).

3. The sodium sulfonate filtration device according to claim 1, characterized in that: The upper and lower surfaces of the slide plate (404) away from the tank body (3) are provided with a number of slots (405), and the slots (405) are evenly distributed on the slide plate (404).

4. The sodium sulfonate filtration device according to claim 1, characterized in that: The cross-section of the connecting frame (406) is arc-shaped, and the connecting frame (406) is a stainless steel frame.

5. The sodium sulfonate filtration device according to claim 1, characterized in that: The upper surface of the vessel body (2) is provided with a protective structure (5). The protective structure (5) includes a limiting block (53). The limiting block (53) is fixedly connected to the vessel body (2). The inner wall of the limiting block (53) is rotatably connected to a rotating shaft (57). The arc surface of the rotating shaft (57) is fixedly connected to a connecting block (54). Both ends of the rotating shaft (57) are fitted with coil springs (56). The two ends of the coil springs (56) are fixedly connected to the limiting block (53) and the connecting block (54) respectively. The end of the connecting block (54) away from the rotating shaft (57) is fixedly connected to a protective plate (52). The protective plate (52) covers the tank body (3).

6. The sodium sulfonate filtration device according to claim 5, characterized in that: A handle (51) is fixedly connected to the upper surface of the protective plate (52), and the cross-section of the handle (51) is U-shaped.

7. The sodium sulfonate filtration device according to claim 5, characterized in that: A protective pad (55) is fixedly connected to the lower surface of the protective plate (52), and the protective pad (55) is a rubber pad.

Citation Information

Patent Citations

  • Sodium sulfonate production device with filtering structure

    CN217988590U