Ceramic filter pipe hanging and clamping device

The combined design of the support mechanism and the locking mechanism solves the problem of unstable fixing of ceramic filter tubes, achieving a stable and uniform clamping effect and improving safety in use.

CN223988182UActive Publication Date: 2026-03-13JIANGSU SAITU NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

When existing ceramic filter tubes are fixed to porous plates with clamps, the stability is poor, the tightening force is not easy to control, and the ceramic filter tubes are prone to breakage.

Method used

The system employs a support mechanism and a locking mechanism on a perforated plate. The locking mechanism is fixed by a second mounting sleeve and supported by the support mechanism. Combined with the limiting sleeve and the second mounting sleeve, it achieves uniform clamping of the ceramic filter tube, improving connection stability and the uniformity of clamping force.

Benefits of technology

This improves the installation stability and safety of ceramic filter tubes, ensures uniform clamping force, and avoids the risk of breakage.

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Abstract

The utility model discloses a ceramic filter tube hanging and clamping device which comprises a perforated plate, a supporting mechanism is mounted at the top of the perforated plate, a second mounting sleeve is mounted on the perforated plate, a locking mechanism is connected to the interior of the second mounting sleeve through threads, the locking mechanism is mounted in the supporting mechanism, and the supporting mechanism is connected with the second mounting sleeve through threads. And a ceramic filter pipe is mounted in the locking mechanism, a limiting ring is mounted on the ceramic filter pipe, and a third mounting sleeve is fixed to the limiting ring. Compared with the prior art, the locking mechanism is fixed on the perforated plate by arranging the second mounting sleeve, the locking mechanism is supported by the supporting mechanism, the mounting stability of the locking mechanism is improved, and then the ceramic filter pipe is fixed by arranging the limiting sleeve and the second mounting sleeve to be matched with the locking mechanism; according to the ceramic filter pipe clamping device, the ceramic filter pipe can be uniformly clamped, the connection stability is improved, the clamping force on the ceramic filter pipe is uniform, and the use safety is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of ceramic filter tube installation technology, and in particular to a ceramic filter tube suspension clamping device. Background Technology

[0002] The ceramic filter tube consists of many interconnected, bridge-shaped pores of uniform size. These pores allow suspended matter, colloidal particles, and large organic molecules to be trapped and adsorbed within the micropores as the fluid passes through, thus achieving purification and homogenization of filtration.

[0003] Existing ceramic filter tubes are fixed to porous plates with clamps. However, the clamps are connected to the outer wall of the ceramic filter tank by line, which results in poor stability during actual use and makes it inconvenient to control the tightening force, easily causing the ceramic filter tubes to break. Therefore, we propose a ceramic filter tube suspension clamping device. Utility Model Content

[0004] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a ceramic filter tube suspension clamping device.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A ceramic filter tube suspension clamping device includes a perforated plate, a support mechanism mounted on the top of the perforated plate, a second mounting sleeve mounted on the perforated plate, a locking mechanism threadedly connected inside the second mounting sleeve, the locking mechanism being installed inside the support mechanism, a ceramic filter tube being installed inside the locking mechanism, a limit ring mounted on the ceramic filter tube, a third mounting sleeve fixed on the limit ring, and the third mounting sleeve being threadedly connected to the locking mechanism.

[0007] Preferably, the support mechanism includes a support frame fixed to a perforated plate, a sliding groove is provided on the side of the support frame, an adjusting rod is installed on the side of the support frame, the adjusting rod is inserted into the sliding groove and rotatably connected thereto, both ends of the adjusting rod are threadedly connected to threaded sleeves, a slider is fixed on the threaded sleeve, and a support plate is installed on the side of the slider.

[0008] Preferably, the threads at both ends of the adjusting rod rotate in opposite directions, the slider and the slide groove are slidably connected, and the locking mechanism is installed between the two support plates.

[0009] Preferably, the locking mechanism includes a first mounting sleeve that is threadedly connected to the second mounting sleeve. The inner and outer walls of the first mounting sleeve are threaded. A fixing ring is fixed on the first mounting sleeve. A locking tongue is installed on the fixing ring. Threaded posts are installed on both sides of the fixing ring. Nuts are threadedly connected to the threaded posts.

[0010] Preferably, the threaded post passes through the support frame and is locked to the support frame by a nut, and the number of locking tongues is several groups, which are located on the fixing ring and distributed in a circumferential array.

[0011] Preferably, the third mounting sleeve is threaded inside the first mounting sleeve, the inner wall of the third mounting sleeve is inclined, and the third mounting sleeve is slidably connected to the locking tongue.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] This utility model uses a second mounting sleeve to fix the locking mechanism to the perforated plate, and then uses a support mechanism to support the locking mechanism, thereby improving its installation stability. Subsequently, by setting a limiting sleeve and the second mounting sleeve in conjunction with the locking mechanism, the ceramic filter tube is fixed, which can uniformly clamp the ceramic filter tube, improve the stability of the connection, and the clamping force on the ceramic filter tube is uniform, which greatly improves the safety of use. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of a ceramic filter tube suspension clamping device proposed in this utility model;

[0015] Figure 2 for Figure 1 Cross-sectional view of the central support mechanism;

[0016] Figure 3 for Figure 1 Installation diagram of the central locking mechanism;

[0017] Figure 4 for Figure 3 Cross-sectional view of the locking mechanism;

[0018] Figure 5 for Figure 1 A sectional view of the third mounting sleeve.

[0019] In the figure: 1. Perforated plate, 2. Support mechanism, 21. Support frame, 22. Slide groove, 23. Adjusting rod, 24. Threaded sleeve, 25. Slider, 26. Support plate, 3. Locking mechanism, 31. Fixing ring, 32. First mounting sleeve, 33. Locking tongue, 34. Threaded column, 4. Ceramic filter tube, 5. Sealing sleeve, 6. Second mounting sleeve, 7. Limiting sleeve, 8. Third mounting sleeve. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0021] Reference Figure 1-5 A ceramic filter tube suspension clamping device includes a perforated plate 1, a support mechanism 2 mounted on the top of the perforated plate 1, a second mounting sleeve 6 mounted on the perforated plate 1, a locking mechanism 3 threadedly connected to the interior of the second mounting sleeve 6, the locking mechanism 3 being installed inside the support mechanism 2, a ceramic filter tube 4 mounted inside the locking mechanism 3, a limit ring 7 mounted on the ceramic filter tube 4, a third mounting sleeve 8 fixed to the limit ring 7, and the third mounting sleeve 8 threadedly connected to the locking mechanism 3. The support mechanism 2 includes a support fixed to the perforated plate 1. A support frame 21 has a sliding groove 22 on its side. An adjusting rod 23 is installed on the side of the support frame 21. The adjusting rod 23 is inserted into the sliding groove 22 and rotatably connected to it. Both ends of the adjusting rod 23 are threadedly connected to threaded sleeves 24. A slider 25 is fixed on the threaded sleeve 24. A support plate 26 is installed on the side of the slider 25. The threads at both ends of the adjusting rod 23 have opposite directions of rotation. The slider 25 and the sliding groove 22 are slidably connected. A locking mechanism 3 is installed between the two support plates 26. The locking mechanism 3 includes a screw-connected... The first mounting sleeve 32 on the second mounting sleeve 6 has threads on both its inner and outer walls. A fixing ring 31 is fixed on the first mounting sleeve 32, and a locking tongue 33 is installed on the fixing ring 31. Threaded posts 34 are installed on both sides of the fixing ring 31, and nuts are threadedly connected to the threaded posts 34. The threaded posts 34 pass through the support frame 21 and are locked to the support frame 21 by the nuts. There are several sets of locking tongues 33, which are located on the fixing ring 31 and distributed in a circumferential array. The third mounting sleeve 8 is installed via threads. Inside the first mounting sleeve 32, the inner wall of the third mounting sleeve 8 is inclined. The third mounting sleeve 8 is slidably connected to the locking tongue 33. The locking mechanism is fixed to the perforated plate by setting the second mounting sleeve, and then the locking mechanism is supported by the support mechanism to improve its installation stability. Subsequently, the ceramic filter tube is fixed by setting the limit sleeve and the second mounting sleeve in conjunction with the locking mechanism. The ceramic filter tube can be clamped evenly, improving the connection stability and the clamping force on the ceramic filter tube is uniform, which greatly improves the safety of use.

[0022] In use, firstly, the first mounting sleeve 24 inside the locking mechanism 3 is installed inside the second mounting sleeve 6 via threads. Then, the adjusting rod 23 is rotated, and the adjusting rod 23 drives the slider 25 to slide in the groove 22 through the threaded transmission with the threaded sleeve 24. Since the threads at both ends of the adjusting rod 23 have opposite directions of rotation, the sliders 25 on both sides move in opposite directions. The sliders 25 drive the support plate 26, causing the threaded post 34 to be inserted into the support plate 26. Then, the support plate 26 and the threaded post 34 are locked together with the nut. Then, the ceramic filter tube 4 is inserted into the locking mechanism 3. The limiting sleeve 7 is rotated, and the limiting sleeve 7 drives the third mounting sleeve 8 to rotate. The third mounting sleeve 8 moves upward through the threaded transmission with the first mounting sleeve 24. The third mounting sleeve 8 is fitted into the locking tongue 33. Since the inner ratio of the third mounting sleeve 8 is inclined, multiple sets of locking tongues 33 are close to the ceramic filter tube 4 to clamp the ceramic filter tube 4 and improve the stability of the installation.

[0023] In summary, compared with the prior art, this utility model fixes the locking mechanism to the perforated plate by setting a second mounting sleeve, and then uses a support mechanism to support the locking mechanism, thereby improving its installation stability. Subsequently, by setting a limiting sleeve and a second mounting sleeve in conjunction with the locking mechanism, the ceramic filter tube is fixed, which can uniformly clamp the ceramic filter tube, improve the connection stability, and the clamping force on the ceramic filter tube is uniform, which greatly improves the safety of use.

[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A ceramic filter tube suspension clamping device comprising a perforated plate (1), characterized in that, The top of the porous plate (1) is provided with a supporting mechanism (2), the porous plate (1) is provided with a second mounting sleeve (6), the inside of the second mounting sleeve (6) is threadedly connected with a locking mechanism (3), the locking mechanism (3) is installed in the inside of the supporting mechanism (2), the inside of the locking mechanism (3) is provided with a ceramic filter tube (4), the ceramic filter tube (4) is provided with a limiting ring (7), the limiting ring (7) is fixedly connected with a third mounting sleeve (8), and the third mounting sleeve (8) is connected with the locking mechanism (3) through threads.

2. A ceramic filter tube suspension clamp apparatus according to claim 1, wherein The supporting mechanism (2) comprises a supporting frame (21) fixed to the porous plate (1), a sliding groove (22) is formed in the side of the supporting frame (21), an adjusting rod (23) is installed on the side of the supporting frame (21), the adjusting rod (23) is inserted into the inside of the sliding groove (22) and is rotationally connected with the sliding groove (22), threaded sleeves (24) are threadedly connected to the two ends of the adjusting rod (23), sliding blocks (25) are fixedly connected to the threaded sleeves (24), and supporting plates (26) are installed on the sides of the sliding blocks (25).

3. A ceramic filter tube suspension clamp apparatus according to claim 2, wherein The threads on the two ends of the adjusting rod (23) are opposite in rotation direction, the sliding blocks (25) are slidably connected with the sliding groove (22), and the locking mechanism (3) is installed between the two supporting plates (26).

4. A ceramic filter tube suspension clamp apparatus according to claim 3, wherein The locking mechanism (3) comprises a first mounting sleeve (32) which is threadedly connected to the second mounting sleeve (6), the inner wall and the outer wall of the first mounting sleeve (32) are both provided with threads, a fixed ring (31) is fixedly connected to the first mounting sleeve (32), a lock tongue (33) is installed on the fixed ring (31), threaded columns (34) are installed on the two sides of the fixed ring (31), and nuts are threadedly connected to the threaded columns (34).

5. A ceramic filter tube suspension clamp apparatus according to claim 4, wherein The threaded columns (34) penetrate through the supporting frame (21) and are locked on the supporting frame (21) by the nuts, the number of the lock tongues (33) is several groups, and the several groups of lock tongues (33) are arranged in a circumferential array on the fixed ring (31).

6. A ceramic filter tube suspension clamp apparatus as defined in claim 4, wherein, The third mounting sleeve (8) is threadedly installed in the inside of the first mounting sleeve (32), the inner wall of the third mounting sleeve (8) is designed to be inclined, and the third mounting sleeve (8) is slidably connected with the lock tongue (33).