Net nest ceramic filler

By designing the mesh nest blocks and partition mechanisms of mesh nest ceramic fillers, the rapid and stable connection between ceramic fillers of different specifications is achieved, and the limitations of specification fixation in the prior art are solved, the scope of application is expanded and the carrier performance is maintained.

CN222969841UActive Publication Date: 2025-06-13赵蕊
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Patent Information

Application Number
CN202421767382.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-06-13
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

The existing net nest ceramic filler uses the method of fixing the specifications of the ceramic filler barrel, which limits the scope of application of its carrier and the degree of satisfaction of its working needs, and affects its carrier performance.

Method used

A mesh nest ceramic filler is designed, including mesh nest blocks and partition mechanisms. Through the design of the connecting mechanism and partition plate, a fast and stable connection between ceramic fillers of different specifications is achieved to ensure the maintenance of carrier performance.

Benefits of technology

It realizes rapid and stable connection between ceramic fillers of different specifications, expands the scope of support application, meets work needs, and maintains the performance of ceramic fillers as catalyst support.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a net nest ceramic filler which comprises a first net nest block and a separation mechanism. The right ends of the first net nest blocks are connected with second net nest blocks through connecting mechanisms, first grooves are formed in the first net nest blocks, second grooves are formed in the second net nest blocks, bottom plates are fixedly connected to the bottoms of the first grooves and the bottoms of the second grooves, and first round holes which are evenly distributed are formed in the bottom plates; the separating mechanism comprises separating plates, the separating plates are evenly arranged in the first groove and the second groove, evenly-distributed filling barrels are installed between the separating plates in a matched mode, evenly-distributed filling holes are formed in the filling barrels, and the separating mechanism further comprises vertical grooves, transverse grooves and ribs; the vertical grooves are symmetrically formed in the left end of the first groove and the rear end of the second groove, the net nest ceramic filler can be suitable for rapid and stable connection between ceramic fillers of different specifications, and the performance of the ceramic filler serving as a catalyst carrier is not affected.
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Description

Technical Field

[0001] The utility model relates to the technical field of ceramic fillers, and particularly relates to a honeycomb ceramic filler. Background Art

[0002] Ceramic fillers have excellent acid and heat resistance properties and can resist the corrosion of various acids and alkalis except hydrofluoric acid. Honeycomb ceramic fillers are a kind of porous industrial ceramics, and their internal shape is many through honeycomb-shaped parallel channels. These honeycomb body units are divided by lattice-shaped thin partition walls. Compared with general block ceramics, honeycomb ceramic fillers have the characteristics of large specific surface area, low pressure drop, small resistance, high temperature resistance, good chemical stability, low thermal expansion, good heat insulation, light weight, and high strength. Therefore, they are particularly suitable for catalyst carriers for various purposes;

[0003] Some existing honeycomb ceramic fillers adopt the method of fixing the specifications of ceramic filler cylinders, and are connected by ceramic filler cylinders with fixed specifications, so as to realize the function of catalyst carrier;

[0004] There are some problems now. For example, the method of fixing the specifications of ceramic filler cylinders may limit the applicable range of the honeycomb ceramic filler as a carrier, and may also affect the satisfaction of work requirements, and then may affect the carrier performance of the honeycomb ceramic filler. Content of the Utility Model

[0005] The technical problem to be solved by the utility model is to overcome the existing defects and provide a honeycomb ceramic filler, which can be quickly and stably connected between ceramic fillers of different specifications and does not affect the performance of the ceramic filler as a catalyst carrier, and can effectively solve the problems in the background art.

[0006] To achieve the above purpose, the utility model provides the following technical scheme: a honeycomb ceramic filler, including a honeycomb block one and a separating mechanism;

[0007] Honeycomb block one: The right ends of it are all connected with a honeycomb block two through a connecting mechanism. Grooves one are arranged inside the honeycomb block one, grooves two are arranged inside the honeycomb block two, bottom plates are fixedly connected to the bottoms of the grooves one and the grooves two, and uniformly distributed round holes one are arranged inside the bottom plates;

[0008] Separating mechanism: It includes a separating plate. The separating plates are uniformly arranged inside the grooves one and the grooves two, uniformly distributed filler cylinders are installed in cooperation between the separating plates, and uniformly distributed filler holes are arranged inside the filler cylinders, which can be quickly and stably connected between ceramic fillers of different specifications and does not affect the performance of the ceramic filler as a catalyst carrier.

[0009] Furthermore, the separating mechanism further includes vertical grooves, horizontal grooves and ribs. The vertical grooves are symmetrically arranged at the left end of the first groove and the rear end of the second groove. The horizontal grooves are symmetrically arranged on the front and rear inner walls of the first groove and the left and right inner walls of the second groove respectively. The left ends of the horizontal grooves are communicated with the adjacent vertical grooves. Symmetrically distributed ribs are fixedly connected to the middle of the partition plates. The ribs are all slidably connected with the corresponding horizontal grooves, realizing the installation and horizontal spacing adjustment of the partition plates.

[0010] Furthermore, uniformly distributed round holes II are arranged inside the partition plates, reducing the influence on the performance of the honeycomb ceramic filler carrier.

[0011] Furthermore, the connecting mechanism includes T-shaped grooves and T-shaped blocks. The T-shaped grooves are respectively arranged at the left and right ends of the first honeycomb block and the front and rear ends of the second honeycomb block. The T-shaped blocks are fixedly connected to the front and rear ends of the first honeycomb block and the left and right ends of the second honeycomb block respectively. The T-shaped blocks are inserted into the horizontally adjacent T-shaped grooves, realizing the stable connection of the horizontally adjacent first honeycomb block and the second honeycomb block.

[0012] Furthermore, the connecting mechanism further includes positioning holes and positioning columns. The positioning holes are symmetrically arranged on the bottom walls of the T-shaped grooves. The positioning columns are symmetrically and fixedly connected to the lower surfaces of the T-shaped blocks. The positioning columns are inserted into the vertically adjacent positioning holes, providing positioning guidance for the connection of the first honeycomb block and the second honeycomb block.

[0013] Furthermore, the inner surfaces of the T-shaped grooves are all in contact with the outer surfaces of the horizontally adjacent T-shaped blocks, improving the tightness of the connection between the two first honeycomb blocks.

[0014] Furthermore, uniformly distributed connecting grooves are arranged at the upper and lower ends of the first honeycomb block and the second honeycomb block. Connecting columns are clamped between the vertically adjacent connecting grooves, facilitating the quick and stable connection of the vertically adjacent first honeycomb block and the vertically adjacent second honeycomb block.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: This honeycomb ceramic filler has the following advantages:

[0016] First, the staff aligns the ribs in the middle of the partition plate vertically with the vertical grooves, and then slides the partition plate into the interior of the vertical grooves through the ribs. When the ribs are all horizontally aligned with the corresponding horizontal grooves, the partition plate is slid horizontally, thereby realizing the rapid installation of the partition plate. According to the specifications of the packing cylinder, the corresponding number of partition plates are installed, and the partition plates are successively moved to the required positions through the ribs. Then, the staff places the packing pipes between the partition plates in turn, and between the partition plates and the inner walls of the first groove and the second groove. The inner walls of the partition plate, the packing cylinder, the first groove and the second groove support each other to fix the packing pipes. Then, the staff inserts the T-shaped block at the front end of the first honeycomb block into the interior of the T-shaped groove of the second honeycomb block adjacent horizontally, so that the positioning columns are all stably inserted into the positioning holes, and the outer surface of the T-shaped block is closely attached to the adjacent inner surface horizontally, realizing the stable connection between the first honeycomb block and the second honeycomb block. The staff snaps the connecting columns into the corresponding connecting grooves in turn, and then snaps the connecting grooves evenly distributed at the lower end of another first honeycomb block with the vertically corresponding connecting columns, thereby realizing the rapid connection between the vertically adjacent first honeycomb blocks and the vertically adjacent second honeycomb blocks, which can be suitable for the rapid and stable connection between ceramic packings of different specifications and does not affect the performance of the ceramic packing as a catalyst carrier. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic structural diagram of the present utility model;

[0018] Figure 2 is a schematic cross-sectional structural diagram inside the present utility model.

[0019] In the figure: 1 the first honeycomb block, 2 the first groove, 3 the partition mechanism, 31 the vertical groove, 32 the horizontal groove, 33 the rib, 34 the partition plate, 4 the packing cylinder, 5 the connecting groove, 6 the connecting column, 7 the connecting mechanism, 71 the T-shaped groove, 72 the T-shaped block, 73 the positioning hole, 74 the positioning column, 8 the bottom plate, 9 the second honeycomb block, 10 the second groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0021] Please refer to Figure 1-2 , this embodiment provides a technical solution: a honeycomb ceramic packing, including the first honeycomb block 1 and the partition mechanism 3;

[0022] Mesh nest block 1: Its right ends are all connected to mesh nest block 2 9 through connecting mechanisms 7. Grooves 1 2 are arranged inside mesh nest block 1, and grooves 2 10 are arranged inside mesh nest block 2 9. Bottom plates 8 are fixedly connected to the bottoms of grooves 1 2 and grooves 2 10. Uniformly distributed round holes 1 are arranged inside bottom plates 8. Connecting grooves 5 are uniformly distributed at the upper and lower ends of mesh nest block 1 and mesh nest block 2 9. Connecting columns 6 are clamped between vertically adjacent connecting grooves 5. The uniformly distributed connecting grooves 5 at the lower end of another mesh nest block 1 are all clamped with the vertically corresponding connecting columns 6, thereby realizing the rapid connection of vertically adjacent mesh nest block 1 and vertically adjacent mesh nest block 2 9;

[0023] Partition mechanism 3: It includes partition plates 34. The partition plates 34 are uniformly arranged inside grooves 1 2 and grooves 2 9. Uniformly distributed packing cylinders 4 are installed in cooperation between the partition plates 34. Uniformly distributed packing holes are arranged inside the packing cylinders 4. The partition mechanism 3 also includes vertical grooves 31, horizontal grooves 32 and ribs 33. The vertical grooves 31 are symmetrically arranged at the left ends of grooves 1 2 and the rear ends of grooves 2 10. The horizontal grooves 32 are symmetrically arranged on the inner walls of the front and rear sides of grooves 1 2 and the left and right sides of grooves 2 10 respectively. The left ends of the horizontal grooves 32 are all communicated with the adjacent vertical grooves 31. Symmetrically distributed ribs 33 are fixedly connected to the middle parts of the partition plates 34. The ribs 33 are all slidably connected to the corresponding horizontal grooves 32. Uniformly distributed round holes 2 are arranged inside the partition plates 34. Align the ribs 33 in the middle of the partition plates 34 vertically with the vertical grooves 31, and then slide the partition plates 34 into the inside of the vertical grooves 31 through the ribs 33. When the ribs 33 are all horizontally corresponding to the corresponding horizontal grooves 32, slide the partition plates 34 horizontally, thereby realizing the rapid installation of the partition plates 34. According to the specifications of the packing cylinders 4, install the corresponding number of partition plates 34, and move the partition plates 34 to the required positions in sequence through the ribs 33. Then place the packing pipes 4 between the partition plates 34 in sequence, and between the partition plates 34 and the inner walls of grooves 1 2 and grooves 2 10. The partition plates 34, the packing cylinders 4, and the inner walls of grooves 1 2 and grooves 2 10 support each other to fix the packing pipes 4;

[0024] Wherein: The connecting mechanism 7 includes a T-shaped groove 71 and a T-shaped block 72. The T-shaped grooves 71 are respectively arranged at the left and right ends of the first honeycomb block 1 and at the front and rear ends of the second honeycomb block 9. The T-shaped blocks 72 are respectively fixedly connected to the front and rear ends of the first honeycomb block 1 and the left and right ends of the second honeycomb block 9. The T-shaped blocks 72 are inserted into the laterally adjacent T-shaped grooves 71, and the inner surfaces of the T-shaped grooves 71 are in contact with the outer surfaces of the laterally adjacent T-shaped blocks 72. The connecting mechanism 7 further includes positioning holes 73 and positioning columns 74. The positioning holes 73 are symmetrically arranged on the bottom walls of the T-shaped grooves 71, and the positioning columns 74 are symmetrically and fixedly connected to the lower surfaces of the T-shaped blocks 72. The positioning columns 74 are inserted into the vertically adjacent positioning holes 73. Insert the T-shaped block 72 at the front end of the first honeycomb block 1 into the inside of the T-shaped groove 73 of the laterally adjacent second honeycomb block 9, so that the positioning columns 74 are stably inserted into the inside of the positioning holes 73, and the outer surface of the T-shaped block 72 is in close contact with the laterally adjacent inner surface, realizing the stable connection between the first honeycomb block 1 and the second honeycomb block 9.

[0025] The working principle of a honeycomb ceramic filler provided by the present utility model is as follows: During work, personnel first vertically align the ribs 33 in the middle of the partition plate 34 with the vertical grooves 31, and then slide the partition plate 34 into the inside of the vertical grooves 31 through the ribs 33. When the ribs 33 are horizontally aligned with the corresponding horizontal grooves 32, slide the partition plate 34 horizontally, thereby realizing the rapid installation of the partition plate 34. According to the specifications of the filler tube 4, install the corresponding number of partition plates 34, and move the partition plates 34 to the required positions in sequence through the ribs 33. Then, personnel place the filler tubes 4 between the partition plates 34 in sequence, and between the partition plates 34 and the inner walls of the first groove 2 and the second groove 10. The inner walls of the partition plate 34, the filler tube 4, the first groove 2 and the second groove 10 support each other to fix the filler tubes 4. Then, personnel insert the T-shaped block 72 at the front end of the first honeycomb block 1 into the inside of the T-shaped groove 73 of the laterally adjacent second honeycomb block 9, so that the positioning columns 74 are stably inserted into the inside of the positioning holes 73, and the outer surface of the T-shaped block 72 is in close contact with the laterally adjacent inner surface, realizing the stable connection between the first honeycomb block 1 and the second honeycomb block 9. Personnel snap the connecting columns 6 into the corresponding connecting grooves 5 in sequence, and then snap the connecting grooves 5 evenly distributed at the lower end of another first honeycomb block 1 with the vertically corresponding connecting columns 6, thereby realizing the rapid connection between the vertically adjacent first honeycomb blocks 1 and the vertically adjacent second honeycomb blocks 9. Then, personnel install the connected honeycomb ceramic filler into the working area to provide a carrier for the catalyst.

[0026] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall be similarly included in the patent protection scope of the present utility model.

Claims

1. A nested ceramic filler, characterized in that: It comprises a mesh block (1) and a separation mechanism (3); The net nest block 1 (1): its right end is connected to the net nest block 2 (9) through a connecting mechanism (7); the inside of the net nest block 1 (1) is provided with a groove 1 (2); the inside of the net nest block 2 (9) is provided with a groove 2 (10); the bottoms of the groove 1 (2) and the groove 2 (10) are fixedly connected to a bottom plate (8); the inside of the bottom plate (8) is provided with evenly distributed round holes 1; The partition mechanism (3) comprises a partition plate (34), wherein the partition plates (34) are evenly arranged inside the groove one (2) and the groove two (10), and evenly distributed filling tubes (4) are installed between the partition plates (34), and evenly distributed filling holes are arranged inside the filling tubes (4).

2. A nested ceramic filler according to claim 1, characterized in that: The partition mechanism (3) further comprises a vertical groove (31), a transverse groove (32) and a rib (33); the vertical groove (31) is symmetrically arranged at the left end of the groove one (2) and the rear end of the groove two (10); the transverse groove (32) is symmetrically arranged at the front and rear inner walls of the groove one (2) and the left and right inner walls of the groove two (10); the left end of the transverse groove (32) is connected to the adjacent vertical groove (31); the middle part of the partition plate (34) is fixedly connected with symmetrically distributed ribs (33); and the ribs (33) are slidably connected to the corresponding transverse grooves (32).

3. The nested ceramic filler according to claim 1, characterized in that: The interior of the partition plate (34) is provided with evenly distributed circular holes.

4. The nested ceramic filler according to claim 1, characterized in that: The connecting mechanism (7) comprises a T-shaped slot (71) and a T-shaped block (72); the T-shaped slots (71) are respectively arranged at the left and right ends of the first mesh block (1) and the front and rear ends of the second mesh block (9); the T-shaped blocks (72) are respectively fixedly connected to the front and rear ends of the first mesh block (1) and the left and right ends of the second mesh block (9); and the T-shaped blocks (72) are plugged into the T-shaped slots (71) adjacent to each other in the transverse direction.

5. The nested ceramic filler according to claim 4, characterized in that: The connecting mechanism (7) further comprises positioning holes (73) and positioning columns (74); the positioning holes (73) are symmetrically arranged on the bottom wall of the T-shaped slot (71); the positioning columns (74) are symmetrically fixedly connected to the lower surface of the T-shaped block (72); and the positioning columns (74) are plugged into the vertically adjacent positioning holes (73).

6. The nested ceramic filler according to claim 4, characterized in that: The inner surfaces of the T-shaped grooves (71) are in contact with the outer surfaces of the laterally adjacent T-shaped blocks (72).

7. The nested ceramic filler according to claim 1, characterized in that: The upper and lower ends of the mesh nest block 1 (1) and the mesh nest block 2 (9) are both provided with evenly distributed connection grooves (5), and connection columns (6) are clamped between the vertically adjacent connection grooves (5).