Composite anti-corrosion felt cloth forming device

By designing a composite anti-corrosion felt forming device, the problem of traditional anti-corrosion paint affecting construction progress and cement adhesion was solved, realizing efficient production of anti-corrosion felt and enhancing the corrosion resistance of building columns and cement adhesion.

CN224160118UActive Publication Date: 2026-04-24JILIN XINYIXIN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JILIN XINYIXIN TECHNOLOGY CO LTD
Filing Date
2025-05-29
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Traditional anti-corrosion paints, when used on steel columns and cement sealant, affect construction progress and cement adhesion, leading to safety hazards and quality problems.

Method used

A composite anti-corrosion felt forming device is designed, including a first mesh feeding unit, a filler unit, a second mesh feeding unit, a bottom mesh feeding unit, a rolling mechanism, a winding mechanism, and a drive unit. The drive unit synchronously drives the pressure roller and the winding roller to achieve the rolling and sealing forming of the mesh and dry mortar.

Benefits of technology

This improved the production speed of composite anti-corrosion felt, enhanced the anti-corrosion performance of building column surfaces and the adhesion of cement, and ensured construction progress and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a composite anti-corrosion felt cloth forming device which comprises a first screen cloth feeding unit, a filling unit, a second screen cloth feeding unit, a bottom surface screen cloth feeding unit, an opposite grinding mechanism, a cloth rolling mechanism, a driving unit and a rack, the rack is formed by connecting two side plates and three supporting plates; the driving unit simultaneously drives the two compression rollers and the cloth roller in the opposite rolling mechanism to rotate; first screen cloth is coupled in the first screen cloth feeding unit; second screen cloth is arranged in the second screen cloth feeding unit; the first screen cloth and the second screen cloth are pulled by a cloth roller to sequentially pass through the first supporting plate, the bottom surface screen cloth feeding unit, the second supporting plate, the opposite grinding mechanism and the third supporting plate; a dry mortar material is filled between the first screen cloth and the second screen cloth by a filling unit arranged above the first supporting plate; the bottom surface screen cloth feeding unit adheres bonding screen cloth to the lower end of the second screen cloth; the first screen cloth, the mortar dry material, the second screen cloth and the bonding screen cloth are rolled, packaged and formed through the two pressing rollers and are wound on the cloth winding roller.
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Description

Technical Field

[0001] This utility model belongs to the technical field of building anti-corrosion material production equipment, specifically relating to a composite anti-corrosion felt forming device. Background Technology

[0002] Modern factory buildings are primarily constructed using steel structures. To ensure the building's lifespan, the steel structure columns require anti-corrosion treatment during construction. To further extend this lifespan, cement is used to seal the connection between the steel structure columns and the ground. However, the moisture in the cement can corrode the steel columns, posing a safety hazard. Therefore, anti-corrosion treatment is necessary between the steel columns and the cement sealant. Traditional anti-corrosion methods involve applying anti-corrosion paint to the outer surface of the steel structure. Cement sealing of the steel columns requires the anti-corrosion paint to be fully dry before proceeding. Furthermore, the anti-corrosion paint can affect the adhesion of the cement to the steel columns, negatively impacting construction progress and factory quality. Therefore, a composite anti-corrosion felt fabric that is easy to install is needed. To improve the production speed of this composite anti-corrosion felt fabric, this composite anti-corrosion felt fabric forming device is proposed. Summary of the Invention

[0003] The purpose of this invention is to solve the above-mentioned problems and to provide a composite anti-corrosion felt forming device.

[0004] A composite anti-corrosion felt forming device includes: a first mesh feeding unit, a filler unit, a second mesh feeding unit, a bottom mesh feeding unit, a rolling mechanism, a winding mechanism, a drive unit, and a frame.

[0005] The frame consists of two side plates and a first support plate, a second support plate, and a third support plate; the front and rear end faces of the three support plates are fixedly connected to the two side plates respectively; the upper end faces of the three support plates are on the same horizontal plane.

[0006] The first mesh feeding unit is connected to the central shaft of the first mesh feeding unit; the second mesh feeding unit is provided with the second mesh; the first mesh and the second mesh are pulled by the rolling roller through the first support plate, the bottom mesh feeding unit, the second support plate, the rolling mechanism, and the third support plate in sequence.

[0007] The grinding mechanism is equipped with two pressure rollers that can grind against each other; the fabric winding mechanism is equipped with a fabric winding roller; the driving unit simultaneously drives the two pressure rollers and the fabric winding roller to rotate.

[0008] The filling unit is located above the first support plate; the filling unit fills the space between the first mesh and the second mesh with dry mortar; the bottom mesh feeding unit attaches adhesive mesh to the lower end of the second mesh; the first mesh, dry mortar, second mesh and adhesive mesh are pressed and sealed by two pressure rollers and then wound onto the roll-up roller.

[0009] The frame is provided with a first roller support, a hopper support, a second roller support, a third roller support, a rolling section, and a fabric roll attachment section from left to right. The first mesh fabric feeding unit is located in the first roller support; the filling unit is located in the hopper support; the second mesh fabric feeding unit is located in the second roller support; the bottom mesh fabric feeding unit is located in the third roller support; the rolling mechanism is located in the rolling section; the fabric roll mechanism is located in the fabric roll attachment section; and the drive unit is located on the outer surface of the frame.

[0010] The first mesh feeding unit includes: a first roller groove, a first roll frame, a first roller, and a first mesh; the first roller groove is provided in the first roller support part, and there are two first roller grooves, which are coaxially and symmetrically connected to the two side plates of the first roller support part; the first mesh is rolled on the first roller and can be drawn out from above.

[0011] The filling unit includes: a mortar feed hopper, an auger shaft, and an auger drive motor; the mortar feed hopper is fixed to the hopper support; the upper end of the mortar feed hopper is open, and the lower end of the mortar feed hopper is provided with a mixing chamber, in which the auger shaft is axially connected; the lower end of the arc-shaped mixing chamber is provided with several discharge nozzles; the auger drive motor is located on one side of the mortar feed hopper, and the auger drive motor drives the auger shaft to rotate.

[0012] The packing unit is also provided with a toothed comb plate; the two sides of the upper end of the toothed comb plate are axially connected to the lower part of the hopper support; a toothed comb is provided below the toothed comb plate, and the shape of the toothed comb is wavy or sawtooth; the lower end of the toothed comb abuts against the upper end surface of the first support plate.

[0013] The second mesh feeding unit includes: a second shaft roller groove, a second roll frame, a second shaft roller, a second mesh, and a mesh guide roller; there are two second shaft roller grooves, which are coaxially and symmetrically connected to the two side plates of the second shaft roller support; the mesh guide roller is axially connected to the comb plate; the outer end face of the mesh guide roller is close to the upper end face of the first support plate.

[0014] The bottom mesh feeding unit includes: a third roller groove, a third roller frame, a third roller, and adhesive mesh; there are two third roller grooves.

[0015] Two third-axis roller grooves are coaxially and symmetrically connected to the two side plates of the third-axis roller support; the adhesive mesh can be drawn out from above and attached to the lower end face of the first mesh.

[0016] The rolling mechanism includes: a lower pressure roller, a lower pressure roller gear, a pressure roller drive pulley, an upper pressure roller, and an upper pressure roller gear; the lower pressure roller and the upper pressure roller are arranged in parallel, and their two ends are axially connected to the rolling section; the lower pressure roller gear and the pressure roller drive pulley are fixed on the same side of the lower pressure roller, and the upper pressure roller gear is fixed on one side of the upper pressure roller; the lower pressure roller gear and the upper pressure roller gear mesh.

[0017] The fabric rolling mechanism includes: a fabric roller drive pulley, a fabric roller drive gear, a fabric rolling roller, a fabric rolling roller gear, and a fabric roller clip; the fabric rolling roller has roller shaft mounting grooves on both sides of the mounting part, and a fabric roller drive shaft is provided next to the roller shaft mounting groove; the fabric roller drive pulley is fixedly connected to the fabric roller drive gear, and the fabric roller drive pulley and the fabric roller drive gear are sleeved on the fabric roller drive shaft; the fabric rolling roller gear is fixed to one end of the fabric rolling roller; the fabric rolling roller gear can mesh with the fabric roller drive gear for transmission; one end of the fabric roller clip is shafted above the roller shaft mounting groove; the lower part of the fabric roller clip abuts against the rod of the fabric rolling roller.

[0018] The drive unit includes: a drive motor, a main drive pulley, a first transmission belt, and a second transmission belt; the drive motor is fixed below the third support plate; the main drive pulley is fixed on the shaft of the drive motor; the main drive pulley is provided with two sets of transmission belt grooves; the pressure roller drive pulley and the cloth roller drive pulley are respectively connected to the main drive pulley through the first transmission belt and the second transmission belt; the drive motor drives the lower pressure roller and the cloth winding roller to rotate synchronously.

[0019] This technical solution provides a composite anti-corrosion felt forming device, which includes: a first mesh feeding unit, a filler unit, a second mesh feeding unit, a bottom mesh feeding unit, a rolling mechanism, a winding mechanism, a drive unit, and a frame; the frame is composed of two side plates and three support plates connected together; the drive unit simultaneously drives the two pressure rollers and the winding roller in the rolling mechanism to rotate; the first mesh feeding unit has a first mesh shaft connected to it; the second mesh feeding unit has a second mesh; the first and second meshes are pulled by the winding rollers sequentially through the first support plate, the bottom mesh feeding unit, the second support plate, the rolling mechanism, and the third support plate; the filler unit located above the first support plate fills the space between the first and second meshes with dry mortar; the bottom mesh feeding unit attaches an adhesive mesh to the lower end of the second mesh; the first mesh, dry mortar, second mesh, and adhesive mesh are rolled and sealed by two pressure rollers and then wound onto the winding roller. Attached Figure Description

[0020] Figure 1 This is a diagram showing the usage state of a composite anti-corrosion felt forming device according to this utility model;

[0021] Figure 2 This is a schematic diagram of the left bearing of the overall structure of a composite anti-corrosion felt forming device according to this utility model;

[0022] Figure 3 This is a schematic diagram of the structure of a composite anti-corrosion felt forming device according to the present invention;

[0023] Figure 4 This is a schematic diagram of the rolling mechanism of a composite anti-corrosion felt forming device according to this utility model.

[0024] Figure 5This is a schematic diagram of the right bearing of the overall structure of a composite anti-corrosion felt forming device according to this utility model;

[0025] Figure 6 This is a schematic diagram of the overall structure of the mortar feeding hopper of a composite anti-corrosion felt forming device according to this utility model. Detailed Implementation

[0026] The technical solution will be further described clearly and completely below with reference to the accompanying drawings. The described embodiments are only a part of the technical solution, not all of the embodiments. All other embodiments obtained by those skilled in the art based on this technical solution without creative effort are within the scope of protection of this utility model.

[0027] Example 1

[0028] See Figures 1 to 6 As shown, a composite anti-corrosion felt forming device includes: a first mesh feeding unit, a filler unit, a second mesh feeding unit, a bottom mesh feeding unit, a rolling mechanism, a winding mechanism, a drive unit, and a frame 8.

[0029] The end of one side of the frame 8 is the feeding side, and the end of the other side of the frame 8 is the finished product roll discharge side;

[0030] The first mesh feeding unit, the filler unit, the second mesh feeding unit, the bottom mesh feeding unit, the rolling mechanism, and the winding mechanism are sequentially arranged between the feeding side and the finished product roll discharge side; the drive unit synchronously drives the rolling mechanism and the winding mechanism.

[0031] The first mesh feeding unit includes: a first shaft roller groove 11, a first roll frame 12, a first shaft roller 13, and a first mesh 14;

[0032] The feed side of the frame 8 is provided with a first shaft roller support, and two first shaft roller grooves 11 are provided in the first shaft roller support. The two first shaft roller grooves 11 are symmetrically arranged on the two side plates of the first shaft roller support. The axis lines of the two first shaft roller grooves 11 coincide. The two ends of the first shaft roller are hooked in the first shaft roller grooves 11. The two ends of the first roll frame 12 are provided with first hooking grooves. The two first hooking grooves can coincide with the axis lines of the two first shaft roller grooves 11. The first mesh 14 is wound on the first shaft roller 13, and the two ends of the first shaft roller 13 are sleeved in the first shaft roller grooves 11. The first hooking grooves at both ends of the first roll frame 12 are hooked on the first shaft roller 13. The upper end of the first roll frame 12 is provided with a discharge port, and the first mesh 14 can be led out from the discharge port at the upper end of the first roll frame 12.

[0033] The edge of the first roller frame 12 is fixed to the first shaft roller support by screws; the first roller frame 12 prevents the first shaft roller 13 from coming out of the first shaft roller groove 11.

[0034] The filling unit includes: mortar feed hopper 21, auger shaft 22, auger drive motor 23, and toothed comb plate 24;

[0035] A hopper support is provided next to the first shaft roller groove 11, and the edge of the mortar feed hopper 21 is fixed to the hopper support by means of screw locking or welding.

[0036] The upper end of the mortar feed hopper 21 is open, and the lower end of the mortar feed hopper 21 is an arc-shaped mixing chamber with several discharge nozzles 211 at the lower end of the arc-shaped mixing chamber; the auger shaft 22 is axially connected in the mixing chamber; the auger drive motor 23 is located on one side of the mortar feed hopper 21 and drives the auger shaft 22 to rotate.

[0037] A toothed comb plate shaft connection hole 83 is provided on the side below the hopper support part near the second mesh feeding unit;

[0038] The comb plate 24 has flip shafts at both ends above the comb plate 24 and a comb at the bottom of the comb plate 24. The comb is wavy or sawtooth in shape.

[0039] The flipping shaft of the toothed comb plate 24 is axially connected in the toothed comb plate shaft connection hole 83; that is, the toothed comb plate 24 is axially connected to the side below the mortar feed hopper 21 near the second mesh feeding unit.

[0040] The mortar feed hopper 21 contains dry mortar material, which is made of 0.35-5mm gravel and 100-150 mesh cement.

[0041] The second mesh feeding unit includes: a second shaft roller groove 31, a second roll frame 32, a second shaft roller 33, a second mesh 34, and a mesh guide roller 35;

[0042] A second shaft roller support is provided next to the hopper support; two second shaft roller grooves 31 are provided, and the two second shaft roller grooves 31 are symmetrically arranged on both sides of the second shaft roller support, and the axis lines of the two second shaft roller grooves 31 coincide.

[0043] The second roll frame 32 is provided in two parts, and the two second roll frames 32 can be respectively attached to the two second shaft roll grooves 31; the second mesh fabric 34 is rolled on the second shaft roll 33; the two ends of the second shaft roll 33 are sleeved on the second shaft roll grooves 31; the second roll frame 32 prevents the second shaft roll 33 from falling out of the second shaft roll grooves 31.

[0044] A guide roller shaft connection hole 84 is provided between the second shaft roller groove 31 and the comb plate shaft connection hole 83, and the mesh guide roller 35 is shaft-connected in the guide roller shaft connection hole 84.

[0045] The bottom mesh feeding unit includes: a third shaft roller groove 41, a third roll frame 42, a third shaft roller 43, and an adhesive mesh 44;

[0046] The frame 8 has a third shaft roller support in the middle, and two third shaft roller grooves 41 are provided, which are symmetrically arranged in the third shaft roller support. The axis lines of the two third shaft roller grooves 41 coincide. The third mesh is rolled on the third shaft roller 43. The two ends of the third shaft roller 43 are sleeved in the third shaft roller grooves 41. The third roll frame 42 is fixed on the third shaft roller support.

[0047] The third roll frame 42 has the same structure as the first roll frame 12; the upper end of the third roll frame 42 is provided with a fabric outlet, and the third mesh fabric can be drawn out from the fabric outlet of the third roll frame 42.

[0048] The adhesive mesh 44 is made of polyurethane sealant.

[0049] A first support plate 85 is provided between the first shaft roller support part and the bottom mesh feeding unit; the upper end face of the first roller frame 12 and the upper end face of the third roller frame 42 are smoothly transitioned through the first support plate 85.

[0050] The lower end of the comb rests against the upper surface of the first support plate 85 by its own weight.

[0051] The outer end face of the mesh guide roller 35 is close to the upper end face of the first support plate 85; the second mesh 34 travels on the support plate parallel to the first mesh 14 through the mesh guide roller 35.

[0052] A rolling section is provided next to the third roller support section, and the rolling mechanism is located in the rolling section.

[0053] The rolling mechanism includes: a lower pressure roller 51, a lower pressure roller gear 52, a pressure roller drive pulley 53, an upper pressure roller 54, and an upper pressure roller gear 55;

[0054] The lower pressure roller 51 and the upper pressure roller 54 are arranged in parallel, and the two ends of the lower pressure roller 51 and the upper pressure roller 54 are axially connected to the middle of the rolling section; the lower pressure roller 51 is provided with a second support plate 86 and a third support plate 87 on both sides respectively; the upper end face of the third roller frame 42 and the top end of the lower pressure roller 51 are smoothly transitioned; the top end of the lower pressure roller 51 can smoothly transition with the third support plate 87.

[0055] The lower pressure roller gear 52 and the pressure roller drive pulley 53 are fixed on the same side of the lower pressure roller 51; the upper pressure roller gear 55 is fixed on one side of the upper pressure roller 54; the lower pressure roller gear 52 and the upper pressure roller gear 55 mesh.

[0056] The finished roll output side of the frame 8 is provided with a roll roller attachment part, and the roll roller attachment part is provided with roller shaft attachment grooves 88 on both sides; the other end of the third support plate 87 smoothly transitions to the roller shaft attachment groove 88.

[0057] The fabric rolling mechanism includes: a fabric roller drive pulley 61, a fabric roller drive gear 62, a fabric rolling roller 63, a fabric rolling roller gear 64, and a fabric roller clip 65;

[0058] A fabric roller drive shaft 881 is provided next to the roller shaft mounting groove 88. The fabric roller drive pulley 61 is fixedly connected to the fabric roller drive gear 62. The fabric roller drive pulley 61 and the fabric roller drive gear 62 are sleeved on the fabric roller drive shaft 881. The fabric roll gear 64 is fixed to one end of the fabric roll roller 63. The fabric roll gear 64 can mesh with the fabric roller drive gear 62 for transmission. One end of the fabric roller clip 65 is shafted above the roller shaft mounting groove 88. The lower part of the fabric roller clip 65 can abut against the rod of the fabric roll roller 63.

[0059] The drive unit includes: a drive motor 71, a main drive pulley 72, a first transmission belt 73, and a second transmission belt 74;

[0060] The drive motor 71 is fixed below the third support plate 87; the main drive pulley 72 is fixed on the shaft of the drive motor 71;

[0061] The main drive pulley 72 is provided with at least two sets of transmission belt grooves; one end of the first transmission belt 73 and the second transmission belt 74 are respectively sleeved in the two sets of transmission belt grooves; the other end of the first transmission belt 73 is sleeved on the pressure roller drive pulley 53; the other end of the second transmission belt 74 is sleeved on the cloth roller drive pulley 61.

[0062] The drive motor 71 drives the lower pressure roller 51 and the fabric roll roller 63 to rotate synchronously via two transmission belts.

[0063] The first and second mesh fabrics are made of polypropylene PP yarn; the mesh density of the first and second mesh fabrics is 100µm.

[0064] This technical solution provides a composite anti-corrosion felt forming device, which is a device for manufacturing composite anti-corrosion felt. The manufactured composite anti-corrosion felt can be laid on walls or building columns as a surface anti-corrosion reinforcement material. When in use, water is sprayed onto the second mesh and left to cure. The mesh layer and adhesive layer form a corrosion-resistant layer on the surface of the building column and increase the adsorption of cement on the surface of the building column, so as to encapsulate the cement of the building column or for subsequent construction.

[0065] The specific embodiments described above do not constitute a limitation on the scope of protection of this invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this invention should be included within the scope of protection of this invention.

Claims

1. A composite anti-corrosion felt forming device, comprising: The machine consists of a first mesh feeding unit, a filler unit, a second mesh feeding unit, a bottom mesh feeding unit, a rolling mechanism, a winding mechanism, a drive unit, and a frame. Its features are: The frame (8) is composed of two side plates and a first support plate (85), a second support plate (86), and a third support plate (87); the front and rear end faces of the three support plates are fixedly connected to the two side plates respectively; the upper end faces of the three support plates are on the same horizontal plane. The first mesh feeding unit is connected to the central shaft of the first mesh (14); the second mesh feeding unit is provided with a second mesh (34); the first mesh (14) and the second mesh (34) are pulled by the rolling roller (63) and pass through the first support plate (85), the bottom mesh feeding unit, the second support plate (86), the rolling mechanism, and the third support plate (87) in sequence. The grinding mechanism is provided with two pressure rollers that can grind against each other; the fabric rolling mechanism is provided with a fabric rolling roller; the driving unit simultaneously drives the two pressure rollers and the fabric rolling roller (63) to rotate. The filling unit is located above the first support plate (85); the filling unit fills the space between the first mesh (14) and the second mesh (34) with dry mortar; the bottom mesh feeding unit attaches adhesive mesh (44) to the lower end of the second mesh (34); the first mesh (14), dry mortar, second mesh (34) and adhesive mesh (44) are pressed and sealed by two pressure rollers and rolled up on the roll roller (63).

2. The composite anti-corrosion felt forming device according to claim 1, characterized in that: The frame (8) is provided with a first shaft roller support, a hopper support, a second shaft roller support, a third shaft roller support, a rolling section, and a fabric roll attachment section from left to right; a first mesh fabric feeding unit is located in the first shaft roller support; a filling unit is located in the hopper support; a second mesh fabric feeding unit is located in the second shaft roller support; a bottom mesh fabric feeding unit is located in the third shaft roller support; a rolling mechanism is located in the rolling section; a fabric roll mechanism is located in the fabric roll attachment section; and a drive unit is located on the outer surface of the frame.

3. The composite anti-corrosion felt forming device according to claim 2, characterized in that: The first mesh feeding unit includes: a first roller groove (11), a first roll frame (12), a first roller (13), and a first mesh (14); the first roller groove (11) is provided in the first roller support part, and there are two first roller grooves (11), which are coaxially and symmetrically connected to the two side plates of the first roller support part; the first mesh (14) is wound on the first roller (13), and the first mesh (14) can be drawn out from above.

4. The composite anti-corrosion felt forming device according to claim 2, characterized in that: The filling unit includes: a mortar feed hopper (21), an auger shaft (22), and an auger drive motor (23); the mortar feed hopper (21) is fixed to the hopper support; the upper end of the mortar feed hopper (21) is open, and the lower end of the mortar feed hopper (21) is provided with a mixing chamber, and the auger shaft (22) is axially connected in the mixing chamber; the lower end of the arc-shaped mixing chamber is provided with several discharge nozzles (211); the auger drive motor (23) is located on one side of the mortar feed hopper (21), and the auger drive motor (23) drives the auger shaft (22) to rotate.

5. The composite anti-corrosion felt forming device according to claim 4, characterized in that: The filling unit is also provided with a toothed comb plate (24); the two sides of the upper end of the toothed comb plate (24) are axially connected to the lower part of the hopper support; a toothed comb is provided below the toothed comb plate (24), and the shape of the toothed comb is wavy or sawtooth; the lower end of the toothed comb abuts against the upper end surface of the first support plate (85).

6. The composite anti-corrosion felt forming device according to claim 2, characterized in that: The second mesh feeding unit includes: a second shaft roller groove (31), a second roll frame (32), a second shaft roller (33), a second mesh (34), and a mesh guide roller (35); there are two second shaft roller grooves (31), and the two second shaft roller grooves (31) are coaxially and symmetrically connected to the two side plates of the second shaft roller support; the mesh guide roller (35) is axially connected to the side of the comb plate (24); the outer end face of the mesh guide roller (35) is close to the upper end face of the first support plate (85).

7. The composite anti-corrosion felt forming device according to claim 2, characterized in that: The bottom mesh feeding unit includes: a third shaft roller groove (41), a third roll frame (42), a third shaft roller (43), and adhesive mesh (44); the third shaft roller groove (41) is provided in two parts. Two third-axis roller grooves (41) are coaxially and symmetrically connected to the two side plates of the third-axis roller support; the adhesive mesh (44) can be drawn out from above and attached to the lower end face of the first mesh (14).

8. The composite anti-corrosion felt forming device according to claim 2, characterized in that: The rolling mechanism includes: a lower pressure roller (51), a lower pressure roller gear (52), a pressure roller drive pulley (53), an upper pressure roller (54), and an upper pressure roller gear (55); the lower pressure roller (51) and the upper pressure roller (54) are arranged in parallel, and the two ends of the lower pressure roller (51) and the upper pressure roller (54) are axially connected in the rolling part; the lower pressure roller gear (52) and the pressure roller drive pulley (53) are fixed on the same side end of the lower pressure roller (51), and the upper pressure roller gear (55) is fixed on one side end of the upper pressure roller (54); the lower pressure roller gear (52) and the upper pressure roller gear (55) mesh.

9. The composite anti-corrosion felt forming device according to claim 8, characterized in that: The fabric rolling mechanism includes: a fabric roller drive pulley (61), a fabric roller drive gear (62), a fabric rolling roller (63), a fabric rolling roller gear (64), and a fabric roller clip (65); the fabric rolling roller has roller shaft mounting grooves (88) on both sides of the mounting part, and a fabric roller drive shaft (881) is provided next to the roller shaft mounting groove (88). The fabric roller drive pulley (61) is fixedly connected to the fabric roller drive gear (62), and the fabric roller drive pulley (61) and the fabric roller drive gear (62) are sleeved on the fabric roller drive shaft (881); the fabric rolling roller gear (64) is fixed to one end of the fabric rolling roller (63); the fabric rolling roller gear (64) can mesh with the fabric roller drive gear (62) for transmission; one end of the fabric roller clip (65) is shafted above the roller shaft mounting groove (88); the lower part of the fabric roller clip (65) abuts against the shaft of the fabric rolling roller (63).

10. The composite anti-corrosion felt forming device according to claim 9, characterized in that: The drive unit includes: a drive motor (71), a main drive pulley (72), a first transmission belt (73), and a second transmission belt (74); the drive motor (71) is fixed below the third support plate (87); the main drive pulley (72) is fixed on the shaft of the drive motor (71); the main drive pulley (72) is provided with two sets of transmission belt grooves; the pressure roller drive pulley (53) and the cloth roller drive pulley (61) are connected to the main drive pulley (72) through the first transmission belt (73) and the second transmission belt (74) respectively; the drive motor (71) drives the lower pressure roller (51) and the cloth roll roller (63) to rotate synchronously.