Post-treatment device for grid laying

By designing a post-processing device for grid laying driven by a vibration motor, the problems of protrusions, wrinkles, and uneven adhesive application during grid laying were solved. This achieved efficient flattening and uniform adhesive application, improved the adhesion and bonding strength between the grid and the base layer, and extended the service life of the project.

CN224106390UActive Publication Date: 2026-04-10SICHUAN RUITES NEW FIREPROOF MATERIAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In the existing grid laying process, bulges and wrinkles are prone to occur, and air residue or poor adhesion between the grid and the base layer affects the quality and service life of the project. Traditional manual smoothing is inefficient and has prominent problems of uneven adhesive application.

Method used

Design a post-processing device that includes a vibrating section and a flattening section. The vibrating motor drives the vibrating cam to generate vibration, which, together with a rubber or sponge roller, flattens the grid and applies adhesive, eliminating protrusions and wrinkles, and improving the adhesion and adhesive penetration.

Benefits of technology

It effectively eliminates grid protrusions and wrinkles, improves the fit between the grid and the base layer, enhances reinforcement efficiency, extends the service life of the project, ensures flatness and bonding strength, and improves construction quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a post-processing device for grid laying, and relates to the technical field of fireproof plate production, the device is composed of a paving part and a vibration part, the paving part comprises a paving plate, a paving worm gear, a paving support, a paving roller and the like, and the position of the paving roller can be adjusted; the vibration part comprises a vibration mounting rod, a vibration motor shell, a vibration motor, a vibration cam and the like and can generate vibration. Compared with the prior art, the flattening worm is rotated to be matched with flattening of the rubber roller and work of the vibration motor, the problems of grid protruding and wrinkling can be efficiently solved, and the reinforcing efficiency is enhanced; air can be extruded through rolling and vibration, and the attaching degree of the grid and the base layer is improved; various use modes are adopted, for example, different rollers are selected to cooperate with vibration, so that the post-treatment efficiency and quality are optimized; a sponge roller is matched with vibration gluing, so that the grid gluing effect is improved; operation is flexible, the roller can be replaced, the position of the flattening roller can be adjusted, and diversified construction requirements are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to fireproof board production technical field, specifically is a kind of grid laying with post-processing device. BACKGROUND

[0002] In the field of modern infrastructure construction and building construction, the importance of grid laying engineering is increasingly prominent. Whether it is the geogrid laying used to enhance the stability of roadbed in road construction or the fireproof plate grid installation to ensure fire safety in building construction, the quality of grid laying is directly related to the stability, durability and functionality of the project.

[0003] In the prior art, the utility model patent with publication number CN219602878U discloses a mesh laying device, which realizes extrusion processing in the mesh laying process through the design of the rack, the driving hydraulic rod, the extrusion plate and the arc-shaped extrusion piece, effectively removes bubbles in the cloth, makes the laying surface more flat, and significantly improves the laying effect and mesh quality.

[0004] However, there are still many problems to be solved in the current grid laying technology. During the laying process, the grid is prone to bulge and wrinkle, which not only seriously affects the appearance of the grid, but also reduces its reinforcement efficiency on the base. The bulge and wrinkle parts are prone to form stress concentration points, and when the engineering structure bears load, these parts are prone to damage, threatening the stability of the overall structure. At the same time, if air is left between the grid and the base or they are not tightly attached, the cooperative working ability of the two will be greatly weakened, resulting in a shortened service life of the project. In the post-processing stage of grid laying, the existing methods are not satisfactory. Manual flattening is inefficient and cannot guarantee consistent flatness in different areas; simple rolling devices can only flatten the surface initially and cannot completely eliminate air and fine wrinkles between the grid and the base. In addition, in the grid glue application process, the traditional manual application method has the problems of uneven glue distribution and difficulty in fully penetrating the grid gaps, which greatly affects the bonding strength of the grid and other materials and limits the further improvement of the project quality. UTILITY MODEL CONTENTS

[0005] To solve the above technical problems, the utility model provides the following technical scheme: a grid laying post-processing device, which comprises a vibration part for generating vibration, the vibration part is arranged on a flattening part for flattening the grid, and the flattening part is symmetrically arranged along the vibration part; the flattening part comprises a flattening plate, a flattening worm gear is rotatably arranged on the flattening plate, a flattening support is fixedly arranged on the flattening worm gear, and a flattening roller is rotatably arranged on the flattening support; the flattening worm gear is engaged with a flattening worm rotatably arranged on the flattening plate to adjust the position thereof; the vibration part comprises a vibration mounting rod rotatably arranged on the flattening plate, the other end of the vibration mounting rod is fixedly arranged on a vibration motor housing, a vibration motor is fixedly arranged on the vibration motor housing, and a vibration cam is fixedly arranged on the output shaft of the vibration motor.

[0006] Further, the two sides of the vibration motor shell are arranged on the flat plate through vibration springs, the flat plate is rectangular, and at least two V-shaped flow guide grooves are arranged on the flat plate.

[0007] Further, the flat rolling cylinder is arranged in the flow guide groove, the flat rolling cylinder is cylindrical, and a mounting groove is arranged on the outer side of the flat rolling cylinder.

[0008] Further, the vibration motor is a double-head motor with two output ends, and the vibration cam is made of cast iron material.

[0009] Further, the outer side of the flat rolling cylinder is detachably provided with a rubber roller or a sponge roller for laying the grid through the mounting groove.

[0010] The beneficial effects of the utility model compared with the prior art are:

[0011] 1. Efficiently solve the laying quality problem; for the convex and wrinkle phenomenon prone to occur in the existing grid laying, the device effectively deals with it through unique design. In use mode one, the operator can adjust the position of the flat rolling cylinder by rotating the flat worm, cooperate with the rubber roller to flatten the convex and wrinkle part of the grid, at the same time, the vibration motor of the vibration part drives the vibration cam to vibrate, so that the rubber roller applies uniform pressure, not only can eliminate the appearance defects of the grid, but also can enhance the reinforcement efficiency of the grid to the base layer, reduce the stress concentration point, and ensure the stability of the engineering structure.

[0012] 2. Improve the adhesion of the grid and the base layer; during rolling and vibration, the rolling pressure and vibration can effectively extrude the air between the grid and the base layer, and significantly improve the adhesion of the two. This feature enhances the cooperative working ability of the grid and the base layer, prolongs the service life of the project, and ensures the structural stability of the project under load.

[0013] 3. Optimize the efficiency and quality of post-processing; compared with the low efficiency and difficult uniformity of traditional manual flattening, and the poor effect of simple rolling device, the multiple use modes of the device provide a better solution. Through the selection of different rollers and the cooperation of vibration function, whether it is simply flattening the grid or realizing flat laying during gluing process, it can be efficiently completed, and the uniformity of the grid in each area is guaranteed, and the overall laying quality is improved.

[0014] 4. Improved grit application effect: In terms of grit application, Mode 2 utilizes a sponge roller with a reciprocating mechanism to evenly apply resin adhesive to the grit and ensure it fully penetrates the gaps. Simultaneously, the vibration generated by the vibrating motor assists in filling the small gaps in the grit, solving the problems of uneven distribution and insufficient penetration associated with traditional manual adhesive application. This significantly enhances the bonding strength between the grit and other materials, thus improving overall project quality.

[0015] 5. Flexible operation and diverse functions: The device can achieve multiple functions, including grid flattening, adhesive application, and leveling, by changing the roller type (rubber roller or sponge roller) and adjusting the position of the leveling roller, according to different construction needs. In addition, the independent operation mode of the vibrating unit (use mode three) can generate uniform vibration through the paving plate to fully level the grid, ensuring the flatness and uniformity of the laying and meeting the requirements of diverse construction scenarios. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0017] Figure 2 This is a frontal view of the overall structure of this utility model.

[0018] Figure 3 This is a side view of the overall structure of this utility model.

[0019] Figure 4 This is a partial structural diagram of the paving section of this utility model.

[0020] Reference numerals: 1-flattening part; 2-vibrating part; 101-flattening plate; 102-flattening roller; 103-flattening bracket; 104-flattening worm gear; 105-flattening worm; 201-vibration mounting rod; 202-vibration motor housing; 203-vibration spring; 204-vibration motor; 205-vibration cam. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] like Figures 1 to 4 As shown, a post-processing device for laying grid includes a vibration part 2 for generating vibration. The vibration part 2 is disposed on a leveling part 1 for leveling the grid, and the leveling part 1 is symmetrically arranged along the vibration part 2.

[0023] As Figures 1 to 4 shown, the flattening part 1 includes flattening plate 101, flattening roller 102, flattening support 103, flattening worm gear 104, flattening worm 105; flattening plate 101 is rectangular, at least two V-shaped flow guide grooves are arranged on the flattening plate 101, the flattening worm gear 104 is rotatably arranged on the flattening plate 101, the flattening support 103 is fixedly arranged on the flattening worm gear 104, and the flattening roller 102 is rotatably arranged on the flattening support 103; the flattening worm gear 104 is engaged with the flattening worm 105 rotatably arranged on the flattening plate 101 to adjust the position thereof; the flattening roller 102 is arranged in the flow guide groove, the flattening roller 102 is cylindrical, the outer side of the flattening roller 102 is provided with a mounting groove, and the outer side of the flattening roller 102 is detachably provided with a rubber roller or a sponge roller for flattening the grid through the mounting groove.

[0024] As Figures 1 to 4 shown, the vibration part 2 includes vibration mounting rod 201, vibration motor housing 202, vibration spring 203, vibration motor 204, vibration cam 205; the vibration mounting rod 201 is rotatably arranged on the flattening plate 101, one end of the vibration mounting rod 201 is fixedly arranged on the vibration motor housing 202, the vibration motor housing 202 is fixedly provided with the vibration motor 204, and the output shaft of the vibration motor 204 is fixedly provided with the vibration cam 205. The vibration motor housing 202 is arranged on the flattening plate 101 through the vibration spring 203 on both sides, the vibration motor 204 is a double-head motor with two output ends, the vibration cam 205 is made of cast iron material.

[0025] As Figures 1 to 4 shown, the utility model discloses a kind of grid laying post-processing device, and its working principle is as follows:

[0026] The use mode one; after the second time laying the grid, place the device on the laid grid, install the rubber roller on the flattening roller 102 through the installation slot according to the requirement, after the installation is completed, the operator manually rotates the flattening worm 105, the flattening worm 105 rotates to drive the flattening worm gear 104, and then drives the flattening support 103 and the flattening roller 102 to move, so that the flattening roller 102 is in the V-shaped flow guide groove, the operator pushes the device to reciprocate on the grid, and the protruding or wrinkled part on the grid is flattened, so that it is better attached to the surface of the base layer, and at the same time, the vibration motor 204 is started, the vibration motor 204 rotates to drive the vibration cam 205 to rotate, when the vibration cam 205 rotates, the centrifugal force is generated due to the gravity offset, and then vibration is generated, so that the rubber roller applies uniform pressure to the grid which is not flattened, and the protruding or wrinkled part in the grid is flattened, so that it is better attached to the surface of the base layer, thereby improving the flatness of the grid laying and ensuring the smooth progress of the subsequent process. At the same time, during the rolling and vibration process, the pressure and vibration of the roller make the air between the grid and the base layer be squeezed out, the grid can be more closely contacted with the base layer, and the adhesion between the two is improved, which is beneficial to improve the stability of the whole structure.

[0027] The use mode two; after the second time laying the grid, place the device on the laid grid, install the sponge roller on the flattening roller 102 through the installation slot according to the requirement, after the installation is completed, the operator manually rotates the flattening worm 105, the flattening worm 105 rotates to drive the flattening worm gear 104, and then drives the flattening support 103 and the flattening roller 102 to move, so that the flattening roller 102 is in the V-shaped flow guide groove, the operator pushes the device to reciprocate on the grid, and at the same time, the resin glue solution is poured on the sponge roller, the reciprocating device makes the sponge roller uniformly apply the resin glue solution on the grid, so that the resin glue solution penetrates into the gap of the grid, and after solidification, the grid and other components of the fireproof plate can be closely combined, and at the same time, the grid is flattened, so that the surface is more smooth and flat. In this process, the vibration motor 204 can also be started, the vibration motor 204 rotates to drive the vibration cam 205 to rotate, when the vibration cam 205 rotates, the centrifugal force is generated due to the gravity offset, and then vibration is generated, which helps the resin glue solution to fill the small gap on the grid, and realizes the flat laying of the grid.

[0028] Use mode three; the operator turns the flattening worm 105, so that the flattening worm 105 drives the flattening worm gear 104, the flattening support 103, the flattening roller 102 away from the flattening plate 101, at this time, the vibration motor 204 is started, the vibration motor 204 rotates and drives the vibration cam 205 to rotate, when the vibration cam 205 rotates, the centrifugal force is generated due to the gravity center offset, and then the vibration is generated, so that the flattening plate 101 generates the vibration, the flattening plate 101 generates the vibration and carries out the flattening again to the grid, the flattening plate 101 can generate the relatively uniform vibration, so that the grid as a whole receives the consistent vibration effect. It is helpful for the grid to be fully adjusted at each part, avoids the local unevenness or uneven force condition, so as to ensure the flatness and uniformity of the grid laying.

Claims

1. A post-processing device for grid laying, characterized by: The utility model provides a grid paving device, including the vibration part (2) for generating vibration, vibration part (2) sets up on the paving part (1) for paving grid, paving part (1) is symmetrically arranged along vibration part (2); The paving part (1) comprises a paving plate (101), a paving worm wheel (104) is rotatably arranged on the paving plate (101), a paving support (103) is fixedly arranged on the paving worm wheel (104), and a paving roller (102) is rotatably arranged on the paving support (103); the paving worm wheel (104) is engaged with a paving worm (105) rotatably arranged on the paving plate (101) to adjust the position of the paving worm wheel (104); The vibration part (2) comprises a vibration mounting rod (201) rotatably arranged on the paving plate (101), the other end of the vibration mounting rod (201) is fixedly arranged on a vibration motor shell (202), a vibration motor (204) is fixedly arranged on the vibration motor shell (202), and a vibration cam (205) is fixedly arranged on the output shaft of the vibration motor (204).

2. A post-processing device for grid laying according to claim 1, characterized in that: Both sides of the vibration motor shell (202) are arranged on the paving plate (101) through vibration springs (203), the paving plate (101) is rectangular, and at least two V-shaped flow guide grooves are arranged on the paving plate (101).

3. A post-processing device for grid laying according to claim 2, characterized in that: The paving roller (102) is arranged in the flow guide groove, the paving roller (102) is in a cylindrical shape, and a mounting groove is arranged on the outer side of the paving roller (102).

4. A post-processing device for grid laying according to claim 3, characterized in that: The vibration motor (204) is a double-head motor with two output ends, and the vibration cam (205) is made of cast iron material.

5. A post-processing device for grid laying according to claim 4, characterized in that: The outer side of the paving roller (102) is detachably provided with a rubber roller or a sponge roller for paving the grid through the mounting groove.

Citation Information

Patent Citations

  • Gridding cloth laying device

    CN219602878U