A patterned rubber roller for a metal mesh braiding machine

By using patterned rubber rollers and improving the installation structure in metal mesh weaving machines, friction is enhanced, the problem of mesh slippage is solved, and weaving stability and efficiency are improved.

CN224542996UActive Publication Date: 2026-07-24ANPING COUNTY FANGYI WIRE MESH MACHINERY MANUFACTURING FACTORY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANPING COUNTY FANGYI WIRE MESH MACHINERY MANUFACTURING FACTORY
Filing Date
2025-08-17
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

In existing metal mesh weaving machines, the friction between the three rubber rollers is insufficient, causing the mesh surface to slip and making it impossible to hold stably, thus affecting weaving efficiency.

Method used

A patterned rubber roller is used as the thickest roller, and the friction between the rollers is enhanced by improving the installation structure to ensure stable mesh tension.

Benefits of technology

This improves the stability and weaving efficiency of metal mesh weaving machines.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a metal net braider belt patterned rubber roller, its characterized in that: including for metal net braider's machine side plate, rubber roller side plate, rubber roller seat, bearing, mounting screw, rubber roller, press roll bearing, press roll side plate, press roll screw and fastening screw, the utility model discloses a pattern structure has been arranged to the thickest rubber roller of three rubber rollers, like this has increased the net surface tension in the process of braiding metal net, thereby make metal net braider can stably braid metal net, has improved the net efficiency.
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Description

Technical Field

[0001] This utility model belongs to the technical field of metal mesh weaving machines, specifically relating to a patterned rubber roller for a metal mesh weaving machine. Background Technology

[0002] Currently, metal mesh weaving machines in this field typically use three rubber rollers and are not equipped with patterned rollers. During the operation of the metal mesh weaving machine, when the frictional force generated by the compression between the three rubber rollers is less than the mesh tension, the mesh surface tends to slide backward, making it difficult to clamp the mesh and stably complete the metal mesh weaving. Therefore, this application improves the structure. Utility Model Content

[0003] The purpose of this invention is to provide a patterned rubber roller for a metal mesh weaving machine to solve the problems mentioned in the background art.

[0004] This utility model provides the following technical solution: a patterned rubber roller for a metal mesh weaving machine, characterized in that it includes a machine side plate, a rubber roller side plate, a rubber roller seat, a bearing, mounting screws, a rubber roller, a pressure roller bearing, a pressure roller side plate, a pressure roller screw, and fastening screws for the metal mesh weaving machine; The bearing is installed in the rubber roller seat and the rubber roller side plate is fixed to the machine side plate by mounting screws. The rubber roller includes a patterned rubber roller, an upper pressure roller and a lower pressure roller. Pressure roller bearings are installed at both ends of the upper pressure roller and the lower pressure roller. The pressure roller side plate is installed on the outside of the pressure roller bearing by pressure roller screws. The pressure roller side plate installed on the pressure roller bearing is installed on the rubber roller side plate by fastening screws.

[0005] Preferably, the side plate of the rubber roller has a first mounting hole for shaft connection of the patterned rubber roller and a second mounting hole and a third mounting hole for shaft connection of the upper pressure roller and the lower pressure roller, respectively.

[0006] Preferably, the machine side plate has a corresponding side plate hole that corresponds to the first mounting hole.

[0007] Preferably, the pressure roller bearing and the pressure roller side plate have corresponding pressure roller screw holes.

[0008] Preferably, the pressure roller side plate and the rubber roller side plate have corresponding fastening screw holes.

[0009] Preferably, the rubber roller seat, the machine side plate, and the rubber roller side plate have corresponding mounting screw holes.

[0010] The beneficial effects of this utility model are: This application selects the thickest of the three rubber rollers and arranges a pattern structure, which increases the mesh tension during the weaving process, thereby enabling the metal mesh weaving machine to weave the metal mesh stably and improving the weaving efficiency. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the structure of this application; Figure 2 for Figure 1 Schematic diagram of the exploded structure; Figure 3 This is a partial schematic diagram of a patterned rubber roller.

[0012] In the diagram: machine side plate 1, rubber roller side plate 2, first mounting hole 21, second mounting hole 22, third mounting hole 23, rubber roller seat 3, corresponding hole 31 on the side plate, bearing 4, mounting screw 5, patterned rubber roller 6, upper pressure roller 61, lower pressure roller 62, pressure roller bearing 63, pressure roller side plate 64, pressure roller screw 65, fastening screw 66, pressure roller screw hole 67, fastening screw hole 68. Detailed Implementation Example

[0013] Please see Figure 1-3 As shown, the technical solution provided by this utility model is: a patterned rubber roller for a metal mesh weaving machine.

[0014] The applicant and inventors have long been engaged in the design and development of metal mesh weaving machines. In practice, metal mesh weaving machines in this field typically use three rubber rollers, without patterned rollers. During the operation of the metal mesh weaving machine, when the frictional force generated by the compression between the three rubber rollers is less than the mesh tension, the mesh surface easily slides backward, making it difficult to clamp and stably complete the metal mesh weaving. Therefore, this application improves the structure by not only using patterned rubber rollers to increase the mesh tension during the weaving process, but also modifying the structure for installing the rubber rollers, resulting in a more stable and efficient metal mesh weaving machine.

[0015] The innovation of this application lies in the following: including a machine side plate 1, a rubber roller side plate 2, a rubber roller seat 3, a bearing 4, a mounting screw 5, a rubber roller, a pressure roller bearing 63, a pressure roller side plate 64, a pressure roller screw 65, and a fastening screw 66 for a metal mesh weaving machine. The bearing 4 is installed inside the rubber roller seat 3 and the rubber roller side plate 2 is fixed to the machine side plate 1 by mounting screws 5. The rubber roller seat 3, the machine side plate 1, and the rubber roller side plate 2 have corresponding mounting screw holes. The machine side plate and the rubber roller side plate are arranged opposite each other. In this embodiment, three rubber rollers are included, namely a patterned rubber roller 6, an upper pressure roller 61, and a lower pressure roller 62. The cross-sectional diameter of the patterned rubber roller is larger than that of the upper or lower pressure roller, so the patterned rubber roller is the thickest rubber roller. Pressure roller bearings 63 are respectively installed at both ends of the upper pressure roller 61 and the lower pressure roller 62. The pressure roller side plate 64 is installed on the outside of the pressure roller bearing 63 by pressure roller screws 65. The pressure roller bearing 63 and the pressure roller side plate 64 have corresponding pressure roller screw holes to form a fixed installation structure. The pressure roller side plate installed on the pressure roller bearing is installed on the rubber roller side plate 2 by several fastening screws 66. The pressure roller side plate 64 and the rubber roller side plate 2 have corresponding fastening screw holes for easy installation.

[0016] In the above installation structure, the side plate of the rubber roller has a first mounting hole 21 for shaft connection of the patterned rubber roller and a second mounting hole 22 and a third mounting hole 23 for shaft connection of the upper pressure roller and the lower pressure roller, respectively. The machine side plate has a corresponding side plate hole 31 corresponding to the first mounting hole. Therefore, installation is convenient.

[0017] Working Principle: During installation, the bearing is installed inside the rubber roller seat, and the rubber roller side plate is fixed to the inner side of the oppositely positioned machine side plate using mounting screws. This embodiment also uses three rollers. Unlike existing market technologies, this application improves the structure of the thickest pressure roller by using a patterned rubber roller. Since pressure roller bearings are installed at both ends of the upper and lower pressure rollers, the pressure roller side plate is installed on the outside of the pressure roller bearings using pressure roller screws. The pressure roller side plate installed on the pressure roller bearings is then installed on the rubber roller side plate using fastening screws. During operation, the upper pressure roller, lower pressure roller, and patterned rubber roller work together to press against the mesh surface. The patterned rubber roller increases the friction with the mesh surface, thereby achieving the tension required for weaving the mesh.

[0018] Following the principle of "application first, production later," physical molds related to this application have been produced. If you require assistance with this application, please contact the applicant.

[0019] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A patterned rubber roller for a metal mesh weaving machine, characterized in that: Includes machine side plates, rubber roller side plates, rubber roller seats, bearings, mounting screws, rubber rollers, pressure roller bearings, pressure roller side plates, pressure roller screws, and fastening screws for metal mesh weaving machines; The bearing is installed in the rubber roller seat and the rubber roller side plate is fixed to the machine side plate by mounting screws. The rubber roller includes a patterned rubber roller, an upper pressure roller and a lower pressure roller. Pressure roller bearings are installed at both ends of the upper pressure roller and the lower pressure roller. The pressure roller side plate is installed on the outside of the pressure roller bearing by pressure roller screws. The pressure roller side plate installed on the pressure roller bearing is installed on the rubber roller side plate by fastening screws.

2. The patterned rubber roller for a metal mesh weaving machine according to claim 1, characterized in that: The side plate of the rubber roller has a first mounting hole for shaft connection of the patterned rubber roller and a second and a third mounting hole for shaft connection of the upper pressure roller and the lower pressure roller, respectively.

3. A patterned rubber roller for a metal mesh weaving machine according to claim 1, characterized in that: The machine side plate has corresponding holes that correspond to the first mounting hole.

4. A patterned rubber roller for a metal mesh weaving machine according to claim 1, characterized in that: The pressure roller bearing and the pressure roller side plate have corresponding pressure roller screw holes.

5. A patterned rubber roller for a metal mesh weaving machine according to claim 1, characterized in that: The pressure roller side plate and the rubber roller side plate have corresponding fastening screw holes.

6. A patterned rubber roller for a metal mesh weaving machine according to claim 1, characterized in that: The rubber roller seat, machine side plate, and rubber roller side plate are provided with corresponding mounting screw holes.