High-wear-resistance multi-layer composite structure type Teflon conveyor belt
By using a multi-layer composite structure design, including a combination of rubber layers, reinforcing ribs, and wear-resistant layers, the problem of poor wear resistance of conveyor belts is solved, achieving high wear resistance and strength of the conveyor belts and ensuring the smooth transportation of materials.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-07
AI Technical Summary
Conveyor belts have poor wear resistance and are prone to wear, which affects the convenience of material transportation.
The conveyor belt adopts a multi-layer composite structure design, which includes a combination of rubber layer, reinforcing layer, reinforcing ribs and wear-resistant layer. The overall strength and wear resistance of the conveyor belt are enhanced by the staggered arrangement of reinforcing ribs and the protection of the locking edge layer.
It improves the wear resistance and overall strength of the conveyor belt, preventing it from breaking or wearing out during material transport and ensuring smooth material transportation.
Smart Images

Figure CN224090943U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a conveying belt technical field, concretely to a high wear -resisting multilayer composite structure type teflon conveying belt. BACKGROUND
[0002] The conveying belt is also called the conveying belt, and is a rubber and fiber, metal composite product or a plastic and fabric composite product used for the belt conveying belt to bear and convey materials. The conveying belt is widely used in cement, coking, metallurgy, chemical industry, steel and other industries with short conveying distance and small conveying capacity. With the continuous progress of industrial technology, the material and structure of the conveying belt body have been significantly improved. As a key component of the material conveying system, the development of the conveying belt body is closely related to the demand of industrial production. In order to adapt to different conveying environments and material characteristics, the structure of the conveying belt body is increasingly diversified. However, the wear resistance of the conveying belt is poor, which can easily cause wear on the surface of the conveying belt, making it inconvenient to use and inconvenient for the subsequent transportation of the conveying belt. UTILITY MODEL CONTENT
[0003] The utility model discloses a kind of high wear-resistant multilayer composite structure type teflon conveying belt, to solve the problem that poor wear resistance is proposed in the above background art, easily make the wear on the surface of the conveying belt, use more inconvenient, inconvenient for the subsequent transportation of material of conveying belt.
[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of high wear-resistant multilayer composite structure type teflon conveying belt, including rubber layer one, the surface of the rubber layer one is connected with reinforcing layer one, and reinforcing rib one is inlaidly installed on the surface of reinforcing layer one;
[0005] The surface of the reinforcing layer one is fixedly connected with reinforcing layer two, and reinforcing rib two is inlaidly installed on the surface of reinforcing layer two, the surface of the reinforcing layer two is fixedly connected with rubber layer two, and wear-resistant layer is arranged on the surface of the rubber layer two, the surface of the rubber layer one is installed with wear-resistant layer, the surface of the rubber layer one and the rubber layer two is all provided with lock edge layer.
[0006] Preferably, the rubber layer one is base layer, the top surface of the rubber layer one is installed with reinforcing layer one, and wear-resistant layer is arranged on the bottom surface of the rubber layer one, the wear-resistant layer is symmetrically arranged on the two sides of the rubber layer one with reinforcing layer one.
[0007] By the above technical scheme, wear-resistant layer is used to wear-resistant rubber layer one surface, improve the practicability of device.
[0008] Preferably, the outside of the reinforcing layer one is connected with lock edge layer, and reinforcing rib one is arranged on the top surface of reinforcing layer one, and the end of reinforcing rib one is connected with reinforcing layer two.
[0009] The reinforcing layer one increases the strength of the rubber layer one, and prevents the conveyor belt from being damaged.
[0010] Preferably, the outer side of the reinforcing layer two is connected with the locking layer, and the reinforcing rib two is arranged on the top surface of the reinforcing layer two, and the end of the reinforcing rib two is connected with the rubber layer two.
[0011] The reinforcing layer two strengthens the strength of the conveyor belt, and prevents the conveyor belt from being damaged.
[0012] Preferably, the reinforcing rib two is arranged symmetrically and staggeredly with the reinforcing rib one.
[0013] The reinforcing rib two is arranged staggeredly with the reinforcing rib one, so that the strength of the conveyor belt is increased.
[0014] Preferably, the outer side of the wear-resistant layer is connected with the surface of the locking layer, and one side of the wear-resistant layer is arranged on the top of the rubber layer two.
[0015] The wear-resistant layer can protect the outer side of the conveyor belt.
[0016] Compared with the prior art, the high-wear-resistant multi-layer composite structure type Teflon conveyor belt has the beneficial effects that:
[0017] 1. The reinforcing rib one and the reinforcing rib two are arranged, the strength of the rubber layer one and the rubber layer two is increased through the reinforcing rib one and the reinforcing rib two, the conveyor belt is prevented from being damaged, the damage of the conveyor belt is reduced, the reinforcing rib one and the reinforcing rib two are arranged staggeredly, the strength of the whole conveyor belt is further increased, the conveyor belt can better bear external force in the process of conveying materials, and the conveyor belt is not easy to be deformed or broken;
[0018] 2. The locking layer is arranged, the edge of the conveyor belt can be protected, wear and tear and cracking of the edge are prevented, the stability and durability of the structure of the conveyor belt are further improved, the wear-resistant layer is arranged on the surface of the rubber layer one and the rubber layer two, and the wear resistance of the conveyor belt is improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a three-dimensional structure schematic view of the utility model;
[0020] Figure 2 It is a reinforcing layer one installation structure schematic view of the utility model;
[0021] Figure 3 It is a reinforcing rib two installation three-dimensional structure schematic view of the utility model;
[0022] Figure 4 It is a reinforcing rib one installation three-dimensional structure schematic view of the utility model.
[0023] In the figure: 10, rubber layer one;
[0024] 20, reinforcing layer one; 201, reinforcing rib one;
[0025] 30, reinforcing layer two; 301, reinforcing rib two;
[0026] 40, rubber layer two; 50, wear-resistant layer; 60, edge locking layer. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0028] Please refer to Figures 1-4 The present application provides a technical solution: a high-wear-resistant multi-layer composite structure type Teflon conveyor belt, comprising a rubber layer one 10, a reinforcing layer one 20, a reinforcing rib one 201, a reinforcing layer two 30, a reinforcing rib two 301, a rubber layer two 40, a wear-resistant layer 50 and an edge locking layer 60.
[0029] The conveyor belt can improve the wear resistance of the device and improve the performance of the device. The specific implementation is:
[0030] The surface of the rubber layer one 10 is connected with the reinforcing layer one 20, and the surface of the reinforcing layer one 20 is embeddedly installed with the reinforcing rib one 201. The surface of the reinforcing layer one 20 is fixedly connected with the reinforcing layer two 30, and the surface of the reinforcing layer two 30 is embeddedly installed with the reinforcing rib two 301. The surface of the reinforcing layer two 30 is fixedly connected with the rubber layer two 40, and the surface of the rubber layer two 40 is provided with the wear-resistant layer 50. The surface of the rubber layer one 10 is installed with the wear-resistant layer 50. The surfaces of the rubber layer one 10 and the rubber layer two 40 are both provided with the edge locking layer 60. The rubber layer one 10 is a base layer. The top surface of the rubber layer one 10 is installed with the reinforcing layer one 20, and the bottom surface of the rubber layer one 10 is provided with the wear-resistant layer 50. The wear-resistant layer 50 and the reinforcing layer one 20 are symmetrically arranged on both sides of the rubber layer one 10. The outer side of the reinforcing layer one 20 is connected with the edge locking layer 60. The reinforcing rib one 201 is arranged on the top surface of the reinforcing layer one 20, and the end of the reinforcing rib one 201 is connected with the reinforcing layer two 30. The outer side of the reinforcing layer two 30 is connected with the edge locking layer 60. The reinforcing rib two 301 is arranged on the top surface of the reinforcing layer two 30, and the end of the reinforcing rib two 301 is connected with the rubber layer two 40. The reinforcing rib two 301 and the reinforcing rib one 201 are symmetrically and staggeredly arranged. The outer side of the wear-resistant layer 50 is connected with the surface of the edge locking layer 60. One side of the wear-resistant layer 50 is arranged on the top of the rubber layer two 40.
[0031] The rubber layer one 10 is placed at the bottom, the reinforcing layer one 20 and the reinforcing layer two 30 are both made of rubber material, the reinforcing layer one 20 and the reinforcing layer two 30 are processed with grooves by using a mold with a groove pattern when the reinforcing layer one 20 and the reinforcing layer two 30 are produced, the reinforcing layer one 20 is adhered on the surface of the rubber layer one 10 by hot pressing, the reinforcing rib one 201 is placed in the groove of the reinforcing layer one 20, the reinforcing rib one 201 is fixed on the surface of the reinforcing layer one 20 by hot pressing, the reinforcing layer two 30 is placed on the surface of the reinforcing layer one 20, the grooves of the reinforcing layer one 20 and the reinforcing layer two 30 are staggered, the reinforcing layer two 30 is fixed on the top of the reinforcing rib one 201 and the reinforcing layer one 20 by hot pressing, the reinforcing rib two 301 is placed in the reinforcing layer two 30, the reinforcing rib two 301 is fixed in the groove of the reinforcing layer two 30 by hot pressing, then the rubber layer two 40 is placed on the surface of the reinforcing layer two 30, the rubber layer two 40 is fixed on the top of the reinforcing rib two 301 and the reinforcing layer two 30 by hot pressing, then the Teflon material is fixed on the surface of the rubber layer one 10 and the rubber layer two 40 by hot pressing to form the wear-resistant layer 50, then the polyurethane material is coated on the surface of the conveyor belt by using a coating or spraying device to lock the edges of the conveyor belt;
[0032] The wear-resistant layer 50 strengthens the strength of the rubber layer one 10 and the rubber layer two 40, increases the friction resistance of the upper and lower sides of the conveyor belt, the edge locking layer 60 increases the strength of the two sides of the conveyor belt, prevents the conveyor belt from being layered, when the side edge of the conveyor belt is broken, the reinforcing rib one 201 and the reinforcing rib two 301 can increase the strength of the conveyor belt, increase the strength of the conveyor belt, and facilitate subsequent processing of the conveyor belt.
[0033] Working principle: when the high-wear multi-layer composite structure type Teflon conveyor belt is used, the reinforcing rib two 301, the rubber layer two 40, the wear-resistant layer 50 and the edge locking layer 60 are arranged, the wear resistance of the device is improved, the performance of the device is improved, and the practicability of the whole is improved.
[0034] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A high wear-resistant multi-layer composite structure Teflon conveyor belt, comprising a rubber layer (10), wherein a reinforcing layer (20) is connected to the surface of the rubber layer (10), and a reinforcing rib (201) is embedded in the surface of the reinforcing layer (20). Its features are: The surface of the first reinforcing layer (20) is fixedly connected to the second reinforcing layer (30), and the surface of the second reinforcing layer (30) is embedded with the second reinforcing rib (301). The surface of the second reinforcing layer (30) is fixedly connected to the second rubber layer (40), and the surface of the second rubber layer (40) is provided with a wear-resistant layer (50). The surface of the first rubber layer (10) is provided with a wear-resistant layer (50). The surfaces of the first rubber layer (10) and the second rubber layer (40) are both provided with a locking layer (60).
2. The high wear-resistant multi-layer composite structure Teflon conveyor belt according to claim 1, characterized in that: The first rubber layer (10) is the base layer. A reinforcing layer (20) is installed on the top surface of the first rubber layer (10), and a wear-resistant layer (50) is provided on the bottom surface of the first rubber layer (10). The wear-resistant layer (50) and the reinforcing layer (20) are symmetrically arranged on both sides of the first rubber layer (10).
3. The high wear-resistant multi-layer composite structure Teflon conveyor belt according to claim 1, characterized in that: The outer side of the first reinforcing layer (20) is connected to the locking layer (60), and the first reinforcing rib (201) is disposed on the top surface of the first reinforcing layer (20), and the end of the first reinforcing rib (201) is connected to the second reinforcing layer (30).
4. The highly wear-resistant multi-layer composite Teflon conveyor belt according to claim 1, characterized in that: The outer side of the second reinforcing layer (30) is connected to the locking layer (60), and the second reinforcing rib (301) is provided on the top surface of the second reinforcing layer (30), with the end of the second reinforcing rib (301) connected to the second rubber layer (40).
5. The high wear-resistant multi-layer composite structure Teflon conveyor belt according to claim 1, characterized in that: The positions of the second reinforcing rib (301) and the first reinforcing rib (201) are symmetrically staggered.
6. The high wear-resistant multi-layer composite structure Teflon conveyor belt according to claim 1, characterized in that: The outer side of the wear-resistant layer (50) is connected to the surface of the locking layer (60), and one side of the wear-resistant layer (50) is disposed on the top of the second rubber layer (40).