China High Angle Wavy Edge Rubber Conveyor Belt - China Suppliers & Factory for Various Applications Supplier, Factories

The High Angle Wavy Edge Conveyor Belt is designed with three essential components: the base band, the edge band, and the transverse partition. This innovative design features a blocking edge that effectively prevents materials from slipping or falling during transportation. To optimize drum bypassing, the edge is crafted into a unique corrugated shape. Additionally, the transverse partition provides crucial support to the material, utilizing a T-shaped TC configuration for large angle conveying. The edge and bulkhead are securely bonded to the base tape through secondary vulcanization, ensuring exceptional connection strength, As a leading China supplier and factory for conveyor belts, we offer a variety of wave-shaped edge conveyor belts, including ordinary large angle options. Our products are categorized based on the properties of the covering adhesive, available in various types such as heat-resistant, flame-retardant, cold-resistant, acid-alkali resistant, and oil-resistant, catering to a wide range of industrial applications. Trust us for high-quality conveyor belt solutions tailored to your needs

Product Description

Specifications
Wave Shaped Edge Conveyor Belt (Ordinary Large Angle Wave Shaped Edge Conveyor Belt) Specifications:
Core Materials
CC-56, NN100, NN150, NN200, NN300, NN400
Bandwidth
100mm – 2400mm
Fabric Layers
2 – 10 Layers
Cover Adhesive
Working surface: 1.5 – 8mm
Non-working surface: 0mm – 4.5mm
Core Material of Edge Conveyor Belt
Cotton Canvas Core CC-56
Nylon Fabric Core NN100, NN150, NN200, NN300, NN400, NN500
Polyester Fabric Core EP100, EP150, EP200, EP300, EP400, EP500
Wire Rope Core ST1000 – ST5400
Edge Height (mm) S80, S100, S120, S160, S200, S240, S300, S400, S500
Partition Height (mm) TC75, TC90, TC110, TC140, TC180, TC220, TC280, TC380, TC480
General Writing Style: B800 × 6 (3+3+1.5) × 110 meters | S120-120 TC110-252-460
Product Features
  • Increased conveying angle (30 – 90 degrees)
  • Small footprint and low investment
  • Large conveying capacity and higher lifting height
  • Smooth transition from horizontal to inclined (or vertical)
  • Suitable for conveying powdery, granular, small, pasty, and liquid materials that are prone to scattering
  • Low energy consumption, simple structure, high tape strength, and long service life
Product Description
The load-bearing capacity of the edge conveyor belt is improved, and the lateral bending deformation of the edge conveyor belt is minimized after being loaded. Therefore, improving the lateral rigidity of the edge conveyor belt is the key to reducing the lateral load-bearing deformation of the belt and increasing its load-bearing capacity.
The lateral rigidity value of the edge blocking conveyor belt body refers to the ratio of the bending weight of the belt body caused by the self weight of the edge blocking conveyor belt body to the width value of the belt body on both sides of the freely supported belt body in the transverse vertical section of the belt body.
The technical standard requirement for the lateral rigidity value of a high lateral rigidity edge conveyor belt is not greater than 0.05. After optimizing and improving the structure of the edge conveyor belt, the lateral rigidity detection value is 0.036 after adding a lateral rigidity reinforcement layer. The lateral deformation of the belt body is reduced after bearing, which can increase the bearing capacity by 15% to 20%.
An effective measure to improve the lateral rigidity of large heavy-duty conveyor belts is to set up a special composite adhesive layer made of polyester short fibers that have been specially mixed and rolled between the multi-layer tensile canvas layers of the flat base belt. That is, the polyester short fibers are embedded in the adhesive layer along the transverse direction of the belt in a single direction.
The use of this specialized composite adhesive layer that enhances the lateral bending resistance of the edge conveyor belt can increase the lateral rigidity value of the belt body by 2.5 times compared to ordinary structured edge conveyor belts, even if its lateral rigidity value increases from 0.09 to 0.036.
Frequently Asked Questions
Q What conveying angles can a wave shaped edge conveyor belt handle?
A The wave shaped edge conveyor belt is designed to handle conveying angles ranging from 30 to 90 degrees, making it suitable for steep incline and even vertical conveying applications.
Q What core materials are available for edge conveyor belts?
A Edge conveyor belts are available with multiple core material options including cotton canvas core (CC-56), nylon fabric cores (NN100 – NN500), polyester fabric cores (EP100 – EP500), and wire rope cores (ST1000 – ST5400), allowing selection based on load and application requirements.
Q What types of materials can be transported using edge conveyor belts?
A Edge conveyor belts are especially suitable for transporting powdery, granular, small-sized, pasty, and liquid materials that are prone to scattering, providing reliable containment across various industrial applications.
Q How does the lateral rigidity reinforcement layer improve belt performance?
A The lateral rigidity reinforcement layer, made from specially mixed polyester short fibers embedded transversely in the adhesive layer, increases the lateral rigidity value by 2.5 times compared to standard belts. This reduces lateral deformation under load and can increase the overall bearing capacity by 15% to 20%.
Q What is the standard bandwidth range for wave shaped edge conveyor belts?
A The bandwidth range for wave shaped edge conveyor belts is from 100mm to 2400mm, with fabric layers ranging from 2 to 10 layers, accommodating a wide variety of conveying system configurations.
Q What are the main advantages of using an edge conveyor belt over conventional conveyor systems?
A Compared to conventional conveyor systems, edge conveyor belts offer a smaller footprint, lower investment costs, higher lifting heights, larger conveying capacity, smooth horizontal-to-inclined transitions, lower energy consumption, and a longer service life due to high tape strength and simple structure.

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