Ultra Wear-Resistant And High-Strength Belt
An Ultra Wear-Resistant And High-Strength Belt is a kind of belt that is designed to have outstanding wear resistance and high strength. It is capable of withstanding severe friction and heavy loads during operation, ensuring reliable and stable material transportation.
- Fabric Core Belt: It uses high-strength fabrics like polyester canvas or nylon canvas as the core material. For example, polyester canvas belts (EP) are known for their high strength, fatigue resistance and good heat resistance. Nylon canvas belts (NN) have excellent abrasion resistance, tear resistance and good elasticity.
- Steel Cord Belt: With steel wires as the framework, it has high tensile strength, good impact resistance, long service life, low elongation in use, good troughability and flexibility.
- Metal Belt: It includes steel wire mesh High-Strength Conveyor Beltwhich are woven by steel wires and have high strength, high temperature resistance and corrosion resistance. Chain conveyor belts, composed of a series of chains, have a large load-carrying capacity and can run smoothly over long distances.
- Core Materials
- High-Strength Fibers: Such as aramid fiber which has extremely high strength and modulus, and its strength is more than 5 times that of steel wire. Ultra-high molecular weight polyethylene fiber has excellent abrasion resistance, self-lubrication and impact resistance.
- Steel Wire Rope: High-strength galvanized steel wire ropes or stainless steel wire ropes are usually used, which have extremely high tensile strength and fatigue resistance.
- Cover Materials
- Rubber: Natural rubber has good elasticity, abrasion resistance and tear resistance. Nitrile rubber has excellent oil resistance and abrasion resistance. Neoprene has good weather resistance, ozone resistance and flame retardancy.
- Polyurethane: Ultra Wear-Resistant Conveyor Belt has extremely high abrasion resistance, 3 to 5 times that of ordinary rubber, as well as good elasticity, tear resistance and chemical corrosion resistance.