Five reasons to use polyurethane wheels in industrial applications:
1. Industrial rubber wheel using polyurethane walking wheel, noise reduction effect.
Compared with hard wheels such as steel or cast iron, polyurethane coated rubber wheels are the choice for industrial applications because of their quiet operation. Polyurethane acts as a shock absorber and helps cushion the ride. It can also absorb the bumps of uneven terrain. The use of polyurethane instead of steel or cast iron wheels can significantly reduce noise levels to help protect the hearing of employees.
2. The carrying capacity of polyurethane walking wheel is higher.
Polyurethane walking wheels are also often utilized for their carrying capacity compared to rubber. Polyurethane can provide greater carrying capacity while still providing the benefits of rubber tread, such as noise reduction, shock absorption, and floor protection.
3. The use of polyurethane coated heavy driving wheel, can protect the ground
Polyurethane tires are suitable for floor protection applications. Polyurethane deflects and creates a larger footprint than harder wheel materials such as nylon. The larger surface area helps reduce stress concentration on the floors and keeps them in shape for longer.
4. Load capacity of polyurethane walking wheel.
Another benefit of polyurethane walking wheels in industrial applications is the friction coefficient of the material. This value describes the ratio of the friction force between two objects to the force holding them together. Rougher surfaces tend to have higher RMS because they create friction when pressed together.
Polyurethane coated rubber wheels tend to be a grip material, so their higher coefficient of friction helps prevent the trailer from turning over. For harder wheel materials, sliding may be an important consideration. Polyurethane also provides traction to the drive wheels and helps reduce the load on the wheels to achieve the desired driving force.
5. In special fields, the corrosion resistance of polyurethane adhesive.
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