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TRANSPORTATION AND MOVEMENT
INDUSTRIAL COMPONENTS
INDUSTRIAL STRIPED CURTAINS

PU Timing Belt AT10

PU Timing Belt AT10

Polyurethane (PU) timing belts ensure excellent length stability and very low friction. The material is available in gray, milky, or nearly transparent colors. Compared to neoprene, polyurethane offers higher chemical resistance.

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Specifications

Description

PU Timing Belts AT10

The polyurethane (PU) timing belts from ZAMPOUKAS are engineered for maximum durability and precision, making them the ideal solution for industrial and automated applications. Made from thermoplastic polyurethane, these belts offer excellent length stability, low friction, and high wear resistance, while outperforming neoprene in chemical and oil resistance. Available in gray, milky, or nearly transparent colors, they provide reliable performance even in demanding operating conditions.

Customizable Dimensions

The AT10 timing belts are available in rolls and can be cut to order both in length and width, offering complete flexibility in sizing. These belts are used as open belts in linear motion systems and as welded belts for conveyor applications. Measured-length PU timing belts can be welded to any required length, with standard roll lengths up to 100 meters and widths from 6 to 300 mm.

Usage Instructions

✔️ Maintenance-free
✔️ Good oil resistance
✔️ Limited resistance to cold and ozone
✔️ Temperature range: -25 °C to +80 °C

Welded Measured-Length Belts

The PU timing belts can also be produced in a closed form by welding their ends. The process involves punching the ends and precision welding to ensure stability. However, welded belts have about 50% of the tensile strength of factory-closed belts, making them suitable for many conveying and timing applications.

AT10 Profile – Higher Strength and Precise Timing

The AT10 profile features a trapezoidal design, with teeth that are significantly larger than the gaps between them. This structure allows for higher strength but reduces the ability to handle small bending radii compared to T-type belts. The distance from the center of one tooth to the center of the next is 10 mm, ensuring precise motion transmission with minimal energy loss.

Steel Reinforcements

The reinforcements within the belt define the tensile strength (load transmission).

Steel reinforcements allow for high tensile strength. Through the twisting process, the fine, zinc-coated reinforcements gain increased stability and tension resistance. However, as steel is prone to corrosion, these reinforcements are not suitable for use in wet environments.

At ZAMPOUKAS, we ensure that our polyurethane timing belts deliver optimal performance and customized solutions for every application.

Frequent questions

See also

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