
This rubber roller is designed for use in rice milling machines. It is constructed from SBR and features an iron drum core for durability.

Rice huller rubber rollers are designed for efficient husk removal from rice grains. These durable rollers minimize grain breakage, maximizing yield during the milling process.

Rice huller rubber rollers are designed for efficient and gentle rice processing. These rollers minimize grain breakage while maximizing hulling efficiency.

These rubber rollers are designed for rice hulling applications. The rollers have a durable rubber compound bonded to a metal core and are engineered for efficient and gentle removal of rice husks, minimizing grain breakage and maximizing yield.

High-performance polyurethane roller designed for metal forming machines. It features a durable polyurethane outer layer bonded to a robust metal core, offering excellent resistance to wear, abrasion, and deformation under high loads.

This precision-engineered metal forming roller is designed for casting and forging applications. The robust roller ensures smooth and consistent material deformation, contributing to high-quality outputs in metalworking processes.

This high-performance roll is designed for casting and forging applications. It is engineered for durability and precision, ensuring consistent material deformation and extended service life.

Precision-engineered for metal forming machines, this casting and forging component ensures reliable performance. Its durable construction and precise dimensions contribute to efficient metal forming processes.

High-performance rollers designed for casting and forging applications. These rollers are engineered to withstand extreme temperatures and pressures, ensuring consistent and reliable performance in demanding metal forming processes.

These precision-engineered rollers are designed for casting and forging applications. The durable outer layer provides resistance to wear and tear during metal forming processes, while the robust core ensures dimensional stability.