Arrowhead ceramic pulley lagging provides the solution when conventional rubber lagging fails to correct belt slippage and wears prematurely.
Ceramic lagging conveyor pulley.
Product description the term lagging describes the variety of elastomers used to coat the contact surface of a conveyor pulley.
Ceramic pulley lagging provides the solution when conventional rubber lagging fails to correct belt slippage and wear problem.
Ceramic lagging is a more expensive option than rubber lagging however ceramic lagging has a greater service life and reduces lagging wear.
The lagging strips are bolted or welded to the face of the pulley and can be easily replaced in the field.
Its primary purpose is to enhance traction by increasing the coefficient of friction between the surfaces.
Ceramic rubber pulley lagging 58 ceramic tiles coverage anti slipping purpose provides the solution when conventional rubber lagging fails to correct belt slippage and wear problem.
In certain applications ceramic lagging can significantly increase drive traction.
Ceramic pulley lagging is constructed from hundreds of individual ceramic tiles molded into a durable rubber backing.
Drive pulleys are usually lagged with dimple ceramic lagging because the increased fiction and grip assists in driving the conveyor belt.
Conveyor ceramic lagging 15 ceramic tiles coverage economic purpose.
Ceramic pulley lagging is especially suited for drums with slippage and excessive wear tear problems which make normal rubber lagging ineffective.
Our unique arrowhead ceramic is designed for the highest drive factors unlike the conventional square tiles.
They are marked by significantly increased abrasion resistance while providing the highest friction forces to the friction partner.
Rubber blends from richwood are a high wear resistant rubber providing the best in abrasion resistance and gripping strength.
Ceramic pulley laggings germangrip pulley laggings with ceramic modules display compared to viscoelastic materials elastomers outstanding and proven wear behaviour.