Our unique balance mixing technology! By extending roll life, we reduce maintenance costs.
High Clutch U is an advanced composite material that combines a base of special urethane rubber (natural color) with extremely high abrasion resistance and tear resistance, and powerful grain rubber particles (brown), evenly dispersed and bonded using Tailoka Rubber Industry's unique balance mixing technology. The friction coefficient of High Clutch U is twice that of High Clutch 960 and four times that of ordinary urethane rubber, comparable to the friction coefficient of urethane rubber that has undergone crepe processing. 【Features】 ○ Special polyurethane rubber as the main raw material ○ High resistance to aging ○ Strong resistance to edge wear ○ Maintains stable μ (friction coefficient) to prevent slipping ○ Patent pending For more details, please contact us or download the catalog.
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basic information
【Stable High Friction Coefficient】 ◎Friction Coefficient μ (Oil-coated Steel Plate: Rubber) ○ High Clutch U: 0.4 ○ High Clutch 960: 0.2 ○ Urethane Rubber 90: 0.1 * Oil Adhesion Amount: 4g/m2 * Conducted using our winding test equipment 【Edge Wear Test Results】 Device: Roll Running Test Equipment (Our Company) Line Pressure: 30Kg/cm Rotational Speed: 200 R.P.M. Rotation Time: 8 Hrs. [Material/Depth of Edge Damage] ○ High Clutch U: 0.005mm ○ High Clutch 960: 0.080mm ○ General-purpose Synthetic Rubber 90: 0.166mm ● For more details, please contact us or download the catalog.
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Applications/Examples of results
【Applications】 ○ Pinch Roll ○ Bridle Roll ○ Deflector Roll ○ Swing Support Roll, etc. ● For more details, please contact us or download the catalog.
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Since its establishment in 1924, Oidaka Rubber Industry Co., Ltd. has been a pioneer in rubber rolls, starting with Japan's first rubber printing drum for textile printing, and has continued to support manufacturing sites across various industrial fields. Moving forward, we will continue to create products that contribute to "Japanese manufacturing" through relentless technological development and quality improvement, while constantly pursuing the potential of rubber as a material.