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BWC Series - Bellows Clamp Style Couplings - Inch (Imperial) Bores Timken 68514476946
TIMKEN

BWC Series - Bellows Clamp Style Couplings - Inch (Imperial) Bores Timken 68514476946

Артикул  /  68514476946
Коммерческое предложение

Сообщим стоимость, доступное количество и срок поставки. Если точной позиции нет, предложим проверенный аналог.

  • Проверка производителя
  • Безналичная оплата
  • Доставка по России
  • Подбор аналога
О позиции

Описание

The BWC (Bellows Clamp) Series coupling provides a new range of coupling options with the high torsional stiffness. The higher torsional stiffness provides the benefit of accuracy and repeatability in motion control applications. The BWC series coupling features aluminum hubs and corrosion resistant steel bellow. The compact design also offers the benefit of low inertia. The BWC Series also has a torque capacity of up to 89 in-lbs, with a maximum bore capacity of .748 inches in diameter. The BWC utilizes clamping style hubs that provide easy installation and removal of the coupling. The bellows design also offers up to .016 inches of axial misalignment, with low reactionary loading on bearings. Specifications Description BWC32-CP-5/16X5/16 Coupling Size BWC32 Type Standard Bellows Coupling Bellows Material Stainless Steel Hub Material Aluminum Style Clamp Application Motion Control Weight 0.08 oz Weight (Complete Coupling w/ Min. Bores) 1.30 oz Dimensional Data Bore A 0.313 in Bore B 0.313 in Overall Length 1.260 in Keyway Size No Keyway Outside Diameter 0.945 in Min. Bore (Dimensions ID1/ID2) 0.118 in Max. Bore (Dimensions ID1/ID2) 0.472 in Length thru Bore 0.472 in Clamp Screw Size M3 Cubic inches 1.12521 in³ Performance Data Max. Operating Temperature 212.00 ºF Max. Speed 15000 rpm Nominal Torque 17.70 in·lb Angular Misalignment 1.20 º Axial Misalignment 0.0120 in Parallel Misalignment 0.004 in Moment of Inertia 0.0850 lb·in² Torsional Stiffness 13541.00 in·lb/rad Features Features High torsional stiffness Notes Notes Nominal torque, torsional stiffness, weight and moment of inertia are based on minimum bore size.