Double Row Tapered Roller Bearing
Double row tapered roller bearings are engineered to provide exceptionally high radial and axial load capacity, making them ideal for heavy-duty applications that demand strength, stability, and long service life. Featuring two rows of tapered rollers arranged symmetrically, this bearing design distributes loads more effectively than single-row types, offering increased rigidity and superior resistance to overturning moments.

Double row Tapered Roller Bearings
Size range: Inter diameter:150-1500mm
Material: GCr15/GCr15SiMn/G20Cr2Ni4A
Features: The double row taper roller bearing is mainly used to support the combined load which is mianly consisted of radial load. It can restrict the axial displacement of the shaft or housing in the two directions and thus can be used as a bidirectional locating bearing.
Application: rolling mills, gearboxes, hoisting equipment, mining machines, tunnelling machines.
Double row tapered roller bearings are engineered to provide exceptionally high radial and axial load capacity, making them ideal for heavy-duty applications that demand strength, stability, and long service life. Featuring two rows of tapered rollers arranged symmetrically, this bearing design distributes loads more effectively than single-row types, offering increased rigidity and superior resistance to overturning moments.
Material: GCr15/GCr15SiMn/G20Cr2Ni4A
Features: The double row taper roller bearing is mainly used to support the combined load which is mianly consisted of radial load. It can restrict the axial displacement of the shaft or housing in the two directions and thus can be used as a bidirectional locating bearing.
Application: rolling mills, gearboxes, hoisting equipment, mining machines, tunnelling machines.
Double row tapered roller bearings are engineered to provide exceptionally high radial and axial load capacity, making them ideal for heavy-duty applications that demand strength, stability, and long service life. Featuring two rows of tapered rollers arranged symmetrically, this bearing design distributes loads more effectively than single-row types, offering increased rigidity and superior resistance to overturning moments.
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