Radial and axial loads can be managed simultaneously by four-row tapered roller bearings, which operate effectively at low to moderate rotational speeds; their application is nearly limited to work roll scenarios, with rolling mills cited as a typical example.
|
drawings may differ from products |
Boundary Dimensions |
d |
430 |
mm | |||
| D | 575 | mm | |||||
| B | 380 | mm | |||||
| T | 380 | mm | |||||
| Basic Load Ratings | Cr | 6200 | kN | ||||
| C0r | 16200 | kN | |||||
| Speed Ratings | Grease | 200 | rpm | ||||
| Oil | 280 | rpm | |||||
| Weight | 282.00 | kg | |||||
Product Type: Four-Row Tapered Roller Bearing
|
Dimension Type |
Value |
|
Inner Diameter (d) |
430mm |
| Outer Diameter (D) |
575mm |
| Thickness (B) |
380mm |
Radial Load Capacity: This bearing’s radial load capacity is about 2.5 to 3.5 times that of single-row tapered roller bearings. That means it stays stable even when under really high loads.
Load Type Adaptability: It’s great at handling both radial and axial loads (radial is the main one) and can take heavy loads and impact loads, even in tough working environments.
|
Component |
Material |
|
Inner & Outer Rings |
Carburized Steel |
|
Rolling Elements |
Bearing Steel |
|
Cage |
Stamped Steel Plate |
Primary Application: Unlike universal rolling mill components, it is specifically designed for work and backup rolls, ensuring a seamless fit with European rolling mills’ high-precision, heavy-load requirements—its core competitive edge.
Other Applications: It shines in heavy-duty scenarios; its robust resistance to high loads and impact loads makes it a top pick for critical equipment such as cranes, mining machinery, and wind turbines.