Humanoid robot joints must combine compact dimensions, controlled motion, load capacity and positioning accuracy. While motors, reducers and actuators receive most of the attention, the bearing is also a critical component supporting the rotating structure.
A robot joint may experience radial loads, axial loads and overturning moments at the same time. Available installation space can also be very limited.
Therefore, bearing selection should consider more than bore and outside diameter. Load direction, stiffness, rotation speed, accuracy, lubrication and expected service life should all be evaluated according to the actual joint design.
Different robot architectures may require different bearing solutions.
Crossed roller bearings can be considered when high rigidity and combined load capacity are important in a compact structure.
→ Crossed Roller Bearings
Four-point contact bearings can provide a compact solution for applications requiring combined radial and axial load support.
→ Four-Point Contact Bearings
Angular contact bearings are useful when axial load capacity and rotational performance are important considerations.
Thin-section and deep groove ball bearings can be considered when radial space, weight and general rotational requirements are key factors.
There is no single bearing type that is ideal for every humanoid robot joint. The correct solution depends on the complete mechanical system.
Standard bearings may not always match the mounting dimensions, load requirements or structural interfaces of a robotic joint.
Beining Technology develops precision and customized bearing solutions according to customer drawings and application requirements. Our robot bearing range includes crossed roller, four-point contact, angular contact and other precision bearing solutions.
→ Explore Beining Robot Bearing Solutions
Looking for a bearing solution for a humanoid robot joint?
For bearing rating-life calculations, engineers can refer to applicable methods such as ISO 281.