Balanced Motion Overview
- The RE16025 crossed roller bearing is suitable for mechanical assemblies where consistent rotational behavior is required under moderate structural conditions. Its configuration supports stable interaction between components while maintaining smooth motion in continuous operating environments.
- It is commonly used in systems that require balanced performance between structural support and motion control without increasing overall design complexity.

Technical Parameters (RE16025)
| Inner Diameter (d) | 160 mm |
| Outer Diameter(D) | 220 mm |
| Roller Pitch Diameter (Dpw) | 192 mm |
| Width | 25 mm |
| Chamfer (rmin) | 1.5 |
| Shoulder Size (ds) | 173 |
| Shoulder Size (Dh) | 204 |
| Basic Load Rating (Radial) Cr | 81.7 kN |
| Basic Load Rating (Radial) Cor | 135 kN |
| weight | 3.14 kg |
Check More Type of RE Series Crossed Roller Bearing
- Operating Behavior
- The RE16025 maintains steady motion under moderate operating conditions, with rotation remaining consistent during continuous use.
- System Adaptability
- It can be integrated into different mechanical layouts where balanced performance between structure and movement is required.
- Integration Notes
- Proper alignment during installation helps ensure smooth operation and reduces unnecessary stress on surrounding components.
Operating Conditions & Maintenance Notes
Does the RE16025 require frequent lubrication?
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In most applications, initial lubrication is sufficient for long service intervals, while more demanding operating conditions may require periodic relubrication.
How sensitive is the RE16025 to installation conditions?
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Proper alignment during assembly is important, as small deviations can influence internal motion behavior and overall operating consistency.
Can preload change during long-term use?
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Over time, operating conditions and material settling may lead to slight changes in preload, which can affect motion smoothness.
What factors influence the long-term stability of the RE16025?
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Stable performance depends on correct mounting, appropriate lubrication, and consistent operating conditions throughout use.
What causes changes in running smoothness during operation?
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Variations in mounting stability, lubrication condition, or operating load can gradually influence motion consistency over time.
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