
6206-2RZTN9/HC5C3WT Bearing
weight:0.173kg
Hybrid ceramic deep groove ball bearing with seals on both sides

Products Description
| d |
30 mm |
Bore diameter |
|---|---|---|
| D |
62 mm |
Outside diameter |
| B |
16 mm |
Width |
| d1 |
≈40.36 mm |
Shoulder diameter inner ring |
| D2 |
54.06 mm |
Recess diameter outer ring shoulder |
| r1,2 |
min.1 mm |
Chamfer dimension |
| da |
min.35.6 mm |
Abutment diameter shaft |
|---|---|---|
| da |
max.40.3 mm |
Abutment diameter shaft |
| Da |
max.56.4 mm |
Abutment diameter housing |
| ra |
max.1 mm |
Fillet radius |
| Basic dynamic load rating | C |
19.5 kN |
|---|---|---|
| Basic static load rating | C0 |
11.2 kN |
| Fatigue load limit | Pu |
0.345 kN |
| Reference speed |
28 000 r/min |
|
| Limiting speed |
15 000 r/min |
|
| Calculation factor | kr |
0.025 |
| Calculation factor | f0 |
13.8 |
The 6206-2RZTN9/HC5C3WT Hybrid Ceramic Deep Groove Ball Bearing is a high-performance component featuring a unique combination of materials and design. This bearing utilizes ceramic balls, typically made of silicon nitride, which offer significant advantages over traditional steel balls. Ceramic balls exhibit exceptional hardness, high wear resistance, and low density, resulting in reduced friction, increased speed capabilities, and improved resistance to corrosion and contamination.
Key advantages of this hybrid bearing include its high-speed performance, extended service life, and enhanced resistance to wear and tear. The reduced friction from ceramic balls minimizes heat generation, allowing for higher operating speeds and improved efficiency. Additionally, the inherent properties of ceramic materials provide superior resistance to corrosion and contamination, making these bearings suitable for demanding environments where cleanliness and longevity are critical.
Applications for the 6206-2RZTN9/HC5C3WT bearing are diverse and include high-speed machinery, medical equipment, aerospace components, and precision instruments. These bearings are particularly well-suited for applications where high speeds, low noise, and long service life are paramount.
Industries such as automotive, robotics, and renewable energy are increasingly adopting hybrid ceramic bearings to improve the performance and reliability of their equipment.


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