22217-E1A-M-C2 bearings have the advantages of Self-aligning, high load-bearing capacity, impact resistant, and adaptable to heavy loads, and are therefore widely used in the Gearboxes, drive shafts, conveying equipment, general machinery.

| Part Number | 22217-E1A-M-C2 |
| Design Type | E1A = without central rip |
| Bore Type | Z = Cylindrical bore |
| RIC | C2 |
| X-Life | XL long life design |
| Row | 2 |
| Adapter sleeve | H317 |
| Bearing Type | Double row spherical roller bearings, symmetric 2 outer ribs |
| Manufacturer Part Code | 22217-E1A-M-C2 |
| Original Code | 22217-E1A-M-C2 |
| Withdrawal sleeve | AHX317 |
| Cage | M = Solid brass cage, guided by rollers |
| Measurement | Metric |
| Seal type | OPEN |
| Relubrication | Standard |
| d φ Inside [inch] | 3.346 |
| D Φ Outside [inch] | 5.905 |
| B Width [inch] | 1.417 |
| nB Reference speed (grease) [min–1] | 3430 |
| nG Limiting speed (oil) [min–1] | 5679 |
| Weight [kg] | 2.6 |
| r(min.) Chamfer [inch] | 0.079 |
| D1 [inch] | 5.331 |
| d2 [inch] | 3.925 |
| ds [inch] | 0.126 |
| ns [inch] | 0.256 |
| Cr Radial Dynamic [lbf] | 68523 |
| C0r Radial static [lbf] | 73017 |
| Cur Radial Fatigue [lbf] | 8755 |
| Temperature - T(min)[°C] | -30 |
| Temperature - T(max)[°C] | +200 |
| Mounting dimensions | |
| da(min.) [inch] | 3.780 |
| da(max.) [inch] | 3.898 |
| Da(max.) [inch] | 5.472 |
| db(min.) [inch] | 3.583 |
| Ba(min.) [inch] | 0.472 |
| ra(max.) [mm] | 2.6 |
| Calculation coefficient | |
| e | 0.22 |
| Y0 | 2.97 |
| Y1 | 3.04 |
| Y2 | 4.53 |
The 22217-E1A-M-C2 Double-row spherical roller bearings mainly consist of an inner ring, an outer ring, two rows of spherical rollers, a cage, and seals. The outer ring raceway has a spherical structure, while the inner ring has a double-row raceway. The rollers and raceways are logarithmically curved. The cage is typically made of stamped steel or machined brass.
Double-row spherical roller bearings possess excellent self-aligning properties, compensating for shaft deflection, installation errors, and misalignment. They can simultaneously withstand radial loads and bidirectional axial loads, exhibiting extremely high load-bearing capacity and strong impact resistance. Furthermore, the internal clearance can be optimized for vibration conditions, effectively reducing frictional temperature rise.















