N 1017 KTN9/SP

Part Number N 1017 KTN9/SP
Brand: BearingMaker Interchangeable With: SKF
System of Measurement Metric
Roller Bearing Type Cylindrical
Bore Type Taper 1:12
For Load Direction Combined
Construction Single Row
Seal Type Open
Bore Dia 85 mm
Bore Dia Tolerance 0 to +0.020mm
Outer Dia 130 mm
Outer Dia Tolerance -0.011mm to 0
Width 22 mm
Width Tolerance -0.2mm to 0
Shoulder Dia Of Inner Ring 102 mm
Raceway Diameter Outer Ring 118 mm
Chamfer Dimension Outer Ring(r1,2)(min.) 1.1 mm
Chamfer Dimension Inner Ring(r3,4)(min.) 0.6 mm
Permissible Axial Displacement(max.) 3 mm
Ring Material Chrome Steel
Roller Material Chrome Steel
Cage Material PA66 cage, roller centred
Dynamic Radial Load 16582 lbf
Static Radial Load 22950 lbf
Max Speed (X1000 rpm) 9
Lubrication Grease, Oil
Temperature Range -30° to 110 °C
RoHS Compliant
REACH Compliant
Weight 0.9 kg

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Description

Design Features of N 1017 KTN9/SP Bearing

N 1017 KTN9/SP Bearing is designed for high-speed applications, offering low friction and excellent rigidity. N 1017 KTN9/SP outer dia is 130 mm. Its bore dia is 85 mm. It features a separable design, allowing easy mounting and dismounting of the rings.

 

What Benefits Can N 1017 KTN9/SP Bearing Provide?

  • High-Speed Capability: It operates efficiently at high rotational speeds due to its low friction design.
  • Enhanced Rigidity: Its construction ensures excellent rigidity, ideal for precision applications.
  • Ease of Maintenance: The separable design simplifies mounting, dismounting, and maintenance.
  • Extended Service Life: With proper lubrication, it ensures durability and consistent performance under demanding conditions.
  • Reduced Heat Generation: The optimized design minimizes friction, helping to lower operational temperatures.

 

What Can N 1017 KTN9/SP Bearing Be Used for?

  • Machine Tool Spindles: Supporting high-speed rotation and precise positioning.
  • Textile Machinery: Ensuring smooth and efficient operation under high speeds.
  • Printing Equipment: Delivering stability and accuracy in fast-moving components.
  • Turbomachinery: Handling high loads with minimal friction in compact designs.
  • Aerospace Applications: Providing reliability in critical, high-precision mechanisms.

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