1322 KM/C3

1300 Series Self Aligning Ball Bearings

1322 KM/C3 1300 Series Self Aligning Ball Bearings
1322 KM/C3 1300 Series Self Aligning Ball Bearings

Image may differ from product. See technical specification for details.

Part No.
Part No. 1322 KM/C3

Basic Information

Bearing type Ball
System of measurement Metric
Construction Double Row
Weight 11.5 kg
Seal type Open
For load direction Radial

Main Dimensions

Bore diameter 110 mm
Bore diameter tolerance -0.02mm to 0
Bore type Taper 1:12
Outside diameter 240 mm
Outside diameter tolerance -0.03mm to 0
Width 50 mm
Width tolerance -0.2mm to 0
Chamfer dimension 3 mm

Inner Ring Dimensions

Shoulder diameter inner ring 154.35 mm

Outer Ring Dimensions

Shoulder diameter outer ring 202.9 mm

Ball & Washer Dimensions

Protrusion of the balls from bearing side faces 2.512 mm

Performance

Temperature range -30° to 110 °C
Radial dynamic load rating 36675 lbf
Radial static load rating 16200 lbf
Limiting speed 3.6 X 1000 rpm
Lubrication Lubricated
Radial internal clearance C3

Materials

Ring material Chrome Steel
Ball material Chrome Steel
Cage material Brass

Environment & Compliance

REACH Compliant
ROHS Compliant
Technical Drawings No drawings available at the moment, will be launched soon
Price: $ 894.8 / each
In Stock

Contact for Bulk Quote
  • Fast delivery
  • Free shipping on orders over $200
  • Enjoy discounts on bulk purchases
  • Secure Payment
  • Fast Global Shipping

1322 KM/C3 Bearing Product Overview & Core Advantages

The 1322 KM/C3 is a metric double row angular contact ball bearing engineered for demanding industrial applications requiring high radial load capacity and operational stability. Featuring a 1:12 tapered bore for precise shaft mounting, this bearing delivers exceptional rigidity and can accommodate significant combined loads. Its open design allows for customized lubrication schemes, making it suitable for high-performance systems where speed and load capacity are critical. Manufactured with chrome steel components and a brass cage, it ensures durability and reliable operation within a broad temperature range.

1322 KM/C3 Bearing Model Code Explained, Specifications & Naming Convention

Code Segment Technical Meaning
1322 Basic bearing designation indicating metric dimensions: 110mm bore, 240mm OD, 50mm width
K Tapered bore with 1:12 ratio for precise interference fit on tapered shafts
M Brass cage construction for enhanced stability at high speeds
/C3 Radial internal clearance greater than normal, suitable for applications with thermal expansion concerns

1322 KM/C3 Bearing Structural Features & Performance Benefits

Double Row Design: The dual raceway configuration provides significantly increased radial load capacity and moment stiffness compared to single row bearings, making it ideal for applications requiring high rigidity support.

Optimized Load Distribution: With protruding ball ends (2.512mm) and precision-ground raceways, the bearing efficiently distributes combined radial and axial loads, ensuring stable operation under varying load conditions.

High-Speed Capability: The brass cage (M designation) maintains ball alignment and reduces friction at limiting speeds up to 3,600 rpm, while the open design allows for optimal lubrication management.

Precision Tapered Bore: The 1:12 tapered bore (K designation) enables precise mounting on tapered shafts, ensuring secure fit and minimizing internal clearance variations during operation.

Enhanced Durability: Manufactured from chrome steel rings and balls with C3 radial clearance, the bearing accommodates thermal expansion while maintaining performance across the -30°C to 110°C temperature range.

1322 KM/C3 Bearing Typical Application Areas

  • Industrial Gearboxes and power transmission systems
  • Heavy-Duty Machinery requiring high radial load capacity
  • Mining Equipment and material handling systems
  • Paper Processing Machinery with demanding operational requirements
  • Vibrating Screens and other equipment with dynamic loading conditions
  • Wind Turbine main shafts and yaw systems
🔍
Cancel