K32013CP0
13mm Constant Section Bearings
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Basic Information
Main Dimensions
Inner Ring Dimensions
Outer Ring Dimensions
Performance
Materials
Environment & Compliance
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K32013CP0 Bearing Product Overview & Core Advantages
The K32013CP0 is a metric thin-section bearing from the Reali-Slim mm Metric Bearings series, engineered for applications demanding space and weight savings without sacrificing performance. This single row ball bearing features an open design and is optimized for handling radial loads. Its compact cross-section, with a substantial 320 mm bore and a narrow 13 mm width, makes it an ideal solution for high-precision machinery where a slim profile is critical. Manufactured to ABEC-1 precision tolerances, it ensures reliable operation and consistent performance.
K32013CP0 Bearing Model Code Explained, Specifications & Naming Convention
| Code Segment | Technical Meaning |
|---|---|
| K | Indicates a metric series thin-section bearing. |
| 32013 | Specifies the bearing dimensions: 320 mm bore, 346 mm outside diameter, 13 mm width. |
| C | Denotes radial internal clearance. |
| P0 | Standard tolerance class (equivalent to ABEC-1). |
K32013CP0 Bearing Structural Features & Performance Benefits
The K32013CP0's performance is derived from its robust construction. The use of chrome steel for both rings and balls provides excellent wear resistance and durability. The brass cage ensures stable ball guidance, contributing to smooth operation at moderate speeds. Its open seal type allows for easy re-lubrication, making it suitable for various operating conditions. The bearing comes pre-lubricated, offering immediate protection upon installation and is capable of operating within a temperature range of -30°C to 110°C. With a radial dynamic load rating of 4019 lbf and a static load rating of 11115 lbf, it is designed to handle significant radial loads in compact assemblies.
K32013CP0 Bearing Typical Application Areas
This thin-section bearing is ideally suited for applications where a large diameter is required but axial space is limited. Common uses include:
- Robotics and automation arms
- Aerospace control mechanisms
- Medical imaging equipment (e.g., CT scanners, MRI machines)
- Semiconductor manufacturing equipment
- Radar and satellite communication systems