K32013XP0

13mm Constant Section Bearings

K32013XP0 13mm Constant Section Bearings
K32013XP0 13mm Constant Section Bearings

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Part No.
Part No. K32013XP0

Basic Information

Bearing type Ball
System of measurement Metric
Thin section bearings type Reali-Slim mm Metric
Construction Single Row
Weight 0.97 kg
Tolerance class ABEC-1
Seal type Open
For load direction Four Point Contact

Main Dimensions

Bore diameter 320 mm
Bore diameter tolerance -0.036mm to 0
Outside diameter 346 mm
Outside diameter tolerance -0.036mm to 0
Width 13 mm
Width tolerance +.000 –.254mm

Inner Ring Dimensions

Shoulder diameter inner ring 329.7 mm

Outer Ring Dimensions

Outer ring small-side face inner diameter 336.3 mm

Performance

Temperature range -30°C to 110 °C
Radial dynamic load rating 5333 lbf
Radial static load rating 11115 lbf
Axial dynamic load rating 8743 lbf
Axial static load rating 27788 lbf
Dynamic load moment 666 lbf
Static load moment 1851 lbf
Rated load moment 2963 ft-lbf
Lubrication Lubricated
Radial internal clearance 0.0000 – 0.0005"

Materials

Ring material Chrome Steel
Ball material Chrome Steel
Cage material Brass

Environment & Compliance

ROHS Compliant
Technical Drawings No drawings available at the moment, will be launched soon
Price: $ 275.59 / each
In Stock

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K32013XP0 Bearing Product Overview & Core Advantages

The K32013XP0 is a metric thin-section four-point contact ball bearing engineered for applications requiring high precision and space optimization. This single-row bearing is distinguished by its ability to simultaneously support combined radial and axial loads from any direction, making it an exceptionally versatile component. Its compact cross-section, with a width of only 13 mm, allows for lightweight and streamlined designs without compromising on performance or load capacity. Manufactured to ABEC-1 precision tolerances, it ensures reliable operation in high-accuracy systems.

K32013XP0 Bearing Model Code Explained, Specifications & Naming Convention

Code Segment Technical Meaning
K Indicates a specific series or design variant within the Reali-Slim metric bearing family.
320 Specifies the bore diameter of 320 mm.
13 Denotes the cross-section width of 13 mm.
XP Signifies a Four-Point Contact design, enabling the bearing to handle combined loads.
0 Typically refers to an Open (unsealed) construction and standard radial internal clearance.

K32013XP0 Bearing Structural Features & Performance Benefits

The performance of the K32013XP0 is a direct result of its advanced structural design:

  • Four-Point Contact & High Load Capacity: The unique raceway geometry allows a single bearing to replace complex bearing arrangements. It efficiently manages high radial loads (5333 lbf dynamic), high axial loads (8743 lbf dynamic) in both directions, and significant moment loads (2963 ft-lbf rated).
  • Thin-Section & Weight Savings: With a minimal cross-section, this bearing is ideal for applications where space and weight are critical constraints, contributing to a total weight of just 0.97 kg.
  • Precision & Rigidity: The ABEC-1 tolerance class and tight dimensional controls ensure smooth, precise rotation and high system rigidity. The use of a brass cage promotes stability and durability at moderate speeds.
  • Material & Durability: Constructed from chrome steel for both rings and balls, the bearing offers high hardness, wear resistance, and a long operational life. It is pre-lubricated for immediate use and operates within a temperature range of -30°C to 110°C.

K32013XP0 Bearing Typical Application Areas

The K32013XP0 thin-section four-point contact ball bearing is ideally suited for a wide range of demanding applications, including:

  • Robotics: Rotary joints and actuators where compactness and multi-directional load handling are essential.
  • Aerospace & Defense: Radar platforms, gimbal systems, and flight control mechanisms requiring high precision and reliability.
  • Machine Tool: Rotary tables, indexing heads, and other precision positioning equipment.
  • Medical Equipment: CT scanners and MRI machines where smooth, precise motion is critical.
  • Semiconductor Manufacturing: Wafer handling robots and precision stages.
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