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The K06013XP0 is a slim metric bearing measuring 60mm by 86mm by 13mm, crafted from durable chrome steel with a brass cage. It handles radial loads up to 2235 lbf and thrust loads up to 3166 lbf, making it versatile for various applications.
Its open design allows for easy lubrication, while the four-point contact construction ensures smooth operation under different load directions. The bearing works reliably in temperatures ranging from -30°C to 110°C.
This model is interchangeable with KAYDON bearings, offering a practical replacement option. Ideal for use in machinery where space is limited but performance is crucial, such as robotics or precision equipment.
Weighing just 0.23kg, it’s lightweight yet robust. Compliant with RoHS standards, it’s a safe and reliable choice for industrial use.
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How Does K06013XP0 Bearing Handle Heavy Loads?
K06013XP0 Bearing is built with chrome steel rings and balls, offering robust resistance to heavy loads.
Its dynamic radial load capacity reaches 2235 lbf, ensuring dependable performance in demanding applications.
The brass cage maintains ball alignment, reducing wear and prolonging service life.
With a width of just 13 mm, it combines strength with a slim profile for versatile use.
What Makes K06013XP0 Bearing Suitable for High-Temperature Applications?
K06013XP0 Bearing operates efficiently in temperatures ranging from -30°C to 110°C.
Its chrome steel construction ensures stability and performance even under thermal stress.
The open seal design allows for easy lubrication, enhancing durability in varied conditions.
This makes it ideal for applications where temperature fluctuations are common.
Engineered for Precision: K06013XP0 Bearing
K06013XP0 Bearing features a four-point contact design for precise load distribution.
Its ABEC-1 tolerance class ensures consistent performance in precision tasks.
The thin-section construction saves space without compromising strength.
This makes it a reliable choice for applications requiring accuracy and compactness.
Why Choose K06013XP0 Bearing for Precision Tasks?
K06013XP0 Bearing’s four-point contact design ensures even load distribution.
With a radial clearance of 0.0000 – 0.0005″, it delivers high precision.
The brass cage reduces friction, enhancing smooth operation.
Its slim profile and robust construction make it ideal for precision machinery.
Optimized for Efficiency: K06013XP0 Bearing
K06013XP0 Bearing’s thin-section design minimizes weight while maintaining strength.
The chrome steel components resist wear, ensuring long-term efficiency.
Its open seal allows for easy maintenance and lubrication.
This combination makes it a cost-effective solution for various applications.
Industrial Uses of K06013XP0 Bearing
K06013XP0 Bearing is commonly used in machine tools, where its four-point contact design handles both radial and axial loads efficiently. The thin section construction saves space without compromising performance.
In robotics, K06013XP0 Bearing ensures smooth movement in articulated arms, thanks to its precise ABEC-1 tolerance. The brass cage reduces friction, making it ideal for repetitive motions.
For packaging machinery, K06013XP0 Bearing’s chrome steel rings withstand continuous operation. Its open seal design allows for easy relubrication, extending service life in dusty environments.
Automotive vs Aerospace: Applications of K06013XP0 Bearing
In automotive steering systems, K06013XP0 Bearing provides reliable support for rotating components. Its metric sizing ensures compatibility with European and Asian vehicle designs.
Aerospace applications benefit from K06013XP0 Bearing’s lightweight construction and high load capacity. The temperature range of -30°C to 110°C suits both ground and flight conditions.
What Makes K06013XP0 Bearing a Preferred Choice?
K06013XP0 Bearing works well in medical imaging devices, where quiet operation is essential. The chrome steel balls ensure consistent performance over time.
For 3D printers, K06013XP0 Bearing’s thin profile fits into compact spaces. The brass cage helps maintain alignment during high-precision printing tasks.
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