-Bearings-KC070AR0-Dimensions.webp)
The KC070AR0 is a slim, angular contact ball bearing with a 7-inch bore and 7.75-inch outer diameter, crafted from durable chrome steel. Its compact 0.375-inch width makes it ideal for space-constrained applications.
Designed to handle radial loads up to 1575 lbf and static thrust loads of 3930 lbf, it operates smoothly within a temperature range of -30°C to 110°C. The brass cage ensures reliable performance under moderate stress.
Its open design allows for easy lubrication, while the 30° contact angle provides stable angular load support. The bearing meets ABEC-1 tolerance standards for consistent precision.
This model is interchangeable with KAYDON bearings, making it a practical choice for replacements. Suitable for machinery requiring slim, high-performance bearings, such as robotics or medical equipment. Weighing just 0.74 lbs, it’s lightweight yet robust. Compliant with RoHS standards for safe use.
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Performance Features of KC070AR0 Bearing
KC070AR0 Bearing is built with chrome steel rings and balls, offering strong resistance to angular contact loads.
Its dynamic radial load capacity reaches 1575 lbf, ensuring reliable performance in various applications.
The brass cage maintains ball alignment, reducing friction and extending service life.
With a temperature range of -30°C to 110°C, it performs well in diverse environments.
How Does KC070AR0 Bearing Reduce Friction?
KC070AR0 Bearing features a brass cage that minimises friction during operation.
The chrome steel construction ensures smooth movement, even under angular contact loads.
Its ABEC-1 tolerance class provides consistent performance with reduced wear.
This design makes it suitable for applications requiring precision and efficiency.
Designed for Durability: KC070AR0 Bearing
KC070AR0 Bearing’s chrome steel components resist wear, ensuring long-term reliability.
The 30° contact angle optimises load distribution, enhancing its lifespan.
It handles static radial loads up to 4320 lbf, making it robust for demanding tasks.
With a width of just 0.375″, it combines durability with a slim profile.
Steel vs Ceramic Bearings: Strengths of KC070AR0 Bearing
KC070AR0 Bearing uses chrome steel for its rings and balls, balancing strength and affordability.
The material choice ensures it can handle static moment loads up to 12470 lbf.
Unlike ceramic bearings, it offers proven reliability in industrial applications.
Its brass cage further enhances performance by reducing operational friction.
Why Choose KC070AR0 Bearing for Precision Tasks?
KC070AR0 Bearing’s ABEC-1 tolerance ensures precise operation in angular contact applications.
The 0.0000 – 0.0005″ radial clearance allows for accurate movement control.
Its slim 0.375″ width makes it ideal for space-constrained precision equipment.
The chrome steel construction maintains dimensional stability under load.
Industrial Uses of KC070AR0 Bearing
KC070AR0 Bearing is commonly used in robotics, where its slim profile and angular contact design help in precise movement control. The brass cage adds durability, making it suitable for repetitive tasks in automated systems.
Where Is KC070AR0 Bearing Used?
You’ll find KC070AR0 Bearing in medical imaging devices, where its consistent performance and low friction are key. The chrome steel construction ensures reliability in critical healthcare applications.
Built for Heavy-Duty Use: KC070AR0 Bearing
KC070AR0 Bearing handles radial and moment loads well, making it ideal for industrial gearboxes. Its ABEC-1 tolerance ensures smooth operation even under demanding conditions.
Automotive vs Aerospace: Applications of KC070AR0 Bearing
In automotive steering systems, KC070AR0 Bearing provides stability and precision. For aerospace applications, its lightweight design and reliability make it a practical choice for control mechanisms.
Perfect Fit for Automation: KC070AR0 Bearing
KC070AR0 Bearing works seamlessly in 3D printers, where its thin section design saves space without compromising performance. The open seal allows for easy maintenance in high-use environments.
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