The KD040XPO is a slim, open-type ball bearing measuring 4″×5″×0.5″, crafted from durable chrome steel with a brass cage. It handles radial loads up to 2311 lbf and thrust loads up to 3520 lbf, making it versatile for various applications.
Its four-point contact design ensures smooth operation, while the ABEC-1 tolerance class offers reliable precision. The bearing works well in temperatures from -30°C to 110°C and comes pre-lubricated for easy use.
This model is interchangeable with KAYDON bearings, ideal for machinery requiring slim profiles and high load capacity. Suitable for robotics, medical equipment, or aerospace applications where space is limited.
Weighing just 0.78 lbs, it’s lightweight yet robust, complying with RoHS standards for safety and environmental friendliness.
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How Does KD040XPO Bearing Handle Heavy Loads?
KD040XPO Bearing is built with chrome steel rings and balls, offering strong resistance to both radial and thrust loads.
Its dynamic radial load capacity reaches 2311 lbf, while the static thrust load goes up to 7700 lbf, ensuring reliable performance.
The brass cage maintains ball alignment, reducing friction and extending the bearing’s lifespan.
With a width of just 0.5″, it fits into compact spaces without compromising strength.
Why Choose KD040XPO Bearing for Precision Tasks?
KD040XPO Bearing features a precise ABEC-1 tolerance class, making it ideal for applications requiring accuracy.
The four-point contact design ensures smooth operation under combined loads, enhancing performance.
Its thin-section construction allows for space-saving installations without sacrificing durability.
The chrome steel construction provides excellent wear resistance, even in demanding conditions.
Engineered for Precision: KD040XPO Bearing
KD040XPO Bearing’s chrome steel components ensure consistent performance in high-precision applications.
The open design allows for easy lubrication, maintaining smooth operation over time.
With a temperature range of -30°C to 110°C, it remains reliable in various environments.
Its compact 4″×5″×0.5″ size makes it suitable for applications where space is limited.
Material Composition of KD040XPO Bearing
KD040XPO Bearing uses chrome steel for both rings and balls, ensuring durability and strength.
The brass cage provides stability and reduces friction, enhancing the bearing’s efficiency.
This material combination offers excellent resistance to wear and corrosion.
It also maintains performance across a wide temperature range, from -30°C to 110°C.
How Is KD040XPO Bearing Engineered for Reliability?
KD040XPO Bearing’s four-point contact design distributes loads evenly, reducing stress on components.
The chrome steel construction and brass cage work together to minimise wear and extend service life.
Its ABEC-1 tolerance ensures consistent performance in precision applications.
The thin-section design allows for reliable operation in space-constrained environments.
Industrial Uses of KD040XPO Bearing
KD040XPO Bearing is commonly used in industrial machinery where space is limited, such as robotic arms and automation systems. Its thin-section design allows for compact installations without sacrificing load capacity.
Where Is KD040XPO Bearing Used?
You’ll often find KD040XPO Bearing in medical imaging equipment, where its precision and smooth operation are essential. The brass cage ensures quiet performance, ideal for sensitive environments.
Built for Heavy-Duty Use: KD040XPO Bearing
KD040XPO Bearing handles high radial and thrust loads in applications like packaging machines. Its chrome steel construction provides durability even in demanding conditions.
Automotive vs Aerospace: Applications of KD040XPO Bearing
In automotive systems, KD040XPO Bearing supports steering mechanisms, while in aerospace, it’s used in control surfaces. Its inch sizing makes it versatile for various industries.
Perfect Fit for Automation: KD040XPO Bearing
KD040XPO Bearing works well in 3D printers and CNC machines due to its precise movement. The open design allows for easy lubrication, ensuring long service life.
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