The NU 213 ECML is a single row cylindrical roller bearing with a 65mm bore and 120mm outer diameter, crafted from durable chrome steel. It handles combined loads up to 27450 lbf and spins smoothly at speeds up to 10000 RPM.
Its brass cage ensures stable performance, while the open design allows easy lubrication with grease or oil. The bearing operates well in temperatures from -30°C to 110°C.
This model is interchangeable with SKF bearings, making it a practical choice for replacements. Ideal for applications like gearboxes or industrial machinery where radial and axial loads are present.
Weighing 1.15kg, it offers a robust solution for demanding environments. Compliant with RoHS and REACH standards for safe use.
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Performance Features of NU 213 ECML Bearing
NU 213 ECML Bearing is crafted with chrome steel rings and rollers, offering robust resistance to combined loads.
Its dynamic radial load capacity reaches 27450 lbf, ensuring reliable performance in various applications.
The brass cage design keeps the rollers aligned, enhancing durability and reducing friction.
With a maximum speed of 10,000 rpm, it delivers both strength and efficiency.
How Does NU 213 ECML Bearing Reduce Friction?
NU 213 ECML Bearing’s brass cage minimises friction between rollers, promoting smoother operation.
The chrome steel construction further enhances its ability to handle high-speed rotations.
Its open design allows for easy lubrication, ensuring consistent performance.
This combination makes it ideal for applications requiring low friction and high reliability.
Engineered for Precision: NU 213 ECML Bearing
NU 213 ECML Bearing features precise dimensions, with a bore diameter of 65 mm and outer diameter of 120 mm.
The chrome steel rollers and rings ensure accurate load distribution and minimal wear.
Its design accommodates axial displacement up to 1.4 mm, adding to its versatility.
This precision engineering makes it suitable for demanding industrial environments.
Steel vs Ceramic Bearings: Strengths of NU 213 ECML Bearing
NU 213 ECML Bearing’s chrome steel construction provides excellent durability and load capacity.
Unlike ceramic bearings, it offers superior resistance to impact and heavy loads.
The brass cage further enhances its performance by reducing friction and wear.
This makes it a reliable choice for applications where strength and longevity are key.
Designed for Durability: NU 213 ECML Bearing
NU 213 ECML Bearing is built to last, with chrome steel components and a brass cage.
Its static radial load capacity of 26550 lbf ensures reliable performance under heavy loads.
The open seal design allows for easy maintenance and lubrication.
This durability makes it ideal for long-term use in industrial settings.
Industrial Uses of NU 213 ECML Bearing
NU 213 ECML Bearing is commonly used in heavy machinery like conveyor systems and industrial fans, where its cylindrical roller design handles high radial loads efficiently. The brass cage ensures smooth operation even at high speeds, making it a reliable choice for continuous use.
Where Is NU 213 ECML Bearing Used?
In automotive applications, NU 213 ECML Bearing supports components such as gearboxes and wheel hubs, thanks to its combined load capacity. Its chrome steel construction provides durability under demanding conditions, ensuring long service life.
Perfect Fit for Automation: NU 213 ECML Bearing
NU 213 ECML Bearing excels in robotic arms and automated production lines, where precision and reliability are key. The open design allows for easy lubrication, maintaining performance in high-speed operations.
Medical vs Industrial: Where NU 213 ECML Bearing Excels
While NU 213 ECML Bearing is robust enough for industrial presses, its precision also suits medical imaging devices. The grease or oil lubrication options make it adaptable to various environments, from clean rooms to factory floors.
Essential Roles of NU 213 ECML Bearing
In wind turbines, NU 213 ECML Bearing handles significant radial loads while withstanding harsh weather conditions. Its temperature range and high-speed capability make it ideal for renewable energy applications.
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