The 22309 E/W64 is a double-row spherical roller bearing with a 45mm bore and 100mm outer diameter, crafted from robust chrome steel. It manages combined loads up to 42714 lbf and operates smoothly at speeds up to 7000 RPM.
Its spherical roller design allows for slight misalignment, while the steel cage ensures durability under heavy use. The open construction requires regular lubrication for optimal performance.
This bearing suits high-temperature environments, functioning well from -30°C to 200°C. It’s interchangeable with SKF models, making it a practical choice for replacements.
Weighing 1.4kg, it’s sturdy yet manageable for industrial applications like gearboxes or heavy machinery. Compliant with RoHS and REACH standards for safe and reliable use.
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How Does 22309 E/W64 Bearing Handle Combined Loads?
22309 E/W64 Bearing features a double-row spherical roller design, ideal for handling both radial and axial loads.
Its chrome steel construction ensures durability, with a dynamic radial load capacity of 42,714 lbf.
The steel cage maintains roller alignment, reducing friction and extending operational life.
With a maximum speed of 7,000 rpm, it performs reliably in high-speed applications.
Why Choose 22309 E/W64 Bearing for High-Temperature Applications?
22309 E/W64 Bearing operates efficiently in temperatures ranging from -30° to 200°C.
Its chrome steel rollers and rings resist thermal deformation, ensuring consistent performance.
The lubrication groove design allows for easy maintenance, even in demanding conditions.
This makes it suitable for industrial environments with varying temperature demands.
Built for Reliability: 22309 E/W64 Bearing
22309 E/W64 Bearing’s double-row design enhances load distribution, reducing stress on individual rollers.
The precision-ground raceways ensure smooth operation, even under heavy combined loads.
Its robust construction minimises wear, making it a dependable choice for long-term use.
With a static radial load capacity of 4,114 lbf, it offers stability in diverse applications.
Steel vs Ceramic Bearings: Strengths of 22309 E/W64 Bearing
22309 E/W64 Bearing’s chrome steel rollers provide excellent resistance to wear and fatigue.
The steel cage ensures reliable performance, even in high-load and high-speed scenarios.
Its design balances cost-effectiveness with durability, making it a practical choice.
The bearing’s lubrication-friendly design further enhances its operational efficiency.
What Ensures Smooth Operation in 22309 E/W64 Bearing?
22309 E/W64 Bearing’s spherical roller design compensates for misalignment, ensuring smooth rotation.
The precision-ground surfaces reduce friction, contributing to quieter and more efficient performance.
Its lubrication groove and hole design facilitate consistent oil distribution.
This results in reliable operation, even under varying load conditions.
Industrial Uses of 22309 E/W64 Bearing
The 22309 E/W64 Bearing is commonly used in heavy machinery, such as conveyor systems and crushers, where its double-row design handles combined loads effectively. Its chrome steel construction ensures durability in demanding industrial environments.
What Makes 22309 E/W64 Bearing a Preferred Choice?
In automotive applications, 22309 E/W64 Bearing supports components like gearboxes and differentials, providing reliable performance under high radial loads. The open design allows for easy lubrication, extending its service life.
Built for Heavy-Duty Use: 22309 E/W64 Bearing
For mining equipment, 22309 E/W64 Bearing excels in handling harsh conditions, thanks to its spherical roller design and high-temperature tolerance. The steel cage adds extra strength, making it suitable for continuous operation.
Automotive vs Aerospace: Applications of 22309 E/W64 Bearing
In automotive settings, 22309 E/W64 Bearing is ideal for wheel hubs and transmissions, while in aerospace, it supports auxiliary systems requiring precision and reliability. Its metric sizing ensures compatibility across various industries.
Where Is 22309 E/W64 Bearing Used?
You’ll find 22309 E/W64 Bearing in wind turbines, where its ability to handle misalignment and heavy loads is crucial. The lubrication groove design ensures smooth operation even in remote, hard-to-maintain locations.
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