
The 23126 is a double-row spherical roller bearing with a 130mm bore and 210mm outer diameter, built from sturdy chrome steel. It handles combined loads up to 131738 lbf and runs smoothly at speeds up to 3200 RPM.
Its spherical roller design allows for slight misalignment, while the steel cage ensures durability. The open construction requires regular lubrication but offers easy maintenance.
This bearing suits heavy-duty applications like industrial gearboxes or mining equipment, where high radial loads are common. It operates in temperatures from -30°C to 200°C.
Weighing 8.5kg, it’s robust yet manageable for its size. Compliant with RoHS and REACH standards, it’s interchangeable with SKF models for reliable replacements.
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How Does 23126 123.855 CC/C3 Bearing Handle Combined Loads?
23126 123.855 CC/C3 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 131738 lbf.
The steel cage maintains roller alignment, reducing friction and extending operational life.
With a maximum speed of 3200 rpm, it performs reliably in demanding conditions.
What Makes 23126 123.855 CC/C3 Bearing Suitable for High-Temperature Applications?
23126 123.855 CC/C3 Bearing operates efficiently in temperatures ranging from -30° to 200°C.
Its chrome steel rollers and rings resist thermal deformation, ensuring consistent performance.
The open design allows for easy lubrication, further enhancing its high-temperature resilience.
This makes it a dependable choice for industrial applications with varying thermal conditions.
Engineered for Precision: 23126 123.855 CC/C3 Bearing
23126 123.855 CC/C3 Bearing is designed with precise tolerances for bore and outer diameters.
Its spherical roller design compensates for misalignment, ensuring smooth operation.
The lubrication groove and holes facilitate consistent oil distribution, reducing wear.
This precision engineering makes it suitable for heavy-duty machinery and high-speed applications.
Industrial Uses of 23126 123.855 CC/C3 Bearing
23126 123.855 CC/C3 Bearing is commonly used in heavy machinery like crushers and vibrating screens, where its double-row design handles combined loads effortlessly. The spherical roller type ensures smooth operation even with slight misalignments.
In automotive applications, 23126 123.855 CC/C3 Bearing fits well in large truck axles and transmissions, providing reliable performance under high radial loads. Its C3 clearance allows for thermal expansion during long hauls.
For industrial fans and blowers, 23126 123.855 CC/C3 Bearing’s chrome steel construction offers durability in high-speed environments. The open design simplifies lubrication, extending service life in dusty conditions.
Where Is 23126 123.855 CC/C3 Bearing Used?
23126 123.855 CC/C3 Bearing excels in mining equipment, such as conveyor systems, where its high dynamic load capacity is essential. The steel cage ensures stability under constant vibration.
In paper mills, 23126 123.855 CC/C3 Bearing supports rollers that endure heavy loads and moisture. Its temperature range up to 200°C makes it suitable for drying sections.
Built for Heavy-Duty Use: 23126 123.855 CC/C3 Bearing
23126 123.855 CC/C3 Bearing is ideal for construction machinery like cranes, where its combined load handling keeps operations smooth. The metric sizing ensures compatibility with global equipment standards.
In wind turbines, 23126 123.855 CC/C3 Bearing’s spherical rollers accommodate shaft deflections, reducing wear. The lubrication groove design simplifies maintenance in remote installations.
Automotive vs Aerospace: Applications of 23126 123.855 CC/C3 Bearing
In automotive sectors, 23126 123.855 CC/C3 Bearing handles heavy loads in commercial vehicle drivetrains. Its C3 clearance accommodates thermal shifts during long-distance travel.
For aerospace ground equipment, 23126 123.855 CC/C3 Bearing supports loading systems with precision. The high static radial load capacity ensures safety in critical operations.
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