23240 CC/W64 Double Row Spherical Roller Bearing

23240 CC/W64 Double Row Spherical Roller Bearing

The 23240 CC/W64 is a double-row spherical roller bearing with a 200mm bore and 360mm outer diameter, built from tough chrome steel. It manages combined loads up to 437703 lbf and runs smoothly at speeds up to 1700 RPM.

Its spherical roller design handles misalignment well, while the steel cage ensures durability. The open construction allows for easy lubrication, with grooves and holes for efficient 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 56.5kg, it’s a robust choice for demanding environments. Compliant with RoHS and REACH standards, it’s interchangeable with SKF models for easy replacement.

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Product Parameters

  • Part Number 23240 CC/W64
  • Brand TFL
  • Interchangeable SKF
  • Size 200 x 360 x 128 mm
  • Bore Dia 200 mm
  • Bore Dia Tolerance -0.03mm to 0
  • Outer Dia 360 mm
  • Outer Dia Tolerance -0.04mm to 0
  • Width 128 mm
  • Width Tolerance -0.08mm to 0
  • Shoulder Dia Of Inner Ring 235 mm
  • Shoulder/Recess Dia Of Outer Ring 304 mm
  • Width Of Lubrication Groove 16.7 mm
  • Diameter Of Lubrication Hole 9 mm
  • Chamfer Dimension min.4 mm
  • System of Measurement Metric
  • Radial run-out Standard
  • Bearing Type Roller
  • Roller Bearing Type Spherical
  • Bore Type Cylindrical
  • For Load Direction Combined
  • Construction Double Row
  • Seal Type Open
  • Ring Material Chrome Steel
  • Roller Material Chrome Steel
  • Cage Material Steel
  • Dynamic Radial Load 437703 lbf
  • Static Radial Load 606984 lbf
  • Max Speed 1700 rpm
  • Lubrication Required
  • Temperature Range -30° to 200 °C
  • Radial Clearance CN
  • RoHs Compliant
  • REACH Compliant
  • Weight 56.5 kg
  • Price (US$) US$1,185.14

Features

Performance Features of 23240 CC/W64 Bearing

23240 CC/W64 Bearing is built with chrome steel rings and rollers, offering robust resistance to combined loads.
Its dynamic radial load capacity reaches 437703 lbf, ensuring dependable performance in heavy-duty applications.

The double-row spherical roller design allows for slight misalignment, reducing stress on the bearing.
With a maximum speed of 1700 rpm, it maintains efficiency even under demanding conditions.

23240 CC/W64 Bearing operates in temperatures from -30° to 200°C, suitable for varied environments.
Its steel cage ensures proper roller alignment, enhancing durability and reducing wear.

The lubrication groove and hole design facilitate easy maintenance, prolonging service life.
Weighing 56.5 kg, it balances strength and practicality for industrial use.

Application

Industrial Uses of 23240 CC/W64 Bearing
The 23240 CC/W64 Bearing is commonly used in heavy machinery like crushers and vibrating screens, where its double-row design handles combined loads effectively. Its chrome steel construction ensures durability in harsh industrial environments.

Where Is 23240 CC/W64 Bearing Used?
You’ll find 23240 CC/W64 Bearing in mining equipment, where its high dynamic radial load capacity supports heavy-duty operations. The open seal design simplifies lubrication, keeping maintenance straightforward.

Built for Heavy-Duty Use: 23240 CC/W64 Bearing
23240 CC/W64 Bearing excels in construction equipment, such as cranes and excavators, thanks to its robust spherical roller design. The wide temperature range also makes it suitable for extreme working conditions.

Automotive vs Aerospace: Applications of 23240 CC/W64 Bearing
In automotive applications, 23240 CC/W64 Bearing supports large drivetrain components, while in aerospace, it’s used in auxiliary systems requiring high load capacity. Its metric sizing ensures compatibility across industries.

Essential Roles of 23240 CC/W64 Bearing
23240 CC/W64 Bearing is vital in wind turbines, where its ability to handle misalignment and heavy loads ensures reliable performance. The steel cage adds extra strength for long-term use in demanding settings.

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