Nylon vs Steel vs Brass: Which Bearing Cage Survives Heat?
Compare Nylon (TN9), Pressed Steel, and Machined Brass (M) bearing cages under high heat. Explore 4 practical case scenarios to prevent premature cage failure.
Read articleCompare leading global bearing brands and explore compatible TFL alternatives by model, product type and application.
View all Brands GuideMatch manufacturer part numbers with interchangeable TFL bearing options and model-selection support.
Browse bearing solutions by equipment, operating environment and industry.
Practical guidance on bearing selection, applications, maintenance and sourcing.
Compare Nylon (TN9), Pressed Steel, and Machined Brass (M) bearing cages under high heat. Explore 4 practical case scenarios to prevent premature cage failure.
Read article
Find answers about quality, orders, technical support and after-sales service.
Use our articles, reference tools and customer resources to support sourcing decisions.
Learn about TFL Bearing, our quality systems and supply capabilities.
View all About & CapabilitiesAccess engineering support and services throughout the purchasing process.
View all Services & SupportExplore customer projects, sourcing partnerships and ways to contact our team.
View all Work With TFL
The 23252 CACK/C3W33 is a double-row spherical roller bearing with a 260mm bore and 480mm outer diameter, crafted from robust chrome steel. It manages combined loads up to 763226 lbf and operates smoothly at speeds up to 1200 RPM.
Its brass cage enhances durability, while the open design allows for easy lubrication. The bearing performs reliably in temperatures ranging from -30°C to 200°C.
With a tapered bore (1:12) and C3 radial clearance, it ensures secure fitting and accommodates slight misalignments. Ideal for heavy-duty applications like industrial gearboxes or mining equipment.
Weighing 140kg, it’s built for demanding environments. Compliant with RoHS and REACH standards, it’s a dependable choice for replacements, interchangeable with SKF models.
Why Choose 23252 CACK/C3W33 Bearing for Precision Tasks?
23252 CACK/C3W33 Bearing features a double-row spherical roller design, ideal for handling combined radial and thrust loads.
Its chrome steel rings and rollers provide high strength, supporting dynamic radial loads up to 763,226 lbf.
The brass cage ensures smooth roller alignment, reducing friction and extending operational life.
With a maximum speed of 1,200 rpm, it delivers reliable performance in demanding industrial applications.
23252 CACK/C3W33 Bearing operates efficiently in temperatures ranging from -30°C to 200°C.
Its C3 radial clearance allows for thermal expansion, ensuring stability under varying conditions.
The lubrication groove and holes simplify maintenance, enhancing long-term reliability.
This bearing is designed for heavy-duty machinery, offering durability and precision.
Industrial Uses of 23252 CACK/C3W33 Bearing
23252 CACK/C3W33 Bearing is commonly used in heavy machinery like crushers and mining equipment, where its double-row spherical design handles high radial and axial loads. The brass cage ensures smooth operation even under demanding conditions.
Where Is 23252 CACK/C3W33 Bearing Used?
You’ll often find 23252 CACK/C3W33 Bearing in wind turbines, where its tapered bore design simplifies installation and maintenance. Its high dynamic load capacity makes it reliable for long-term use in renewable energy applications.
Built for Heavy-Duty Use: 23252 CACK/C3W33 Bearing
23252 CACK/C3W33 Bearing excels in paper mills, supporting large rollers that require consistent performance. The chrome steel construction and C3 clearance allow for thermal expansion in high-temperature environments.
Automotive vs Aerospace: Applications of 23252 CACK/C3W33 Bearing
In automotive testing rigs, 23252 CACK/C3W33 Bearing handles combined loads with precision. For aerospace ground equipment, its robust design ensures reliability during frequent load changes.
Perfect Fit for Automation: 23252 CACK/C3W33 Bearing
23252 CACK/C3W33 Bearing is ideal for robotic assembly lines, where its spherical rollers accommodate misalignment. The lubrication groove design reduces downtime, keeping production running smoothly.