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The 14585 is a single cone tapered roller bearing with a 1.375-inch bore, designed for combined loads. Made from durable chrome steel, it handles dynamic radial loads up to 13300 lbf and operates smoothly in temperatures from -30°C to 110°C.
Its open design allows for easy maintenance, while the steel cage ensures reliable performance. The bearing is interchangeable with Timken models, making it a practical choice for replacements.
With a standard radial clearance and ABEC-1 rating, it suits various industrial applications. Ideal for use in machinery where combined loads and moderate speeds are common.
Compliant with RoHS and REACH standards, it’s a safe and dependable option for your needs.
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Performance Features of 14585 Bearing
14585 Bearing is built with chrome steel rings and a steel cage, offering strong resistance to combined loads.
Its dynamic radial load capacity reaches 13,300 lbf, making it suitable for heavy-duty applications.
The tapered roller design ensures smooth operation and efficient load distribution.
With a temperature range of -30° to 110°C, it performs reliably in various conditions.
How Does 14585 Bearing Reduce Friction?
14585 Bearing’s tapered roller design minimises friction, ensuring smooth rotation under combined loads.
The chrome steel construction enhances durability, reducing wear over time.
Its standard radial clearance options allow for flexibility in different applications.
The steel cage maintains roller alignment, further improving efficiency.
Engineered for Precision: 14585 Bearing
14585 Bearing features precise dimensions, with a bore diameter of 1.375″ and tight tolerances.
Its effective center location of -0.23″ ensures accurate alignment in assemblies.
The tapered roller design provides consistent performance under dynamic and static loads.
With ABEC-1 rating, it meets standard precision requirements for various uses.
Steel vs Ceramic Bearings: Strengths of 14585 Bearing
14585 Bearing uses chrome steel for its rings and steel for its cage, balancing strength and cost-effectiveness.
This material choice provides excellent resistance to wear and fatigue in demanding conditions.
The tapered roller design handles both radial and thrust loads efficiently.
Its dynamic radial rating of 13,300 lbf ensures reliable performance in heavy applications.
Industrial Uses of 14585 Single Cones
14585 Single Cones are commonly used in heavy machinery, such as construction equipment and agricultural vehicles, where combined loads are frequent. Their tapered roller design ensures smooth operation even under demanding conditions.
In automotive applications, 14585 Single Cones provide reliable support for wheel hubs and differential systems. The inch sizing makes them a preferred choice for older or custom-built vehicles.
For industrial conveyor systems, 14585 Single Cones offer durability and ease of maintenance. Their chrome steel construction ensures long-lasting performance in high-load environments.
Where Is 14585 Single Cones Used?
You’ll often find 14585 Single Cones in mining equipment, where their ability to handle combined loads is essential. The steel cage adds extra strength for tough working conditions.
In railway applications, 14585 Single Cones are used in axle boxes to ensure smooth and safe operation. Their standard radial clearance makes them versatile for various rail systems.
Built for Heavy-Duty Use: 14585 Single Cones
14585 Single Cones excel in forestry machinery, where they withstand both radial and thrust loads. The open seal design allows for easy inspection and lubrication.
They’re also a great fit for marine applications, thanks to their resistance to wear and corrosion. The temperature range ensures reliability in both hot and cold environments.
Automotive vs Aerospace: Applications of 14585 Single Cones
In automotive settings, 14585 Single Cones are ideal for heavy trucks and buses, providing stability under varied loads. Their ABEC-1 rating ensures consistent performance.
For aerospace ground equipment, these cones offer precision and reliability. The dynamic load ratings make them suitable for high-stress support systems.
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