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EE822100 Single Cones (Imperial)
EE822100 Single Cones (Imperial)

EE822100 Single Cones (Imperial)

The EE822100 is a single-row tapered roller bearing cone with a 10-inch bore, designed for combined loads. Made from durable chrome steel, it handles dynamic radial loads up to 264,000 lbf and static loads up to 392,000 lbf.

Its open design allows easy maintenance, while the steel cage ensures reliable performance. The cone has a width of 2.875 inches and fits well in standard radial clearance settings.

This model is interchangeable with Timken bearings, making it a practical choice for replacements. Ideal for heavy-duty applications like industrial machinery or large vehicles where combined loads are common.

It operates smoothly in temperatures from -30°C to 110°C and meets RoHS and REACH standards for safe use. The ABEC-1 rating ensures consistent performance for most industrial needs.

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Product Parameters

  • Part Number EE822100
  • Brand TFL
  • Interchangeable Brand Timken
  • System of Measurement Inch
  • Type Cones
  • Bearing Part Number EE822100-822175
  • Bearing Type Roller
  • Roller Bearing Type Tapered
  • For Load Direction Combined
  • Construction Single Row
  • Seal Type Open
  • Series 822000
  • Bore Dia 10"
  • Bore Dia Tolerance +0.001" to 0
  • Cone Width 2.875"
  • Cone Width Tolerance +0.003" to -0.01
  • Cone Backface ToClear Radius 0.25"
  • Cone Frontface Backing Diameter 10.87"
  • Cone Backface Backing Diameter 11.34"
  • Cage Cone Frontface Clearance 0.31"
  • Cage Cone Backface Clearance 0.42"
  • Effective Center Location -0.21"
  • Ring Material Chrome Steel
  • Cage Material Steel
  • Dynamic Radial Load 264000 lbf
  • Static Radial Load 392000 lbf
  • Dynamic Radial Rating(90 Million Revolutions)(C90) 68500 lbf
  • Dynamic Radial Rating(Two Row 1 Million Revolutions)(C1) 460000 lbf
  • Dynamic Thrust Rating(90 Million Revolutions)(Ca90) 40000 lbf
  • Dynamic Radial Rating(Two Row 90 Million Revolutions)(C90) 119000 lbf
  • Temperature Range -30° to 110 °C
  • ABEC Rating ABEC-1
  • Radial Clearance Standard (Available in C3/C4/C5)
  • RoHS Compliant
  • REACH Compliant

Features

How Is EE822100 Bearing Engineered for Reliability?

EE822100 Bearing features chrome steel rings and a steel cage, providing robust performance under combined loads.
Its dynamic radial load capacity reaches 264,000 lbf, ensuring durability in heavy-duty applications.
The tapered roller design enhances load distribution, reducing stress and extending service life.
With a temperature range of -30° to 110°C, it performs reliably in varied environments.

What Makes EE822100 Bearing Suitable for High-Temperature Applications?

EE822100 Bearing withstands temperatures up to 110°C, maintaining stability in demanding conditions.
The chrome steel construction resists thermal deformation, ensuring consistent performance.
Its open design allows for efficient heat dissipation, preventing overheating.
This makes it ideal for industrial applications where high temperatures are common.

Built for Durability: EE822100 Bearing

EE822100 Bearing is crafted with high-quality chrome steel, offering excellent wear resistance.
The single-row tapered roller design ensures smooth operation under combined loads.
Its dynamic radial rating of 460,000 lbf for two-row configurations highlights its strength.
With standard radial clearance options, it adapts to various operational needs.

Steel vs Ceramic Bearings: Strengths of EE822100 Bearing

EE822100 Bearing uses chrome steel for its rings and cage, balancing cost and performance.
This material choice provides superior strength and durability compared to ceramic alternatives.
The steel construction handles high dynamic radial loads up to 264,000 lbf with ease.
It’s a practical choice for industries requiring reliable, long-lasting bearings.

Why Choose EE822100 Bearing for Precision Tasks?

EE822100 Bearing’s tapered roller design ensures precise load distribution and alignment.
Its ABEC-1 rating guarantees consistent performance in precision applications.
The effective center location of -0.21″ enhances stability during operation.
This makes it suitable for machinery where accuracy is critical.

Application

Industrial Uses of EE822100 Bearing
EE822100 Bearing is commonly used in heavy machinery like construction equipment and mining rigs, where its tapered roller design handles combined loads efficiently. The inch sizing makes it a straightforward fit for older American-made machines.

In automotive applications, EE822100 Bearing supports large axles and wheel hubs, particularly in trucks and agricultural vehicles. Its chrome steel construction ensures durability even under constant heavy loads.

For industrial conveyor systems, EE822100 Bearing’s open design allows for easy lubrication and maintenance. The steel cage provides reliable performance in high-dust environments.

Where Is EE822100 Bearing Used?
EE822100 Bearing finds its place in railway applications, particularly in bogie assemblies where stability under dynamic loads is key. The ABEC-1 rating ensures consistent performance without over-engineering.

In wind turbine gearboxes, EE822100 Bearing’s high dynamic radial load capacity makes it a practical choice. The standard radial clearance accommodates thermal expansion during long operational cycles.

Built for Heavy-Duty Use: EE822100 Bearing
EE822100 Bearing excels in steel mill equipment, where its 392,000 lbf static load rating handles extreme pressures. The tapered rollers distribute stress evenly, prolonging service life.

For pulp and paper processing machinery, EE822100 Bearing’s corrosion-resistant materials withstand humid conditions. The inch measurements simplify replacements in North American factories.

Automotive vs Aerospace: Applications of EE822100 Bearing
In truck differentials, EE822100 Bearing manages heavy torque transfer reliably. Its -30° to 110°C range covers most ground vehicle operating conditions.

While not typically used in aerospace, EE822100 Bearing serves well in ground support equipment like aircraft tugs. The steel cage handles vibration better than synthetic alternatives.

Q&A

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