Bearings
Ball Bearings
SKF High Temperature
Quick Code: BB-92848
6213-2Z/VA208 SKF High Temperature Ball Bearing 65mm x 120mm x 23mm
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Product Specification
Inside Dia
65mm
Outside Dia
120mm
Width
23mm
Reference
6213-2Z/VA208-SKF
Brand
SKF
Quick Order Code
BB-92848
Product Description
The 6213-2Z/VA208 SKF High Temperature Ball Bearing is a precision-engineered solution designed for extreme industrial environments requiring exceptional thermal performance and reliability. This single-row deep groove ball bearing represents the pinnacle of high-temperature bearing technology, capable of operating in temperature ranges from -150°C to +350°C.
Key Technical Specifications
- Inside Diameter: 65mm
- Outside Diameter: 120mm
- Width: 23mm
- Temperature Range: -150°C to +350°C
Advanced Engineering Features
- Large radial internal clearance (4x C5 standard) prevents seizing during rapid temperature changes
- Comprehensive manganese phosphate surface treatment for superior corrosion resistance and improved running properties
- Innovative segmented graphite cage design for self-lubrication
- Two protective shields to prevent solid contaminant ingress
- Ability to accommodate moderate radial and axial loads
- Environmentally friendly with no emission of dangerous gases or vapors
Unique Lubrication Mechanism
- Graphite cage segments strategically separate and lubricate ball bearings
- Minute quantities of graphite powder released during rotation provide continuous lubrication
- Self-lubricating properties eliminate the need for external lubrication in extreme temperatures
Ideal Applications
- High-temperature industrial processing equipment
- Aerospace and advanced manufacturing environments
- Chemical processing plants
- Extreme temperature machinery and systems
- Steel and metal processing equipment
- Specialized industrial ovens and kilns
Part of SKF's advanced VA208 high-temperature bearing series, this bearing offers unparalleled reliability and performance in the most challenging thermal environments where standard bearings would catastrophically fail.

