CESI 6330

CESI 6330 Metric Size Silicon Nitride Ceramic Bearings
Part Number CESI 6330
System of Measurement Metric
Bearing Type Ball
For Load Direction Radial
Seal Type Open
Bore Dia 150 mm
Outer Dia 320 mm
Width 65 mm
Ring Material Silicon Nitride
Balls Material Si3n4
Cage Material PEEK
Dynamic Radial Load 15525 lbf
Static Radial Load 16031 lbf
Max Speed (X1000 rpm) 2.24
Lubrication Without
Temperature Range -176 to 1472 °F
Shoulder Diameter 263.4 mm
Chamfer Dimension 4 mm
Diameter Of Shaft Abutment 167 mm
Diameter Of Housing Abutment 303 mm
Radius Of Shaft Or Housing Fillet 3 mm
Fatigue Load Limit 7.8 kN
Reference Speed 4300 r/min
Minimum Load Factor 0.03
Calculation Factor 13.9
Weight 9160.00 g

Design Features of CESI 6330 Bearing

CESI 6330 Bearing is a precision bearing designed with balls made from silicon nitride (Si3N4), a type of advanced ceramic material. CESI 6330 bore dia is 150 mm. Its out dia is 320 mm. CESI 6330 width is 65 mm. This bearing offers superior performance in terms of resistance to heat, corrosion, and wear, making it ideal for specific applications where these properties are crucial.

 

What Benefits Can CESI 6330 Bearing Provide?

  • High-Temperature Resistance: Silicon nitride's ability to withstand extreme temperatures ensures this bearing maintain its performance even in heat-intensive applications.
  • Corrosion and Chemical Resistance: CESI 6330 Bearing remains durable in environments exposed to corrosive chemicals.
  • Low Friction: Reduced friction attributes to minimal wear, less heat generation, and an extended operational lifespan of the bearing.
  • Non-Magnetic: Being ceramic, silicon nitride is inherently non-magnetic, making CESI 6330 Bearing ideal for applications where magnetic interference is a concern.
  • Electrical Insulation: Silicon nitride is non-conductive, making it ideal for applications requiring electrical insulation.

 

What Can CESI 6330 Bearing Be Used for?

CESI 6330 Bearing excels in unique applications due to its specific properties:

  • Precision Machine Tools: Especially in high-speed spindle applications where precision and reduced friction are paramount.
  • Electric Motors: Used in settings where high efficiency and performance are required. The non-conductive nature ensures minimal electrical interference.
  • Aerospace Equipment: For instruments and systems sensitive to weight and where resistance to extreme conditions is essential, like satellite gyroscopes and guidance systems.
  • Medical Devices: In high-performance equipment like MRI machines, surgical instruments, and dental drills, where precision, hygiene, and reduced noise are crucial.
  • High-Performance Vehicles: In race cars or motorcycles, for wheel and engine bearings, to handle high speeds with reduced heat production.
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