6040 M Ceramic Bearings

6040 M Ceramic Bearings Ceramic Ball Bearings
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Part Number 6040 M Ceramic Bearings
Ring Material info


Cage Material


Balls Material


System of Measurement Metric
Bearing Type Ball
For Load Direction Radial
Seal Type Open
Bore Dia 200 mm
Outer Dia 310 mm
Width 51 mm
Dynamic Radial Load 14580 lbf
Static Radial Load 16538 lbf
Max Speed (X1000 rpm) 2.52
Lubrication Without
Shoulder Diameter 274.95 mm
Chamfer Dimension 2.1 mm
Diameter Of Shaft Abutment 210 mm
Diameter Of Housing Abutment 300 mm
Radius Of Shaft Or Housing Fillet 2 mm
Fatigue Load Limit 6.4 kN
Reference Speed 4300 r/min
Minimum Load Factor 0.025
Calculation Factor 15.6
Temperature Range -176 to 428 °F
Weight 10500.00 g

Design Features of 6040 M Ceramic Bearings 

6040 M Ceramic Bearings are precision bearings designed with balls made from advanced ceramic materials, including Silicon Nitride (Si3N4), Zirconia (ZrO2), or Silicon Carbide (SiC). They have a bore diameter of 200 mm, an outer diameter of 310 mm, and a width of 51 mm. These bearings offer superior performance in terms of resistance to heat, corrosion, and wear, making them ideal for specific applications where these properties are crucial.

 

What Benefits Can 6040 M Ceramic Bearings Provide?

  • High-Temperature Resistance: Made from silicon nitride, these bearings withstand extreme temperatures, maintaining performance even in heat-intensive applications.
  • Corrosion and Chemical Resistance: These bearings remain durable in environments exposed to corrosive chemicals.
  • Low Friction: Reduced friction results in minimal wear, less heat generation, and an extended operational lifespan.
  • Non-Magnetic: As ceramic, they are inherently non-magnetic, making them ideal for applications where magnetic interference is a concern.
  • Electrical Insulation: Being non-conductive, they are perfect for applications requiring electrical insulation.

 

What Can 6040 M Ceramic Bearings Be Used for?

These bearings excel in unique applications due to their specific properties:

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

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