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Super Precision Angular Contact Ball Bearings 71816 ACD/HCP4
Super Precision Angular Contact Ball Bearings 71816 ACD/HCP4

Super Precision Angular Contact Ball Bearings 71816 ACD/HCP4

The 71816 ACD/HCP4 is a super precision angular contact ball bearing with an 80mm bore and 100mm outer diameter, crafted from chrome steel for durability. It features a 25° contact angle and ceramic balls for smooth operation.

This bearing handles radial loads up to 3105 lbf and spins at speeds up to 20,000 RPM, making it suitable for high-performance applications. Its phenolic cage ensures stability and reduces friction.

The open design allows for easy lubrication, while the P4 tolerance class guarantees precise performance. Ideal for machine tools or spindle drives where accuracy is key.

Weighing just 0.14kg, it’s lightweight yet robust. It operates in temperatures from -30°C to 110°C, offering reliable performance in various conditions.

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Product Parameters

  • Part Number 71816 ACD/HCP4
  • Brand TFL
  • Interchangeable SKF
  • Bore Dia 80 mm
  • Bore Dia Tolerance -0.007mm to 0
  • Outer Dia 100 mm
  • Outer Dia Tolerance -0.008mm to 0
  • Width 10 mm
  • Width Tolerance -0.2mm to 0
  • Ball Dia 5.556 mm
  • Ball Qty 35
  • Contact Angle 25°
  • Tolerance Class P4 (ABEC-7)
  • System of Measurement Metric
  • Seal Type Open
  • Matched Arrangement No
  • Preload Available
  • For Load Direction Angular Contact
  • Ring Material Chrome Steel
  • Ball Material Ceramic
  • Cage Material Phenolic
  • Dynamic Radial Load 3105 lbf
  • Static Radial Load 3825 lbf
  • Lubrication Lubricated
  • Temperature Range -30° to 110 °C
  • Max Speed 20000 rpm
  • Weight 0.14 kg
  • Price($) 872.856

Features

Performance Features of 71816 ACD/HCP4 Bearing

71816 ACD/HCP4 Bearing is designed with a 25° contact angle, optimising load distribution for angular contact applications.
Its chrome steel rings and ceramic balls reduce friction, enhancing precision and speed capabilities.
The phenolic cage ensures smooth operation, even at high speeds up to 20,000 rpm.
With a dynamic radial load capacity of 3105 lbf, it delivers reliable performance in demanding conditions.

How Does 71816 ACD/HCP4 Bearing Reduce Friction?

71816 ACD/HCP4 Bearing uses ceramic balls and chrome steel rings to minimise friction during operation.
This combination allows for smoother rotation and reduced heat generation, even at high speeds.
The open design and lubrication ensure consistent performance over time.
Its precision engineering makes it suitable for applications requiring low friction and high accuracy.

Engineered for Precision: 71816 ACD/HCP4 Bearing

71816 ACD/HCP4 Bearing meets P4 tolerance standards, ensuring exceptional precision for critical applications.
The ceramic balls and phenolic cage contribute to its high-speed capabilities and low noise levels.
With a static radial load capacity of 3825 lbf, it handles demanding loads with ease.
Its compact design (80 mm×100 mm×10 mm) makes it ideal for space-constrained installations.

Application

Key Fields for 71816 ACD/HCP4 Bearing
71816 ACD/HCP4 Bearing is widely used in high-speed machine tools, where its precision angular contact design ensures accurate spindle rotation. The ceramic balls reduce friction, making it ideal for applications demanding smooth operation.

In automotive systems, 71816 ACD/HCP4 Bearing supports components like electric motors and gearboxes, handling both radial and axial loads efficiently. Its P4 tolerance class guarantees consistent performance in demanding conditions.

For medical imaging devices, 71816 ACD/HCP4 Bearing’s phenolic cage and chrome steel rings provide reliable, low-noise operation. The open design allows for easy lubrication, extending service life in critical applications.

Automation equipment benefits from 71816 ACD/HCP4 Bearing’s ability to handle high speeds and precise movements. Its lightweight construction and ceramic balls make it a solid choice for robotic arms and CNC machinery.

In consumer electronics, 71816 ACD/HCP4 Bearing ensures quiet and efficient performance in devices like high-end printers. The lubricated design reduces maintenance needs, making it a practical option for long-term use.

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