7216 CD/HCP4AQBCD

Hybrid Ceramic Super Precision Bearings

7216 CD/HCP4AQBCD Hybrid Ceramic Super Precision Bearings
7216 CD/HCP4AQBCD Hybrid Ceramic Super Precision Bearings

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Part No.
Part No. 7216 CD/HCP4AQBCD

Basic Information

System of measurement Metric
Weight 4.95 kg
Tolerance class P4A
Seal type Open
For load direction Angular Contact

Main Dimensions

Bore diameter 80 mm
Bore diameter tolerance -0.004mm to 0
Outside diameter 140 mm
Outside diameter tolerance -0.004mm to 0
Width 104 mm
Width tolerance -0.2mm to 0
Contact angle 15 °

Ball & Washer Dimensions

Ball diameter 17.462 mm
Ball quantity 17

Performance

Temperature range - 30°C to 110 °C
Radial dynamic load rating 50625 lbf
Radial static load rating 67500 lbf
Limiting speed 28 X 1000 rpm
Lubrication Lubricated
Matched arrangement Quadruplex Back-to-Back (QBC)
Number of bearings in matched set 4
Universal matching bearing No (Standard)
Preload Heavy / Class D

Materials

Ring material Chrome Steel
Ball material Ceramic
Cage material Phenolic
Technical Drawings No drawings available at the moment, will be launched soon
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7216 CD/HCP4AQBCD Bearing Product Overview & Core Advantages

The 7216 CD/HCP4AQBCD is a high-precision quadruplex angular contact ball bearing designed for demanding applications requiring exceptional rigidity and accuracy. This matched set of four bearings in a back-to-back (QBC) arrangement is preloaded to Class D (Heavy), delivering maximum system stiffness and runout control. Its configuration is engineered to handle combined radial and axial loads simultaneously, making it ideal for high-speed, high-rigidity spindles in precision machinery. The use of ceramic balls and a phenolic cage further enhances its high-speed performance and thermal stability.

7216 CD/HCP4AQBCD Bearing Model Code Explained, Specifications & Naming Convention

Suffix Code Technical Meaning
CD Indicates a duplex bearing with a specific internal preload and mounting arrangement. In this context, it is part of the quadruplex set designation.
HC Signifies the use of Hybrid Ceramic balls (Silicon Nitride), which reduce centrifugal forces, lower operating temperature, and enable higher limiting speeds.
P4A Denotes an ultra-precision tolerance class exceeding ABEC 7, ensuring minimal runout and superior rotational accuracy for critical applications.
QBC Specifies the Quadruplex Back-to-Back matched arrangement. This configuration provides the highest possible rigidity against moment loads.
Open The bearing is supplied without seals or shields, allowing for customized lubrication schemes and minimizing friction for maximum speed capability.

7216 CD/HCP4AQBCD Bearing Structural Features & Performance Benefits

  • Maximum Rigidity and Stability: The quadruplex back-to-back (QBC) arrangement with a Heavy (Class D) preload creates an extremely rigid bearing system that effectively resists moment loads and deflection, ensuring precise tool or workpiece positioning.
  • Superior High-Speed Performance: The combination of hybrid ceramic balls and a lightweight phenolic cage significantly reduces rotating mass and centrifugal forces. This allows the bearing to achieve a high limiting speed of 28,000 rpm with minimal heat generation.
  • High Load Capacity: With a 15° contact angle and optimized internal geometry, this bearing set is engineered to support significant combined radial and axial loads, making it suitable for heavy-duty machining operations.
  • Precision and Longevity: Manufactured to P4A tolerance class and crafted from high-grade chrome steel rings, this bearing guarantees exceptional running accuracy, low noise, and extended service life in precision equipment.

7216 CD/HCP4AQBCD Bearing Typical Application Areas

This high-performance bearing set is specifically designed for the most demanding applications, including:

  • High-Speed CNC Machining Centers and Grinding Spindles
  • Precision Machine Tool Spindles requiring extreme rigidity
  • High-frequency Milling and Boring Spindles
  • Other advanced industrial machinery where high speed, high rigidity, and precision are critical.
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