7018 ACEGA/HCP4A

Hybrid Ceramic Super Precision Bearings

7018 ACEGA/HCP4A Hybrid Ceramic Super Precision Bearings
7018 ACEGA/HCP4A Hybrid Ceramic Super Precision Bearings

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Part No.
Part No. 7018 ACEGA/HCP4A

Basic Information

System of measurement Metric
Weight 1.11 kg
Tolerance class P4A
Seal type Open
For load direction Angular Contact

Main Dimensions

Bore diameter 90 mm
Bore diameter tolerance -0.004mm to 0
Outside diameter 140 mm
Outside diameter tolerance -0.004mm to 0
Width 24 mm
Width tolerance -0.2mm to 0
Contact angle 25 °

Ball & Washer Dimensions

Ball diameter 11.112 mm
Ball quantity 28

Performance

Temperature range - 30°C to 110 °C
Radial dynamic load rating 7605 lbf
Radial static load rating 6750 lbf
Limiting speed 15 X 1000 rpm
Lubrication Lubricated
Matched arrangement Single
Number of bearings in matched set 2
Universal matching bearing Universal Matchable (SU)
Preload Extra light / Class A

Materials

Ring material Chrome Steel
Ball material Ceramic
Cage material Phenolic
Technical Drawings No drawings available at the moment, will be launched soon
Price: $ 399.91 / each
In Stock

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7018 ACEGA/HCP4A Bearing Product Overview & Core Advantages

The 7018 ACEGA/HCP4A is a high-precision angular contact ball bearing designed for demanding applications requiring exceptional accuracy and performance. Engineered with a 25° contact angle and manufactured to P4A tolerance class, this bearing delivers superior running accuracy and rotational stability. Its extra light preload (Class A) minimizes deflection under load, making it ideal for applications requiring high rigidity and precise shaft positioning. The use of ceramic balls significantly reduces centrifugal forces, enabling higher operating speeds and providing excellent resistance to thermal expansion, while the phenolic cage ensures smooth operation at high RPMs.

Model Code Breakdown

Code Segment Technical Meaning
7018 Basic bearing series and size designation (90mm bore, 140mm OD, 24mm width).
AC Angular Contact design with a 25° contact angle.
EGA Universal Matchable (SU) bearing, designed to be mounted in a pair (back-to-back, face-to-face, or tandem) to support combined loads.
HC Hybrid Ceramic construction, featuring steel rings and ceramic balls for enhanced high-speed performance.
P4A High precision tolerance class, exceeding ABEC 7/ISO P4 standards, ensuring minimal runout and vibration.

7018 ACEGA/HCP4A Bearing Structural Features & Performance Benefits

High-Speed Capability: The combination of ceramic balls and a lightweight phenolic cage drastically reduces rotating mass and inertial forces, allowing the bearing to achieve a limiting speed of 15,000 rpm. This makes it an excellent choice for high-speed spindles and other rapid-rotation applications.

Superior Rigidity and Load Capacity: The 25° contact angle and extra light preload provide high resistance to deflection, enabling the bearing to handle significant combined loads (radial and axial) simultaneously with great stability.

Precision Engineering: Manufactured to P4A tolerance class with tight dimensional control on the bore diameter, outside diameter, and width, this bearing guarantees exceptional running accuracy and consistent performance in the most precise machinery.

Universal Matching Design: As a Universal Matchable (SU) bearing, two 7018 ACEGA/HCP4A bearings can be precisely paired to form a pre-adjusted set, simplifying installation and optimizing system performance for complex load conditions.

7018 ACEGA/HCP4A Bearing Typical Application Areas

The 7018 ACEGA/HCP4A is engineered for high-performance applications where speed, precision, and reliability are paramount. Key industries and equipment include:

  • Machine Tool Spindles: High-speed machining centers, grinding spindles, and CNC milling machines.
  • Precision Robotics: Joint and arm actuators requiring high rigidity and positional accuracy.
  • Aerospace & Defense: Gyroscopes, navigation systems, and auxiliary power units (APUs).
  • High-Speed Motors and Turbines: Where reduced friction and thermal stability are critical.
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