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Bearing steel technology – developments in rolling bearing steels and testing

Bearing steel technology – developments in rolling bearing steels and testing

Bearing steel technology – developments in rolling bearing steels and testing is a seemingly all-encompassing term to describe the metallurgical know-how on steels and processes for the production and usage of rolling bearing steels. In the pursuit of efficiency, the rolling bearing industry has standardized the steels and testing methods and reduced the costs of the metallurgical processes. As time elapses, the knowledge of why and how the standards were prepared fades into the past, i.e. it is forgotten. Much has been published in the open literature on the subject for specialists (fellow steel technologists) and the first ASTM International Symposium on Bearing Steel, sponsored by ASTM Committee .

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Bearing steel technology – developments in rolling bearing steels and testing

  • Front MatterBearing steel technology - developments in rolling bearing steels and testing
  • Overview
  • Table of Contents
  • Part I. Bearing Steel Steel making and Semi-Finished Product Manufacturing Technologies
  • 1. Quantitative Relationship between Degree of Center Segregation and Large Carbide Size in Continuously Cast Bloom of
  • High Carbon Chromium Bearing Steel
  • Part II. Material and Heat Treatment Design Considerations, Including Fracture Mechanics and Structural Strength, for Rolling Bearings
  • 2. Microstructure and Fatigue Strength of the Bearing Steel 52100 after Shortened Bainitic Treatment
  • 3. Case Depth and Static Capacity of Surface Induction-Hardened Rings
  • Part III. Microstructure Behaviour in Rolling Contact
  • 4. Stress Field Evolution in a Ball Bearing Raceway Fatigue Spall
  • 5. Sub-Surface Initiated Rolling Contact Fatigue – Influence of Non-Metallic Inclusions, Processing History, and Operating Conditions
  • 6. Initiation Behavior of Crack Originated from Non-Metallic Inclusion in Rolling Contact Fatigue
  • 7. Modeling the Influence of Microstructure in Rolling Contact Fatigue
  • Part IV. Fatigue Life Prediction Methodologies
  • 8. A New Methodology for Predicting Fatigue Properties of Bearing Steels: From X-ray Micro-Tomography and Ultrasonic Measurements to the Bearing Lives Distribution
  • 9. Gigacycle Fatigue Properties of Bearing Steels
  • 10. Rolling Contact Fatigue Life Test Design and Result Interpretation Methods Maintaining Compatibility of Efficiency and Reliability
  • Part V. Corrosion Resistant Steel and Hydrogen Effects in Bearing Steels
  • 11. The Role of Hydrogen on Rolling Contact Fatigue Response of Rolling Element Bearings
  • Part VI. Micro Cleanliness Quality Assurance in Bearing Steels
  • 12. Quality Function Deployment Application on the Development of 100Cr6 Bearing Tubes
  • 13. Comparison of Inclusion Assessment Rating Standards in Terms of Results and Reliability by Numerical Simulation

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