Relationship among fatigue life, inclusion size and hydrogen concentration for high-strength steel in the VHCF regime
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference26 articles.
1. Fracture Mode Transition in High Cycle Fatigue of High Strength Steel.
2. Influences of Non-Metallic Inclusion and Carbide on High-Cycle Fatigue Strength of Tool Steels.
3. Fatigue Fracture of Low Alloy Steel at Ultra-High-Cycle Region under Elevated Temperature Condition.
4. Relation between High Cycle Fatigue Characteristics and Fracture Origins in Low-temperature-tempered Cr-Mo Steel.
5. Super-long life tension–compression fatigue properties of quenched and tempered 0.46% carbon steel
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1. Fatigue crack initiation site transition of high‐strength steel under very high‐cycle fatigue;Fatigue & Fracture of Engineering Materials & Structures;2024-09-08
2. Interpretable Predictive Model for Inclusions in Electroslag Remelting Based on XGBoost and SHAP Analysis;Metallurgical and Materials Transactions B;2024-03-26
3. Effect of hydrogen on very high cycle fatigue properties of 17-4 PH martensite stainless steel;International Journal of Fatigue;2023-09
4. THE EFFECT OF THE DIAMETER AND SPACING BETWEEN IMPURITIES ON THE FATIGUE STRENGTH COEFFICIENT OF STRUCTURAL STEEL;Archives of Metallurgy and Materials;2023-07-26
5. Effect of Ruhrstahl Heraeus Refining Time on Inclusions and Rolling Contact Fatigue Life of a High‐Carbon Chromium Bearing Steel;steel research international;2023-05-26
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