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HYDROGEN ENHANCED FATIGUE CRACK PROPAGATION OF BAINITIC AND TEMPERED MARTENSITIC STEELS

机译:贝氏体和回火马氏体钢的氢增强疲劳裂纹扩展

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摘要

The hydrogen-enhanced fatigue crack propagation (FCP) of bainitic and tempered martensitic structures in AISI 4130 steel has been evaluated. Three bainitic structures involved in the study were obtained by isothermal transformation at 330℃, 370℃ and 470℃. By selecting appropriate tempering temperatures, three tempered martensitic specimens with yield strengths corresponding to those of the bainitic structures, were prepared. For the bainitic specimens, their hydrogen-assisted FCP rates and fracture mode were found to be similar despite the fact that they have entirely different tensile strengths and hydrogen permeation behavior. The hydrogen-assisted FCP rate for the tempered martensites increased significantly with decreasing tempering temperature. By comparing FCP rates in bainitic and tempered martensitic structures for AISI 4130 steel, it is clear that the effect of microstructure was the dominant factor in this steel-environment system.
机译:已经评估了AISI 4130钢中贝氏体和回火马氏体组织的氢增强疲劳裂纹扩展(FCP)。通过在330℃,370℃和470℃下等温转变获得了涉及该研究的三个贝氏体结构。通过选择适当的回火温度,制备了三个回火马氏体试样,其屈服强度与贝氏体组织的屈服强度相对应。对于贝氏体标本,尽管它们具有完全不同的拉伸强度和氢渗透行为,但发现它们的氢辅助FCP速率和断裂模式相似。随着回火温度的降低,回火马氏体的氢辅助FCP速率显着增加。通过比较AISI 4130钢在贝氏体和回火马氏体组织中的FCP速率,可以清楚地看出,微观结构的影响是该钢-环境系统的主要因素。

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