前共析渗碳体对珠光体钢疲劳裂纹扩展行为的影响

IF 0.3 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
Keisuke Ando, H. Ohtsubo, T. Tagawa
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引用次数: 0

摘要

采用质量分数为0.64 ~ 1.21的不同珠光体钢,研究了前共析渗碳体对疲劳裂纹扩展行为的影响。半共析和共析珠光体钢的疲劳裂纹扩展速率几乎没有变化,而含有大量前共析渗碳体(θ)的1.21质量%C钢的疲劳裂纹扩展速率在高应力强度因子区加快。扫描电镜(SEM)观察表明,1.21质量%C钢的疲劳断口比其他钢更多地含有岛状脆性断口。在质量为1.21 %C的钢中,由于裂纹扩展,脆性断口的总面积分数显著增加,最大应力强度因子(K max)增加。为了识别1.21质量%C钢疲劳断口脆性断裂表象下的显微组织,对刻蚀前后的SEM断口形貌进行了比较。结果表明,前共析θ参与了脆性断裂的形成。在此基础上,从裂纹尖端前共晶θ诱发的静态脆性断裂角度讨论了超共晶钢的加速疲劳裂纹扩展行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Pro-eutectoid Cementite on Fatigue Crack Growth Behavior of Pearlitic Steels
: The influence of pro-eutectoid cementite on fatigue crack growth behavior was investigated using various pearlitic steels containing from 0.64 to 1.21 mass%C. The fatigue crack growth rates of the hy-po-eutectoid and eutectoid pearlitic steels hardly changed, while that of the 1.21 mass%C steel having a large amount of pro-eutectoid cementite (θ) was accelerated especially in the high stress intensity factor region. Scanning electron microscope (SEM) observation revealed that fatigue fracture surface in the 1.21 mass%C steel more frequently contained islanded brittle fracture surfaces than that in other steels. In the 1.21 mass%C steel, the total area fraction of brittle fracture surface was notably increased with an en-hancement in maximum stress intensity factor ( K max ) due to crack extension. More detailed SEM fractog-raphies were performed comparing between before and after etching in order to identify microstructures beneath the brittle fracture appearances on the fatigue fracture surface of the 1.21 mass%C steel. As a re-sults, it was suggested that the pro-eutectoid θ was involved in the formation of brittle fracture. Based on these investigations, the accelerated fatigue crack growth behavior of hyper-eutectoid steel was discussed in terms of static brittle fracture induced by pro-eutectoid θ near the crack tip.
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
74
审稿时长
6-12 weeks
期刊介绍: The journal ISIJ International first appeared in 1961 under the title Tetsu-to-Hagané Overseas. The title was changed in 1966 to Transactions of The Iron and Steel Institute of Japan and again in 1989 to the current ISIJ International. The journal provides an international medium for the publication of fundamental and technological aspects of the properties, structure, characterization and modeling, processing, fabrication, and environmental issues of iron and steel, along with related engineering materials. Classification I Fundamentals of High Temperature Processes II Ironmaking III Steelmaking IV Casting and Solidification V Instrumentation, Control, and System Engineering VI Chemical and Physical Analysis VII Forming Processing and Thermomechanical Treatment VIII Welding and Joining IX Surface Treatment and Corrosion X Transformations and Microstructures XI Mechanical Properties XII Physical Properties XIII New Materials and Processes XIV Social and Environmental Engineering.
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