Effect of Strain Rate on the Extremely Low-Cycle Fatigue of Fe-15Mn-10Cr-8Ni-4Si Bidirectional-TRIP Steel

被引:0
|
作者
Yoshinaka F. [1 ]
Nagashima N. [1 ]
Sawaguchi T. [1 ]
机构
[1] National Institute for Materials Science, Sengen, Tsukuba
关键词
Extremely low cycle fatigue; Fatigue; Fracture surface; Martensitic transformation; Microstructure; Seismic damper;
D O I
10.2472/JSMS.72.858
中图分类号
学科分类号
摘要
Extremely low-cycle fatigue tests were conducted on the Fe-15Mn-10Cr-8Ni-4Si bidirectional-TRIP (B-TRIP) steel, up to an axial total strain amplitude of 10%. The fatigue life was about five times longer than that of SUS316 in the range of total strain amplitude of 4% or more. The improved fatigue life of the Fe-15Mn-10Cr-8Ni-4Si was attributed to the reversible bidirectional γ↔ε transformation during fatigue deformation that might mitigate the fatigue damage. On the other hand, the fatigue life tended to decrease with increasing strain rate when the strain rate was varied from 0.1 to 2.5%/s with the total strain amplitude of 10%. The fractography revealed that the fracture surface varied significantly with strain rate. At low strain rates, the crystallographic fracture surface characterized by facets and secondary cracks were observed, whereas these features were not observed at high strain rates. EBSD measurements on the postmortem microstructure showed that frequent ε-martensite formation occurred at low strain rates, whereas martensitic transformation was suppressed at high strain rates. The change in the specimen surface temperature was evaluated in terms of the Gibbs free energy difference between γ-austenite and ε-martensite ΔGγ→ε, and the effect of strain rate on the extremely low-cycle fatigue was discussed from the viewpoint of the deformation mechanism as follows. At low strain rate, ΔGγ→ε ≲ 0 (negative close-to-zero ΔGγ→ε), the condition for B-TRIP to work effectively, is maintained over the entire life span. At high strain rate, the deformation mechanism changes to one in which γ-austenite is dominant due to the increase in ΔGγ→ε caused by self-heating; the fatigue damage mitigation mechanism by B-TRIP is less likely to occur at high strain rates, resulting in a reduction in life. © 2023 The Society of Materials Science, Japan.
引用
收藏
页码:858 / 865
页数:7
相关论文
共 50 条
  • [31] Effect of Mixed-Grain Structure on Low-Cycle Fatigue Behavior of Fe-22Cr-25Ni Austenitic Steel at Elevated Temperature
    Gao, Jianbing
    Zhou, Hongwei
    Shen, Jiaming
    Wei, Hailian
    Fang, Xudong
    He, Yizhu
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2024, 33 (01) : 496 - 509
  • [32] Effect of Mixed-Grain Structure on Low-Cycle Fatigue Behavior of Fe-22Cr-25Ni Austenitic Steel at Elevated Temperature
    Jianbing Gao
    Hongwei Zhou
    Jiaming Shen
    Hailian Wei
    Xudong Fang
    Yizhu He
    Journal of Materials Engineering and Performance, 2024, 33 : 496 - 509
  • [33] Effect of alloying composition on low-cycle fatigue properties and microstructure of Fe-30Mn-(6-x)Si-xAl TRIP/TWIP alloys
    Nikulin, Ilya
    Sawaguchi, Takahiro
    Tsuzaki, Kaneaki
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2013, 587 : 192 - 200
  • [34] EFFECTS OF TEMPERATURE AND STRAIN RATE ON LOW-CYCLE FATIGUE PROPERTIES OF 12 Cr MARTENSITIC STAINLESS STEEL, SUS 403-B.
    Kanazawa, Kenji
    Yamaguchi, Koji
    Kobayashi, Kazuo
    Transactions of National Research Institute for Metals (Tokyo), 1980, 22 (01): : 11 - 18
  • [35] The effect of temperature on the low cycle fatigue properties of a 15Cr-15Ni, Ti modified austenitic stainless steel
    Sandhya, R
    Rao, KBS
    Mannan, SL
    Devanathan, R
    SCRIPTA MATERIALIA, 1999, 41 (09) : 921 - 927
  • [36] Low-cycle fatigue behaviors of a new type of 10% Cr martensitic steel and welded joint with Ni-based weld metal
    Zhang, Qunbing
    Zhang, Jianxun
    Zhao, Pengfei
    Huang, Yong
    Yu, Zhaohui
    Fang, Xiuyang
    INTERNATIONAL JOURNAL OF FATIGUE, 2016, 88 : 78 - 87
  • [37] Effect of Nb-V microalloying on low-cycle fatigue property of Fe-Mn-Al-C austenitic steel
    Zhao, Ting
    Chen, Chen
    Wang, Yuefeng
    Wang, Tiansheng
    Sheng, Guoliang
    He, Yanming
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2023, 23 : 3711 - 3725
  • [38] THE EFFECT OF HOLD TIME ON LOW-CYCLE FATIGUE BEHAVIOR OF 2 1/4CR-1MO STEEL
    CHI, S
    SUZUKI, M
    NISHI, H
    ETO, M
    KIM, I
    ISIJ INTERNATIONAL, 1992, 32 (04) : 545 - 552
  • [39] Effect of loading rate on low-cycle fatigue damage of 30Cr1Mo1V rotor steel
    Sun, Qingmin
    Chen, Jian
    He, Jianjun
    Ren, Yanjie
    Fu, Hao
    Hu, Min
    TRANSFERABILITY AND APPLICABILITY OF CURRENT MECHANICS APPROACHES, 2009, : 255 - 260
  • [40] On the low-cycle fatigue response of pre-strained austenitic Fe61Mn24Ni6.5Cr8.5 alloy showing TWIP effect
    Lambers, H. -G.
    Ruesing, C. J.
    Niendorf, T.
    Geissler, D.
    Freudenberger, J.
    Maier, H. J.
    INTERNATIONAL JOURNAL OF FATIGUE, 2012, 40 : 51 - 60