Effect of Nitrogen on the Fatigue Crack Growth Behavior of 316L Austenitic Stainless Steels

被引:0
|
作者
M. Nani Babu
G. Sasikala
K. Sadananda
机构
[1] Indira Gandhi Centre for Atomic Research,Materials Development & Technology Division, Metallurgy and Materials Group
[2] HBNI,undefined
[3] Technical Data Analysis Inc.,undefined
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Fatigue crack growth (FCG) behavior of 316L austenitic stainless steels (SSs) is studied as a function of nitrogen concentration and load ratios, R. Addition of nitrogen to austenitic SSs, in general, improves many of its properties. Austenitic SSs are known to undergo deformation-induced martensitic transformation (DIMT), which can influence their mechanical properties. DIMT occurring near the crack tip can improve the crack growth resistance under monotonic and cyclic loads. Nitrogen, however, stabilizes the austenite inhibiting or retarding DIMT, thereby reducing the toughness. The present detailed study was undertaken to evaluate the effect of nitrogen concentration on the FCG behavior of this steel at room temperature at different load ratios. The crack growth data are analyzed using the unified approach based on the two-parametric nature of fatigue, developed by the one of the authors. Crack growth trajectory maps were constructed using the above approach. These trajectory maps show how the material resistance to crack growth changes with increasing stress intensity factor and nitrogen content. The results are compared with the crack growth trajectories derived using the published crack growth data for 304 austenitic SSs known to show DIMT. The comparison indicates that the results of the present study can be explained with transformation toughening, albeit at a reduced rate compared with nitrogen-free alloys. Fractographic and transmission electron microscopy results are also consistent with the above conclusions.
引用
收藏
页码:3091 / 3105
页数:14
相关论文
共 50 条
  • [31] EFFECT OF NITROGEN ON LOW CYCLIC FATIGUE BEHAVIOR OF AUSTENITIC STAINLESS-STEELS
    NAMURA, N
    KISHIMOTO, Y
    SHIBATA, K
    FUJITA, T
    TRANSACTIONS OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1982, 22 (05) : B142 - B142
  • [32] Fatigue and Cycle Plastic Behavior of 316L Austenitic Stainless Steel Under Asymmetric Load
    Peng Jian
    Gao Yi
    Dai Qiao
    Wang Ying
    Li Kaishang
    ACTA METALLURGICA SINICA, 2019, 55 (06) : 773 - 782
  • [33] Local approach: Numerical simulations of creep and creep-fatigue crack initiation and crack growth in 316L SPH austenitic stainless steel
    Poquillon, D
    Cabrillat, MT
    Pineau, A
    JOURNAL DE PHYSIQUE IV, 1996, 6 (C6): : 421 - 430
  • [34] Effect of Hydrogen on the Tensile Behavior of Austenitic Stainless Steels 316L Produced by Laser-Powder Bed Fusion
    Khaleghifar, Farzaneh
    Razeghi, Khashayar
    Heidarzadeh, Akbar
    Mousavian, Reza Taherzadeh
    METALS, 2021, 11 (04)
  • [35] Study on tribo-chemical and fatigue behavior of 316L austenitic stainless steel in torsional fretting fatigue
    Xu, Zhibiao
    Peng, Jinfang
    Liu, Jianhua
    Liu, Xiyang
    Zhang, Wulin
    Zhu, Minhao
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART J-JOURNAL OF ENGINEERING TRIBOLOGY, 2020, 234 (01) : 84 - 93
  • [36] Investigation of crack propagation resistance of 304L, 316L and 316L(N) austenitic steels in liquid sodium
    Barkia, B.
    Courouau, J. L.
    Perrin, E.
    Lorentz, V.
    Rivollier, M.
    Robin, R.
    Nicolas, L.
    Cabet, C.
    Auger, T.
    JOURNAL OF NUCLEAR MATERIALS, 2018, 507 : 15 - 23
  • [37] On the cyclic behavior of 304L and 316L stainless steels
    Taleb, Lakhdar
    ADVANCES IN ENGINEERING PLASTICITY XI, 2013, 535-536 : 201 - 204
  • [38] Mechanical Properties of AISI 316L Austenitic Stainless Steels Welded by GTAW
    Amudarasan, N. V.
    Palanikumar, K.
    Shanmugam, K.
    MATERIALS ENGINEERING AND TECHNOLOGY, 2014, 849 : 50 - +
  • [39] Plasma nitriding of AISI 316L austenitic stainless steels at anodic potential
    Li, Y.
    Wang, L.
    Xu, J.
    Zhang, D.
    SURFACE & COATINGS TECHNOLOGY, 2012, 206 (8-9): : 2430 - 2437
  • [40] Effect of the culture medium on the behavior of the austenitic stainless steel with the specific 316L grade
    Sidane, Djahida
    Khireddine, Hafit
    SURFACE AND INTERFACE ANALYSIS, 2023, 55 (09) : 683 - 693