4.7 Article

Fatigue crack initiation behaviors around defects induced by welding thermal cycle in superalloy IN617B

期刊

INTERNATIONAL JOURNAL OF FATIGUE
卷 158, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ijfatigue.2022.106745

关键词

Fatigue crack initiation; Welding; Defects; IN617B; In-situ fatigue test; Fatigue crack initiation; Welding; Defects; IN617B; In-situ fatigue test

资金

  1. National Key R&D Problem of China [2020YFA0714900]
  2. National Natural Science Foundation of China [52031003]
  3. Defense Industrial Technology Development Pro-gram [JCKY2020110B007]
  4. Shuimu Tsinghua Scholar Program of Tsinghua University [2019SM065]
  5. State Key Laboratory of Tribology, Beijing, China
  6. Shanghai Turbine Company, Shanghai, China
  7. National Center for Quality Supervision and Testing of Iron and Steel, Beijing, China

向作者/读者索取更多资源

In this study, fatigue crack initiation behaviors around defects induced by welding thermal cycle in IN617B were investigated. Two mechanisms of fatigue crack initiation were clarified, and the dominant mechanism was determined by the distance of crack initiation from defects. Welding defects altered the deformation mode of the near-field region, accelerating the fatigue failure process.
In this study, fatigue crack initiation behaviors around defects induced by welding thermal cycle in IN617B were investigated by in-situ fatigue tests combined with DIC (Digital Image Correlation) and EBSD (Electron Back Scattering Diffraction) characterization. Two mechanisms of fatigue crack initiation around defects were clarified and the distance of crack initiation position from defects was proposed to determine which mechanism was dominant. Intergranular fatigue crack initiation caused by pile-up of dislocations was dominant in the far-field region from defects, while intragranular fatigue crack initiation caused by cracking at the interface between dislocation bands and matrix was dominant in the near-field region from defects. Welding defects altered the fatigue crack initiation mechanism by changing the deformation mode of the near-field region, thereby accelerating the fatigue failure process of IN617B alloy.

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