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Experimental investigation of creep crack growth behavior in nickel base superally by constant displacement loading method at elevated temperature

  • Rui Bao
  • , Hao Liu*
  • , Songsong Lu
  • , Chenyang Yue
  • , Binjun Fei
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

Creep crack growth (CCG) experiments were performed with compact tension (CT) specimens of a nickel base superalloy, FGH97, to investigate CCG rates and fracture behavior in the service temperature range from 600 °C to 750 °C. The constant displacement loading method (CDLM) was proposed and adopted since the constant force loading method (CFLM) are costly and time-consuming. Stress intensity factor (K) was employed to correlate the CCG rates (da/dt) for this creep-brittle superalloy and the general form of the K solution for a constant displacement loaded CT specimen was obtained based on finite element simulation. The test results indicate that the CCG rates increase with increasing temperature at a given K value. A unified formula containing temperature parameter was proposed to describe the CCG rates in the second stage of crack growth within this temperature range. A validating test in FGH97 via the CFLM was also carried out at 650 °C. Agreements in the test results indicate the feasibility of the CDLM.

Original languageEnglish
Pages (from-to)161-170
Number of pages10
JournalMaterials Science and Engineering: A
Volume665
DOIs
StatePublished - 17 May 2016

Keywords

  • Creep crack growth
  • Displacement loading
  • Elevated Temperature
  • Nickel base superalloy
  • Stress intensity factor

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