Detail publikace

High Temperature Low Cycle Fatigue Characteristics of Grit Blasted Polycrystalline Ni-base Superalloy

ŠULÁK, I. OBRTLÍK, K. ČELKO, L.

Originální název

High Temperature Low Cycle Fatigue Characteristics of Grit Blasted Polycrystalline Ni-base Superalloy

Typ

článek v časopise ve Scopus, Jsc

Jazyk

angličtina

Originální abstrakt

The present work is focused on the study of low cycle fatigue behavior of grit blasted nickel-base superalloy Inconel 713LC (IN 713LC). Grit blasting parameters are obtained. Button end specimens of IN 713LC in as-received condition and with grit blasted surface were fatigued under strain control with constant total strain amplitude in symmetrical cycle at 900 °C in air. Hardening/softening curves, cyclic stress-strain curve and fatigue life data of both materials were obtained. Both materials exhibit the same stress-strain response. It has not been observed any improvement or reduction of low cycle fatigue life in representation of total strain amplitude versus number of cycles to failure of grit blasted material in comparison with as-received material. Surface relief and fracture surface were observed in SEM. The little effect of surface treatment on fatigue characteristics is discussed.

Klíčová slova

Grit blasting, fatigue life, cyclic stress-strain response, high temperature fatigue, IN 713LC

Autoři

ŠULÁK, I.; OBRTLÍK, K.; ČELKO, L.

Rok RIV

2015

Vydáno

21. 9. 2015

Nakladatel

Trans Tech Publications

Místo

Switzerland

ISSN

1013-9826

Periodikum

Key Engineering Materials (print)

Ročník

665

Číslo

2016

Stát

Švýcarská konfederace

Strany od

73

Strany do

76

Strany počet

4

BibTex

@article{BUT117340,
  author="Ivo {Šulák} and Karel {Obrtlík} and Ladislav {Čelko}",
  title="High Temperature Low Cycle Fatigue Characteristics of Grit Blasted Polycrystalline Ni-base Superalloy",
  journal="Key Engineering Materials (print)",
  year="2015",
  volume="665",
  number="2016",
  pages="73--76",
  doi="10.4028/www.scientific.net/KEM.665.73",
  issn="1013-9826"
}