Detail publikačního výsledku

Fatigue crack propagation rate in EUROFER 97 estimated using small specimens

HUTAŘ, P.; NÁHLÍK, L.; ŠEVČÍK, M.; SEITL, S.; KRUML, T.; POLÁK, J.

Originální název

Fatigue crack propagation rate in EUROFER 97 estimated using small specimens

Anglický název

Fatigue crack propagation rate in EUROFER 97 estimated using small specimens

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

The proposed paper describes fatigue damage evolution in Eurofer 97 reduced activation ferritic-martensitic steel. The short crack growth study was performed on small cylindrical specimens using an MTS 880 servohydraulic machine at constant strain amplitude. Based on the fatigue crack growth data obtained and corresponding 3D finite element analysis Paris law region of the fatigue curve were estimated. The results obtained were compared with standard determination of the fatigue crack growth rate according to ASTM using CT specimens. The presented results can help to transfer experimental data measured on small specimens to large structures and vice versa.

Anglický abstrakt

The proposed paper describes fatigue damage evolution in Eurofer 97 reduced activation ferritic-martensitic steel. The short crack growth study was performed on small cylindrical specimens using an MTS 880 servohydraulic machine at constant strain amplitude. Based on the fatigue crack growth data obtained and corresponding 3D finite element analysis Paris law region of the fatigue curve were estimated. The results obtained were compared with standard determination of the fatigue crack growth rate according to ASTM using CT specimens. The presented results can help to transfer experimental data measured on small specimens to large structures and vice versa.

Klíčová slova

small fatigue cracks, Eurofer 97, J-integral, fatigue crack growth rate

Klíčová slova v angličtině

small fatigue cracks, Eurofer 97, J-integral, fatigue crack growth rate

Autoři

HUTAŘ, P.; NÁHLÍK, L.; ŠEVČÍK, M.; SEITL, S.; KRUML, T.; POLÁK, J.

Rok RIV

2011

Vydáno

06.01.2011

Nakladatel

Trans Tech Publications

Místo

Switzerland

ISSN

1013-9826

Periodikum

Key Engineering Materials (print)

Svazek

452-453

Číslo

-

Stát

Švýcarská konfederace

Strany od

325

Strany do

328

Strany počet

4

BibTex

@article{BUT50908,
  author="Pavel {Hutař} and Luboš {Náhlík} and Martin {Ševčík} and Stanislav {Seitl} and Tomáš {Kruml} and Jaroslav {Polák}",
  title="Fatigue crack propagation rate in EUROFER 97 estimated using small specimens",
  journal="Key Engineering Materials (print)",
  year="2011",
  volume="452-453",
  number="-",
  pages="325--328",
  issn="1013-9826"
}