Dynamic tensile properties of reduced-activation ferritic steel F82H

The dynamic tensile properties of reduced-activation ferritic steel F82H was characterized by high-speed tensile tests over a strain-rate range of 0.01–1400s−1 at temperatures of 296 and 423K. As a result, the tensile strength of the F82H steel appears to be sensitive to strain-rate. This is explain...

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Veröffentlicht in:Fusion engineering and design 2015-11, Vol.100, p.146-151
Hauptverfasser: Kasada, Ryuta, Ishii, Daiki, Ando, Masami, Tanigawa, Hiroyasu, Ohata, Mitsuru, Konishi, Satoshi
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Sprache:eng
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Zusammenfassung:The dynamic tensile properties of reduced-activation ferritic steel F82H was characterized by high-speed tensile tests over a strain-rate range of 0.01–1400s−1 at temperatures of 296 and 423K. As a result, the tensile strength of the F82H steel appears to be sensitive to strain-rate. This is explained by the activation volume of gliding dislocation. The uniform elongation is also sensitive to strain-rate but true fracture strain is considered to be less sensitive. Zerilli–Armstrong bcc model is found adequate to describe the dependence of yield stress of F82H on temperature and strain-rate tested in the present study.
ISSN:0920-3796
1873-7196
DOI:10.1016/j.fusengdes.2015.05.001