Deformation behavior and spall fracture of the Hadfield steel under shock-wave loading

Comparative studies of regularities in plastic deformation and fracture of the Hadfield polycrystalline steel upon quasi-static tension, impact failure, and shock-wave loading with rear spall are performed. The SINUS-7 accelerator was used as a shock-wave generator. The electron beam parameters of t...

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Veröffentlicht in:Russian physics journal 2011-03, Vol.53 (10), p.1046-1052
Hauptverfasser: Gnyusov, S. F., Rotshtein, V. P., Polevin, S. D., Kitsanov, S. A.
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Sprache:eng
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Zusammenfassung:Comparative studies of regularities in plastic deformation and fracture of the Hadfield polycrystalline steel upon quasi-static tension, impact failure, and shock-wave loading with rear spall are performed. The SINUS-7 accelerator was used as a shock-wave generator. The electron beam parameters of the accelerator were the following: maximum electron energy was 1.35 MeV, pulse duration at half-maximum was 45 ns, maximum energy density on a target was 3.4·10 10 W/cm 2 , shock-wave amplitude was ~20 GPa, and strain rate was ~10 6 s –1 . It is established that the failure mechanism changes from ductile transgranular to mixed ductile-brittle intergranular one when going from quasi-static tensile and Charpy impact tests to shock-wave loading. It is demonstrated that a reason for the intergranular spallation is the strain localization near the grain boundaries containing a carbide interlayer.
ISSN:1064-8887
1573-9228
DOI:10.1007/s11182-011-9529-z