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Finite element simulation of hot plain strain compression test of austenitic steell

Identyfikatory
Warianty tytułu
Konferencja
Metody oceny struktury oraz własności materiałów i wyrobów/sympozjum (XXII ; 6-8.XI.2007 ; Svratka, Czechy)
Języki publikacji
EN
Abstrakty
EN
The paper dials with the results of plain strain compression test of austenitic steel on GLEEBLE test machine. In order to obtain true strain-stress curves the results was corrected in accordance with experiment conditions. For normal constant strain rate the local strain rate in the slip line field varies for different initial specimen geometries. Therefore, the understanding of real stress-strain dependence needs to take such effects into account. Moreover, the variations in strain and strain rate within the test-piece cleary have a significant influence on the evolution of microstructure. To analyze the local strain rate distribution futures and its influence on flow stress level, the finite element simulation of the process was made. The association of strain and strain rate characteristics within the test-piece with the results of metallographic analysis is also presented in this study.
Rocznik
Strony
81--81
Opis fizyczny
Bibliogr. 4 poz., il., tab., wykr.
Twórcy
autor
autor
autor
  • VŠB Technical University of Ostrava
Bibliografia
  • [1] SUIKKANEN P.P., KORNI J.I., KARJALAINEN L.P.: Processing Low and Ultr-Low Varbon Bainitic Steels. Materials Science Forum Vols. 500-501(November 2005) pp. 535-542.
  • [2] JONAS J.J., POLIAK E.I.: A New Model for Interpass Softening Based on the Strain Hardening Rate Prior to Unloading. Materials Science Forum Vols. 500- 501(November 2005) pp. 15-26.
  • [3] LACEY A.J., LOVEDAY M.S., MAHON G.J., ROEBUCK B., SELLARS C.M. and VAN DER WINDEN M.R.: Measuring flow stress in hot plane strain compression tests. Measurment Good Practice Guide No 27, Summer 2002, 85 p., ISSN 1368-6550.
  • [4] KOWALSKI B., SELLARS C.M., PIETRZYK M.: Identification of reological parameters on the basis of plane strain compression test on speciments of various initial dimensions. Computation Materials Science 35 (2006) 92-97.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOG-0037-0004
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