Institute of Fundamental Technological Research
Polish Academy of Sciences

Partners

Xinzhu Zheng


Recent publications
1.  Virupakshi S., Zheng X., Frydrych K., Karaman I., Srivastava A., Kowalczyk-Gajewska K., Modeling the effects of slip, twinning, and notch on the deformation of single-crystal austenitic manganese steel, International Journal of Plasticity, ISSN: 0749-6419, DOI: 10.1016/j.ijplas.2025.104453, Vol.193, pp.104453-1-104453-24, 2025

Abstract:
The objective of this work is to deconvolute the interaction of slip, twinning, and notch on the deformation response of an austenitic manganese (Hadfield) steel using detailed finite element simulations. The simulations employ a rate-dependent crystal plasticity constitutive model that incorporates both slip and twinning deformation mechanisms. The model accounts for the spatially non-uniform appearance of new twin-related orientations, hardening due to slip–twin interactions, and modified properties of the twinned crystal. Limited experiments on single-crystal dog-bone and single-edge notch specimens, with two crystal orientations, are also conducted to aid the simulation. Several features of the experimental observations are accurately captured in the simulations. For example, simulations accurately capture distinct stress–strain responses associated with different crystallographic orientations, including variations in initial hardening behavior followed by either decreasing or increasing hardening depending on the dominant deformation mechanisms. The simulation also captures the observed orientation-dependent asymmetric deformation of the notch in single-edge notch specimens. Additionally, by selectively activating deformation mechanisms, the role of twinning is isolated and its influence on both global and local response is clearly demonstrated. These results provide a mechanistic understanding of how deformation mode interactions and local geometry (i.e., notch) influence the response of these materials.

Keywords:
Austenitic steel, Single crystals, Anisotropy, Deformation twinning, Crystal plasticity, Fracture, Finite element method

Affiliations:
Virupakshi S. - IPPT PAN
Zheng X. - other affiliation
Frydrych K. - IPPT PAN
Karaman I. - other affiliation
Srivastava A. - other affiliation
Kowalczyk-Gajewska K. - IPPT PAN

Category A Plus

IPPT PAN

logo ippt            Pawińskiego 5B, 02-106 Warsaw
  +48 22 826 12 81 (central)
  +48 22 826 98 15
 

Find Us

mapka
© Institute of Fundamental Technological Research Polish Academy of Sciences 2025