Evolution of Grain Interfaces in Annealed Duplex Stainless Steel after Parallel Cross Rolling and Direct Rolling

Abstract

Changes in various grain interfaces, including the grain boundary and phase boundary, are a strong indication of microstructural changes, particularly ultra-fined grains achieved by large strain deformation and subsequent annealing. After direct rolling and cross rolling with the same strain of epsilon = 2, the distributions of the interfaces in annealed UNS S32304 duplex stainless steel were investigated using electron backscatter diffraction (EBSD) in this study. The ferrite experienced continued recovery, and a high density of low-angle grain boundaries (LAGBs) was produced. The percentage and number of twin boundaries (TBs) and LAGBs varied within the austenite. TBs were frequently found within austenite, showing a deviation from the Kurdjumov-Sachs (K-S) orientation relationship (OR) with ferrite matrix. However, LAGBs usually occur in austenite, with the K-S OR in the ferrite matrix. LAGBs were prevalent in the precipitated austenite grains, and therefore a strong texture was introduced in the cross-rolled and annealed samples, in which the precipitated austenite readily maintained the K-S OR in the ferrite matrix. By contrast, more TBs and a less robust texture were found in the precipitated austenite in direct-rolled and annealed samples, deviating from the K-S OR.

Description

Keywords

grain interface, twin boundary, cross rolling, duplex stainless steel, BOUNDARY-CHARACTER-DISTRIBUTION, LOW-CARBON STEEL, INTERGRANULAR CORROSION, ALPHA-MATRIX, TEXTURE, AUSTENITE, RECRYSTALLIZATION, DISTRIBUTIONS, DEFORMATION, REFINEMENT, Chemistry, Physical, Materials Science, Multidisciplinary, Metallurgy & Metallurgical Engineering, Physics, Applied, Physics, Condensed Matter

Citation

Wang, M., Li, H., Tian, Y., Guo, H., Fang, X., & Guo, Y. (2018). Evolution of Grain Interfaces in Annealed Duplex Stainless Steel after Parallel Cross Rolling and Direct Rolling. In Materials (Vol. 11, Issue 5, p. 816). MDPI AG. https://doi.org/10.3390/ma11050816