In situ characterisation of slip bands behaviour in ferrite under mechanical loading

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1. Verfasser: Koko, Abdalrhaman
Format: Preprint
Veröffentlicht: 2023
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author Koko, Abdalrhaman
author_facet Koko, Abdalrhaman
contents This study investigates the behaviour of slip bands, terminated mid-grain in the ferrite grains of age-hardened stainless steel, under different conditions to understand their dislocation activity and response to varying loads. The full Nye lattice curvature tensor was measured in situ using high-resolution electron backscatter diffraction (HR-EBSD) to estimate the total geometrically necessary dislocation density and individual mobile and immobile dislocations activity at the slip band scale. We found that slip bands primarily consist of edge dislocations, marked by a 'blooming zone' at its tip, indicating significant shear deformation and loss of mobile dislocations. The blooming zone expands as the load increases while the slip band thickness remains constant. Coupled with the correlation between mobile and immobile dislocations within the loaded slip bands observed in situ, we observed that the dislocation activities at the slip band were mainly from immobile edge dislocations to maintain the geometrical distortion of the slip band.
format Preprint
id arxiv_https___arxiv_org_abs_2306_13920
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle In situ characterisation of slip bands behaviour in ferrite under mechanical loading
Koko, Abdalrhaman
Materials Science
This study investigates the behaviour of slip bands, terminated mid-grain in the ferrite grains of age-hardened stainless steel, under different conditions to understand their dislocation activity and response to varying loads. The full Nye lattice curvature tensor was measured in situ using high-resolution electron backscatter diffraction (HR-EBSD) to estimate the total geometrically necessary dislocation density and individual mobile and immobile dislocations activity at the slip band scale. We found that slip bands primarily consist of edge dislocations, marked by a 'blooming zone' at its tip, indicating significant shear deformation and loss of mobile dislocations. The blooming zone expands as the load increases while the slip band thickness remains constant. Coupled with the correlation between mobile and immobile dislocations within the loaded slip bands observed in situ, we observed that the dislocation activities at the slip band were mainly from immobile edge dislocations to maintain the geometrical distortion of the slip band.
title In situ characterisation of slip bands behaviour in ferrite under mechanical loading
topic Materials Science
url https://arxiv.org/abs/2306.13920