Initiation and short crack growth behaviour of environmentally induced cracks in AA5083 H131 investigated across time and length scales

Author:

Gudla Visweswara C.1ORCID,Garner Alistair1,Storm Malte2,Gajjar Parmesh1,Carr James1,Palmer Benjamin C.3,Lewandowski John J.3,Withers Philip J.1,Holroyd N. J. Henry13,Burnett Timothy L.1

Affiliation:

1. Henry Royce Institute, School of Materials , The University of Manchester , Manchester, Lancashire, M13 9PL , UK

2. Diamond Light Source Ltd., Diamond House, Harwell Science and Innovation Campus , Didcot, Oxfordshire OX11 0DE , UK

3. Department of Materials Science and Engineering , Case Western Reserve University , Cleveland, OH 44106 , USA

Abstract

Abstract Environmentally induced cracking (EIC) in a sensitized high-strength AA5083 H131 alloy has been investigated using time-lapse synchrotron X-ray computed tomography combined with post-mortem correlative characterization. Small corrosion features deliberately introduced in a pre-exposure step were found to be the site of initiation for over 95% of the 44 EIC cracks that developed under slow strain rate testing. Detailed analysis using three-dimensional electron backscatter diffraction and energy-dispersive spectroscopy analysis of a single crack confirmed the intergranular nature of the cracks from the start and that the pre-exposure corrosion was associated with an α-AlFeMnSi particle cluster. It also appears that several cracks may have initiated at this site, which later coalesced to form the 300-μm-long crack that ultimately developed. Of further note is the fact that initiation of the EIC cracks across the sample started below the yield strength and continued beyond the ultimate tensile strength. The most rapid crack propagation occurred during sample extension following a period of fixed displacement.

Funder

European Research Council

Engineering and Physical Sciences Research Council

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,General Chemical Engineering,General Chemistry

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