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Pitting susceptibility of concrete reinforcement steel bars having manganese sulphide inclusions

Authors
Al-Negheimish, Abdulaziz I.Alhozaimy, Abdulrahman M.A.Hussain, Raja RizwanSingh, Jitendra KumarSingh D.D.N.
Issue Date
May-2017
Publisher
American Concrete Institute
Keywords
Concrete reinforcing steel bars; Corrosion; Cracking; Manganese sulfide inclusions; Mechanism & characterization; Pitting
Citation
ACI Materials Journal, v.114, no.3, pp 441 - 451
Pages
11
Indexed
SCOPUS
Journal Title
ACI Materials Journal
Volume
114
Number
3
Start Page
441
End Page
451
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/114837
DOI
10.14359/51689595
ISSN
0889-325X
1944-737X
Abstract
Long-Term wetting-drying treatment of specimens with reinforcing bars having manganese sulfide (MnS) inclusions in their microstructure showed a strong pitting tendency under sufficient chloride concentration. On the other hand, reinforcing bars free from MnS inclusions tested under identical conditions did not exhibit such pitting. The mass loss for both types of reinforcing bars computed after 3 years of exposure were comparable. However, the mortars embedded with manganese sulfide inclusion (MSI) reinforcing bars exhibited cracking after 3 years of wet/dry treatments. No such cracks were found for inclusion-free (IF) reinforcing bars. Scanning electron microscopy, space and time-dependent electrochemical alternate current (AC) impedance, and potential studies were performed to examine the kinetics and mechanism of these reinforcing bars. The accelerating effect of chloride on pitting of metals and alloys with MnS inclusions has been explained in this paper considering the theory of acid regeneration cycle, increased solution conductivity, and the availability of high charge density on these ion forming compounds, which destabilized the passive layer. Raman spectroscopy and X-ray diffraction studies indicated the formation of ferric chloride in the rust layers of severely pitted MSI reinforcing bars. It is suggested that this ferric chloride, in the presence of oxygen and moisture, regenerated hydrochloric acid and lepidocrocite, resulting in autocatalytic chain reactions on the surface of MSI reinforcing bars. © 2017, American Concrete Institute. All rights reserved.
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Kumar, Singh Jitendra
ERICA부총장 한양인재개발원 (ERICA 창의융합교육원)
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