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304L stainless steel in chloride solutions containing thiosulfate
Corrosion Science, Vol. 39, No. ll I, pp. 1935-1947, 1997
0 1997 Elsevier Science Ltd
Printed in Great Britain. All rights reserved
001(3-938X/97 %17.00+0.00
PII: soolo-938x(97)ooo87-5
INITIATION AND PROPAGATION OF STRESS CORROSION
CRACKS FOR TYPE 304L STAINLESS STEEL IN CHLORIDE
SOLUTIONS CONTAINING THIOSULFATE
T. HARUNA, T. SHIBATA and R. TOYOTA*
Department of Materials Science and Processing, Faculty of Engineering, Osaka University, 2-1 Yamada-oka,
Suita, Osaka 565, Japan
Abstract-The stress corrosion cracking (SCC) of Type 304L stainless steel in chloride solutions containing various
concentrations of thiosulfate ions (03’-) has been studied by using a slow strain rate testing apparatus with a
dynamic observation system. It was observed that intergranular cracks were initiated from pits and propagated
with the evolution of bubbles. The SCC was found to occur lop3 M SzOx2-, and the variation in the
concentration of SSO~~- from 1O-3 to 10-l M did not shown any marked difference in SCC susceptibility
evaluated by maximum stress. According to the analysis of the cracking behavior from the observed images, crack
propagation rate was found to increase slightly with increase in the concentration of S20x2-. The increase is
considered to be caused by the change in the corrosion potential with the concentration. Apparent critical stress
intensity factor for SCC was less scattered around 2-3 MNm-3’2 and slightly increased with increase in the
concentration. The strain where either a pit or a crack was initiated first and the number of pits and cracks decreased
remarkably and increased with increase in the concentration, respectively. S2032- mainly affects the initiation
process of the pit and the crack more than the crack propagation process. 0 1997 Elsevier Science Ltd
Keywords: A. stainless steel, C. stress corrosion.
INTRODUCTION
Low alloy steels and corrosion resistant alloys, such as stainless steels and Ni-based alloys,
are well known to s
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