000 02060nab a2200229 4500
005 20260520001102.0
008 260224s2012 xxu
245 0 0 _aPredicting the long-term field performance of coating systems on steel using a rapid electrochemical test
_bThe damage tolerance test
260 _a
_b
_cmar. 2012
270 _a04/05/2012 ; 04/05/2012
300 _a12 p. ; 035007-1 / 035007-13
520 _aTranscripción del resumen del autor: The pace of coatings development is limited by the time required to assess their corrosion protection properties. This study takes a step forward from past studies and correlates the corrosion performance of protective coatings assessed by a series of short-term electrochemical measurements with 18 month and 60 month beachside atmospheric exposure results of coated panels. A series of 11 coating systems on A36 steel (UNS K02600) substrates were tested in a blind study using the damage tolerance test (DTT). In the DTT, a through-film pinhole defect is created, and the electrochemical characteristics of the defect are then monitored over the next 1 to 7 days while immersed in 0.5 M sodium chloride (NaCl). The results from open-circuit potential, anodic potentiostatic polarization, and electrochemical impedance spectroscopy tests were used to characterize the corrosion behavior of the coating systems. The beachside exposure tests were conducted at the Kennedy Space Center (Kennedy Space Center, Florida) according to ASTM D610-01. It was found that the short-term changes in the open-circuit potential and in the charge delivered during a sequence of potentiostatic pulses showed high correlation and even higher correlation to 60 month beachside atmospheric exposure with correlations approaching 100%.
581 _a3
773 0 _tCorrosion
_g68
942 _cARTICULO
100 1 _aTaylor, S.R.
_916488
100 1 _aContu, F.
_952519
100 1 _aCalle, L.M.
_952520
100 1 _aCurrn, J.P.
_952521
100 1 _aLi, W.
_952522
999 _c187129
_d187129