DocumentCode :
1513250
Title :
Corrosion Estimation of Stainless Steel in Nitric Acid by an Optoelectronic Instrument Based on Diffuse Light Scattering Pattern Measurement
Author :
Marimuthu, Paulvanna Nayaki ; Kabilan, Arunachalam Ponnusami
Author_Institution :
Coll. of Eng. & Pet., Kuwait Univ., Safat, Kuwait
Volume :
10
Issue :
10
fYear :
2010
Firstpage :
1658
Lastpage :
1665
Abstract :
This paper presents the design and implementation of an optoelectronic instrument for measuring corrosion of metal surfaces, based on measurement of lightwave scattering pattern. The instrument consists of a thin beam light emitting diode (LED) that illuminates a tiny spot on the metal surface, and an array of photodiodes spread over a hemispherical structure covering the surface to record the light scattering pattern. A mathematical model of light scattering by a corroded metal surface is constructed in which a newly defined corrosion factor is correlated to light scattering pattern. The corrosion factor derived from the scattering pattern gives a measure of the degree of corrosion in a scale from 0 to 100. The temporal behavior of corrosion of stainless steel samples immersed in nitric acid of various concentrations is presented graphically. A semi empirical mathematical model describing the corrosion and dissolution processes in terms of the well-known bilogarithmic laws fits very well with the experimental results. The measured corrosion factor and the corresponding roughness factor as measured by an atomic force microscope are compared to show the relation between the two.
Keywords :
atomic force microscopy; corrosion; dissolving; light emitting diodes; light scattering; stainless steel; surface topography measurement; FeCCrJk; atomic force microscope; bilogarithmic laws; corrosion estimation; dissolution processes; lightwave scattering pattern measurement; metal surface; nitric acid; optoelectronic instrument; roughness factor; semi empirical mathematical model; stainless steel; Corrosion factor; optoelectronic instrument; scattering pattern;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2010.2047014
Filename :
5483073
Link To Document :
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