Sutthiruangwong, Sutha
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Sutthiruangwong, Sutha
Alternative Name
Sutthiruangwong, S.
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Email
sutha.su@kmitl.ac.th
3 results
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Item type:Publication, Corrosion behavior of electrodeposited Co-Fe alloys in aerated solutions(2017-05-01) ;Chansena, A.Co-Fe alloy is an important component for reader-writer in hard disk drive. The surface of the alloy is exposed to the environment both in gas phase and in liquid phase during manufacturing process. The study of corrosion behavior of Co-Fe alloys can provide useful fundamental data for reader-writer production planning especially when corrosion becomes a major problem. The corrosion study of electrodeposited Co-Fe alloys from cyclic galvanodynamic polarization was performed using potentiodynamic polarization technique. The composition of electrodeposited Co-Fe alloys was determined by X-ray fluorescence spectrometry. The patterns from X-ray diffractometer showed that the crystal structure of electrodeposited Co-Fe alloys was body-centered cubic. A vibrating sample magnetometer was used for magnetic measurements. The saturation magnetization (M<inf>s</inf>) was increased and the intrinsic coercivity (H<inf>ci</inf>) was decreased with increasing Fe content. The corrosion rate study was performed in aerated deionized water and aerated acidic solutions at pH 3, 4 and 5. The corrosion rate diagram for Co-Fe alloys was constructed. It was found that the corrosion rate of Co-Fe alloys was increased with increasing Fe content in both aerated deionized water and aerated acidic solutions. In aerated pH 3 solution, the Co-Fe alloy containing 78.8% Fe showed the highest corrosion rate of 7.7 mm yr<sup>−1</sup> with the highest M<inf>s</inf> of 32.0 A m<sup>2</sup> kg<sup>−1</sup>. The corrosion rate of the alloy with 23.8% Fe was at 1.1 mm yr<sup>−1</sup> with M<inf>s</inf> of 1.2 A m<sup>2</sup> kg<sup>−1</sup>. In aerated deionized water, the alloy with the highest Fe content of 78.5% still showed the highest corrosion rate of 0.0059 mm yr<sup>−1</sup> while the alloy with the lowest Fe content of 20.4% gave the lowest corrosion rate of 0.0045 mm yr<sup>−1</sup>. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Effect of mercury on corrosion in production wells in Gulf of Thailand(2011-06-01) ;Pojtanabuntoeng, T. ;Saiwan, C.; Gallup, D. L.The effect of mercury on the corrosion of materials used for tubing in oil and gas production wells was studied. Carbon steel (L80) and 13% chromium stainless steel (13Cr) were selected for study by potentiodynamic polarisation. Simulated produced water, with the composition obtained from the Gulf of Thailand field, was used as a corrosive solution. Temperature kinetically increased the corrosion reaction. Chloride ions and carbon dioxide also enhanced the corrosion. Acidity increased the pitting corrosion of 13Cr and increased the corrosion rate of both 13Cr and L80. A concentration of 3-12 ppm of mercury lowered the current density in the passive region and increased the pitting potential of 13Cr. The corrosion rate of L80 was decreased with small amount of mercury addition. The 13Cr showed lower uniform corrosion rate than the L80 in all conditions of the simulated produced water. © 2011 Institute of Materials, Minerals and Mining Published by Maney on behalf of the Institute. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, The investigation of corrosion behavior of electrodeposited Co-Fe alloys surface with phase and 3D reconstruction of image using TIE and TPE(2018-01-01) ;Srisuwan, Thanthanat; ; In this research, phase retrieval using transport of intensity equation (TIE) and transport of phase equation (TPE) have been used for determine the surface of corrosion behavior of electrodeposited Co-Fe alloys, an important component in hard disk drive. Without interferometer as used in digital holography technique, by using TIE and TPE, our observing setup is simple and compact. The experimental results show the capability of TIE and TPE for observing the pitting corrosion. The pitting corrosion of Co-Fe image results have also shown. The dynamic process of microstructure surface system would be conducted and may be applied to hard disk drive industry in the future.
