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Entries for March 2011

01
C. M. Menendez, J. M. Bojes, and J. Lerbscher et al.
Batch corrosion inhibitors are used widely for the corrosion control of production wells and pipelines in the oil and gas industry. Rules of thumb that incorporate film thickness, contact time, and surface area are still commonly used to calculate the volume of batch inhibitor required for pipelin ... [Corrosion 67, 035003 (2011)] published Tue Mar 01, 2011.

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01
B. Maier and G. S. Frankel
The pitting corrosion behavior of Type 304 (UNS S30400) stainless steel (SS) under an electrolyte droplet with a layer of silica particles on the surface was investigated using a Kelvin probe. Droplets of 2.5 M magnesium chloride (MgCl2) solution were placed on an electrophoretically silica-coated ... [Corrosion 67, 035004 (2011)] published Tue Mar 01, 2011.

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01
H. Kim, D. B. Mitton, and R. M. Latanision et al.
Stress corrosion cracking (SCC) of Alloy 625 (UNS N06625) has been investigated in pH 2 aqueous solution at high temperatures (300°C to 426°C) and high pressure (24.1 MPa) to understand the corrosion behavior in supercritical water oxidation (SCWO) systems, which can destroy aqueous organic wastes ... [Corrosion 67, 035002 (2011)] published Tue Mar 01, 2011.

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01
K. Arioka, T. Yamada, and T. Miyamoto et al.
The growth rate of stress corrosion cracking (SCC) was measured for cold-worked, thermally treated Alloy 690 (UNS N06690, CWTT690) and cold-worked, solution-treated Alloy 690 (CW ST 690) in hydrogenated pressurized water reactor (PWR) primary water under static load condition. Three important patt ... [Corrosion 67, 035006 (2011)] published Tue Mar 01, 2011.

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01
X. B. Chen, N. Birbilis, and T. B. Abbott et al.
The corrosion susceptibility of Mg and its alloys in humid and aqueous environments limits their widespread application. The performance of several conversion coating technologies is reviewed herein. In addition to the assessment of performance based on the literature to date, thermodynamic analys ... [Corrosion 67, 035005 (2011)] published Tue Mar 01, 2011.

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01
S. Ju, Y. Zhang, and D. Shang et al.
The corrosion rates of two nickel-based alloys, Alloy 400 (UNS N04400) and Alloy C-276 (UNS N10276), and two stainless steels, Type 316L (UNS 31603) and Type 304 (UNS S30400), in a concentrated sodium hydroxide (NaOH) solution (45 mass%) containing sodium chloride (NaCl, 15 g/L) between 180°C to 2 ... [Corrosion 67, 036001 (2011)] published Tue Mar 01, 2011.

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