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Product Number:
51324-20382-SG
Author:
Behzad Bavarian; Lisa Reiner
Publication Date:
2024
$40.00
Different vapor phase corrosion inhibitors were evaluated to determine their corrosion inhibition for aluminum alloys in Ethylene glycol (C2H6O2) coolant mixture. When the temperature exceeds 80°C, ethylene glycol can decompose into organic acids. The resulting acidic environments cause severe localized corrosion of aluminum alloys. The corrosion behavior was studied at multiple temperatures in different corrosion inhibitors using different concentrations. Corrosion inhibitor VCI-A, VCI-B, VCI-C, and VCI-D at 2.5-3.0% dosage showed excellent corrosion protection. VCI-A, VCI-C and VCI-D maintained a steady, low corrosion rate during long term exposure by neutralizing pH and forming a hydrophobic film. They increase the polarization resistance by a significant factor, therefore, lowered corrosion rate. VCI-B inhibitor, also showed the ability to reduce the corrosion rate of aluminum in ethylene glycol solutions. However, due to its high pH chemistry, the effective dosage should be maintained at <2.5% to avoid any potential increase in pH that can promote localized corrosion or under-deposit corrosion attacks of aluminum alloys. The results of this investigation demonstrated that these inhibitors can lower the corrosion rate in water-ethylene glycol solutions by neutralizing pH and forming stable films.
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Product Number:
51218-169-SG
Author:
Haoran Wang, Qixin Zhou
Publication Date:
2018
$20.00
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Product Number:
ED22-17137-SG
Author:
Theodore M. Besmann, Jacob A. Yingling, Johnathan C. Ard, Matthew S. Christian, Amir M. Mofrad, Juliano Schorne Pinto, Mahmoud A. A. Aslani
Publication Date:
2022
$20.00
Accurate representations of the thermochemistry and phase equilibria of relevant molten salt constituents and their aggregate behavior are critical to the development, design, operation, and licensing of any molten salt reactor (MSR). This need is currently being addressed by the creation of a dedicated, high quality/validated MSR thermochemical database, the Molten Salt Thermal Properties Database-Thermochemical (MSTDB-TC). MSTDB-TC is being populated with prioritized models and values for vapor species, and liquid and crystalline phases of chloride and fluoride fuel and coolant salts with relevant fission product and transuranic elements, and more recently with corrosion-relevant systems with chromium, iron, and nickel. Multi-cation crystalline and melt solution models are being incorporated, including newly developed relations as necessary, to obtain real system behavior.
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Product Number:
51321-16819-SG
Author:
Erica Macha; James Dante; Travis Eliason; Alexander Lilly; Rachel Black; Victor Rodrigez-Santiago
Publication Date:
2021
$20.00
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Product Number:
41215-913-SG
Author:
Barry Messer, Yasir Idlibi, Sergio Vitomir
Publication Date:
2015
$20.00
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Product Number:
MECC23-20061-SG
Author:
Alwin Fahrer; Lamont Inglehart
Publication Date:
2023
$20.00
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Product Number:
51323-18962-SG
Author:
A.R. Trueman
Publication Date:
2023
$20.00
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Product Number:
51315-5948-SG
ISBN:
5948 2015 CP
Author:
Neil Sharma
Publication Date:
2015
$0.00
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Product Number:
04114-SG
Author:
N.C. Eisinger, J.R. Crum, B. C. Puckett
Publication Date:
2004
$20.00
Material selection for downhole applications has become more difficult as the number of alloys continues to increase. On one hand, stainless steels like 316 offer a relatively low initial cost, but are not suited for many severe applications or environments. Other alloys, like MP35N, offer considerable strength and corrosion resistance, but with a much higher cost. Thus, an attempt has been made to create an alloy that spans the considerable gap between the 300 series of stainless steels and the nickel or cobalt base alloys. The resulting 6% Mo stainless steels offered increased strength and corrosion resistance without a drastic cost increase. The first generation of superaustenitics still falls considerably short of the strength and corrosion resistance provided by established nickel or cobalt-base alloys. In an attempt to further bridge the remaining gap, a new superaustenitic stainless steel has been developed that maintains the attractive cost of the 6% Mo alloys, but enhances both corrosion resistance and strength to open up environments that were too severe for 6% Mo alloys. The development of this alloy along with localized corrosion resistance, qualification testing, and mechanical testing are discussed.
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Product Number:
51319-13497-SG
Author:
Ole Gilje Avaldsnes
Publication Date:
2019
$20.00
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