Galvanic Corrosion between Carbon Steel and Soldering Fluxes in a Concentrated LiBr Solution at High Temperatures
Galvanic corrosion between carbon steel and soldering fluxes was studied in a concentrated LiBr solution at 383 and 433K, using extreme-value statistical analysis of pit depth in soldered parts, measurement of the amount of dissolved Fe2+ and dissolved flux compornents, and corrosion potential and g...
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Published in | Hyōmen gijutsu Vol. 49; no. 8; pp. 875 - 880 |
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Main Authors | , , |
Format | Journal Article |
Language | English Japanese |
Published |
Tokyo
The Surface Finishing Society of Japan
01.08.1998
Hyomen Gijutsu Kyokai Japan Science and Technology Agency |
Subjects | |
Online Access | Get full text |
ISSN | 0915-1869 1884-3409 |
DOI | 10.4139/sfj.49.875 |
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Abstract | Galvanic corrosion between carbon steel and soldering fluxes was studied in a concentrated LiBr solution at 383 and 433K, using extreme-value statistical analysis of pit depth in soldered parts, measurement of the amount of dissolved Fe2+ and dissolved flux compornents, and corrosion potential and galvanic current measurement. The soldering fluxes used were copper, copper alloys (Cu-Si-Mn, BAg-8, Ag 30-Cu, 70/30 Cupronickle) and nickel. Nickel flux soldered with carbon steel caused considerable galvanic corrosion of carbon steel at 383K, while carbon steel soldered with copper and copper alloy fluxes showed galvanic corrosion of the fluxes at 383 and 433K. The galvanic corrosion rate of fluxes decreased in the order of copper>Cu-Si-Mn>Ag 30-Cu>BAg-8> 70/30 cupronickel at 433K, and Cu-Si-Mn>copper>Ag 30-Cu>BAg-8>70/30 cupronickel at 388K. 70/30 cupronickel flux was considered the most suitable soldering flux in a concentrated LiBr solution at high temperature. |
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AbstractList | Galvanic corrosion between carbon steel and soldering fluxes was studied in a concentrated LiBr solution at 383 and 433K, using extreme-value statistical analysis of pit depth in soldered parts, measurement of the amount of dissolved Fe2+ and dissolved flux compornents, and corrosion potential and galvanic current measurement. The soldering fluxes used were copper, copper alloys (Cu-Si-Mn, BAg-8, Ag 30-Cu, 70/30 Cupronickle) and nickel. Nickel flux soldered with carbon steel caused considerable galvanic corrosion of carbon steel at 383K, while carbon steel soldered with copper and copper alloy fluxes showed galvanic corrosion of the fluxes at 383 and 433K. The galvanic corrosion rate of fluxes decreased in the order of copper>Cu-Si-Mn>Ag 30-Cu>BAg-8> 70/30 cupronickel at 433K, and Cu-Si-Mn>copper>Ag 30-Cu>BAg-8>70/30 cupronickel at 388K. 70/30 cupronickel flux was considered the most suitable soldering flux in a concentrated LiBr solution at high temperature. Galvanic corrosion between carbon steel and soldering fluxes was studied in a concentrated LiBr solution at 383 and 433K, using extreme-value statistical analysis of pit depth in soldered parts, measurement of the amount of dissolved Fe exp 2+ and dissolved flux components, and corrosion potential and galvanic current measurement. The soldering fluxes used were copper, copper alloys (Cu-Si-Mn, BAg-8, Ag 30-Cu, 70/30 Cupronickle) and nickel. Nickel flux soldered with carbon steel caused considerable galvanic corrosion of carbon steel at 383K, while carbon steel soldered with Cu and Cu alloy fluxes showed galvanic corrosion of the fluxes at 383 and 433K. The galvanic corrosion rate of fluxes decreased in the order of copper > Cu-Si-Mn > Ag 30-Cu > BAg-8 > 70/30 cupronickel at 433K, and Cu-Si-Mn > copper > Ag 30-Cu > BAg-8 > 70/30 cupronickel at 388K. 70/30 cupronickel flux was considered the most suitable soldering flux in a concentrated LiBr solution at high temperature. |
Author | TAKAHASHI, Hideaki KIKUCHI, Tomoko MABUCHI, Katsumi |
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References | 1) 伊与木茂樹, 植村正; 冷凍, 53, 1101 (1978 5) 伊藤雅彦, 緑川平八郎, 泉谷雅清, 相沢道彦, 丹野和夫; 防食技術, 39, 298 (1990 4) K. Tannno, M. Itou, H. Sekiya, H. Yashiro and N. Kumagai; Corrosion Science, 34, 1453 (1993 2) 下郡一利, 鳥井康司; 神戸製鋼技法, 354, 47 (1984 3) 丹野和夫, 高橋利明; 第35回腐食防食討論会講演集, p. 485-488 (1988 6) 伊藤雅彦, 丹野和夫; 第81回腐食防食シンポジウム資料, p. 11-20 (1990 |
References_xml | – reference: 4) K. Tannno, M. Itou, H. Sekiya, H. Yashiro and N. Kumagai; Corrosion Science, 34, 1453 (1993) – reference: 6) 伊藤雅彦, 丹野和夫; 第81回腐食防食シンポジウム資料, p. 11-20 (1990) – reference: 2) 下郡一利, 鳥井康司; 神戸製鋼技法, 354, 47 (1984) – reference: 3) 丹野和夫, 高橋利明; 第35回腐食防食討論会講演集, p. 485-488 (1988) – reference: 1) 伊与木茂樹, 植村正; 冷凍, 53, 1101 (1978) – reference: 5) 伊藤雅彦, 緑川平八郎, 泉谷雅清, 相沢道彦, 丹野和夫; 防食技術, 39, 298 (1990) |
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SubjectTerms | Carbon Steel Flux Galvanic Corrosion High Temperature Lithium Bromide |
Title | Galvanic Corrosion between Carbon Steel and Soldering Fluxes in a Concentrated LiBr Solution at High Temperatures |
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