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In-situ investigation of atmospheric corrosion behavior of bronze under thin electrolyte layers using electrochemical technique 被引量:6

应用电化学方法原位研究薄液膜下青铜的大气腐蚀行为(英文)
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摘要 The atmospheric corrosion behavior of bronze under thin electrolyte layer (TEL) with different thicknesses was monitored using cathodic polarization curves, open circuit potential (OCP) and electrochemical impedance spectroscopy (EIS). Cathodic polarization result indicates that the cathodic limiting current density increases with decreasing the TEL thickness. EIS result shows that the corrosion rate increases with decreasing the TEL thickness at the initial stage because the corrosion is dominated by the cathodic process, whereas after long immersion time, the corrosion degree with the TEL thickness is in the sequence of 150 μm 〉 310 μm〉 10μm ≈ bulk solution 〉 57 μm. The measurements of OCP and EIS present in-situ electrochemical corrosion information and their results are in good agreement with that of physical characterizations. 采用阴极极化曲线、开路电位和电化学阻抗谱,监测青铜在不同薄液膜厚度下的大气腐蚀行为。阴极极化曲线结果表明,阴极极限电流密度随着液膜的减薄而增大。电化学阻抗谱结果表明,在腐蚀初期,腐蚀速率随着液膜的减薄而增加,这主要是由于腐蚀速率是由阴极过程控制的;随着时间的延长,腐蚀程度随着液膜厚度的变化从强到弱的趋势为:150μm,310μm,100μm,本体溶液,57μm。开路电位和电化学阻抗谱实验较好地再现了原位电化学腐蚀信息,且电化学结果与物理表征具有良好的一致性。
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第5期1239-1249,共11页 中国有色金属学报(英文版)
基金 Projects (51131005, 51171172, 50801056) supported by the National Natural Science Foundation of China Project (Y4110074) supported by Natural Science Foundation of Zhejiang Province, China
关键词 BRONZE thin electrolyte layer in-situ investigation atmospheric corrosion electrochemical technique 青铜 薄液膜 原位研究 大气腐蚀 电化学技术
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参考文献32

  • 1WADSAK M, AASTRUP T, ODNEVALL WALLINDER I, LEYGRAF C, SCHREINER M. Multianalytical in situ investigation of the initial atmospheric corrosion of bronze [J]. Corrosion Science, 2002,44(4): 791-802.
  • 2FANG C Z, WANG Y S, WANG C S, WANG S J, HU K L, ZHAO H Z. The kinetics of growth process of powdery rust of bronze [J]. Science China B, 1992,22(5): 470-477.
  • 3王菊琳,许淳淳.腐蚀过程中青铜析出还原铜晶粒的机理[J].中国有色金属学报,2004,14(11):1869-1874. 被引量:3
  • 4KORSHIN G V, FERGUSON J F, LANCASTER A N. Influence of natural organic matter on the corrosion of leaded brass in potable water [J]. Corrosion Science, 2000, 42{l): 53-66.
  • 5ZHANG X G, STIMMING U. Scanning tunneling microscopy of copper corrosion in aqueous perchloric acid [J]. Corrosion Science, 1990, 30(8-9): 951-954.
  • 6KLEBER C, SCHREINER M.In situ TM-AFM investigations of the influence of zinc and tin as alloy constituents of copper to the early stages of corrosion [J]. Applied Surface Science, 2003, 217( 1-4): 294-301.
  • 7LEYSSENS K, ADRIAENS A, DOWSETT M G, SCHOTTE B, OLOFF I, PANTOS E, BELL A M T, THOMPSON S P. Simultaneous in situ time resolved SR-XRD and corrosion potential analyses to monitor the corrosion on copper [J]. Electrochemical Communication, 2005, 7(12): 1265-1270.
  • 8AASTRUP T, WADSAK M, SCHREINER M, LEYGRAF C. Experimental in situ studies of copper exposed to humidified air [J]. Corrosion Science, 2000, 42(6): 957-967.
  • 9BERTRAND G, ROCCA E, SAVALL C, RAPIN C, LAB RUNE J C, STEINMETZ P. In-situ electrochemical atomic force microscopy studies of aqueous corrosion and inhibition of copper [J]. Journal of Electroanalytical Chemistry, 2000, 489(12): 38-45.
  • 10ZHU Xiao-ling, LI Ren-shun, WU Reng, ZHOU De-rui. The initial corrosion mechanism of a-phase aluminum bronze in NaCI solution [J]. The Chinese Journal of Nonferrous Metals, 1992,2(1): 61-62. (in Chineses).

二级参考文献5

  • 1Robbiola L, Blengino J, Fiaud C. Morphology and mechanism of formation of natural patinas of archaeological Cu-Sn alloys[J]. Corr Sci, 1998, 40(12): 2083-2094.
  • 2Dunne D P. Studies on the re-deposition of copper in corroded ancient bronzes[A]. Proceedings of The conference on ancient Chinese and southeast Asian bronzes cultures[C]. Australia: 1988. 124-129.
  • 3Evans U R. Corrosion of Metals[M]. London: Commercial Publishing Company, 1926, 32-43.
  • 4Constantinides I, Adriaens A, Adams F. Surface characterization of artificial corrosion layers on copper alloy reference materials[J]. Applied Surface Science, 2002,189: 90-101.
  • 5XU Chun-chun, WANG Ju-lin. Investigation of the chemical and electrochemical behaviour of mass transfer at an archaeological bronze/soil interface[J]. Anti-corrosion Methods and Materials, 2003, 50(5): 326-333.

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