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中国腐蚀与防护学报  1984, Vol. 4 Issue (3): 199-205    
  研究报告 本期目录 | 过刊浏览 |
纯铬和镍铬合金高温硫化、氧化腐蚀所产生的针状结构
汪大成;D.L.Douglass
贵州省理化测试分析研究中心;美国洛山矶加州大学材料系
THE FORMATION OF TEXTURE STRUCTURE BY SIMULTANEOUS ATTACK OF OXYGEN AND SULFUR ON PURE CHROMIUM AND Cr-Ni ALLOYS AT HIGH TEMPERATURE
Wang Dacheng (Guizhou Research Centre of Physical Testing and Chemical Analysis; Guiyang; Guizhou) Douglass; D. L. (Materials Science and Engineering Dept.. University of California; Los Angeles; CA. 90024; USA.)
全文: PDF(2528 KB)  
摘要: 在T=800℃,Ps_2=10~(-6)大气压,Po_2=5×10~(-21)~5×10~(-20)大气压(即靠近Cr_3S_4—Cr_2O_3热力学边界的Cr_2O_3稳定区中)的条件下,对纯铬和镍铬合金进行了高温腐蚀试验。在腐蚀的最初阶段,Cr_8S_4与Cr_2O_3同时生成,而且腐蚀层呈针状结构。当反应温度及硫分压不定时,合金成份及氧分压的改变对于针状结构的发育有明显的影响。作者对反应的机理进行了讨论。
Abstract:The simultaneous oxidation and sulfidation of chromium and nickel-chromium alloys was studied at 800 C in the atmospheres of ps_2=1×10~(-6) atm. and po_2=5×10~(-21)-5×10~(-20) atm., which are within the Cr_2O_3 stability field and just beside the Cr_3S_4-Cr_2O_3 equilibrium boundary of Ellingham diagram for Cr-O-S. It was found that, at the initial reaction stage, Cr_3S_4 was formed along with Cr_2O_3 and scales were in the form of texture strueture. Aninereasein the oxygen partial pressure or a decrease in chromium content in the alloys restrained the development of the texture structure. The reaction mechanism is discussed.
收稿日期: 1984-06-25     

引用本文:

汪大成;D.L.Douglass. 纯铬和镍铬合金高温硫化、氧化腐蚀所产生的针状结构[J]. 中国腐蚀与防护学报, 1984, 4(3): 199-205.
. THE FORMATION OF TEXTURE STRUCTURE BY SIMULTANEOUS ATTACK OF OXYGEN AND SULFUR ON PURE CHROMIUM AND Cr-Ni ALLOYS AT HIGH TEMPERATURE. J Chin Soc Corr Pro, 1984, 4(3): 199-205.

链接本文:

https://www.jcscp.org/CN/      或      https://www.jcscp.org/CN/Y1984/V4/I3/199

[1] Natesan, K., "Corrosion and Mechanical Behavior of Materials for Coal Gasification Applications", Argonne National Laboratory Report ANL-80-5, May, (1980)
[2] Perkins, Roger A., "High-Tempreature Corrosion of Metals and Alloys in Coal Conversion Atmospheres", DOE, EPRI, GRI, NBS, Proceedings, Third Annual Conference on Materials for Coal Conversion and Utilization, Oct, 10-12, K231, (1978)
[3] Birks, N., Properties of High-Temperature Alloys, edited by Foroulis, Z. A. and Pettit, F. S., Electrochemical Society, 215(1978)
[4] Gesmundo, F., Oxid. Metals, 13, 273(1979)
[5] Giggins, C. S. and Pettit, F. S., Oxid. Metals, 14, 363(1980)
[6] Tiearney, T. C. and Natesan, K., Oxid. Metals, 17, 1(1982)
[7] Wang, D., (汪大成) and Douglass, D. L., Oxid Metals, 20, 111(1983)
[8] Romeo, G. and Spacil, H. S.. High Temperature Gas-Metal Reaction in Mixed Environments, edited by Jansson, S. A. and Foroulis, Z. A., TMS-AIME, Boston, 299(1972)
[9] Wu, M. Z., (吴子瑄) Ph. D. Thesis, School of Engineering and Applied Science, University of California, Los Angeles, (1982)
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