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中国腐蚀与防护学报  1992, Vol. 12 Issue (3): 196-204    
  研究报告 本期目录 | 过刊浏览 |
二元硫酸盐Na_2SO_4-K_2SO_4沉积引起的Fe-Al合金的低温热腐蚀
史良权;张允书;石声泰
中国科学院上海冶金研究所;中国科学院上海冶金研究所;中国科学院上海冶金研究所
LOW TEMPERATURE HOT CORROSION OF Fe-Al ALLOYS INDUCED BY Na_2SO_4-K_2SO_4 DEPOSIT
Shi Liangquan; Zhang Yunshu and Shih Shengtai (Shanghai Institute of Metalluargy; Chinese Academy of Sciences)
全文: PDF(1890 KB)  
摘要: 研究了Fe-Al合金当其表面上有二元硫酸盐Na_2SO_4-K_2SO_4沉积时在O_2/SO_2/SO_3气氛中的低温热腐蚀动力学及其影响因素,并分析了腐蚀产物的形貌和结构。将获得的实验结果与一元硫酸盐Na_2SO_4(或K_2SO_4)沉积引起的Fe-Al合金的腐蚀行为加以比较,发现二元硫酸盐沉积导致更为严重的热腐蚀。此现象似应归诸于在一元硫酸盐沉积物中引入第二组分硫酸盐影响了混合盐系相平衡热力学,从而导致了更容易产生引发低温热腐蚀的低熔点硫酸盐共晶。
Abstract:Low temperature hot corrosion behavior of Fe-Al alloys was studied in the presence of a thin film of Na_2SO_4-K_2SO_4 deposit on their surfaces in O_2/SO_2/SO_3 gas atmospheres in the temperature range of 650~750℃。 The reaction kinetics were measured gravimetrieally,and the alloys corroded were physically examined and analyzed. The results indicated that the binary sulfate deposit induced more severe hot corrosion of the alloys than a unitary sulfate Na_2SO_4 or K_2SO_4 deposit did. On the basis of a discussion on the effect of the addition of either K_2SO_4 to Na_2SO_4 or Na_2SO_4 to K_2SO_4 on thermodynamics of the equilibrium of mixed salts,the accelerated hot corrosion of the alloys caused by the binary sulfate deposit is attributed to the earlier appearance of a ternary sulfate eutectic, Na_2SO_4-K_2SO_4-Fe_2(SO_4)_3,on the alloy surface.
收稿日期: 1992-06-25     
基金资助:中国科学院腐蚀科学开放研究实验室课题;;国家基金

引用本文:

史良权;张允书;石声泰. 二元硫酸盐Na_2SO_4-K_2SO_4沉积引起的Fe-Al合金的低温热腐蚀[J]. 中国腐蚀与防护学报, 1992, 12(3): 196-204.
. LOW TEMPERATURE HOT CORROSION OF Fe-Al ALLOYS INDUCED BY Na_2SO_4-K_2SO_4 DEPOSIT. J Chin Soc Corr Pro, 1992, 12(3): 196-204.

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https://www.jcscp.org/CN/      或      https://www.jcscp.org/CN/Y1992/V12/I3/196

[1] 张允书、史良权、石声泰,中国腐蚀与防护学报12(3) ,189(1992)
[2] Rahmel.A. ,in "The Mechanism of Corrosion by Fuel Impurities" Jonson,H. R. and Littler. D. J. ,Butterworths, Lindon P, 556,(1963)
[3] Jones ,R. L. and williams ,C. E, J,Electrochem. Soc. , 133,1742(1986)
[4] LeBlanc Jr,O,H. ,Luthra,K. L. and Haskell,R. W. ,Oxid. Met., 31,393(1989)
[5] Corey,R. C.; Cross,B. J. and Reid,W. T. ,Trans. ASME 67, 289(1945)
[6] Corey, R. C. ; Grabowski, H. A. and Cross ,B. J. , ibid. , 71, 951 (1949)
[7] Edward, A. M ; Evans, G. J. , and Hower, L. S. , J. Inst. Fuel, 35,121 (1962)
[8] Spacil,H.S. and Luthra,K. L. ,J. Electrochem,Soc. ,129, 2119(1982)
[9] McCarron, R. L. and Brobst, R. P. , Mat. perform. , 24,32 (1985)
[10] 张允书,史良权,石声泰,中国腐蚀与防护学报,12(1) ,20(1992)
[11] Hendry,A. and Lees, D J. ,Corr. Sci. ,20,383(1980)
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