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HE Lian, LIU Xianyu, SONG Xuncheng, FENG Ming, ZHAO Zhenyu. Effect of Temperature on Corrosion Behavior of 3 kinds of Cr Steel[J]. Corrosion & Protection, 2017, 38(5): 391-394. DOI: 10.11973/fsyfh-201705016
Citation: HE Lian, LIU Xianyu, SONG Xuncheng, FENG Ming, ZHAO Zhenyu. Effect of Temperature on Corrosion Behavior of 3 kinds of Cr Steel[J]. Corrosion & Protection, 2017, 38(5): 391-394. DOI: 10.11973/fsyfh-201705016

Effect of Temperature on Corrosion Behavior of 3 kinds of Cr Steel

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  • Received Date: October 14, 2015
  • Corrosion test was carried out in simulated oilfield corrosion environment using an autoclave, and the corrosion rates of 1Cr, 3Cr, 13Cr steels were tested at different temperatures. The characteristics of samples were analyzed by X-ray diffraction and scanning electron microscopy. The results show that the maximum corrosion rate of 1Cr steel was 7.515 mm/a at 80 ℃; the maximum corrosion rate of 3Cr steel was 4.339 mm/a at 80 ℃. The corrosion rate of 13Cr steel increased with increasing the temperature, the corrosion rate increased rapidly when the temperature was higher than 110 ℃. 1Cr and 3Cr steels exhibited more localized corrosion while 13 Cr steel showed the excellent corrosion resistance at different temperatures in the whole experiment.
  • [1]
    李建平,赵国仙,郝士明. 几种因素对油套管钢CO2腐蚀行为影响[J]. 中国腐蚀与防护学报,2005,25(4):241-244.
    [2]
    IKEDA A,UEDA M. CO2 behavior of Cr-containing steels[M]. London:Institute of Materials,1994.
    [3]
    张亚明,臧晗宇,董爱华,等. 13Cr钢油管腐蚀原因分析[J]. 腐蚀科学与防护技术,2009,21(5):499-501.
    [4]
    KIMURA M,SAITO Y,NAKANO Y. Effects of alloying elements on corrission resistance of high strence pipeline steel in wet CO2 environment[C]//Corrosion 94.[S.l]:NACE,1994:18.
    [5]
    《油气田腐蚀与防护技术手册》编委会. 油气田腐蚀与防护技术手册(下册)[M]. 北京:石油工业出版社,1999:471-492.
    [6]
    赵国仙,吕祥鸿. 温度对油套管用钢腐蚀速率的影响[J]. 西安石油大学学报(自然科学版),2008,23(4):74-78.
    [7]
    吕祥鸿,路民旭. N80钢动态和静态CO2腐蚀行为对比研究[J]. 腐蚀科学与防护技术,2003,15(1):5-8.
    [8]
    朱景龙,孙成,王佳,等. CO2腐蚀及控制研究进展[J]. 中国腐蚀与防护学报,2007,19(5):350-353.
    [9]
    朱培珂,邓金根. 3Cr钢和13Cr钢在高矿化度CO2环境中的腐蚀行为[J]. 腐蚀与防护,2014,35(12):1221-1225.
    [10]
    张仁勇,施岱艳,姜放,等. 3Cr钢在CO2环境中的腐蚀试验研究[J]. 腐蚀与防护,2012,33(10):147-150.
    [11]
    陈尧,白真权. 13Cr和N80钢高温高压抗腐蚀性能比较[J]. 石油与天然气化工,2007,36(3):239-241,246,5.
    [12]
    陈长风,陆续民,白真权,等. 含1% Cr的N80钢CO2腐蚀产物膜特征[J]. 中国腐蚀与防护学报,2003,23(6):330-334.
    [13]
    郭少强,许立宁,常炜,等. 3Cr管线钢CO2腐蚀实验研究[J]. 金属学报,2011,47(8):1067-1074.
    [14]
    吕祥鸿,赵国仙,樊治海,等. 高温高压下Cl-、CO2分压对13Cr不锈钢点蚀的影响[J]. 材料保护,2004,37(6):34-37.
    [15]
    SCHMITT G. Fundamental aspects of CO2 corrosion[C]//Corrosion. Houston,texas:NACE International,1984.
    [16]
    苏俊华,张学元,王凤平,等. 高矿化度介质中二氧化碳腐蚀金属的规律[J]. 材料保护,1998,31(11):21-23.
    [17]
    许立宁,陈太辉,常炜,等. 温度对3% Cr管线钢CO2腐蚀产物膜的影响[J]. 北京科技大学学报,2012,34(2):149-155.

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