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双相钢在流动3.5aCl溶液中的磨损腐蚀
引用本文:雍兴跃,刘景军,林玉珍,李焕文,韩俊媛,吴玖.双相钢在流动3.5aCl溶液中的磨损腐蚀[J].腐蚀科学与防护技术,1999,11(5):295-299.
作者姓名:雍兴跃  刘景军  林玉珍  李焕文  韩俊媛  吴玖
作者单位:1. 北京化工大学北京 100029
2. 钢铁研究总院北京 100081
摘    要:研究了0Cr25Ni6Mo3Cu双相钢在流动3.5NaCl溶液中的磨损腐蚀行为,并对其磨损腐蚀的动力学过程进行了探讨。结果发现;双相钢在流动3.5%NaCl溶液中的磨损腐蚀速度随着流速的增大而增大,并存在一个使磨损座 刀剧上升的临界值,随阒温度的升高,其磨损腐蚀明显加重。

关 键 词:双相钢  磨损腐蚀  动力学过程
修稿时间:1998年6月12日

EROSION-CORROSION BEHAVIOR OF DUPLEX STAINLESS STEEL IN FLOWING 3.5% NaCl SOLUTION
YONG Xingyue,LIU jingjun,LIN Yuzhen,LI Huanwen,HAN Junyuan ,WU Jiu.EROSION-CORROSION BEHAVIOR OF DUPLEX STAINLESS STEEL IN FLOWING 3.5% NaCl SOLUTION[J].Corrosion Science and Protection Technology,1999,11(5):295-299.
Authors:YONG Xingyue  LIU jingjun  LIN Yuzhen  LI Huanwen  HAN Junyuan  WU Jiu
Affiliation:YONG Xingyue,LIU jingjun,LIN Yuzhen,LI Huanwen,HAN Junyuan 1,WU Jiu 1
Abstract:The erosion corrosion behavior of 0Cr25Ni6Mo3CuN duplex stainless steel in flowing 3.5% NaCl solution were studied with emphasis on its kinetic process. It was found that the erosion corrosion rate of duplex stainless steel in flowing 3.5% NaCl solution was increased with increasing the flow velocity, and that there was a critical flow velocity above which the erosion corrosion rate was speeded up abruptly. Furthermore duplex stainless steel suffered from serious erosion corrosion if the temperature of solution was increased. From the kinetic process of erosion corrosion it was showed that the erosion corrosion of duplex stainless steel was mainly controlled by passivative process of anode, on which the diffusion or migration rate of ions in film at interface was the key step . The results also showed that the duplex stainless steel in flowing 3.5% NaCl solution at ambient atmospheric temperature would be resistant to erosion\|corrosion even if flow velocity was up to 15m/s. However, it should be careful for the duplex stainless steel to be applied in flowing 3.5% NaCl solution at high temperature when flow velocity was above the critical flow velocity.
Keywords:duplex stainless steel  flowing 3  5% NaCl solution  erosion corrosion  kinetic process
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