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作 者:宋子博 王智春[1,2] 王建国 SONG Zi-bo;WANG Zhi-chun;WANG Jian-guo(North China Electric Power Research Institute Co.,Ltd.,Beijing 100045,China;State Grid Jibei Electric Power Research Institute,Beijing 100045,China)
机构地区:[1]华北电力科学研究院有限责任公司,北京100045 [2]国网冀北电力有限公司电力科学研究院,北京100045
出 处:《材料保护》2022年第10期56-63,共8页Materials Protection
摘 要:2018~2020年间,选用Q235钢在冀北地区(唐山市、秦皇岛市、廊坊市、承德市和张家口市)进行大气腐蚀试验研究。结果表明:在2018~2020年间,Q235钢在冀北地区大气腐蚀速率由东南至西北逐渐降低,东南部地区腐蚀速率下降明显,地区性腐蚀差异逐渐变小。随着大气腐蚀速率明显降低,试验试样表面腐蚀产物从对基体保护作用较小的片状γ-FeOOH转而形成以结构致密的棉絮状α-FeOOH为主的显微结构。因节能减排治理工作的显著作用和“新冠”疫情所带来的生活、生产模式的改变,冀北地区的大气中的SO_(2)和NO_(2)含量整体呈现下降趋势,使得Q235钢在冀北地区大气腐蚀速率降低,钢结构的大气腐蚀减缓。From 2018 to 2020, atmospheric corrosion tests of Q235 steel were carried out in northern Hebei region(Tangshan, Qinhuangdao, Langfang, Chengde and Zhangjiakou). Results showed that the atmospheric corrosion rate of Q235 steel in northern Hebei region decreased gradually from the southeast to the northwest in that period, the corrosion rate in the southeast decreased obviously, and the regional difference of atmospheric corrosion gradually grew smaller. As the atmospheric corrosion rate decreased significantly, the surface corrosion product of the test samples changed from the flaky γ-FeOOH with less protective effect on the substrate into a microstructure mainly consisted of compact cotton-like α-FeOOH. Owing to the significant effect of energy conservation and emission reduction governance as well as the change of life and production modes brought by the COVID-19 pandemic, the contents of SO_(2)and NO_(2)in the atmosphere in northern Hebei region presented a downward trend, which reduced the atmospheric corrosion rate of Q235 steel and the atmospheric corrosion of steel structure in that region.
分 类 号:TG174.31[金属学及工艺—金属表面处理]
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