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国产涂料在核电汽轮机蒸汽侧应用的可行性研究
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  • 英文篇名:Study on Application Feasibility of Domestic Coating on Steam Side of Nuclear Power Turbine
  • 作者:隆彬 ; 李全德 ; 戴君 ; 倪荣 ; 龚显龙 ; 巩秀芳 ; 孟惠民
  • 英文作者:LONG Bin;LI Quan-de;DAI Jun;NI Rong;GONG Xian-long;GONG Xiu-fang;MENG Hui-min;State Key Laboratory of Long-Life High Temperature Materials;Dongfang Turbine Co.,Ltd.;Institute of Advance Materials and Technology,University of Science and Technology Beijing;
  • 关键词:核电汽轮机 ; 蒸汽侧 ; 涂料 ; 性能 ; 应用
  • 英文关键词:nuclear power turbine;;steam side;;coating;;performance;;application
  • 中文刊名:CLBH
  • 英文刊名:Materials Protection
  • 机构:长寿命高温材料国家重点实验室;东方汽轮机有限公司;北京科技大学新材料技术研究院;
  • 出版日期:2019-03-15
  • 出版单位:材料保护
  • 年:2019
  • 期:v.52;No.482
  • 语种:中文;
  • 页:CLBH201903031
  • 页数:4
  • CN:03
  • ISSN:42-1215/TB
  • 分类号:155-158
摘要
为了降低核电汽轮机对进口涂料的依赖,通过污染物分析、盐雾试验、紫外老化试验、焊缝强度和硬度测试等研究了国产涂料在核电汽轮机蒸汽侧应用的可行性。结果表明:国产涂料中汞(Hg)、六价铬Cr(VI)、氟(F)、氯(Cl)、硫(S)、砷(As)、亚硝酸根(NO2-)和铅(Pb)的含量均满足限值要求,不会诱发核电汽轮机蒸汽侧部件的应力腐蚀;国产涂料的硬度、冲击强度、附着力、柔韧性和耐热性与进口涂料相当,耐盐雾性和耐紫外老化性能略优于进口涂料;国产涂料对焊接试板硬度、冲击和弯曲性能均无不良影响,在核电汽轮机蒸汽侧应用是可行的。
        The application feasibility of the domestic coating on the steam side of nuclear power turbine was studied through pollutant analysis,salt spray test,ultraviolet aging test,weld strength measurement and hardness measurement. Results indicated that the contents of mercury,hexavalent chromium,fluorine,chlorine,sulfur,arsenic,nitrite and lead in the domestic coating all met the limit value requirements,and the domestic coating would not induce stress corrosion of steam side components in nuclear power turbines. Furthermore,the hardness,impact,adhesion,flexibility and heat resistance of domestic coating were similar to those of the imported coatings,especially,the properties of salt spray resistance and ultraviolet aging resistance were better in comparison of the imported coating. The domestic coating had no adverse effect on hardness,impact and bending performance of the welded test plate,and therefore it was feasible to apply on the steam side of nuclear power turbine.
引文
[1]王佩宁.2Cr13钢汽轮机叶片的开裂原因分析[J].理化检验-物理分册,2017,53(5):368-370.
    [2]高强生,赵苏平.300MW汽轮机动叶片腐蚀原因分析与对策[J].华电技术,2016,38(7):43-46.
    [3]秦承鹏,李梁.600MW超临界机组低压转子叶片开裂分析[J].腐蚀与防护,2016,37(11):936-942.
    [4]黎华,卢忠铭,刘课秀,等.火电厂汽轮机叶片开裂原因分析[J].理化检验-物理分册,2017,53(3):197-200.
    [5]王建军.内蒙古某热电厂1号机反向次末级叶片断裂原因分析[J].内蒙古石油化工,2015(19):65-68.
    [6]张磊.汽轮机低压缸叶片腐蚀及锅炉四管沉积量大原因分析及对策[J].冶金动力,2016(8):20-22.
    [7]蔡星华.汽轮机低压缸叶片腐蚀诊断分析[J].化工管理,2018(8):212-214.
    [8]张丽萍,林竹,王雪莹,等.防锈可焊涂料的研制与应用[J].全面腐蚀控制,2003,17(4):18-20.

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