高级检索

    海上风电塔架腐蚀与防护现状

    时士峰, 徐群杰, 云虹, 潘红涛

    时士峰, 徐群杰, 云虹, 潘红涛. 海上风电塔架腐蚀与防护现状[J]. 腐蚀与防护, 2010, 31(11): 875-877.
    引用本文: 时士峰, 徐群杰, 云虹, 潘红涛. 海上风电塔架腐蚀与防护现状[J]. 腐蚀与防护, 2010, 31(11): 875-877.
    SHI Shi-feng, XU Qun-jie, YUN Hong, PAN Hong-tao. Status of Corrosion and Protection for Offshore Wind Towers[J]. Corrosion & Protection, 2010, 31(11): 875-877.
    Citation: SHI Shi-feng, XU Qun-jie, YUN Hong, PAN Hong-tao. Status of Corrosion and Protection for Offshore Wind Towers[J]. Corrosion & Protection, 2010, 31(11): 875-877.

    海上风电塔架腐蚀与防护现状

    基金项目: 

    上海市科委重点项目(No.08DZ2201400

    No.08160512600

    No.08DZ2210800)

    详细信息
      作者简介:

      徐群杰,教授.

    • 中图分类号: TG174.4

    Status of Corrosion and Protection for Offshore Wind Towers

    • 摘要: 海上风电作为一种绿色能源技术,已成为世界上可再生能源发展的热点.海上风电运行在高度腐蚀的海洋环境中,防腐蚀成为一项非常重要的工作,而塔筒是防护的重点.本文分析了海上风电塔架的腐蚀原因和防腐蚀设计,综述了海上风电塔架防腐蚀用富锌涂料和聚氨酯涂料的研究进展,提出通过纳米材料和缓蚀剂改性优化提高防腐蚀涂料综合性能的建议,为海上风电塔架提供更好的腐蚀防护.
      Abstract: As a clean technology of energy utilization,offshore wind power has become a hot topic of renewable energy in the world.The offshore wind turbines and especially the towers suffer from serious corrosion due to the extremely harsh marine environment,therefore the corrosion protection has become a major problem in offshore wind power design.The research progress of zinc-rich coatings and polyurethane coatings as anticorrosive coatings of offshore wind towers are reviewed in this paper,and the corrosion and anticorrosion design are also discussed.The comprehensive performance of the anticorrosive coatings modified by nanometer materials and corrosion inhibitors can be obviously improved,which provides a feasible corrosion protection for the offshore wind towers.
    • [1] Brian Snyder,Mark J Kaiser.Ecological and economic cost-benefit analysis of offshore wind energy[J].Renewable Energy,2009,34(6):1567-1578.
      [2] Simon-Philippe Breton,Geir Moe.Status plans and technologies for offshore wind turbines in Europe and North America[J].Renewable Energy,2009,34(3):646-656.
      [3] 刘新,赵荣坊.电力工业的防腐及特种涂料要求[J].现代涂料与涂装,2008,11(7):48-51.
      [4] 单晓宇.海上风电发展不能忽视防腐技术[N].中国海洋报,2009-07-31.
      [5] 肖广民,陈贵.浅谈风力发电机塔架的制造[J].风力发电,2004,20(4):37-39.
      [6] ISO 12944-1998.Paints and varnishes-corrosion protection of steel structures by protective paint systems[S].
      [7] 李爱贵,纬文礼,王雪莹,等.海洋平台涂层防腐蚀系统设计[J].石油化工腐蚀与防护,2009,26(1):48-51.
      [8] 金晓鸿,王建,刘新,等.防腐蚀涂装工程[M].北京:化学工业出版社,2008.
      [9] 徐亮,唐一文,龚书生,等.碳纳米管改性无机-有机水性富锌涂料的制备及其性能[J].腐蚀与防护,2008,29(6):309-312.
      [10] 胡涛,薛银飞,王建军,等.气相二氧化硅对环氧富锌涂料性能的改性研究[J].广东化工,2009,36(5):11-15.
      [11] 傅晓平,龙兰,李岩等.环氧富锌聚苯胺杂化金属重防腐水性涂料的研制[J].表面技术,2009,38(2):80-84.
      [12] 杨丽霞,李晓刚,程学群,等.水、氯离子在丙烯酸聚氨酯涂层中的扩散传输行为[J].中国腐蚀与防护学报,2006,26(1):6-10.
      [13] Krishnan S M.Studies on corrosion resistant properties of sacrificial primed IPN coating systems in comparison with epoxy-PU systems[J].Progress in Organic Coatings,2006,57(4):383-391.
      [14] Pathak S S,Sharma A,Khanna A S.Value addition to waterborne polyurethane resin by silicone modification for developing high performance coating on aluminum alloy[J].Progress in Organic Coatings,2009,65(2):206-216.
      [15] 陈俊,闫福安.性双组分氟丙烯酸-聚氨酯涂料的研制及性能测试[J].中国涂料,2009,24(3):24-28.
      [16] 童忠良.纳米功能涂料[M].北京:化学工业出版社,2009.
      [17] 高丽君,周立明,方少明,等.丙烯酸酯类聚氨酯/蛭石纳米复合材料的制备与性能研究[J].工程塑料应用,2009,37(5):13-16.
      [18] 周树学,陈国栋,武利民,等.丙烯酸酯聚氨酯/SiO2纳米复合涂层结构与形态对其耐刮伤性影响研究[J].涂料工业,2006,36(5):1-4.
      [19] 毛晨峰,王新灵.羟基丙烯酸聚氨酯/金红石型纳米TiO2改性复合材料研究[J].化学建材,2007,23(2):30-32.
      [20] Saha M C,Jeelani S.Enhancement in thermal and mechanical properties of polyurethane foam infused with nanoparticles[J].Materials Science and Engineering A,2008,479(2):213-222.
    计量
    • 文章访问数:  4
    • HTML全文浏览量:  0
    • PDF下载量:  4
    • 被引次数: 0
    出版历程
    • 收稿日期:  2010-02-03
    • 刊出日期:  2010-11-14

    目录

      /

      返回文章
      返回