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Performance and integrity of protective coating systems for offshore wind power structures after three years under offshore site conditions

机译:在海上工地条件下运行三年后,用于海上风电结构的保护涂层系统的性能和完整性

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摘要

Six corrosion protection systems for offshore wind power constructions have been subjected to offshore conditions on a test site in the North Sea in three different exposure zones, namely splash zone, intermediate zone, and underwater zone. The systems included single- and multiple-layered organic coatings, metal-spray coatings, and duplex coatings. Special testing specimens were designed and manufactured and exposed to an offshore environment for three years in order to characterize particular constructive details for different corrosivity zones. The following target parameters were investigated: intensity of fouling, anti-corrosive effect, coating adhesion, coating integrity, flange corrosion, coating performance over welds, and condition of screw connections. Fouling was an issue in the underwater zone and in the intermediate zone, but it did not affect the coating corrosion protection capacity. It was found that duplex systems, consisting of Zn/Al spray metallization, intermediate particle-reinforced epoxy coating, and polyurethane top layer, provided the highest anti-corrosive effect. Mechanical damage to the coatings initiated coating delamination and substrate corrosion. Effective coating systems should be either very resistant to impact or able to compensate for corrosion of the steel. Flange connections were found to be critical structural parts in the splash zone in terms of corrosion. Notable crevice corrosion was observed at places. Except for one coating system, welds have been protected well. Welds, however, affected the corrosion of the steel inside the uncoated internal sections in the underwater samples. Coating integrity on difficult-to-coat structural parts was satisfactory for all systems.
机译:在北海的一个测试地点的三个不同暴露区域,即飞溅区域,中间区域和水下区域,已对海上风电建设的六种腐蚀防护系统进行了海上条件测试。该系统包括单层和多层有机涂层,金属喷涂涂层和双面涂层。设计和制造了特殊的测试样本,并将其暴露在海上环境中三年,以表征不同腐蚀性区域的特殊构造细节。研究了以下目标参数:结垢强度,防腐作用,涂层附着力,涂层完整性,法兰腐蚀,焊缝涂层性能以及螺钉连接条件。结垢是水下区域和中间区域的问题,但它并没有影响涂层的腐蚀防护能力。已发现,由Zn / Al喷镀金属,中间颗粒增强的环氧涂层和聚氨酯顶层组成的双相体系提供了最高的防腐效果。涂层的机械损伤导致涂层分层和基材腐蚀。有效的涂层系统应要么非常抗冲击,要么能够补偿钢的腐蚀。就腐蚀而言,发现法兰连接是飞溅区中的关键结构部件。在某些地方观察到明显的缝隙腐蚀。除了一种涂层系统,焊缝得到了很好的保护。但是,焊接会影响水下样本中未镀膜内部区域内钢的腐蚀。难以涂覆的结构部件上的涂层完整性对于所有系统都令人满意。

著录项

  • 来源
    《Renewable energy》 |2015年第2期|606-617|共12页
  • 作者单位

    Muehlhan AG, Hamburg, Schlinckstrasse 3, D-21107 Hamburg, Germany;

    Fraunhofer Institute for Manufacturing and Applied Materials Research (IFAM), Wiener Strasse 12, 28359 Bremen, Germany;

    Fraunhofer Institute for Manufacturing and Applied Materials Research (IFAM), Wiener Strasse 12, 28359 Bremen, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wind power; Coatings; Corrosion; Offshore;

    机译:风力;涂料;腐蚀;离岸;

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